Crystallography Open Database

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1556261 CIFC13 H7 F6 N SP 1 21 19.5947; 4.8799; 13.6316
90; 94.414; 90
636.35Zubkov, Mikhail O.; Kosobokov, Mikhail D.; Levin, Vitalij V.; Kokorekin, Vladimir A.; Korlyukov, Alexander A.; Hu, Jinbo; Dilman, Alexander D.
A novel photoredox-active group for the generation of fluorinated radicals from difluorostyrenes
Chemical Science, 2020, 11, 737-741
1556262 CIFC24 H14 F4 N2 SP 1 21/c 18.6198; 7.7249; 29.3919
90; 91.201; 90
1956.69Zubkov, Mikhail O.; Kosobokov, Mikhail D.; Levin, Vitalij V.; Kokorekin, Vladimir A.; Korlyukov, Alexander A.; Hu, Jinbo; Dilman, Alexander D.
A novel photoredox-active group for the generation of fluorinated radicals from difluorostyrenes
Chemical Science, 2020, 11, 737-741
1556263 CIFC20 H12 N2 O2 S2P 1 21/c 111.2568; 5.8241; 12.8702
90; 112.433; 90
779.93Li, Tao; Yan, Xiaodong; Liu, Yong; Zhang, Wen-Da; Fu, Qiu-Ting; Zhu, Haiyan; Li, Zaijun; Gu, Zhi-Guo
A 2D covalent organic framework involving strong intramolecular hydrogen bonds for advanced supercapacitors
Polymer Chemistry, 2020, 11, 47-52
1556264 CIFC34 H52 B2 O6P -19.7994; 12.6632; 14.5262
96.185; 99.296; 109.868
1647.14Metzler, Lukas; Reichenbach, Thomas; Brügner, Oliver; Komber, Hartmut; Lombeck, Florian; Müllers, Stefan; Hanselmann, Ralf; Hillebrecht, Harald; Walter, Michael; Sommer, Michael
High molecular weight mechanochromic spiropyran main chain copolymers via reproducible microwave-assisted Suzuki polycondensation
Polymer Chemistry, 2015, 6, 3694
1556265 CIFC76 H94 Cl6 F6 N6 O10 Pt2 S2P -113.4362; 18.3994; 20.2998
106.666; 108.577; 103.771
4246.8Leung, Sam Ka-Ming; Chan, Alan Kwun-Wa; Leung, Sammual Yu-Lut; Leung, Ming-Yi; Yam, Vivian Wing-Wah
Supramolecular assembly of bent dinuclear amphiphilic alkynylplatinum(ii) terpyridine complexes: diverse nanostructures through subtle tuning of the mode of molecular stacking.
Chemical science, 2020, 11, 499-507
1556266 CIFC28 H27 N O6P 21 21 2110.42; 12.888; 19.103
90; 90; 90
2565.4Wang, Ming; Shi, Yu-Hua; Luo, Jun-Fei; Du, Wenting; Shi, Xiao-Xin; Fossey, John S.; Deng, Wei-Ping
Novel N,O-Cu(OAc)2 complex catalysed diastereo- and enantioselective 1,4-addition of glycine derivatives to alkylidene malonates
Catalysis Science & Technology, 2011, 1, 100
1556267 CIFC24 H28 Br2 N2 NiC 1 2/c 129.331; 10.775; 15.226
90; 105.3; 90
4641.5Song, Shengju; Xiao, Tianpengfei; Liang, Tongling; Wang, Fosong; Redshaw, Carl; Sun, Wen-Hua
Synthesis, characterization and ethylene oligomerization behaviour of 8-(1-aryliminoethylidene)quinaldinylnickel dihalides
Catalysis Science & Technology, 2011, 1, 69
1556268 CIFC23 H26 Br2 N2 NiP 1 21/n 115.834; 8.6441; 17.665
90; 114.28; 90
2204Song, Shengju; Xiao, Tianpengfei; Liang, Tongling; Wang, Fosong; Redshaw, Carl; Sun, Wen-Hua
Synthesis, characterization and ethylene oligomerization behaviour of 8-(1-aryliminoethylidene)quinaldinylnickel dihalides
Catalysis Science & Technology, 2011, 1, 69
1556269 CIFC60 H53 Cl4 O5 P5 Rh2P 1 21/c 117.0585; 17.1534; 19.5448
90; 90.797; 90
5718.5Castro, Pascal M.; Gulyás, Henrik; Benet-Buchholz, Jordi; Bo, Carles; Freixa, Zoraida; van Leeuwen, Piet W. N. M.
SPOs as new ligands in Rh(iii) catalyzed enantioselective transfer hydrogenation
Catalysis Science & Technology, 2011, 1, 401
1556270 CIFC44 H48 F6 O12 S8 ZnR -3 :H12.5877; 12.5877; 29.1803
90; 90; 120
4004.2Enthaler, Stephan
A straightforward zinc-catalysed reduction of sulfoxides to sulfides
Catalysis Science & Technology, 2011, 1, 104
1556271 CIFC33.33 H0 F4 O6.67 S4 Zn0.67P -110.5817; 13.8939; 19.8576
83.554; 88.085; 73.117
2775.99Enthaler, Stephan
A straightforward zinc-catalysed reduction of sulfoxides to sulfides
Catalysis Science & Technology, 2011, 1, 104
1556272 CIFC18 H22 N O5 PC 1 2/c 122.1091; 10.4184; 18.2639
90; 118.495; 90
3697.3Kidwai, Mazaahir; Bhardwaj, Saurav; Mishra, Neeraj Kumar; Jain, Arti; Kumar, Ajeet; Mozzumdar, Subho
Application of mobilized Cu-nanoparticles as heterogeneous catalyst for the synthesis of α-amino phosphonates via A2-P coupling
Catalysis Science & Technology, 2011, 1, 426
1556273 CIFC24 H40 Fe N2 O4P -16.3577; 9.6425; 10.788
91.28; 103.763; 90.641
642.1Sahoo, Pathik; Puranik, Vedavati G.; Patra, A. K.; Sastry, P. U.; Dastidar, Parthasarathi
Ferrocene based organometallic gelators: a supramolecular synthon approach
Soft Matter, 2011, 7, 3634
1556274 CIFC32 H56 Fe N2 O4P -16.344; 9.743; 13.824
101.95; 92.72; 91.48
834.4Sahoo, Pathik; Puranik, Vedavati G.; Patra, A. K.; Sastry, P. U.; Dastidar, Parthasarathi
Ferrocene based organometallic gelators: a supramolecular synthon approach
Soft Matter, 2011, 7, 3634
1556275 CIFC36 H64 Fe N2 O4P -16.3523; 9.7708; 15.689
74.333; 86.777; 88.341
936Sahoo, Pathik; Puranik, Vedavati G.; Patra, A. K.; Sastry, P. U.; Dastidar, Parthasarathi
Ferrocene based organometallic gelators: a supramolecular synthon approach
Soft Matter, 2011, 7, 3634
1556276 CIFC38 H68 Fe N2 O4P -16.383; 9.819; 16.098
76.759; 85.454; 88.787
979Sahoo, Pathik; Puranik, Vedavati G.; Patra, A. K.; Sastry, P. U.; Dastidar, Parthasarathi
Ferrocene based organometallic gelators: a supramolecular synthon approach
Soft Matter, 2011, 7, 3634
1556277 CIFC40 H72 Fe N2 O4P -16.3805; 9.7435; 17.269
103.524; 97.318; 91.618
1033.4Sahoo, Pathik; Puranik, Vedavati G.; Patra, A. K.; Sastry, P. U.; Dastidar, Parthasarathi
Ferrocene based organometallic gelators: a supramolecular synthon approach
Soft Matter, 2011, 7, 3634
1556278 CIFC42 H76 Fe N2 O4P -16.418; 9.72; 18.006
104.624; 98.504; 91.086
1073.1Sahoo, Pathik; Puranik, Vedavati G.; Patra, A. K.; Sastry, P. U.; Dastidar, Parthasarathi
Ferrocene based organometallic gelators: a supramolecular synthon approach
Soft Matter, 2011, 7, 3634
1556279 CIFC22 H24 Cl2 Co N2P 1 21/n 111.337; 15.712; 11.611
90; 95.49; 90
2058.7Xiao, Tianpengfei; Lai, Jingjuan; Zhang, Shu; Hao, Xiang; Sun, Wen-Hua
2-(1-Aryliminopropylidene)quinolylcobalt(ii) dichlorides: synthesis, characterization and catalytic behaviour towards ethylene
Catalysis Science & Technology, 2011, 1, 462
1556280 CIFC24 H28 Cl2 Co N2P 1 21/n 110.125; 16.885; 13.533
90; 90.01; 90
2313.6Xiao, Tianpengfei; Lai, Jingjuan; Zhang, Shu; Hao, Xiang; Sun, Wen-Hua
2-(1-Aryliminopropylidene)quinolylcobalt(ii) dichlorides: synthesis, characterization and catalytic behaviour towards ethylene
Catalysis Science & Technology, 2011, 1, 462
1556281 CIFC24 H34 N O4 VP 1 21/c 18.4832; 11.5025; 24.14
90; 94.873; 90
2347Lorber, Christian; Despagnet-Ayoub, Emmanuelle; Vendier, Laure; Arbaoui, Abdessamad; Redshaw, Carl
Amine influence in vanadium-based ethylene polymerisation pro-catalysts bearing bis(phenolate) ligands with ‘pendant’ arms
Catalysis Science & Technology, 2011, 1, 489
1556282 CIFC26 H26 Cl2 N2 O TiC 1 2/c 123.852; 13.832; 16.89
90; 118.68; 90
4889Huang, Wei; Li, Baixiang; Wang, Youhong; Zhang, Wenjuan; Wang, Lin; Li, Yuesheng; Sun, Wen-Hua; Redshaw, Carl
Synthesis, characterization and ethylene (co-)polymerization behavior of half-titanocene 2-(1-(arylimino)ethyl)quinolin-8-olate chlorides
Catalysis Science & Technology, 2011, 1, 1208
1556283 CIFC27 H28 Cl2 N2 O TiP 1 21/c 117.098; 8.1446; 17.624
90; 98.7; 90
2426Huang, Wei; Li, Baixiang; Wang, Youhong; Zhang, Wenjuan; Wang, Lin; Li, Yuesheng; Sun, Wen-Hua; Redshaw, Carl
Synthesis, characterization and ethylene (co-)polymerization behavior of half-titanocene 2-(1-(arylimino)ethyl)quinolin-8-olate chlorides
Catalysis Science & Technology, 2011, 1, 1208
1556284 CIFC16 H24 Cl2 N2 O4 Pd S2P -18.4783; 11.6061; 13.1535
67.125; 89.797; 68.971
1099.1Tomás-Mendivil, Eder; Díez, Josefina; Cadierno, Victorio
Conjugate addition of arylboronic acids to α,β-unsaturated carbonyl compounds in aqueous medium using Pd(ii) complexes with dihydroxy-2,2′-bipyridine ligands: homogeneous or heterogeneous nano-catalysis?
Catalysis Science & Technology, 2011, 1, 1605
1556285 CIFC14 H14 Cl2 N2 O5 Pd SP -17.6738; 10.4974; 12.5545
112.689; 90.017; 108.646
875.2Tomás-Mendivil, Eder; Díez, Josefina; Cadierno, Victorio
Conjugate addition of arylboronic acids to α,β-unsaturated carbonyl compounds in aqueous medium using Pd(ii) complexes with dihydroxy-2,2′-bipyridine ligands: homogeneous or heterogeneous nano-catalysis?
Catalysis Science & Technology, 2011, 1, 1605
1556286 CIFC54.2 H48.4 Cl0.4 N2 O P2P -111.5434; 14.8956; 15.1659
62.313; 86.134; 78.115
2258.4Wheaton, Craig A.; Hayes, Paul G.
Exploring the versatility of a bis(phosphinimine) pincer ligand: effect of sterics on structure and lactide polymerization activity of cationic zinc complexes
Catal. Sci. Technol., 2012, 2, 125
1556287 CIFC50 H40 N2 O P2P 1 21/c 118.0198; 14.0045; 16.7584
90; 109.646; 90
3982.9Wheaton, Craig A.; Hayes, Paul G.
Exploring the versatility of a bis(phosphinimine) pincer ligand: effect of sterics on structure and lactide polymerization activity of cationic zinc complexes
Catal. Sci. Technol., 2012, 2, 125
1556288 CIFC51 H39 N2 O P2P -19.373; 13.769; 17.95
104.285; 90.99; 92.535
2242Wheaton, Craig A.; Hayes, Paul G.
Exploring the versatility of a bis(phosphinimine) pincer ligand: effect of sterics on structure and lactide polymerization activity of cationic zinc complexes
Catal. Sci. Technol., 2012, 2, 125
1556289 CIFC85 H77 B N2 O P2 ZnP -114.3702; 15.2542; 17.2588
81.451; 66.469; 76.867
3370.8Wheaton, Craig A.; Hayes, Paul G.
Exploring the versatility of a bis(phosphinimine) pincer ligand: effect of sterics on structure and lactide polymerization activity of cationic zinc complexes
Catal. Sci. Technol., 2012, 2, 125
1556290 CIFC76.18 H63.47 B N2 O P2 ZnP -19.9214; 17.1175; 18.4747
86.754; 78.725; 80.859
3036.9Wheaton, Craig A.; Hayes, Paul G.
Exploring the versatility of a bis(phosphinimine) pincer ligand: effect of sterics on structure and lactide polymerization activity of cationic zinc complexes
Catal. Sci. Technol., 2012, 2, 125
1556291 CIFC80.65 H63.86 B N2 O P2 ZnP -19.9023; 16.867; 20.7112
101.974; 91.114; 95.296
3366.9Wheaton, Craig A.; Hayes, Paul G.
Exploring the versatility of a bis(phosphinimine) pincer ligand: effect of sterics on structure and lactide polymerization activity of cationic zinc complexes
Catal. Sci. Technol., 2012, 2, 125
1556292 CIFC86.83 H60.66 B Cl1.66 F24 N2 O4 P2 ZnP -111.4655; 19.564; 19.662
99.64; 103.416; 92.916
4210.9Wheaton, Craig A.; Hayes, Paul G.
Exploring the versatility of a bis(phosphinimine) pincer ligand: effect of sterics on structure and lactide polymerization activity of cationic zinc complexes
Catal. Sci. Technol., 2012, 2, 125
1556293 CIFC90 H60 B Br0.38 F24 N2 O4 P2 ZnP 1 21/c 118.781; 27.1179; 18.6506
90; 116.785; 90
8479.6Wheaton, Craig A.; Hayes, Paul G.
Exploring the versatility of a bis(phosphinimine) pincer ligand: effect of sterics on structure and lactide polymerization activity of cationic zinc complexes
Catal. Sci. Technol., 2012, 2, 125
1556294 CIFC57 H50 Br2 N2 NiP 1 21/c 110.378; 16.008; 31.765
90; 95.61; 90
5251.9Liu, Hao; Zhao, Weizhen; Yu, Jiangang; Yang, Wenhong; Hao, Xiang; Redshaw, Carl; Chen, Langqiu; Sun, Wen-Hua
Synthesis, characterization and ethylenepolymerization behavior of nickel dihalide complexes bearing bulky unsymmetrical α-diimine ligands
Catal. Sci. Technol., 2012, 2, 415
1556295 CIFC56 H48 Br2 N2 NiP 1 21/c 115.352; 22.551; 15.38
90; 106.96; 90
5093Liu, Hao; Zhao, Weizhen; Yu, Jiangang; Yang, Wenhong; Hao, Xiang; Redshaw, Carl; Chen, Langqiu; Sun, Wen-Hua
Synthesis, characterization and ethylenepolymerization behavior of nickel dihalide complexes bearing bulky unsymmetrical α-diimine ligands
Catal. Sci. Technol., 2012, 2, 415
1556296 CIFC54 H44 Cl2 N2 Ni O0P 1 21/c 115.33; 22.285; 14.954
90; 106.33; 90
4902.6Liu, Hao; Zhao, Weizhen; Yu, Jiangang; Yang, Wenhong; Hao, Xiang; Redshaw, Carl; Chen, Langqiu; Sun, Wen-Hua
Synthesis, characterization and ethylenepolymerization behavior of nickel dihalide complexes bearing bulky unsymmetrical α-diimine ligands
Catal. Sci. Technol., 2012, 2, 415
1556297 CIFC28 H33 Cl4 Co N3 O2P b c a15.492; 17.191; 25.784
90; 90; 90
6867Smit, Theo M.; Tomov, Atanas K.; Britovsek, George J. P.; Gibson, Vernon C.; White, Andrew J. P.; Williams, David J.
The effect of imine-carbon substituents in bis(imino)pyridine-based ethylene polymerisation catalysts across the transition series
Catalysis Science & Technology, 2012, 2, 643
1556298 CIFC28 H33 Cl4 Fe N3 S2C 1 2/c 123.2849; 16.2809; 17.6654
90; 106.957; 90
6405.8Smit, Theo M.; Tomov, Atanas K.; Britovsek, George J. P.; Gibson, Vernon C.; White, Andrew J. P.; Williams, David J.
The effect of imine-carbon substituents in bis(imino)pyridine-based ethylene polymerisation catalysts across the transition series
Catalysis Science & Technology, 2012, 2, 643
1556299 CIFC41 H43 Cl2 Fe N3 O3P 1 21/n 116.114; 8.9394; 27.383
90; 99.828; 90
3886.6Smit, Theo M.; Tomov, Atanas K.; Britovsek, George J. P.; Gibson, Vernon C.; White, Andrew J. P.; Williams, David J.
The effect of imine-carbon substituents in bis(imino)pyridine-based ethylene polymerisation catalysts across the transition series
Catalysis Science & Technology, 2012, 2, 643
1556300 CIFC38 H37 Cl4 Fe N3 S2P b c a17.148; 20.564; 22.319
90; 90; 90
7870Smit, Theo M.; Tomov, Atanas K.; Britovsek, George J. P.; Gibson, Vernon C.; White, Andrew J. P.; Williams, David J.
The effect of imine-carbon substituents in bis(imino)pyridine-based ethylene polymerisation catalysts across the transition series
Catalysis Science & Technology, 2012, 2, 643
1556301 CIFC38.5 H38 Cl6 N3 S2 VP 1 21/n 112.3896; 19.617; 16.797
90; 95.449; 90
4064Smit, Theo M.; Tomov, Atanas K.; Britovsek, George J. P.; Gibson, Vernon C.; White, Andrew J. P.; Williams, David J.
The effect of imine-carbon substituents in bis(imino)pyridine-based ethylene polymerisation catalysts across the transition series
Catalysis Science & Technology, 2012, 2, 643
1556302 CIFC38.5 H38 Cl6 Cr N3 S2P 1 21/n 112.3561; 19.623; 16.75
90; 95.756; 90
4040.8Smit, Theo M.; Tomov, Atanas K.; Britovsek, George J. P.; Gibson, Vernon C.; White, Andrew J. P.; Williams, David J.
The effect of imine-carbon substituents in bis(imino)pyridine-based ethylene polymerisation catalysts across the transition series
Catalysis Science & Technology, 2012, 2, 643
1556303 CIFC38 H37 Cl4 Mn N3 S2P b c a17.056; 20.693; 22.231
90; 90; 90
7846Smit, Theo M.; Tomov, Atanas K.; Britovsek, George J. P.; Gibson, Vernon C.; White, Andrew J. P.; Williams, David J.
The effect of imine-carbon substituents in bis(imino)pyridine-based ethylene polymerisation catalysts across the transition series
Catalysis Science & Technology, 2012, 2, 643
1556304 CIFC41 H43 Br2 N3 Ni O S2P b c a17.54; 20.405; 22.23
90; 90; 90
7956Smit, Theo M.; Tomov, Atanas K.; Britovsek, George J. P.; Gibson, Vernon C.; White, Andrew J. P.; Williams, David J.
The effect of imine-carbon substituents in bis(imino)pyridine-based ethylene polymerisation catalysts across the transition series
Catalysis Science & Technology, 2012, 2, 643
1556305 CIFC44.5 H50 Cl5 Fe N3 O2P 1 21/n 19.2178; 29.17; 16.7749
90; 92.674; 90
4505.6Smit, Theo M.; Tomov, Atanas K.; Britovsek, George J. P.; Gibson, Vernon C.; White, Andrew J. P.; Williams, David J.
The effect of imine-carbon substituents in bis(imino)pyridine-based ethylene polymerisation catalysts across the transition series
Catalysis Science & Technology, 2012, 2, 643
1556306 CIFC44.25 H49.5 Cl4.5 Co N3 O2P 1 21/c 112.8687; 19.6515; 18.0924
90; 90.931; 90
4574.8Smit, Theo M.; Tomov, Atanas K.; Britovsek, George J. P.; Gibson, Vernon C.; White, Andrew J. P.; Williams, David J.
The effect of imine-carbon substituents in bis(imino)pyridine-based ethylene polymerisation catalysts across the transition series
Catalysis Science & Technology, 2012, 2, 643
1556307 CIFC44.5 H50 Cl5 Fe N3 S2C 1 2/c 134.005; 10.0092; 27.105
90; 94.482; 90
9197.3Smit, Theo M.; Tomov, Atanas K.; Britovsek, George J. P.; Gibson, Vernon C.; White, Andrew J. P.; Williams, David J.
The effect of imine-carbon substituents in bis(imino)pyridine-based ethylene polymerisation catalysts across the transition series
Catalysis Science & Technology, 2012, 2, 643
1556308 CIFC44.5 H50 Cl5 Co N3 S2C 1 2/c 134.234; 10.0665; 27.315
90; 93.888; 90
9392Smit, Theo M.; Tomov, Atanas K.; Britovsek, George J. P.; Gibson, Vernon C.; White, Andrew J. P.; Williams, David J.
The effect of imine-carbon substituents in bis(imino)pyridine-based ethylene polymerisation catalysts across the transition series
Catalysis Science & Technology, 2012, 2, 643
1556309 CIFC19 H26 Cl O3 P PdP -17.8175; 16.296; 16.654
100.4; 100.58; 102.97
1977.2Fuentes, José A.; Slawin, Alexandra M. Z.; Clarke, Matthew L.
Application of palladium (trioxo-adamantyl cage phosphine)chloride complexes as catalysts for the alkoxycarbonylation of styrene; Pd catalysed tert-butoxycarbonylation of styrene
Catalysis Science & Technology, 2012, 2, 715
1556310 CIFC22 H32 Cl O4 P PdP 1 21/n 19.552; 15.094; 16.038
90; 100.126; 90
2276.3Fuentes, José A.; Slawin, Alexandra M. Z.; Clarke, Matthew L.
Application of palladium (trioxo-adamantyl cage phosphine)chloride complexes as catalysts for the alkoxycarbonylation of styrene; Pd catalysed tert-butoxycarbonylation of styrene
Catalysis Science & Technology, 2012, 2, 715
1556311 CIFC18 H18 F12 N2 O2P -18.301; 10.979; 11.71
80.225; 85.04; 89.69
1047.7Legros, Julien; Bonnet-Delpon, Danièle; Crousse, Benoit; Slawin, Alexandra M. Z.
Self-assembly between 1,4-diazabicyclo[2.2.2]octane and bis(hexafluoroalcohols): solid/liquid phase switching for catalyst recycling
Catalysis Science & Technology, 2012, 2, 934
1556312 CIFC18 H18 F12 N2 O2C 1 c 125.06; 6.782; 13.057
90; 110.81; 90
2074Legros, Julien; Bonnet-Delpon, Danièle; Crousse, Benoit; Slawin, Alexandra M. Z.
Self-assembly between 1,4-diazabicyclo[2.2.2]octane and bis(hexafluoroalcohols): solid/liquid phase switching for catalyst recycling
Catalysis Science & Technology, 2012, 2, 934
1556313 CIFC25 H24 Br N3 O5 Pd SP -17.724; 13.385; 14
68.935; 83.939; 89.447
1342.5Srinivas, Keesara; Srinivas, Pottabathula; Prathima, Parvathaneni Sai; Balaswamy, Kodicherla; Sridhar, Balsubramanian; Rao, Mandapati Mohan
Thiopseudourea ligated palladium complexes: synthesis, characterization and application as catalysts for Suzuki‒Miyaura, Sonogashira, Heck and Hiyama reactions
Catalysis Science & Technology, 2012, 2, 1180
1556314 CIFC90 H84 Br0 N2 Ni O2P -110.515; 13.887; 15.272
80.61; 71.05; 70.1
1979.8Zhou, Zihong; Hao, Xiang; Redshaw, Carl; Chen, Langqiu; Sun, Wen-Hua
Nickel bis{4,6-dibenzhydryl-2-[(arylimino)methyl]phenoxylate} complexes: Synthesis, structures, and catalytic behaviour towards ethylene and norbornene
Catalysis Science & Technology, 2012, 2, 1340
1556315 CIFC78 H56 F4 N2 Ni O2C 1 2/c 147.225; 16.333; 17.278
90; 110.26; 90
12502Zhou, Zihong; Hao, Xiang; Redshaw, Carl; Chen, Langqiu; Sun, Wen-Hua
Nickel bis{4,6-dibenzhydryl-2-[(arylimino)methyl]phenoxylate} complexes: Synthesis, structures, and catalytic behaviour towards ethylene and norbornene
Catalysis Science & Technology, 2012, 2, 1340
1556316 CIFC17 H17 N O5P c a b8.8191; 17.5507; 20.7531
90; 90; 90
3212.2Ananthakrishnan, Rajakumar; Gazi, Sarifuddin
[Ru(bpy)3]2+ aided photocatalytic synthesis of 2-arylpyridines via Hantzsch reaction under visible irradiation and oxygen atmosphere
Catalysis Science & Technology, 2012, 2, 1463
1556317 CIFC40 H54 N2 O3 ZnP -110.9698; 12.9718; 13.3427
91.834; 104.278; 92.66
1836.16Taherimehr, Masoumeh; Decortes, Antonello; Al-Amsyar, Syed M.; Lueangchaichaweng, Warunee; Whiteoak, Christopher J.; Escudero-Adán, Eduardo C.; Kleij, Arjan W.; Pescarmona, Paolo P.
A highly active Zn(salphen) catalyst for production of organic carbonates in a green CO2 medium
Catalysis Science & Technology, 2012, 2, 2231
1556318 CIFC68.5 H85 N4 O9 Zn2C 1 2/c 142.19; 9.719; 31.932
90; 110.08; 90
12297.6Taherimehr, Masoumeh; Decortes, Antonello; Al-Amsyar, Syed M.; Lueangchaichaweng, Warunee; Whiteoak, Christopher J.; Escudero-Adán, Eduardo C.; Kleij, Arjan W.; Pescarmona, Paolo P.
A highly active Zn(salphen) catalyst for production of organic carbonates in a green CO2 medium
Catalysis Science & Technology, 2012, 2, 2231
1556319 CIFC48 H38 Cl2 N2 O TiP b c a17.529; 18.752; 25.656
90; 90; 90
8433Huang, Wei; Zhang, Wenjuan; Sun, Wen-Hua; Wang, Lin; Redshaw, Carl
Synthesis, characterization, and the ethylene (co-)polymerization behaviour of half-titanocene dichloride 2-aryliminoquinolin-8-olates
Catalysis Science & Technology, 2012, 2, 2090
1556320 CIFC37 H32 Cl2 N2 O TiC 1 2/c 153.675; 10.021; 24.886
90; 100.29; 90
13170Huang, Wei; Zhang, Wenjuan; Sun, Wen-Hua; Wang, Lin; Redshaw, Carl
Synthesis, characterization, and the ethylene (co-)polymerization behaviour of half-titanocene dichloride 2-aryliminoquinolin-8-olates
Catalysis Science & Technology, 2012, 2, 2090
1556321 CIFC12 H12 Au Cl3 N2P 1 21/n 118.108; 9.5124; 18.3546
90; 113.59; 90
2897.4O'Neill, James A. T.; Rosair, Georgina M.; Lee, Ai-Lan
Gold(iii)–oxo complexes as catalysts in intramolecular hydroamination
Catalysis Science & Technology, 2012, 2, 1818
1556322 CIFC12 H13 Au Cl4 N2C 1 2/c 122.1175; 14.791; 9.5257
90; 99.676; 90
3071.9O'Neill, James A. T.; Rosair, Georgina M.; Lee, Ai-Lan
Gold(iii)‒oxo complexes as catalysts in intramolecular hydroamination
Catalysis Science & Technology, 2012, 2, 1818
1556323 CIFC12 H12 Au Cl N2 O5P -17.6032; 9.2289; 9.96
82.321; 85.907; 88.085
690.65O'Neill, James A. T.; Rosair, Georgina M.; Lee, Ai-Lan
Gold(iii)–oxo complexes as catalysts in intramolecular hydroamination
Catalysis Science & Technology, 2012, 2, 1818
1556324 CIFC40 H54 Cl4 N2 O3 RuP 1 21/c 120.5265; 13.4139; 29.7267
90; 91.812; 90
8180.9Leitgeb, Anita; Abbas, Mudassar; Fischer, Roland C.; Poater, Albert; Cavallo, Luigi; Slugovc, Christian
A latent ruthenium based olefin metathesis catalyst with a sterically demanding NHC ligand
Catalysis Science & Technology, 2012, 2, 1640
1556325 CIFC15 H29 Cl2 N3 PdP -18.1051; 11.1155; 22.6264
77.784; 89.987; 71.894
1888.9Peral, Daniel; Gómez-Villarraga, Fernando; Sala, Xavier; Pons, Josefina; Carles Bayón, J.; Ros, Josep; Guerrero, Miguel; Vendier, Laure; Lecante, Pierre; García-Antón, Jordi; Philippot, Karine
Palladium catalytic systems with hybrid pyrazole ligands in C‒C coupling reactions. Nanoparticles versus molecular complexes
Catal. Sci. Technol., 2013, 3, 475
1556326 CIFC15 H28 Cl2 N2 Pd SP -18.1752; 15.2655; 15.457
94.321; 90.451; 93.185
1920.4Peral, Daniel; Gómez-Villarraga, Fernando; Sala, Xavier; Pons, Josefina; Carles Bayón, J.; Ros, Josep; Guerrero, Miguel; Vendier, Laure; Lecante, Pierre; García-Antón, Jordi; Philippot, Karine
Palladium catalytic systems with hybrid pyrazole ligands in C‒C coupling reactions. Nanoparticles versus molecular complexes
Catal. Sci. Technol., 2013, 3, 475
1556327 CIFC30 H56 Cl2 N4 O2 PdP 18.1693; 9.1162; 22.9935
93.592; 91.806; 89.939
1708.2Peral, Daniel; Gómez-Villarraga, Fernando; Sala, Xavier; Pons, Josefina; Carles Bayón, J.; Ros, Josep; Guerrero, Miguel; Vendier, Laure; Lecante, Pierre; García-Antón, Jordi; Philippot, Karine
Palladium catalytic systems with hybrid pyrazole ligands in C‒C coupling reactions. Nanoparticles versus molecular complexes
Catal. Sci. Technol., 2013, 3, 475
1556328 CIFC23 H45 Cl2 N3 PdP 1 21/c 115.7877; 21.0937; 8.109
90; 102.061; 90
2640.9Peral, Daniel; Gómez-Villarraga, Fernando; Sala, Xavier; Pons, Josefina; Carles Bayón, J.; Ros, Josep; Guerrero, Miguel; Vendier, Laure; Lecante, Pierre; García-Antón, Jordi; Philippot, Karine
Palladium catalytic systems with hybrid pyrazole ligands in C‒C coupling reactions. Nanoparticles versus molecular complexes
Catal. Sci. Technol., 2013, 3, 475
1556329 CIFC66 H64 Cl2 N4 O7.5 V2P 1 21/a 117.8598; 10.775; 31.054
90; 101.73; 90
5851.2Clowes, Lucy; Walton, Mark; Redshaw, Carl; Chao, Yimin; Walton, Alex; Elo, Pertti; Sumerin, Victor; Hughes, David L.
Vanadium(iii) phenoxyimine complexes for ethylene or ε-caprolactone polymerization: mononuclear versus binuclear pre-catalysts
Catal. Sci. Technol., 2013, 3, 152
1556330 CIFC44 H56 N2 O2P 1 21/a 19.6297; 12.1792; 16.2276
90; 100.851; 90
1869.18Clowes, Lucy; Walton, Mark; Redshaw, Carl; Chao, Yimin; Walton, Alex; Elo, Pertti; Sumerin, Victor; Hughes, David L.
Vanadium(iii) phenoxyimine complexes for ethylene or ε-caprolactone polymerization: mononuclear versus binuclear pre-catalysts
Catal. Sci. Technol., 2013, 3, 152
1556331 CIFC60 H86 Cl4 N2 O6 V2P b c a15.4851; 12.3449; 33.0323
90; 90; 90
6314.5Clowes, Lucy; Walton, Mark; Redshaw, Carl; Chao, Yimin; Walton, Alex; Elo, Pertti; Sumerin, Victor; Hughes, David L.
Vanadium(iii) phenoxyimine complexes for ethylene or ε-caprolactone polymerization: mononuclear versus binuclear pre-catalysts
Catal. Sci. Technol., 2013, 3, 152
1556332 CIFC42 H52 Cl2 N4 O3 VP 21 n b11.0873; 17.9157; 20.6832
90; 90; 90
4108.4Clowes, Lucy; Walton, Mark; Redshaw, Carl; Chao, Yimin; Walton, Alex; Elo, Pertti; Sumerin, Victor; Hughes, David L.
Vanadium(iii) phenoxyimine complexes for ethylene or ε-caprolactone polymerization: mononuclear versus binuclear pre-catalysts
Catal. Sci. Technol., 2013, 3, 152
1556333 CIFC54 H84 B Cl2 F4 P6 Rh3P 41 21 214.483; 14.483; 58.042
90; 90; 90
12175Preetz, Angelika; Kohrt, Christina; Meißner, Antje; Wei, Siping; Drexler, Hans-Joachim; Buschmann, Helmut; Heller, Detlef
Halide bridged trinuclear rhodium complexes and their inhibiting influence on catalysis
Catal. Sci. Technol., 2013, 3, 462
1556334 CIFC85 H86 B Cl4 F4 O6 P6 Rh3P 113.136; 13.405; 14.779
85.58; 68.44; 68.06
2239.6Preetz, Angelika; Kohrt, Christina; Meißner, Antje; Wei, Siping; Drexler, Hans-Joachim; Buschmann, Helmut; Heller, Detlef
Halide bridged trinuclear rhodium complexes and their inhibiting influence on catalysis
Catal. Sci. Technol., 2013, 3, 462
1556335 CIFC44 H72 Cl2 P4 Rh2P 21 21 2114.1975; 16.3823; 20.5561
90; 90; 90
4781.1Preetz, Angelika; Kohrt, Christina; Meißner, Antje; Wei, Siping; Drexler, Hans-Joachim; Buschmann, Helmut; Heller, Detlef
Halide bridged trinuclear rhodium complexes and their inhibiting influence on catalysis
Catal. Sci. Technol., 2013, 3, 462
1556336 CIFC135 H100 Cl6 F3 O3 P6 Rh3 SP 1 21 116.493; 23.276; 16.775
90; 118.1; 90
5681Preetz, Angelika; Kohrt, Christina; Meißner, Antje; Wei, Siping; Drexler, Hans-Joachim; Buschmann, Helmut; Heller, Detlef
Halide bridged trinuclear rhodium complexes and their inhibiting influence on catalysis
Catal. Sci. Technol., 2013, 3, 462
1556337 CIFC54 H84 B Br0.8 Cl1.2 F4 P6 Rh3P 21 21 2116.431; 20.348; 21.116
90; 90; 90
7060Preetz, Angelika; Kohrt, Christina; Meißner, Antje; Wei, Siping; Drexler, Hans-Joachim; Buschmann, Helmut; Heller, Detlef
Halide bridged trinuclear rhodium complexes and their inhibiting influence on catalysis
Catal. Sci. Technol., 2013, 3, 462
1556338 CIFC36 H56 Br2 P4 Rh2P 1 21 111.2912; 16.6047; 11.4464
90; 105.766; 90
2065.32Preetz, Angelika; Kohrt, Christina; Meißner, Antje; Wei, Siping; Drexler, Hans-Joachim; Buschmann, Helmut; Heller, Detlef
Halide bridged trinuclear rhodium complexes and their inhibiting influence on catalysis
Catal. Sci. Technol., 2013, 3, 462
1556339 CIFC36 H86 B F4 O2 P6 Rh3P 112.416; 12.444; 18.186
95.81; 94.37; 111.98
2572.3Preetz, Angelika; Kohrt, Christina; Meißner, Antje; Wei, Siping; Drexler, Hans-Joachim; Buschmann, Helmut; Heller, Detlef
Halide bridged trinuclear rhodium complexes and their inhibiting influence on catalysis
Catal. Sci. Technol., 2013, 3, 462
1556340 CIFC37 H86 B Cl4 F4 P6 Rh3P 19.6676; 12.005; 12.658
109.83; 94.19; 90.56
1377.3Preetz, Angelika; Kohrt, Christina; Meißner, Antje; Wei, Siping; Drexler, Hans-Joachim; Buschmann, Helmut; Heller, Detlef
Halide bridged trinuclear rhodium complexes and their inhibiting influence on catalysis
Catal. Sci. Technol., 2013, 3, 462
1556341 CIFC30.5 H30 Cl2 F6 N6 O3 P2 RuC 1 2/c 129.0844; 15.042; 16.3344
90; 108.315; 90
6784.1Vaquer, Lydia; Riente, Paola; Sala, Xavier; Jansat, Susanna; Benet-Buchholz, Jordi; Llobet, Antoni; Pericàs, Miquel A.
Molecular ruthenium complexes anchored on magnetic nanoparticles that act as powerful and magnetically recyclable stereospecific epoxidation catalysts
Catal. Sci. Technol., 2013, 3, 706
1556342 CIFC30.5 H30.5 Cl2 F6 N6 O3.25 P2 RuP -110.9643; 11.9921; 15.491
110.491; 99.026; 107.666
1737.2Vaquer, Lydia; Riente, Paola; Sala, Xavier; Jansat, Susanna; Benet-Buchholz, Jordi; Llobet, Antoni; Pericàs, Miquel A.
Molecular ruthenium complexes anchored on magnetic nanoparticles that act as powerful and magnetically recyclable stereospecific epoxidation catalysts
Catal. Sci. Technol., 2013, 3, 706
1556343 CIFC80 H102 Al Cl N4 O6 S2P 41 21 213.6143; 13.6143; 38.6616
90; 90; 90
7165.9Ternel, Jérémy; Roussel, Pascal; Agbossou-Niedercorn, Francine; Gauvin, Régis M.
Dismantling the salen framework: design of new asymmetric silylcyanation catalysts
Catal. Sci. Technol., 2013, 3, 580
1556344 CIFC108 H253 Br7 Co6 O75 Ti27P 1 21/c 123.8831; 20.6857; 20.2699
90; 92.546; 90
10004.2Lv, Yaokang; Willkomm, Janina; Steiner, Alexander; Gan, Lihua; Reisner, Erwin; Wright, Dominic S.
Encapsulation of a ‘naked’ Br− anion in a polyoxotitanate host
Chemical Science, 2012, 3, 2470
1556345 CIFC22.5 H27 Cl F6 I N2 O2 Os PP -111.3168; 13.0498; 19.2278
95.398; 103.654; 97.2625
2714.5Fu, Ying; Romero, María J.; Habtemariam, Abraha; Snowden, Michael E.; Song, Lijiang; Clarkson, Guy J.; Qamar, Bushra; Pizarro, Ana M.; Unwin, Patrick R.; Sadler, Peter J.
The contrasting chemical reactivity of potent isoelectronic iminopyridine and azopyridine osmium(ii) arene anticancer complexes
Chemical Science, 2012, 3, 2485
1556346 CIFC6 H14 N4 O6 SP 41 21 27.9553; 7.9553; 18.7605
90; 90; 90
1187.29Cliffe, Matthew J.; Mottillo, Cristina; Stein, Robin S.; Bučar, Dejan-Krešimir; Friščić, Tomislav
Accelerated aging: a low energy, solvent-free alternative to solvothermal and mechanochemical synthesis of metal–organic materials
Chemical Science, 2012, 3, 2495
1556347 CIFC144 Cu6 O42 P3C 2 2 217.5328; 30.3514; 49.1818
90; 90; 90
26171.9Zheng, Min; Liu, Yan; Wang, Cheng; Liu, Shubin; Lin, Wenbin
Cavity-induced enantioselectivity reversal in a chiral metal‒organic framework Brønsted acid catalyst
Chemical Science, 2012, 3, 2623
1556348 CIFC48 H24 Cu2 O14 PI 41 2 224.4616; 24.4616; 71.8721
90; 90; 90
43006.1Zheng, Min; Liu, Yan; Wang, Cheng; Liu, Shubin; Lin, Wenbin
Cavity-induced enantioselectivity reversal in a chiral metal‒organic framework Brønsted acid catalyst
Chemical Science, 2012, 3, 2623
1556349 CIFC26 Cu O5P 42 2 218.744; 18.744; 29.259
90; 90; 90
10279.8Zheng, Min; Liu, Yan; Wang, Cheng; Liu, Shubin; Lin, Wenbin
Cavity-induced enantioselectivity reversal in a chiral metal‒organic framework Brønsted acid catalyst
Chemical Science, 2012, 3, 2623
1556350 CIFC79 H75 K N7 Nd O10P 1 21/c 114.7976; 23.2598; 20.8144
90; 92.145; 90
7159.1Camp, Clément; Guidal, Valentin; Biswas, Biplab; Pécaut, Jacques; Dubois, Lionel; Mazzanti, Marinella
Multielectron redox chemistry of lanthanide Schiff-base complexes
Chemical Science, 2012, 3, 2433
1556351 CIFC108.1 H150.89 K N4 Nd O12P -116.1709; 17.5403; 19.5362
90.671; 113.704; 96.867
5026.5Camp, Clément; Guidal, Valentin; Biswas, Biplab; Pécaut, Jacques; Dubois, Lionel; Mazzanti, Marinella
Multielectron redox chemistry of lanthanide Schiff-base complexes
Chemical Science, 2012, 3, 2433
1556352 CIFC177.5 H141.5 K9 N23.5 Nd3 O12P 1 21 115.6191; 27.7932; 19.045
90; 97.395; 90
8198.8Camp, Clément; Guidal, Valentin; Biswas, Biplab; Pécaut, Jacques; Dubois, Lionel; Mazzanti, Marinella
Multielectron redox chemistry of lanthanide Schiff-base complexes
Chemical Science, 2012, 3, 2433
1556353 CIFC65 H53 K3 N9 O4 TbP 1 21/c 114.5693; 30.262; 14.6011
90; 108.494; 90
6105.1Camp, Clément; Guidal, Valentin; Biswas, Biplab; Pécaut, Jacques; Dubois, Lionel; Mazzanti, Marinella
Multielectron redox chemistry of lanthanide Schiff-base complexes
Chemical Science, 2012, 3, 2433
1556354 CIFC64 H78 I K2 N4 Nd O16P 1 2/n 114.0578; 12.1559; 19.078
90; 89.466; 90
3260Camp, Clément; Guidal, Valentin; Biswas, Biplab; Pécaut, Jacques; Dubois, Lionel; Mazzanti, Marinella
Multielectron redox chemistry of lanthanide Schiff-base complexes
Chemical Science, 2012, 3, 2433
1556355 CIFC39.5 H45.5 K N3.5 Nd O8P 1 21/n 113.3718; 15.0596; 19.3034
90; 102.603; 90
3793.54Camp, Clément; Guidal, Valentin; Biswas, Biplab; Pécaut, Jacques; Dubois, Lionel; Mazzanti, Marinella
Multielectron redox chemistry of lanthanide Schiff-base complexes
Chemical Science, 2012, 3, 2433
1556356 CIFC65 H112 Ni2 P10P -111.3941; 12.6121; 14.341
66.008; 82.323; 66.713
1728.51Tofan, Daniel; Cummins, Christopher C.
Bicyclic dinuclear tris-(ditopic diphosphane) complexes of zerovalent group 10 metals
Chemical Science, 2012, 3, 2474
1556357 CIFC87 H114 O2 P8 Pt2C 1 c 120.4091; 16.3489; 26.2219
90; 111.97; 90
8114Tofan, Daniel; Cummins, Christopher C.
Bicyclic dinuclear tris-(ditopic diphosphane) complexes of zerovalent group 10 metals
Chemical Science, 2012, 3, 2474
1556358 CIFC83 H106 O P8 Pd2P -112.3521; 14.0198; 23.3487
74.059; 80.729; 82.851
3823.38Tofan, Daniel; Cummins, Christopher C.
Bicyclic dinuclear tris-(ditopic diphosphane) complexes of zerovalent group 10 metals
Chemical Science, 2012, 3, 2474
1556359 CIFC108 H126 Ni2 P8R -3 :H23.055; 23.055; 31.0318
90; 90; 120
14284.6Tofan, Daniel; Cummins, Christopher C.
Bicyclic dinuclear tris-(ditopic diphosphane) complexes of zerovalent group 10 metals
Chemical Science, 2012, 3, 2474
1556360 CIFC108 H126 As2 Ni2 P6R -3 :H23.0523; 23.0523; 31.4482
90; 90; 120
14472.9Tofan, Daniel; Cummins, Christopher C.
Bicyclic dinuclear tris-(ditopic diphosphane) complexes of zerovalent group 10 metals
Chemical Science, 2012, 3, 2474
1556361 CIFC44 H54 Mg N2 OP -19.307; 11.3957; 19.4004
87.957; 81.71; 71.96
1935.92Chisholm, Malcolm H.; Choojun, Kittisak; Gallucci, Judith C.; Wambua, Pasco M.
Chemistry of magnesium alkyls supported by 1,5,9-trimesityldipyrromethene and 2-[(2,6-diisopropylphenyl)amino]-4-[(2,6-diisopropylphenyl)imino]pent-2-ene. A comparative study
Chemical Science, 2012, 3, 3445
1556362 CIFC37 H58 Mg N2 OP -19.2133; 12.1983; 15.8164
85.663; 78.098; 87.241
1733.39Chisholm, Malcolm H.; Choojun, Kittisak; Gallucci, Judith C.; Wambua, Pasco M.
Chemistry of magnesium alkyls supported by 1,5,9-trimesityldipyrromethene and 2-[(2,6-diisopropylphenyl)amino]-4-[(2,6-diisopropylphenyl)imino]pent-2-ene. A comparative study
Chemical Science, 2012, 3, 3445
1556363 CIFC52 H70 Mg N2 O4P 1 21/c 118.122; 14.9771; 18.2681
90; 103.969; 90
4811.6Chisholm, Malcolm H.; Choojun, Kittisak; Gallucci, Judith C.; Wambua, Pasco M.
Chemistry of magnesium alkyls supported by 1,5,9-trimesityldipyrromethene and 2-[(2,6-diisopropylphenyl)amino]-4-[(2,6-diisopropylphenyl)imino]pent-2-ene. A comparative study
Chemical Science, 2012, 3, 3445
1556364 CIFC72 H114 Mg2 N4 O2C 1 2/m 118.4898; 18.3357; 12.0991
90; 123.001; 90
3440.09Chisholm, Malcolm H.; Choojun, Kittisak; Gallucci, Judith C.; Wambua, Pasco M.
Chemistry of magnesium alkyls supported by 1,5,9-trimesityldipyrromethene and 2-[(2,6-diisopropylphenyl)amino]-4-[(2,6-diisopropylphenyl)imino]pent-2-ene. A comparative study
Chemical Science, 2012, 3, 3445
1556365 CIFC22 H50 Dy3 N8 O21P n a 2128.1795; 14.8684; 8.9668
90; 90; 90
3756.95Wang, Yu-Xia; Shi, Wei; Li, Han; Song, You; Fang, Liang; Lan, Yanhua; Powell, Annie K.; Wernsdorfer, Wolfgang; Ungur, Liviu; Chibotaru, Liviu F.; Shen, Mingrong; Cheng, Peng
A single-molecule magnet assembly exhibiting a dielectric transition at 470 K
Chemical Science, 2012, 3, 3366
1556366 CIFC19 H35 N O7 P Si2 WP -110.762; 11.0051; 25.8757
85.0791; 82.5425; 64.607
2743.58Schulten, Christian; von Frantzius, Gerd; Schnakenburg, Gregor; Espinosa, Arturo; Streubel, Rainer
Deoxygenation of carbon dioxide by electrophilic terminal phosphinidene complexes
Chemical Science, 2012, 3, 3526
1556367 CIFC12 H9 F3 N2 OP 1 21/n 16.2648; 8.9839; 20.5622
90; 95.46; 90
1152.04Feng, Chao; Loh, Teck-Peng
Copper-catalyzed olefinic trifluoromethylation of enamides at room temperature
Chemical Science, 2012, 3, 3458
1556368 CIFC24.5 H25 Cl3 F12 N5 O P2 RuP 1 21/n 111.3277; 18.234; 15.932
90; 97.573; 90
3262Ohzu, Shingo; Ishizuka, Tomoya; Hirai, Yuichirou; Jiang, Hua; Sakaguchi, Miyuki; Ogura, Takashi; Fukuzumi, Shunichi; Kojima, Takahiko
Mechanistic insight into catalytic oxidations of organic compounds by ruthenium(iv)-oxo complexes with pyridylamine ligands
Chemical Science, 2012, 3, 3421
1556369 CIFC17 H17 N O4P 1 21/n 111.892; 7.5168; 17.092
90; 95.099; 90
1521.8McBurney, Roy T.; Harper, Andrew D.; Slawin, Alexandra M. Z.; Walton, John C.
An all-purpose preparation of oxime carbonates and resultant insights into the chemistry of alkoxycarbonyloxyl radicals
Chemical Science, 2012, 3, 3436
1556370 CIFC11 H9 N O3P n m a19.168; 6.189; 8.461
90; 90; 90
1003.7McBurney, Roy T.; Harper, Andrew D.; Slawin, Alexandra M. Z.; Walton, John C.
An all-purpose preparation of oxime carbonates and resultant insights into the chemistry of alkoxycarbonyloxyl radicals
Chemical Science, 2012, 3, 3436
1556371 CIFC17 H15 Cl N4 O3P 21 21 217.129; 11.454; 19.387
90; 90; 90
1583.1Siddiqui, Zeba N.; Khan, Tabassum
P2O5/SiO2 as an efficient heterogeneous catalyst for the synthesis of heterocyclic alkene derivatives under thermal solvent-free conditions
Catalysis Science & Technology, 2013, 3, 2032
1556372 CIFC48 H44 Cu2 O12P -110.53; 10.579; 10.773
109.248; 93.156; 106.287
1073Sunil, Abraham C.; Langner, Ernst H. G.; Marais, Charlene; Bezuidenhoudt, Barend C. B.
Thermo-analytical determination of intermediates in the copper catalysed rearrangement of o-toluic acid to meta-cresol
Catalysis Science & Technology, 2013, 3, 2227
1556373 CIFC19 H24 Br2 Cl2 N4 NiC 2 2 2114.2034; 11.5066; 14.6836
90; 90; 90
2399.8Budhai, Asheena; Omondi, Bernard; Ojwach, Stephen O.; Obuah, Collins; Osei-Twum, Emmanuel Y.; Darkwa, James
Tandem ethylene oligomerisation and Friedel‒Crafts alkylation of toluene catalysed by bis-(3,5-dimethylpyrazol-1-ylmethyl)benzene nickel(ii) complexes and ethylaluminium dichloride
Catalysis Science & Technology, 2013, 3, 3130
1556374 CIFC18 H22 Cl2 N4 NiP -19.2765; 10.7428; 12.1287
110.976; 96.346; 113.712
986.47Budhai, Asheena; Omondi, Bernard; Ojwach, Stephen O.; Obuah, Collins; Osei-Twum, Emmanuel Y.; Darkwa, James
Tandem ethylene oligomerisation and Friedel‒Crafts alkylation of toluene catalysed by bis-(3,5-dimethylpyrazol-1-ylmethyl)benzene nickel(ii) complexes and ethylaluminium dichloride
Catalysis Science & Technology, 2013, 3, 3130
1556375 CIFC18 H22 Br2 N4 NiP -19.3446; 14.994; 15.681
75.599; 78.411; 81.522
2073.7Budhai, Asheena; Omondi, Bernard; Ojwach, Stephen O.; Obuah, Collins; Osei-Twum, Emmanuel Y.; Darkwa, James
Tandem ethylene oligomerisation and Friedel‒Crafts alkylation of toluene catalysed by bis-(3,5-dimethylpyrazol-1-ylmethyl)benzene nickel(ii) complexes and ethylaluminium dichloride
Catalysis Science & Technology, 2013, 3, 3130
1556376 CIFC45 H41 Br2 Cl N2 NiP 1 21/c 19.6013; 16.927; 24.799
90; 100.77; 90
3959.4Jia, Dedong; Zhang, Wenjuan; Liu, Weiliang; Wang, Lin; Redshaw, Carl; Sun, Wen-Hua
Unsymmetrical α-diiminonickel bromide complexes: synthesis, characterization and their catalytic behavior toward ethylene
Catalysis Science & Technology, 2013, 3, 2737
1556377 CIFC47 H45 Br2 Cl N2 NiP 1 21/c 19.922; 16.84; 24.975
90; 98.41; 90
4128.1Jia, Dedong; Zhang, Wenjuan; Liu, Weiliang; Wang, Lin; Redshaw, Carl; Sun, Wen-Hua
Unsymmetrical α-diiminonickel bromide complexes: synthesis, characterization and their catalytic behavior toward ethylene
Catalysis Science & Technology, 2013, 3, 2737
1556378 CIFC25 H35 N3 ZnP -19.6343; 9.6463; 14.2834
76.36; 88.829; 63.062
1144.29Dai, Zhongran; Zhang, Jinjin; Gao, Yuan; Tang, Ning; Huang, Yong; Wu, Jincai
Synthesis and structures of tridentate β-diketiminato zinc phenoxides as catalysts for immortal ring-opening polymerization of l-lactide
Catalysis Science & Technology, 2013, 3, 3268
1556379 CIFC31 H39 N3 O ZnP 1 21/n 112.765; 16.025; 13.594
90; 98.6; 90
2750Dai, Zhongran; Zhang, Jinjin; Gao, Yuan; Tang, Ning; Huang, Yong; Wu, Jincai
Synthesis and structures of tridentate β-diketiminato zinc phenoxides as catalysts for immortal ring-opening polymerization of l-lactide
Catalysis Science & Technology, 2013, 3, 3268
1556380 CIFC35 H47 N3 O ZnP -110.889; 14.2911; 20.7227
92.804; 92.129; 92.212
3216.1Dai, Zhongran; Zhang, Jinjin; Gao, Yuan; Tang, Ning; Huang, Yong; Wu, Jincai
Synthesis and structures of tridentate β-diketiminato zinc phenoxides as catalysts for immortal ring-opening polymerization of l-lactide
Catalysis Science & Technology, 2013, 3, 3268
1556381 CIFC3 H5 Au Cl4 N2P 1 2/m 13.8864; 7.7824; 7.5103
90; 98.573; 90
224.61de Almeida, M. Peixoto; Martins, L. M. D. R. S.; Carabineiro, S. A. C.; Lauterbach, T.; Rominger, F.; Hashmi, A. S. K.; Pombeiro, A. J. L.; Figueiredo, J. L.
Homogeneous and heterogenised new gold C-scorpionate complexes as catalysts for cyclohexane oxidation
Catalysis Science & Technology, 2013, 3, 3056
1556382 CIFC14 H16 N2 O2P 1 21/n 15.8113; 23.7797; 9.2207
90; 95.959; 90
1267.33Ray, Suman; Bhaumik, Asim; Dutta, Arghya; Mukhopadhyay, Chhanda
Porous silica nanoparticles with mesoscopic void spaces for the domino intermolecular aerobic oxidative synthesis of novel β,β′-diketoenamines
Catalysis Science & Technology, 2013, 3, 1267
1556383 CIFC99 H102 N9 O6 P Zn3P -3 c 120.8644; 20.8644; 52.9489
90; 90; 120
19961.8Jacobs, Ivo; van Duin, Adri C. T.; Kleij, Arjan W.; Kuil, Mark; Tooke, Duncan M.; Spek, Anthony L.; Reek, Joost N. H.
Conformational studies of ligand-template assemblies and the consequences for encapsulation of rhodium complexes and hydroformylation catalysis
Catalysis Science & Technology, 2013, 3, 1955
1556384 CIFC25.63 H25.25 Cl3.25 Fe N6 O8P 1 21/c 112.2117; 20.6062; 23.4209
90; 90.957; 90
5892.7Wong, Emma; Jeck, Jonathan; Grau, Michaela; White, Andrew J. P.; Britovsek, George J. P.
A strong-field pentadentate ligand in iron-based alkane oxidation catalysis and implications for iron(iv) oxo intermediates
Catalysis Science & Technology, 2013, 3, 1116
1556385 CIFC48 H47 Cl4 Fe2 N11 O18P 1 21/c 112.4043; 38.877; 12.3737
90; 117.208; 90
5306.9Wong, Emma; Jeck, Jonathan; Grau, Michaela; White, Andrew J. P.; Britovsek, George J. P.
A strong-field pentadentate ligand in iron-based alkane oxidation catalysis and implications for iron(iv) oxo intermediates
Catalysis Science & Technology, 2013, 3, 1116
1556386 CIFC21 H27 NP b c a9.2391; 17.1518; 22.2035
90; 90; 90
3518.53Qiu, Youai; Ma, Dengke; Kong, Wangqing; Fu, Chunling; Ma, Shengming
Regiocontrolled 1,2-migration in cyclization of 1-(indol-2-yl)-3-alkyn-1-ols: (Ph3P)Au+vs. PtCl4
Org. Chem. Front., 2014, 1, 62
1556387 CIFC21 H27 NP 1 21/c 113.1716; 8.3809; 20.39
90; 127.363; 90
1789Qiu, Youai; Ma, Dengke; Kong, Wangqing; Fu, Chunling; Ma, Shengming
Regiocontrolled 1,2-migration in cyclization of 1-(indol-2-yl)-3-alkyn-1-ols: (Ph3P)Au+vs. PtCl4
Org. Chem. Front., 2014, 1, 62
1556388 CIFC40 H40P -19.129; 12.58; 15.035
81.14; 73.69; 70.31
1556.9Zhang, Shaoguang; Zhan, Ming; Wang, Qifeng; Wang, Chao; Zhang, Wen-Xiong; Xi, Zhenfeng
Synthesis of semibullvalene derivatives via Co2(CO)8-mediated cyclodimerization of 1,4-dilithio-1,3-butadienes
Org. Chem. Front., 2014, 1, 130
1556389 CIFC32 H56C 1 2/c 135.265; 19.026; 21.174
90; 122.27; 90
12012Zhang, Shaoguang; Zhan, Ming; Wang, Qifeng; Wang, Chao; Zhang, Wen-Xiong; Xi, Zhenfeng
Synthesis of semibullvalene derivatives via Co2(CO)8-mediated cyclodimerization of 1,4-dilithio-1,3-butadienes
Org. Chem. Front., 2014, 1, 130
1556390 CIFC34 H24 O2P 1 21/c 111.409; 8.8005; 24.458
90; 102.84; 90
2394.3Zhang, Shaoguang; Zhan, Ming; Wang, Qifeng; Wang, Chao; Zhang, Wen-Xiong; Xi, Zhenfeng
Synthesis of semibullvalene derivatives via Co2(CO)8-mediated cyclodimerization of 1,4-dilithio-1,3-butadienes
Org. Chem. Front., 2014, 1, 130
1556391 CIFC18 H20 O2P 21 21 219.1769; 10.289; 14.62
90; 90; 90
1380.4Zhang, Shaoguang; Zhan, Ming; Wang, Qifeng; Wang, Chao; Zhang, Wen-Xiong; Xi, Zhenfeng
Synthesis of semibullvalene derivatives via Co2(CO)8-mediated cyclodimerization of 1,4-dilithio-1,3-butadienes
Org. Chem. Front., 2014, 1, 130
1556392 CIFC40 H36P 1 21/n 112.6639; 16.9311; 13.604
90; 92.886; 90
2913.19Zhang, Shaoguang; Zhan, Ming; Wang, Qifeng; Wang, Chao; Zhang, Wen-Xiong; Xi, Zhenfeng
Synthesis of semibullvalene derivatives via Co2(CO)8-mediated cyclodimerization of 1,4-dilithio-1,3-butadienes
Org. Chem. Front., 2014, 1, 130
1556393 CIFC16 H16 Br N3 OP 21 21 219.466; 12.4249; 13.3396
90; 90; 90
1568.9Fu, Niankai; Zhang, Long; Luo, Sanzhong; Cheng, Jin-Pei
Chiral primary amine catalysed asymmetric conjugate addition of azoles to α-substituted vinyl ketones
Org. Chem. Front., 2014, 1, 68
1556394 CIFC25 H23 Br2 N O4P -15.8858; 9.0384; 23.4473
91.943; 92.404; 99.656
1227.54Xu, Xinfang; Guo, Xin; Han, Xingchun; Yang, Liping; Hu, Wenhao
Highly diasteroselective intermolecular 1,3-dipolar cycloaddition reactions of carbonyl ylides with aldimines to afford sterically disfavored cis-oxazolidines
Organic Chemistry Frontiers, 2014, 1, 181
1556395 CIFC74 H72 O12P c c n17.548; 24.274; 14.468
90; 90; 90
6163Xia, Yu-Xiang; Xie, Tao; Han, Ying; Chen, Chuan-Feng
Triptycene-derived calix[6]arene analogues: synthesis, structure and complexation with paraquat derivatives
Organic Chemistry Frontiers, 2014, 1, 140
1556396 CIFC68 H62 Cl6 O8P -111.466; 11.708; 13.256
69.828; 73.892; 72.609
1563.5Xia, Yu-Xiang; Xie, Tao; Han, Ying; Chen, Chuan-Feng
Triptycene-derived calix[6]arene analogues: synthesis, structure and complexation with paraquat derivatives
Organic Chemistry Frontiers, 2014, 1, 140
1556397 CIFC66 H60 O10P -111.429; 11.955; 12.714
72.18; 70.44; 70.84
1508.2Xia, Yu-Xiang; Xie, Tao; Han, Ying; Chen, Chuan-Feng
Triptycene-derived calix[6]arene analogues: synthesis, structure and complexation with paraquat derivatives
Organic Chemistry Frontiers, 2014, 1, 140
1556398 CIFC66 H58 Br2 Cl4 O8P -111.493; 11.851; 12.708
71.48; 71.12; 72.93
1517.4Xia, Yu-Xiang; Xie, Tao; Han, Ying; Chen, Chuan-Feng
Triptycene-derived calix[6]arene analogues: synthesis, structure and complexation with paraquat derivatives
Organic Chemistry Frontiers, 2014, 1, 140
1556399 CIFC67 H57 Cl15 O8P 1 21/c 121.999; 19.134; 33.115
90; 98.09; 90
13800Xia, Yu-Xiang; Xie, Tao; Han, Ying; Chen, Chuan-Feng
Triptycene-derived calix[6]arene analogues: synthesis, structure and complexation with paraquat derivatives
Organic Chemistry Frontiers, 2014, 1, 140
1556400 CIFC10 H18 O2 SiP 1 21/c 16.427; 24.105; 8.3807
90; 98.77; 90
1283.2Zhang, Xiaobing; Qiu, Youai; Fu, Chunling; Ma, Shengming
Highly selective 4-alkynoic acids synthesis via iron-mediated complete inversion of stereogenic carbon centers
Organic Chemistry Frontiers, 2014, 1, 247
1556401 CIFC52.7 H72.25 F12 N9.1 O9.4 P2P 1 21/c 131.9644; 18.8421; 19.9426
90; 93.865; 90
11983.6Pun, Andrew B.; Gagnon, Kevin J.; Klivansky, Liana M.; Teat, Simon J.; Li, Zhan-Ting; Liu, Yi
Solvent-driven selective π-cation templating in dynamic assembly of interlocked molecules
Org. Chem. Front., 2014, 1, 167
1556402 CIFC94.2 H108.4 F36 N14.1 O13.8 P6P 1 21/n 113.9167; 25.8857; 30.7364
90; 96.611; 90
10999Pun, Andrew B.; Gagnon, Kevin J.; Klivansky, Liana M.; Teat, Simon J.; Li, Zhan-Ting; Liu, Yi
Solvent-driven selective π-cation templating in dynamic assembly of interlocked molecules
Org. Chem. Front., 2014, 1, 167
1556403 CIFC21 H22 O2 SP -18.7371; 9.2269; 12.186
89.9; 72.14; 80.18
920Peng, Lingling; Zhang, Xiu; Ma, Jie; Wang, Jianbo
Ru(ii)-catalyzed rearrangement of the allenic sulfide bearing propargyl moiety: efficient formation of benzene derivatives
Org. Chem. Front., 2014, 1, 235
1556404 CIFC20 H21 N3P b c a15.3067; 12.1443; 18.1692
90; 90; 90
3377.5Kuang, Jinqiang; Chen, Bo; Ma, Shengming
Copper-mediated efficient three-component synthesis of 1,2,4-triazoles from amines and nitriles
Org. Chem. Front., 2014, 1, 186
1556405 CIFC21 H16 I N3P 1 21/c 112.2051; 18.0249; 8.7754
90; 110.387; 90
1809.6Kuang, Jinqiang; Chen, Bo; Ma, Shengming
Copper-mediated efficient three-component synthesis of 1,2,4-triazoles from amines and nitriles
Org. Chem. Front., 2014, 1, 186
1556406 CIFC54 H54 N18 O12P 1 21/c 116.615; 27.205; 13.426
90; 112.678; 90
5600Nakashima, Kensuke; Shimizu, Takeshi; Kamakura, Yoshinobu; Hinokimoto, Akira; Kitagawa, Yasutaka; Yoshikawa, Hirofumi; Tanaka, Daisuke
A new design strategy for redox-active molecular assemblies with crystalline porous structures for lithium-ion batteries.
Chemical science, 2020, 11, 37-43
1556407 CIF
HKL
Paper
C9 H7 N O2I 1 2/a 17.3633; 12.0641; 8.9185
90; 103.738; 90
769.6Campos Fernandez, Cristian Saul; Pineda, Leslie W.; Cabezas Pizarro, Jorge
1-Nitro-4-(1-propyn-1-yl)benzene
IUCrData, 2019, 4, x191585
1556408 CIF
HKL
Paper
Br F4 RbI 4/m c m6.2991; 6.2991; 11.4659
90; 90; 90
454.95Malin, Artem V.; Ivlev, Sergei I.; Ostvald, Roman V.; Kraus, Florian
Rubidium tetrafluoridobromate(III): redetermination of the crystal structure from single-crystal X-ray diffraction data
IUCrData, 2019, 4, x191595
1556409 CIFC37 H47 B N3 O PP 1 21/n 110.6925; 19.6374; 17.0321
90; 101.118; 90
3509.16Wilson, Daniel W. N.; Franco, Mauricio P.; Myers, William K.; McGrady, John E.; Goicoechea, Jose M.
Base induced isomerisation of a phosphaethynolato-borane: mechanistic insights into boryl migration and decarbonylation to afford a triplet phosphinidene
Chemical Science, 2020, 11, 862-869
1556410 CIFC46 H58 B N4 PP -110.6744; 13.4621; 14.8146
82.534; 88.654; 84.679
2101.57Wilson, Daniel W. N.; Franco, Mauricio P.; Myers, William K.; McGrady, John E.; Goicoechea, Jose M.
Base induced isomerisation of a phosphaethynolato-borane: mechanistic insights into boryl migration and decarbonylation to afford a triplet phosphinidene
Chemical Science, 2020, 11, 862-869
1556411 CIFC31 H45 B N3 PP 1 21/n 117.2385; 10.9928; 33.0859
90; 96.506; 90
6229.38Wilson, Daniel W. N.; Franco, Mauricio P.; Myers, William K.; McGrady, John E.; Goicoechea, Jose M.
Base induced isomerisation of a phosphaethynolato-borane: mechanistic insights into boryl migration and decarbonylation to afford a triplet phosphinidene
Chemical Science, 2020, 11, 862-869
1556412 CIFC52 H72 B2 N4 P2P 1 21/n 113.0269; 14.1779; 14.8915
90; 112.746; 90
2536.47Wilson, Daniel W. N.; Franco, Mauricio P.; Myers, William K.; McGrady, John E.; Goicoechea, Jose M.
Base induced isomerisation of a phosphaethynolato-borane: mechanistic insights into boryl migration and decarbonylation to afford a triplet phosphinidene
Chemical Science, 2020, 11, 862-869
1556413 CIFC36 H47 B N3 PP 1 21/c 118.9679; 7.4054; 25.1568
90; 107.29; 90
3373.97Wilson, Daniel W. N.; Franco, Mauricio P.; Myers, William K.; McGrady, John E.; Goicoechea, Jose M.
Base induced isomerisation of a phosphaethynolato-borane: mechanistic insights into boryl migration and decarbonylation to afford a triplet phosphinidene
Chemical Science, 2020, 11, 862-869
1556414 CIFC74 H113 B2 N6 O2 P2P -114.0563; 14.7947; 20.1864
73.781; 76.257; 67.558
3684.82Wilson, Daniel W. N.; Franco, Mauricio P.; Myers, William K.; McGrady, John E.; Goicoechea, Jose M.
Base induced isomerisation of a phosphaethynolato-borane: mechanistic insights into boryl migration and decarbonylation to afford a triplet phosphinidene
Chemical Science, 2020, 11, 862-869
1556415 CIFC27 H36 B N2 O PP 1 21/n 19.3904; 14.2038; 20.3914
90; 99.177; 90
2684.98Wilson, Daniel W. N.; Franco, Mauricio P.; Myers, William K.; McGrady, John E.; Goicoechea, Jose M.
Base induced isomerisation of a phosphaethynolato-borane: mechanistic insights into boryl migration and decarbonylation to afford a triplet phosphinidene
Chemical Science, 2020, 11, 862-869
1556416 CIFC49 H69 N3 O5P -111.0971; 12.3679; 17.5421
108.547; 98.9702; 95.1342
2229.65Yoshida, Jun; Bozek, Kevin J. A.; Thompson, John R.; Williams, Vance E.
Competing forces in the self-assembly of amide-functionalized discotic mesogens
Soft Matter, 2019
1556417 CIFC16 H29 B9 O4 RuP -19.331; 9.4169; 14.0477
90.693; 103.321; 113.757
1091.71Gozzi, M.; Schwarze, B.; Coburger, P.; Hey-Hawkins, E.
On the Aqueous Solution Behavior of C-Substituted 3,1,2-Ruthenadicarbadodecaboranes
Inorganics, 2019, 7, 91
1556418 CIFC31 H55 Al B2 N4P 1 21/c 110.135; 18.687; 19.155
90; 104.73; 90
3509Weetman, C.; Ito, N.; Unno, M.; Hanusch, F.; Inoue, S.
NHI- and NHC-Supported Al(III) Hydrides for Amine-Borane Dehydrocoupling Catalysis
Inorganics, 2019, 7, 92
1556419 CIFC23 H22 B Cu N P SC 1 2/c 111.90994; 13.21619; 26.83905
90; 97.6274; 90
4187.2Goldsworthy, J.; Thomas, S.D.; Tizzard, G.J.; Coles, S.J.; Owen, G.R.
Adding to the Family of Copper Complexes Featuring Borohydride Ligands Based on 2-Mercaptopyridyl Units
Inorganics, 2019, 7, 93
1556420 CIFC23 H40 B Cu N P SP -18.1672; 9.3837; 17.2612
96.939; 95.617; 112.373
1199.33Goldsworthy, J.; Thomas, S.D.; Tizzard, G.J.; Coles, S.J.; Owen, G.R.
Adding to the Family of Copper Complexes Featuring Borohydride Ligands Based on 2-Mercaptopyridyl Units
Inorganics, 2019, 7, 93
1556421 CIFC39 H47 Al N2P b c a16.0206; 24.7785; 16.9022
90; 90; 90
6709.6Ito, S.; Tanaka, K.; Chujo, Y.
Characterization and Photophysical Properties of a Luminescent Aluminum Hydride Complex Supported by a beta-Diketiminate Ligand
Inorganics, 2019, 7, 100
1556422 CIFC28 H38 Cl2 Cu N6 O12C 1 2/c 114.4924; 11.1385; 22.2237
90; 91.562; 90
3586.1Rancan, M.; Carlotto, A.; Bottaro, G.; Armelao, L.
Effect of Coordinating Solvents on the Structure of Cu(II)-4,4'-bipyridine Coordination Polymers
Inorganics, 2019, 7, 103
1556423 CIFC46 H46 Cl2 Cu N10 O10P 1 21/n 110.2921; 15.7544; 15.3205
90; 106.641; 90
2380.11Rancan, M.; Carlotto, A.; Bottaro, G.; Armelao, L.
Effect of Coordinating Solvents on the Structure of Cu(II)-4,4'-bipyridine Coordination Polymers
Inorganics, 2019, 7, 103
1556424 CIFC40 H36 Cl2 Cu N8 O11P 1 2/n 112.9264; 11.1702; 15.0564
90; 106.559; 90
2083.84Rancan, M.; Carlotto, A.; Bottaro, G.; Armelao, L.
Effect of Coordinating Solvents on the Structure of Cu(II)-4,4'-bipyridine Coordination Polymers
Inorganics, 2019, 7, 103
1556425 CIFC20 H34 Cl2 Cu N4 O12 S2I 1 2/a 117.9524; 11.0913; 16.3512
90; 100.154; 90
3204.8Rancan, M.; Carlotto, A.; Bottaro, G.; Armelao, L.
Effect of Coordinating Solvents on the Structure of Cu(II)-4,4'-bipyridine Coordination Polymers
Inorganics, 2019, 7, 103
1556426 CIFC38 H58 P2 Si2 ThP 43 21 212.1642; 12.1642; 26.953
90; 90; 90
3988.2Rungthanaphatsophon, P.; Fajen, O.J.; Kelley, S.P.; Walensky, J.R.
Thorium(IV) and Uranium(IV) Phosphaazaallenes
Inorganics, 2019, 7, 105
1556427 CIFC38 H58 P2 Si2 UP 43 21 212.0767; 12.0767; 26.931
90; 90; 90
3927.8Rungthanaphatsophon, P.; Fajen, O.J.; Kelley, S.P.; Walensky, J.R.
Thorium(IV) and Uranium(IV) Phosphaazaallenes
Inorganics, 2019, 7, 105
1556428 CIFC36 H53 N2 P ThP 1 21/c 110.0829; 33.981; 10.7807
90; 107.839; 90
3516.2Rungthanaphatsophon, P.; Fajen, O.J.; Kelley, S.P.; Walensky, J.R.
Thorium(IV) and Uranium(IV) Phosphaazaallenes
Inorganics, 2019, 7, 105
1556429 CIFC36 H53 N2 P UP 1 21/c 110.0337; 33.6762; 10.7644
90; 107.477; 90
3469.4Rungthanaphatsophon, P.; Fajen, O.J.; Kelley, S.P.; Walensky, J.R.
Thorium(IV) and Uranium(IV) Phosphaazaallenes
Inorganics, 2019, 7, 105
1556430 CIFC20 H13 N OP n a 216.9224; 8.8551; 21.377
90; 90; 90
1310.4Tsukao, M.; Hashikawa, Y.; Toyama, N.; Muraoka, M.; Murata, M.; Sasamori, T.; Wakamiya, A.; Murata, Y.
Propeller-Shaped Aluminum Complexes with an Azaperylene Core in the Ligands
Inorganics, 2019, 7, 109
1556431 CIFC354.9 H199.8 Al6 Cl1.8 N24 O18R -3 :H34.0652; 34.0652; 18.1656
90; 90; 120
18255.9Tsukao, M.; Hashikawa, Y.; Toyama, N.; Muraoka, M.; Murata, M.; Sasamori, T.; Wakamiya, A.; Murata, Y.
Propeller-Shaped Aluminum Complexes with an Azaperylene Core in the Ligands
Inorganics, 2019, 7, 109
1556432 CIFC33 H26 N2 O3P c a 2119.195; 8.503; 30.611
90; 90; 90
4996.2Tsukao, M.; Hashikawa, Y.; Toyama, N.; Muraoka, M.; Murata, M.; Sasamori, T.; Wakamiya, A.; Murata, Y.
Propeller-Shaped Aluminum Complexes with an Azaperylene Core in the Ligands
Inorganics, 2019, 7, 109
1556433 CIFC10 H21 Al N2 S2P -17.354; 7.723; 12.601
94.767; 98.204; 115.566
630.5Yang, X.; Lunsford, A.; Darensbourg, M.Y.
Connecting Main-Group Metals (Al, Ga, In) and Tungsten(0) Carbonyls via the N2S2 Metallo-Ligand Strategy
Inorganics, 2019, 7, 115
1556434 CIFC9 H18 Cl Ga N2 S2P -17.3341; 7.6637; 12.6658
94.557; 98.228; 114.796
631.86Yang, X.; Lunsford, A.; Darensbourg, M.Y.
Connecting Main-Group Metals (Al, Ga, In) and Tungsten(0) Carbonyls via the N2S2 Metallo-Ligand Strategy
Inorganics, 2019, 7, 115
1556435 CIFC9 H18 Cl In N2 S2P 1 21/c 112.7424; 7.3373; 15.3561
90; 114.107; 90
1310.5Yang, X.; Lunsford, A.; Darensbourg, M.Y.
Connecting Main-Group Metals (Al, Ga, In) and Tungsten(0) Carbonyls via the N2S2 Metallo-Ligand Strategy
Inorganics, 2019, 7, 115
1556436 CIFC14 H18 Cl Ga N2 O5 S2 WP 1 21/n 18.2266; 19.245; 12.8581
90; 95.932; 90
2024.8Yang, X.; Lunsford, A.; Darensbourg, M.Y.
Connecting Main-Group Metals (Al, Ga, In) and Tungsten(0) Carbonyls via the N2S2 Metallo-Ligand Strategy
Inorganics, 2019, 7, 115
1556437 CIFC22 H44 Co N4 Si4P c a 2118.7674; 18.103; 17.593
90; 90; 90
5977.2Muller, I.; Schneider, C.; Pietzonka, C.; Kraus, F.; Werncke, C.G.
Reduction of 2,2'-Bipyridine by Quasi-Linear 3d-Metal(I) Silylamides-A Structural and Spectroscopic Study
Inorganics, 2019, 7, 117
1556438 CIFC42 H84 Co K N4 O8 Si4P -110.8097; 13.2648; 19.9051
77.712; 80.199; 83.606
2739.7Muller, I.; Schneider, C.; Pietzonka, C.; Kraus, F.; Werncke, C.G.
Reduction of 2,2'-Bipyridine by Quasi-Linear 3d-Metal(I) Silylamides-A Structural and Spectroscopic Study
Inorganics, 2019, 7, 117
1556439 CIFC42 H84 Cr K N4 O8 Si4P -111.6269; 21.5546; 21.856
95.633; 89.892; 90.377
5450.83Muller, I.; Schneider, C.; Pietzonka, C.; Kraus, F.; Werncke, C.G.
Reduction of 2,2'-Bipyridine by Quasi-Linear 3d-Metal(I) Silylamides-A Structural and Spectroscopic Study
Inorganics, 2019, 7, 117
1556440 CIFC42 H84 Fe K N4 O8 Si4P -110.8613; 13.2627; 19.8669
77.597; 80.062; 83.452
2744.3Muller, I.; Schneider, C.; Pietzonka, C.; Kraus, F.; Werncke, C.G.
Reduction of 2,2'-Bipyridine by Quasi-Linear 3d-Metal(I) Silylamides-A Structural and Spectroscopic Study
Inorganics, 2019, 7, 117
1556441 CIFC34 H68 K Mn N4 O6 Si4C 1 2 134.8403; 18.4715; 14.5302
90; 96.555; 90
9289.8Muller, I.; Schneider, C.; Pietzonka, C.; Kraus, F.; Werncke, C.G.
Reduction of 2,2'-Bipyridine by Quasi-Linear 3d-Metal(I) Silylamides-A Structural and Spectroscopic Study
Inorganics, 2019, 7, 117
1556442 CIFC38 H78 K N4 O7 Si4 ZnP 1 21/c 112.1899; 18.4365; 22.8273
90; 95.423; 90
5107.2Muller, I.; Schneider, C.; Pietzonka, C.; Kraus, F.; Werncke, C.G.
Reduction of 2,2'-Bipyridine by Quasi-Linear 3d-Metal(I) Silylamides-A Structural and Spectroscopic Study
Inorganics, 2019, 7, 117
1556443 CIFC22 H44 N4 Si4 ZnP c a 2118.8806; 18.056; 17.6133
90; 90; 90
6004.5Muller, I.; Schneider, C.; Pietzonka, C.; Kraus, F.; Werncke, C.G.
Reduction of 2,2'-Bipyridine by Quasi-Linear 3d-Metal(I) Silylamides-A Structural and Spectroscopic Study
Inorganics, 2019, 7, 117
1556444 CIFC32 H18 I2 N8 O8 S2P 1 21/n 19.2195; 5.7344; 32.1204
90; 93.209; 90
1695.49Hardin, A.E.S.; Ellington, T.L.; Nguyen, S.T.; Rheingold, A.L.; Tschumper, G.S.; Watkins, D.L.; Hammer, N.I.
A Raman Spectroscopic and Computational Study of New Aromatic Pyrimidine-Based Halogen Bond Acceptors
Inorganics, 2019, 7, 119
1556445 CIFC16 H9 I N4 O5P -16.9398; 16.126; 18.517
79.34; 80.01; 89.242
2005.2Hardin, A.E.S.; Ellington, T.L.; Nguyen, S.T.; Rheingold, A.L.; Tschumper, G.S.; Watkins, D.L.; Hammer, N.I.
A Raman Spectroscopic and Computational Study of New Aromatic Pyrimidine-Based Halogen Bond Acceptors
Inorganics, 2019, 7, 119
1556446 CIFC8 H22 I6 N2P -16.20008; 7.0452; 12.577
76.531; 78.842; 84.574
523.46Van Megen, M.; Reiss, G.J.
I62- Anion Composed of Two Asymmetric Triiodide Moieties: A Competition between Halogen and Hydrogen Bond
Inorganics, 2013, 1, 3-13
1556447 CIFC59 H46 Cl2 N6 O8 P2 RuC 1 2/c 117.7754; 13.2405; 22.6972
90; 96.4561; 90
5308.03Oyama, D.; Fukuda, A.; Yamanaka, T.; Takase, T.
Facile and Selective Synthetic Approach for Ruthenium Complexes Utilizing a Molecular Sieve Effect in the Supporting Ligand
Inorganics, 2013, 1, 32-45
1556448 CIFC64 H48 F12 N6 P4 RuC 1 c 117.1743; 16.1763; 21.079
90; 97.8336; 90
5801.4Oyama, D.; Fukuda, A.; Yamanaka, T.; Takase, T.
Facile and Selective Synthetic Approach for Ruthenium Complexes Utilizing a Molecular Sieve Effect in the Supporting Ligand
Inorganics, 2013, 1, 32-45
1556449 CIFC41 H35 Cl2 N6 O2 P RuC 1 2/c 126.4297; 16.2228; 19.4965
90; 114.998; 90
7576.3Oyama, D.; Fukuda, A.; Yamanaka, T.; Takase, T.
Facile and Selective Synthetic Approach for Ruthenium Complexes Utilizing a Molecular Sieve Effect in the Supporting Ligand
Inorganics, 2013, 1, 32-45
1556450 CIFC42 H55 I2 N2 Nd O P2 Si2P -19.839; 12.426; 19.947
106.347; 96.476; 98.785
2281.3Marshall, G.; Wooles, A.J.; Mills, D.P.; Lewis, W.; Blake, A.J.; Liddle, S.T.
Synthesis and Characterisation of Lanthanide N-Trimethylsilyl and -Mesityl Functionalised Bis(iminophosphorano)methanides and -Methanediides
Inorganics, 2013, 1, 46-69
1556451 CIFC39 H55 Gd I2 N2 O2 P2 Si2P 1 21/c 116.1695; 19.5199; 14.1982
90; 99.491; 90
4420Marshall, G.; Wooles, A.J.; Mills, D.P.; Lewis, W.; Blake, A.J.; Liddle, S.T.
Synthesis and Characterisation of Lanthanide N-Trimethylsilyl and -Mesityl Functionalised Bis(iminophosphorano)methanides and -Methanediides
Inorganics, 2013, 1, 46-69
1556452 CIFC39 H55 I2 N2 O2 P2 Si2 TbP 1 21/c 116.142; 19.415; 14.134
90; 99.341; 90
4370.8Marshall, G.; Wooles, A.J.; Mills, D.P.; Lewis, W.; Blake, A.J.; Liddle, S.T.
Synthesis and Characterisation of Lanthanide N-Trimethylsilyl and -Mesityl Functionalised Bis(iminophosphorano)methanides and -Methanediides
Inorganics, 2013, 1, 46-69
1556453 CIFC76 H94 I4 La2 N4 P4 Si4C 1 2/c 136.332; 12.8545; 21.682
90; 122.332; 90
8556.2Marshall, G.; Wooles, A.J.; Mills, D.P.; Lewis, W.; Blake, A.J.; Liddle, S.T.
Synthesis and Characterisation of Lanthanide N-Trimethylsilyl and -Mesityl Functionalised Bis(iminophosphorano)methanides and -Methanediides
Inorganics, 2013, 1, 46-69
1556454 CIFC72 H83 Gd I2 N2 O2 P2P -112.7851; 15.122; 17.2635
85.091; 76.608; 87.266
3233.7Marshall, G.; Wooles, A.J.; Mills, D.P.; Lewis, W.; Blake, A.J.; Liddle, S.T.
Synthesis and Characterisation of Lanthanide N-Trimethylsilyl and -Mesityl Functionalised Bis(iminophosphorano)methanides and -Methanediides
Inorganics, 2013, 1, 46-69
1556455 CIFC68 H75 I2 N2 O P2 YbP -112.209; 13.057; 17.56
80.744; 75.234; 77.456
2625.7Marshall, G.; Wooles, A.J.; Mills, D.P.; Lewis, W.; Blake, A.J.; Liddle, S.T.
Synthesis and Characterisation of Lanthanide N-Trimethylsilyl and -Mesityl Functionalised Bis(iminophosphorano)methanides and -Methanediides
Inorganics, 2013, 1, 46-69
1556456 CIFC157 H161 Dy N6 P6P -117.2957; 18.9502; 21.6886
75.525; 74.875; 73.945
6472.4Marshall, G.; Wooles, A.J.; Mills, D.P.; Lewis, W.; Blake, A.J.; Liddle, S.T.
Synthesis and Characterisation of Lanthanide N-Trimethylsilyl and -Mesityl Functionalised Bis(iminophosphorano)methanides and -Methanediides
Inorganics, 2013, 1, 46-69
1556457 CIFC164 H169 Er N6 P6P -116.895; 19.82; 21.149
76.79; 78.76; 83.9
6748Marshall, G.; Wooles, A.J.; Mills, D.P.; Lewis, W.; Blake, A.J.; Liddle, S.T.
Synthesis and Characterisation of Lanthanide N-Trimethylsilyl and -Mesityl Functionalised Bis(iminophosphorano)methanides and -Methanediides
Inorganics, 2013, 1, 46-69
1556458 CIFC70 H83 I2 La N4 P2P -113.0112; 15.231; 17.0292
82.761; 74.997; 87.043
3233.1Marshall, G.; Wooles, A.J.; Mills, D.P.; Lewis, W.; Blake, A.J.; Liddle, S.T.
Synthesis and Characterisation of Lanthanide N-Trimethylsilyl and -Mesityl Functionalised Bis(iminophosphorano)methanides and -Methanediides
Inorganics, 2013, 1, 46-69
1556459 CIFC63 H75 Gd I2 N4 P2C m c e26.77; 18.9186; 22.445
90; 90; 90
11367.3Marshall, G.; Wooles, A.J.; Mills, D.P.; Lewis, W.; Blake, A.J.; Liddle, S.T.
Synthesis and Characterisation of Lanthanide N-Trimethylsilyl and -Mesityl Functionalised Bis(iminophosphorano)methanides and -Methanediides
Inorganics, 2013, 1, 46-69
1556460 CIFC107 H109 La N4 P4P -114.9196; 15.179; 21.622
71.398; 75.826; 77.368
4446.6Marshall, G.; Wooles, A.J.; Mills, D.P.; Lewis, W.; Blake, A.J.; Liddle, S.T.
Synthesis and Characterisation of Lanthanide N-Trimethylsilyl and -Mesityl Functionalised Bis(iminophosphorano)methanides and -Methanediides
Inorganics, 2013, 1, 46-69
1556461 CIFC98 H113 Ce N4 P4P -113.6367; 21.346; 29.1
97.388; 92.382; 97.146
8320.8Marshall, G.; Wooles, A.J.; Mills, D.P.; Lewis, W.; Blake, A.J.; Liddle, S.T.
Synthesis and Characterisation of Lanthanide N-Trimethylsilyl and -Mesityl Functionalised Bis(iminophosphorano)methanides and -Methanediides
Inorganics, 2013, 1, 46-69
1556462 CIFC107 H109 N4 P4 PrP -114.8733; 15.2027; 21.641
71.3195; 75.5504; 77.6266
4440.51Marshall, G.; Wooles, A.J.; Mills, D.P.; Lewis, W.; Blake, A.J.; Liddle, S.T.
Synthesis and Characterisation of Lanthanide N-Trimethylsilyl and -Mesityl Functionalised Bis(iminophosphorano)methanides and -Methanediides
Inorganics, 2013, 1, 46-69
1556463 CIFC114 H117 Gd N4 P4P -114.735; 15.2646; 21.6185
70.916; 75.272; 77.458
4396.2Marshall, G.; Wooles, A.J.; Mills, D.P.; Lewis, W.; Blake, A.J.; Liddle, S.T.
Synthesis and Characterisation of Lanthanide N-Trimethylsilyl and -Mesityl Functionalised Bis(iminophosphorano)methanides and -Methanediides
Inorganics, 2013, 1, 46-69
1556464 CIFC32 H28 Br O8 Ru2C 1 2/c 118.789; 13.537; 13.1826
90; 109.175; 90
3166.9Delgado-Martinez, P.; Elvira-Bravo, A.; Gonzalez-Prieto, R.; Priego, J.L.; Jimenez-Aparicio, R.; Torres, M.R.
Synthesis of Ru2Br(mu-O2CC6H4-R)4 (R = o-Me, m-Me, p-Me) Using Microwave Activation: Structural and Magnetic Properties
Inorganics, 2014, 2, 524-536
1556465 CIFC32 H28 Br O8 Ru2P 1 21/c 113.0936; 11.1271; 21.8306
90; 98.071; 90
3149.08Delgado-Martinez, P.; Elvira-Bravo, A.; Gonzalez-Prieto, R.; Priego, J.L.; Jimenez-Aparicio, R.; Torres, M.R.
Synthesis of Ru2Br(mu-O2CC6H4-R)4 (R = o-Me, m-Me, p-Me) Using Microwave Activation: Structural and Magnetic Properties
Inorganics, 2014, 2, 524-536
1556466 CIFC32 H28 Br O8 Ru2I 1 2/a 112.9939; 10.1996; 24.8297
90; 94.623; 90
3280Delgado-Martinez, P.; Elvira-Bravo, A.; Gonzalez-Prieto, R.; Priego, J.L.; Jimenez-Aparicio, R.; Torres, M.R.
Synthesis of Ru2Br(mu-O2CC6H4-R)4 (R = o-Me, m-Me, p-Me) Using Microwave Activation: Structural and Magnetic Properties
Inorganics, 2014, 2, 524-536
1556467 CIFC23 H43 Co I2 N O P2P -112.1981; 15.362; 16.187
94.44; 91.523; 97.826
2993.9Casey, W.H.; Olmstead, M.M.; Hazlett, C.R.; Lamar, C.; Forbes, T.Z.
A New Nanometer-Sized Ga(III)-Oxyhydroxide Cation
Inorganics, 2015, 3, 21-26
1556468 CIFC23 H43 Cl2 Co N O P2P -112.128; 15.363; 15.542
93.512; 91.976; 99.812
2845.1Casey, W.H.; Olmstead, M.M.; Hazlett, C.R.; Lamar, C.; Forbes, T.Z.
A New Nanometer-Sized Ga(III)-Oxyhydroxide Cation
Inorganics, 2015, 3, 21-26
1556469 CIFC23 H43 Br2 Co N O P2P -112.3039; 15.2593; 15.815
94.088; 91.371; 99.49
2919.2Casey, W.H.; Olmstead, M.M.; Hazlett, C.R.; Lamar, C.; Forbes, T.Z.
A New Nanometer-Sized Ga(III)-Oxyhydroxide Cation
Inorganics, 2015, 3, 21-26
1556470 CIFC37 H30 Au Cl2 Hg I P2P 1 21/a 117.1928; 11.2469; 18.0925
90; 96.108; 90
3478.61Lopez-de-Luzuriaga J.M.; Monge, M.; Olmos, M.E.; Pascual, D.
[AuHg(o-C6H4PPh2)2I]: A Dinuclear Heterometallic Blue Emitter
Inorganics, 2015, 3, 27-39
1556471 CIFC19 H23 F6 N2 Pt SbP 1 21/c 111.8078; 8.3564; 21.0767
90; 99.052; 90
2053.8Klein, A.; Neugebauer, M.; Krest, A.; Luning, A.; Garbe, S.; Arefyeva, N.; Schlorer, N.
Five Coordinate Platinum(II) in [Pt(bpy)(cod)(Me)][SbF6]: A Structural and Spectroscopic Study
Inorganics, 2015, 3, 118-138
1556472 CIFC42 H59 B2 Ce N14P -111.1262; 14.692; 14.7874
70.037; 85.302; 81.302
2244.7Ortu, F.; Zhu, H.; Boulon, M.-E.; Mills, D.P.
Synthesis and Reactivity of a Cerium(III) Scorpionate Complex Containing a Redox Non-Innocent 2,2'-Bipyridine Ligand
Inorganics, 2015, 3, 534-553
1556473 CIFC48 H68 B2 Ce N14 O2P 1 21/c 114.2034; 20.625; 17.1106
90; 95.066; 90
4992.9Ortu, F.; Zhu, H.; Boulon, M.-E.; Mills, D.P.
Synthesis and Reactivity of a Cerium(III) Scorpionate Complex Containing a Redox Non-Innocent 2,2'-Bipyridine Ligand
Inorganics, 2015, 3, 534-553
1556474 CIFC62 H90 B4 Ce2 N20 O4P -110.0579; 13.3606; 13.6905
87.438; 73.681; 71.869
1676.1Ortu, F.; Zhu, H.; Boulon, M.-E.; Mills, D.P.
Synthesis and Reactivity of a Cerium(III) Scorpionate Complex Containing a Redox Non-Innocent 2,2'-Bipyridine Ligand
Inorganics, 2015, 3, 534-553
1556475 CIFC37 H52 B2 Ce N15P -111.2609; 12.5209; 16.7464
105.035; 96.314; 112.313
2051.38Ortu, F.; Zhu, H.; Boulon, M.-E.; Mills, D.P.
Synthesis and Reactivity of a Cerium(III) Scorpionate Complex Containing a Redox Non-Innocent 2,2'-Bipyridine Ligand
Inorganics, 2015, 3, 534-553
1556476 CIFC81 H108 Li N9 O9 Sn4P -116.2901; 17.2775; 19.5167
103.329; 101.969; 118.018
4388.4Zeckert, K.
Monoanionic Tin Oligomers Featuring Sn-Sn or Sn-Pb Bonds: Synthesis and Characterization of a Tris(Triheteroarylstannyl)Stannate and -Plumbate
Inorganics, 2016, 4, 19
1556477 CIFC81 H108 Li N9 O9 Pb Sn3P -117.2766; 19.4489; 28.6285
88.874; 85.776; 65.256
8711.9Zeckert, K.
Monoanionic Tin Oligomers Featuring Sn-Sn or Sn-Pb Bonds: Synthesis and Characterization of a Tris(Triheteroarylstannyl)Stannate and -Plumbate
Inorganics, 2016, 4, 19
1556478 CIFC66 H84 N6 O6 Sn2P -314.4547; 14.4547; 8.7666
90; 90; 120
1586.28Zeckert, K.
Monoanionic Tin Oligomers Featuring Sn-Sn or Sn-Pb Bonds: Synthesis and Characterization of a Tris(Triheteroarylstannyl)Stannate and -Plumbate
Inorganics, 2016, 4, 19
1556479 CIFC32 H27 Br P2P -19.3025; 10.1879; 15.2499
104.318; 106.891; 95.661
1317.12Koch, A.; Krieck, S.; Gorls, H.; Westerhausen, M.
Reduction of Bromo- and Iodo-2,6-bis(diphenylphosphanylmethyl)benzene with Magnesium and Calcium
Inorganics, 2016, 4, 39
1556480 CIFC64 H54 Mg P4P 1 21/c 112.4695; 20.0948; 20.8722
90; 90.828; 90
5229.45Koch, A.; Krieck, S.; Gorls, H.; Westerhausen, M.
Reduction of Bromo- and Iodo-2,6-bis(diphenylphosphanylmethyl)benzene with Magnesium and Calcium
Inorganics, 2016, 4, 39
1556481 CIFC56 H88 Ca2 I2 O12 P2P 1 21/n 112.3778; 17.8753; 14.3016
90; 103.851; 90
3072.31Koch, A.; Krieck, S.; Gorls, H.; Westerhausen, M.
Reduction of Bromo- and Iodo-2,6-bis(diphenylphosphanylmethyl)benzene with Magnesium and Calcium
Inorganics, 2016, 4, 39
1556482 CIFC12 H28 Br2 Ca O5P b c n11.4609; 11.5457; 14.2003
90; 90; 90
1879.04Koch, A.; Krieck, S.; Gorls, H.; Westerhausen, M.
Reduction of Bromo- and Iodo-2,6-bis(diphenylphosphanylmethyl)benzene with Magnesium and Calcium
Inorganics, 2016, 4, 39
1556483 CIFC22 H26 N O2 P S SiP -19.2087; 10.5543; 12.699
71.752; 70.245; 73.105
1079.35Feichtner, K.-S.; Gessner, V.H.
Synthesis and Characterization of a Sulfonyl- and Iminophosphoryl-Functionalized Methanide and Methandiide
Inorganics, 2016, 4, 40
1556484 CIFC48 H58 K2 N2 O5 P2 S2 Si2P -111.2841; 15.3705; 16.8163
112.315; 90.34; 110.779
2489.2Feichtner, K.-S.; Gessner, V.H.
Synthesis and Characterization of a Sulfonyl- and Iminophosphoryl-Functionalized Methanide and Methandiide
Inorganics, 2016, 4, 40
1556485 CIFC98 H121 Li8 N4 O10.5 P4 S4 Si4P 1 21/c 125.265; 18.972; 24.452
90; 116.547; 90
10485Feichtner, K.-S.; Gessner, V.H.
Synthesis and Characterization of a Sulfonyl- and Iminophosphoryl-Functionalized Methanide and Methandiide
Inorganics, 2016, 4, 40
1556486 CIFC104 H112 F48 K8 N8 O8P 1 21/n 114.2195; 11.8504; 39.8155
90; 97.526; 90
6651.4Rosca, S.-C.; Roueindeji, H.; Dorcet, V.; Roisnel, T.; Carpentier, J.-F.; Sarazin, Y.
K+...Cpi and K+...F Non-Covalent Interactions in pi-Functionalized Potassium Fluoroalkoxides
Inorganics, 2017, 5, 13
1556487 CIFC48 H64 F24 K4 N4 O4P -113.9764; 14.1787; 16.1077
84.831; 81.56; 80.187
3104.31Rosca, S.-C.; Roueindeji, H.; Dorcet, V.; Roisnel, T.; Carpentier, J.-F.; Sarazin, Y.
K+...Cpi and K+...F Non-Covalent Interactions in pi-Functionalized Potassium Fluoroalkoxides
Inorganics, 2017, 5, 13
1556488 CIFC12 H16 F6 K N OP -4 21 c13.5114; 13.5114; 17.556
90; 90; 90
3205Rosca, S.-C.; Roueindeji, H.; Dorcet, V.; Roisnel, T.; Carpentier, J.-F.; Sarazin, Y.
K+...Cpi and K+...F Non-Covalent Interactions in pi-Functionalized Potassium Fluoroalkoxides
Inorganics, 2017, 5, 13
1556489 CIFC32 H48 F24 K4 N4 O4P 1 21/n 118.9136; 10.774; 24.7556
90; 108.265; 90
4790.4Rosca, S.-C.; Roueindeji, H.; Dorcet, V.; Roisnel, T.; Carpentier, J.-F.; Sarazin, Y.
K+...Cpi and K+...F Non-Covalent Interactions in pi-Functionalized Potassium Fluoroalkoxides
Inorganics, 2017, 5, 13
1556490 CIFC26 H70 Be2 Cl2 O2 Si8P 1 21/n 110.3667; 18.8628; 11.387
90; 98.15; 90
2204.2Naglav, D.; Tobey, B.; Dzialkowski, K.; Jansen, G.; Wolper, C.; Schulz, S.
Insights into Molecular Beryllium-Silicon Bonds
Inorganics, 2017, 5, 22
1556491 CIFC26 H45 Na O3 SiP 1 21/c 18.1123; 14.1264; 24.7662
90; 99.36; 90
2800.4Seifert, T.; Roesky, P.W.
Alkali and Alkaline Earth Metal Complexes Ligated by an Ethynyl Substituted Cyclopentadienyl Ligand
Inorganics, 2017, 5, 28
1556492 CIFC22 H37 K O2 SiP 21 21 2110.287; 11.429; 20.495
90; 90; 90
2409.6Seifert, T.; Roesky, P.W.
Alkali and Alkaline Earth Metal Complexes Ligated by an Ethynyl Substituted Cyclopentadienyl Ligand
Inorganics, 2017, 5, 28
1556493 CIFC44 H74 Ca2 I2 O4 Si2P 1 21/n 19.4746; 14.9924; 21.7467
90; 101.49; 90
3027.1Seifert, T.; Roesky, P.W.
Alkali and Alkaline Earth Metal Complexes Ligated by an Ethynyl Substituted Cyclopentadienyl Ligand
Inorganics, 2017, 5, 28
1556494 CIFC53 H64 Mg N2 P2P 1 21/c 118.7343; 11.6636; 23.279
90; 106.937; 90
4866Sindlinger, C.P.; Lawrence, S.R.; Cordes, D.B.; Slawin, A.M.Z.; Stasch, A.
Methanediide Formation via Hydrogen Elimination in Magnesium versus Aluminium Hydride Complexes of a Sterically Demanding Bis(iminophosphoranyl)methanediide
Inorganics, 2017, 5, 29
1556495 CIFC122 H132 Mg2 N4 P4C 1 2/c 120.547; 22.5; 22
90; 90.34; 90
10171Sindlinger, C.P.; Lawrence, S.R.; Cordes, D.B.; Slawin, A.M.Z.; Stasch, A.
Methanediide Formation via Hydrogen Elimination in Magnesium versus Aluminium Hydride Complexes of a Sterically Demanding Bis(iminophosphoranyl)methanediide
Inorganics, 2017, 5, 29
1556496 CIFC49 H57 Al N2 P2P 1 21/c 113.149; 18.972; 17.427
90; 99.58; 90
4286.8Sindlinger, C.P.; Lawrence, S.R.; Cordes, D.B.; Slawin, A.M.Z.; Stasch, A.
Methanediide Formation via Hydrogen Elimination in Magnesium versus Aluminium Hydride Complexes of a Sterically Demanding Bis(iminophosphoranyl)methanediide
Inorganics, 2017, 5, 29
1556497 CIFC134 H144 Mg2 N4 P4C 1 2/c 119.08; 34.382; 16.79
90; 90.56; 90
11014Sindlinger, C.P.; Lawrence, S.R.; Cordes, D.B.; Slawin, A.M.Z.; Stasch, A.
Methanediide Formation via Hydrogen Elimination in Magnesium versus Aluminium Hydride Complexes of a Sterically Demanding Bis(iminophosphoranyl)methanediide
Inorganics, 2017, 5, 29
1556498 CIFC114 H140 Mg2 N4 O4 P4P -113.51; 14.4; 29.43
100.84; 100.81; 100.62
5379Sindlinger, C.P.; Lawrence, S.R.; Cordes, D.B.; Slawin, A.M.Z.; Stasch, A.
Methanediide Formation via Hydrogen Elimination in Magnesium versus Aluminium Hydride Complexes of a Sterically Demanding Bis(iminophosphoranyl)methanediide
Inorganics, 2017, 5, 29
1556499 CIFC17 H25 N OP c c n12.3641; 16.3858; 15.4945
90; 90; 90
3139.1Gietz, T.; Boere, R.T.
Backbone-Substituted beta-Ketoimines and Ketoiminate Clusters: Transoid Li2O2 Squares and D2-Symmetric Li4O4 Cubanes. Synthesis, Crystallography and DFT Calculations
Inorganics, 2017, 5, 30
1556500 CIFC14 H19 N OP 1 21/n 110.0068; 9.8961; 12.7933
90; 99.138; 90
1250.82Gietz, T.; Boere, R.T.
Backbone-Substituted beta-Ketoimines and Ketoiminate Clusters: Transoid Li2O2 Squares and D2-Symmetric Li4O4 Cubanes. Synthesis, Crystallography and DFT Calculations
Inorganics, 2017, 5, 30
1556501 CIFC18 H27 N OP 21 21 216.7423; 13.9706; 18.0631
90; 90; 90
1701.44Gietz, T.; Boere, R.T.
Backbone-Substituted beta-Ketoimines and Ketoiminate Clusters: Transoid Li2O2 Squares and D2-Symmetric Li4O4 Cubanes. Synthesis, Crystallography and DFT Calculations
Inorganics, 2017, 5, 30
1556502 CIFC15 H21 N OC 1 2/c 118.8762; 8.0097; 19.0037
90; 107.543; 90
2739.6Gietz, T.; Boere, R.T.
Backbone-Substituted beta-Ketoimines and Ketoiminate Clusters: Transoid Li2O2 Squares and D2-Symmetric Li4O4 Cubanes. Synthesis, Crystallography and DFT Calculations
Inorganics, 2017, 5, 30
1556503 CIFC42 H64 Li2 N2 O4P -19.406; 10.7931; 11.9959
69.04; 73.616; 67.016
1032.5Gietz, T.; Boere, R.T.
Backbone-Substituted beta-Ketoimines and Ketoiminate Clusters: Transoid Li2O2 Squares and D2-Symmetric Li4O4 Cubanes. Synthesis, Crystallography and DFT Calculations
Inorganics, 2017, 5, 30
1556504 CIFC36 H52 Li2 N2 O4P 1 21/c 18.0148; 15.0628; 14.5918
90; 103.855; 90
1710.35Gietz, T.; Boere, R.T.
Backbone-Substituted beta-Ketoimines and Ketoiminate Clusters: Transoid Li2O2 Squares and D2-Symmetric Li4O4 Cubanes. Synthesis, Crystallography and DFT Calculations
Inorganics, 2017, 5, 30
1556505 CIFC44 H68 Li2 N2 O4P 1 21/n 120.843; 10.495; 21.365
90; 112.886; 90
4305.6Gietz, T.; Boere, R.T.
Backbone-Substituted beta-Ketoimines and Ketoiminate Clusters: Transoid Li2O2 Squares and D2-Symmetric Li4O4 Cubanes. Synthesis, Crystallography and DFT Calculations
Inorganics, 2017, 5, 30
1556506 CIFC63 H80 Li4 N4 O4P 21 21 2113.753; 18.3062; 24.0904
90; 90; 90
6065.1Gietz, T.; Boere, R.T.
Backbone-Substituted beta-Ketoimines and Ketoiminate Clusters: Transoid Li2O2 Squares and D2-Symmetric Li4O4 Cubanes. Synthesis, Crystallography and DFT Calculations
Inorganics, 2017, 5, 30
1556507 CIFC72 H104 Li4 N4 O4P 1 21/n 114.3398; 27.504; 19.8735
90; 107.487; 90
7475.9Gietz, T.; Boere, R.T.
Backbone-Substituted beta-Ketoimines and Ketoiminate Clusters: Transoid Li2O2 Squares and D2-Symmetric Li4O4 Cubanes. Synthesis, Crystallography and DFT Calculations
Inorganics, 2017, 5, 30
1556508 CIFC60 H80 Li4 N4 O4P 1 21/n 113.0543; 26.647; 16.4965
90; 91.218; 90
5737.1Gietz, T.; Boere, R.T.
Backbone-Substituted beta-Ketoimines and Ketoiminate Clusters: Transoid Li2O2 Squares and D2-Symmetric Li4O4 Cubanes. Synthesis, Crystallography and DFT Calculations
Inorganics, 2017, 5, 30
1556509 CIFC49 H62 I Mg N3 OP 1 21/n 18.9827; 23.6098; 22.1855
90; 90.818; 90
4704.62Vindus, D.; Niemeyer, M.
Hetero- and Homoleptic Magnesium Triazenides
Inorganics, 2017, 5, 33
1556510 CIFC48 H52 I Mg N3 OP 1 21/c 119.848; 9.373; 23.033
90; 90.386; 90
4284.9Vindus, D.; Niemeyer, M.
Hetero- and Homoleptic Magnesium Triazenides
Inorganics, 2017, 5, 33
1556511 CIFC90 H104 I4 Mg3 N6P b c a20.4142; 22.2202; 39.3523
90; 90; 90
17850.5Vindus, D.; Niemeyer, M.
Hetero- and Homoleptic Magnesium Triazenides
Inorganics, 2017, 5, 33
1556512 CIFC88 H84 I4 Mg3 N6P -116.9933; 17.5771; 17.8005
93.427; 99.534; 109.991
4888.5Vindus, D.; Niemeyer, M.
Hetero- and Homoleptic Magnesium Triazenides
Inorganics, 2017, 5, 33
1556513 CIFC47.5 H50 Mg0.5 N3P 1 2/n 115.0589; 13.0937; 20.3232
90; 99.013; 90
3957.8Vindus, D.; Niemeyer, M.
Hetero- and Homoleptic Magnesium Triazenides
Inorganics, 2017, 5, 33
1556514 CIFC81.5 H84 Mg N6P 1 21/n 113.302; 21.531; 24.332
90; 101.877; 90
6819.6Vindus, D.; Niemeyer, M.
Hetero- and Homoleptic Magnesium Triazenides
Inorganics, 2017, 5, 33
1556515 CIFC11 H27 Li O Si2P 1 21/n 19.493; 9.9165; 16.7191
90; 92.527; 90
1572.4Von Pilgrim, M.; Mondeshki, M.; Klett, J.
[Bis(Trimethylsilyl)Methyl]Lithium and -Sodium: Solubility in Alkanes and Complexes with O- and N- Donor Ligands
Inorganics, 2017, 5, 39
1556516 CIFC13 H35 Li N2 Si2P 1 21/c 118.7636; 13.2303; 17.7299
90; 112.04; 90
4079.8Von Pilgrim, M.; Mondeshki, M.; Klett, J.
[Bis(Trimethylsilyl)Methyl]Lithium and -Sodium: Solubility in Alkanes and Complexes with O- and N- Donor Ligands
Inorganics, 2017, 5, 39
1556517 CIFC11 H27 Na O Si2P 1 21/n 111.347; 9.7379; 14.622
90; 90.876; 90
1615.5Von Pilgrim, M.; Mondeshki, M.; Klett, J.
[Bis(Trimethylsilyl)Methyl]Lithium and -Sodium: Solubility in Alkanes and Complexes with O- and N- Donor Ligands
Inorganics, 2017, 5, 39
1556518 CIFC32 H86 N6 Na2 Si4P 1 21/n 110.45; 17.414; 14.258
90; 100.824; 90
2548.5Von Pilgrim, M.; Mondeshki, M.; Klett, J.
[Bis(Trimethylsilyl)Methyl]Lithium and -Sodium: Solubility in Alkanes and Complexes with O- and N- Donor Ligands
Inorganics, 2017, 5, 39
1556519 CIFC40 H22 Fe N8 Ni O2 S4P -111.5777; 13.6154; 13.9687
66.134; 84.758; 65.272
1821Takahashi, K.; Sakurai, T.; Zhang, W.-M.; Okubo, S.; Ohta, H.; Yamamoto, T.; Einaga, Y.; Mori, H.
Spin-Singlet Transition in the Magnetic Hybrid Compound from a Spin-Crossover Fe(III) Cation and pi-Radical Anion
Inorganics, 2017, 5, 54
1556520 CIFC40 H22 Fe N8 Ni O2 S4P -111.4218; 13.7207; 13.8041
67.123; 84.938; 65.324
1804Takahashi, K.; Sakurai, T.; Zhang, W.-M.; Okubo, S.; Ohta, H.; Yamamoto, T.; Einaga, Y.; Mori, H.
Spin-Singlet Transition in the Magnetic Hybrid Compound from a Spin-Crossover Fe(III) Cation and pi-Radical Anion
Inorganics, 2017, 5, 54
1556521 CIFC40 H22 Fe N8 Ni O2 S4P -111.7638; 13.5893; 14.1
65.962; 85.184; 65.815
1868.6Takahashi, K.; Sakurai, T.; Zhang, W.-M.; Okubo, S.; Ohta, H.; Yamamoto, T.; Einaga, Y.; Mori, H.
Spin-Singlet Transition in the Magnetic Hybrid Compound from a Spin-Crossover Fe(III) Cation and pi-Radical Anion
Inorganics, 2017, 5, 54
1556522 CIFC20 H19 Au Cl N3 O2P -19.3874; 9.8339; 12.0913
69.669; 70.888; 76.465
979.82Lanoe, P.-H.; Najjari, B.; Hallez, F.; Gontard, G.; Amouri, H.
N-Heterocyclic Carbene Coinage Metal Complexes Containing Naphthalimide Chromophore: Design, Structure, and Photophysical Properties
Inorganics, 2017, 5, 58
1556523 CIFC76 H78 F12 Mn4 N8 O12 P2P -111.388; 11.8845; 15.3829
75.0794; 75.9749; 84.3937
1950.38Sukhikh, T.S.; Vostrikova, K.E.
Assembly of Mn(III) Schiff Base Complexes with Heptacyanorhenate (IV)
Inorganics, 2017, 5, 59
1556524 CIFC67 H64 Mn2 N11 O18 P ReP -114.2002; 15.7993; 18.047
84.638; 82.694; 65.057
3637.9Sukhikh, T.S.; Vostrikova, K.E.
Assembly of Mn(III) Schiff Base Complexes with Heptacyanorhenate (IV)
Inorganics, 2017, 5, 59
1556525 CIFC237 H224 Cl2 F6 Mn12 N45 O30 P Re3P -113.813; 15.0609; 30.1361
94.447; 93.223; 94.144
6222.1Sukhikh, T.S.; Vostrikova, K.E.
Assembly of Mn(III) Schiff Base Complexes with Heptacyanorhenate (IV)
Inorganics, 2017, 5, 59
1556526 CIFC133 H160 F12 Mn6 N19 O20 P2 ReP 1 21/n 123.738; 20.5122; 29.8804
90; 93.37; 90
14524.2Sukhikh, T.S.; Vostrikova, K.E.
Assembly of Mn(III) Schiff Base Complexes with Heptacyanorhenate (IV)
Inorganics, 2017, 5, 59
1556527 CIFC96 H100 B2 Mn2 N10 O11P 1 21/c 115.9891; 27.544; 21.779
90; 108.762; 90
9081.9Sukhikh, T.S.; Vostrikova, K.E.
Assembly of Mn(III) Schiff Base Complexes with Heptacyanorhenate (IV)
Inorganics, 2017, 5, 59
1556528 CIFC24 H28.5 B2 F8 Fe N10.5 P SP 21 21 2111.3421; 15.3291; 36.7355
90; 90; 90
6387Stock, P.; Wiedemann, D.; Petzold, H.; Horner, G.
Structural Dynamics of Spin Crossover in Iron(II) Complexes with Extended-Tripod Ligands
Inorganics, 2017, 5, 60
1556529 CIFC24 H28.5 Cl2 N10.5 O8 P S ZnP 1 21/c 19.0934; 31.653; 16.281
90; 136.39; 90
3232.3Stock, P.; Wiedemann, D.; Petzold, H.; Horner, G.
Structural Dynamics of Spin Crossover in Iron(II) Complexes with Extended-Tripod Ligands
Inorganics, 2017, 5, 60
1556530 CIFC50 H32 Fe N6 S2I b a m9.602; 18.9796; 23.8123
90; 90; 90
4339.6Iwai, S.; Yoshinami, K.; Nakashima, S.
Structure and Spin State of Iron(II) Assembled Complexes Using 9,10-Bis(4-pyridyl)anthracene as Bridging Ligand
Inorganics, 2017, 5, 61
1556531 CIFC64 H54 B4 F16 Fe2 N20 O3P -113.837; 13.855; 20.684
77.43; 77.58; 86.73
3779.5Craze, A.R.; Sciortino, N.F.; Badbhade, M.M.; Kepert, C.J.; Marjo, C.E.; Li, F.
Investigation of the Spin Crossover Properties of Three Dinulear Fe(II) Triple Helicates by Variation of the Steric Nature of the Ligand Type
Inorganics, 2017, 5, 62
1556532 CIFC65 H57 B4 F16 Fe2 N19.5C 1 2/c 121.131; 17.391; 21.069
90; 107; 90
7404Craze, A.R.; Sciortino, N.F.; Badbhade, M.M.; Kepert, C.J.; Marjo, C.E.; Li, F.
Investigation of the Spin Crossover Properties of Three Dinulear Fe(II) Triple Helicates by Variation of the Steric Nature of the Ligand Type
Inorganics, 2017, 5, 62
1556533 CIFC64 H54 B4 F15.5 Fe2 N20 S3P -19.521; 16.723; 23.621
95.29; 100.29; 92.93
3675.9Craze, A.R.; Sciortino, N.F.; Badbhade, M.M.; Kepert, C.J.; Marjo, C.E.; Li, F.
Investigation of the Spin Crossover Properties of Three Dinulear Fe(II) Triple Helicates by Variation of the Steric Nature of the Ligand Type
Inorganics, 2017, 5, 62
1556534 CIFC34.5 H29 Cl F6 N PP 1 21/n 111.2525; 9.2194; 59.1397
90; 93.8053; 90
6121.7Khorloo, Michidmaa; Cheng, Yanhua; Zhang, Haoke; Chen, Ming; Sung, Herman H. Y.; Williams, Ian D.; Lam, Jacky W. Y.; Tang, Ben Zhong
Polymorph selectivity of an AIE luminogen under nano-confinement to visualize polymer microstructures
Chemical Science, 2020, 11, 997-1005
1556535 CIFC34 H28 F6 N PP 1 21/c 124.8939; 9.1783; 12.5794
90; 98.168; 90
2845.03Khorloo, Michidmaa; Cheng, Yanhua; Zhang, Haoke; Chen, Ming; Sung, Herman H. Y.; Williams, Ian D.; Lam, Jacky W. Y.; Tang, Ben Zhong
Polymorph selectivity of an AIE luminogen under nano-confinement to visualize polymer microstructures
Chemical Science, 2020, 11, 997-1005
1556536 CIFC15 H13 N2 O5 ReP 21 21 216.345; 14.5492; 16.7909
90; 90; 90
1550.05Morrison, Christine N.; Prosser, Kathleen E.; Stokes, Ryjul W.; Cordes, Anna; Metzler-Nolte, Nils; Cohen, Seth M.
Expanding medicinal chemistry into 3D space: metallofragments as 3D scaffolds for fragment-based drug discovery
Chemical Science, 2020, 11, 1216-1225
1556537 CIFC13 H9 N2 O5 ReP 1 21/c 19.1929; 13.3161; 11.3352
90; 106.8; 90
1328.36Morrison, Christine N.; Prosser, Kathleen E.; Stokes, Ryjul W.; Cordes, Anna; Metzler-Nolte, Nils; Cohen, Seth M.
Expanding medicinal chemistry into 3D space: metallofragments as 3D scaffolds for fragment-based drug discovery
Chemical Science, 2020, 11, 1216-1225
1556538 CIFC15 H12 N O4 Re SP 1 21/n 18.5304; 8.156; 22.7941
90; 96.365; 90
1576.1Morrison, Christine N.; Prosser, Kathleen E.; Stokes, Ryjul W.; Cordes, Anna; Metzler-Nolte, Nils; Cohen, Seth M.
Expanding medicinal chemistry into 3D space: metallofragments as 3D scaffolds for fragment-based drug discovery
Chemical Science, 2020, 11, 1216-1225
1556539 CIFC20.5 H15 Cl N O5 ReP 1 21/c 120.753; 7.0352; 13.7941
90; 105.388; 90
1941.8Morrison, Christine N.; Prosser, Kathleen E.; Stokes, Ryjul W.; Cordes, Anna; Metzler-Nolte, Nils; Cohen, Seth M.
Expanding medicinal chemistry into 3D space: metallofragments as 3D scaffolds for fragment-based drug discovery
Chemical Science, 2020, 11, 1216-1225
1556540 CIFC13 H11 N2 O6 ReP -19.108; 9.5099; 9.7673
70.669; 80.012; 61.781
703.28Morrison, Christine N.; Prosser, Kathleen E.; Stokes, Ryjul W.; Cordes, Anna; Metzler-Nolte, Nils; Cohen, Seth M.
Expanding medicinal chemistry into 3D space: metallofragments as 3D scaffolds for fragment-based drug discovery
Chemical Science, 2020, 11, 1216-1225
1556541 CIFC173 H189 Ag28 Mo4 O21 P12C 1 2/c 157.47; 33.556; 39.361
90; 122.967; 90
63684Duan, Guang-Xiong; Han, Jun; Yang, Bao-Zhu; Xie, Yun-Peng; Lu, Xing
Oxometalate and phosphine ligand co-protected silver nanoclusters: Ag<sub>28</sub>(dppb)<sub>6</sub>(MO<sub>4</sub>)<sub>4</sub> and Ag<sub>32</sub>(dppb)<sub>12</sub>(MO<sub>4</sub>)<sub>4</sub>(NO<sub>3</sub>)<sub>4</sub>.
Nanoscale, 2020, 12, 1617-1622
1556542 CIFC337 H339 Ag32 Mo4 N3 O26 P24C 1 2 141.161; 24.6172; 40.061
90; 103.141; 90
39530Duan, Guang-Xiong; Han, Jun; Yang, Bao-Zhu; Xie, Yun-Peng; Lu, Xing
Oxometalate and phosphine ligand co-protected silver nanoclusters: Ag<sub>28</sub>(dppb)<sub>6</sub>(MO<sub>4</sub>)<sub>4</sub> and Ag<sub>32</sub>(dppb)<sub>12</sub>(MO<sub>4</sub>)<sub>4</sub>(NO<sub>3</sub>)<sub>4</sub>.
Nanoscale, 2020, 12, 1617-1622
1556543 CIFC168 H170 Ag28 O17 P12 W4C 1 2/c 157.246; 33.4588; 38.553
90; 120.882; 90
63375Duan, Guang-Xiong; Han, Jun; Yang, Bao-Zhu; Xie, Yun-Peng; Lu, Xing
Oxometalate and phosphine ligand co-protected silver nanoclusters: Ag<sub>28</sub>(dppb)<sub>6</sub>(MO<sub>4</sub>)<sub>4</sub> and Ag<sub>32</sub>(dppb)<sub>12</sub>(MO<sub>4</sub>)<sub>4</sub>(NO<sub>3</sub>)<sub>4</sub>.
Nanoscale, 2020, 12, 1617-1622
1556544 CIFC3 H5 NP n m a7.56183; 6.59134; 7.23629
90; 90; 90
360.675Brand, Helen E. A.; Gu, Qinfen; Kimpton, Justin A.; Auchettl, Rebecca; Ennis, Courtney
Crystal structure of propionitrile (CH~3~CH~2~CN) determined using synchrotron powder X-ray diffraction
Journal of Synchrotron Radiation, 2020, 27, 212-216
1556545 CIFC10 H22 O5 Si2P 1 21/c 111.5359; 6.7079; 10.1493
90; 115.83; 90
706.9Kahr, J.; Belaj, F.; Pietschnig, R.
Preparation and Molecular Structure of a Cyclopentyl-Substituted Cage Hexasilsesquioxane T6 (T = cyclopentyl-SiO1.5) Starting from the Corresponding Silanetriol
Inorganics, 2017, 5, 66
1556546 CIFC10 H22 O5 Si2C m c e10.1476; 20.7484; 6.7022
90; 90; 90
1411.12Kahr, J.; Belaj, F.; Pietschnig, R.
Preparation and Molecular Structure of a Cyclopentyl-Substituted Cage Hexasilsesquioxane T6 (T = cyclopentyl-SiO1.5) Starting from the Corresponding Silanetriol
Inorganics, 2017, 5, 66
1556547 CIFC30 H54 O9 Si6C c c a :216.2855; 22.346; 19.6563
90; 90; 90
7153.2Kahr, J.; Belaj, F.; Pietschnig, R.
Preparation and Molecular Structure of a Cyclopentyl-Substituted Cage Hexasilsesquioxane T6 (T = cyclopentyl-SiO1.5) Starting from the Corresponding Silanetriol
Inorganics, 2017, 5, 66
1556548 CIFC69 H45 Cl2 F18 N3 P4 RuC 1 2/c 121.594; 27.753; 23.938
90; 93.631; 90
14317Van de Watering, F.F.; Heijtbrink, N.; Van der Vlugt, J.I.; Dzik, W.I.; De Bruin, B.; Reek, J.N.H.
3-Methylindole-Based Tripodal Tetraphosphine Ruthenium Complexes in N2 Coordination and Reduction and Formic Acid Dehydrogenation
Inorganics, 2017, 5, 73
1556549 CIFC69 H45 F18 N5 P4 RuP 1 21/c 114.2851; 18.909; 29.8721
90; 97.011; 90
8008.6Van de Watering, F.F.; Heijtbrink, N.; Van der Vlugt, J.I.; Dzik, W.I.; De Bruin, B.; Reek, J.N.H.
3-Methylindole-Based Tripodal Tetraphosphine Ruthenium Complexes in N2 Coordination and Reduction and Formic Acid Dehydrogenation
Inorganics, 2017, 5, 73
1556550 CIFC65 H55 Cl6 N3 P4 RuP 1 21/n 119.1879; 18.1604; 19.7879
90; 91.012; 90
6894.2Van de Watering, F.F.; Heijtbrink, N.; Van der Vlugt, J.I.; Dzik, W.I.; De Bruin, B.; Reek, J.N.H.
3-Methylindole-Based Tripodal Tetraphosphine Ruthenium Complexes in N2 Coordination and Reduction and Formic Acid Dehydrogenation
Inorganics, 2017, 5, 73
1556551 CIFC41 H39 I Ni P3P n a 2120.526; 10.367; 17.0858
90; 90; 90
3635.7Iffland, L.; Petuker, A.; Van Gastel, M.; Apfel, U.-P.
Mechanistic Implications for the Ni(I)-Catalyzed Kumada Cross-Coupling Reaction
Inorganics, 2017, 5, 78
1556552 CIFC31.5 H27 O2.5P -110.337; 10.816; 12.119
72.216; 84.13; 69.554
1208.9Nguyen, H.N.; Tashima, N.; Ikariya, T.; Kuwata, S.
Ruthenium-Catalyzed Dimerization of 1,1-Diphenylpropargyl Alcohol to a Hydroxybenzocyclobutene and Related Reactions
Inorganics, 2017, 5, 80
1556553 CIFC55 H50 O3 RuP 1 21/c 117.089; 12.512; 20.001
90; 107.378; 90
4081.4Nguyen, H.N.; Tashima, N.; Ikariya, T.; Kuwata, S.
Ruthenium-Catalyzed Dimerization of 1,1-Diphenylpropargyl Alcohol to a Hydroxybenzocyclobutene and Related Reactions
Inorganics, 2017, 5, 80
1556554 CIFC38 H78 N4 Pd4 Si3P 1 21/n 110.8179; 22.0783; 22.8654
90; 92.1391; 90
5457.4Sunada, Y.; Taniyama, N.; Shimamoto, K.; Kyushin, S.; Nagashima, H.
Construction of a Planar Tetrapalladium Cluster by the Reaction of Palladium(0) Bis(isocyanide) with Cyclic Tetrasilane
Inorganics, 2017, 5, 84
1556555 CIFC51 H100 N6 Pd4 Si3P -114.505; 15.339; 15.655
89.593; 63.724; 81.301
3080.2Sunada, Y.; Taniyama, N.; Shimamoto, K.; Kyushin, S.; Nagashima, H.
Construction of a Planar Tetrapalladium Cluster by the Reaction of Palladium(0) Bis(isocyanide) with Cyclic Tetrasilane
Inorganics, 2017, 5, 84
1556556 CIFC36 H75 O9 P3 Pd3 Si3P -111.2891; 12.711; 19.549
81.516; 85.854; 64.096
2495.6Sunada, Y.; Taniyama, N.; Shimamoto, K.; Kyushin, S.; Nagashima, H.
Construction of a Planar Tetrapalladium Cluster by the Reaction of Palladium(0) Bis(isocyanide) with Cyclic Tetrasilane
Inorganics, 2017, 5, 84
1556557 CIFC13 H28 Cl2 N4 ZnP 21 21 2113.4778; 15.173; 17.57
90; 90; 90
3593Metz, A.; Heck, J.; Gohlke, C.M.; Krockert, K.; Louven, Y.; McKeown, P.; Hoffmann, A.; Jones, M.D.; Herres-Pawlis, S.
Reactivity of Zinc Halide Complexes Containing Camphor-Derived Guanidine Ligands with Technical rac-Lactide
Inorganics, 2017, 5, 85
1556558 CIFC13 H26 Cl2 N4 ZnP 1 21 19.4718; 18.095; 10.1331
90; 103.908; 90
1685.8Metz, A.; Heck, J.; Gohlke, C.M.; Krockert, K.; Louven, Y.; McKeown, P.; Hoffmann, A.; Jones, M.D.; Herres-Pawlis, S.
Reactivity of Zinc Halide Complexes Containing Camphor-Derived Guanidine Ligands with Technical rac-Lactide
Inorganics, 2017, 5, 85
1556559 CIFC13 H26 Br2 N4 ZnP 1 21 19.2972; 14.257; 13.2
90; 101.844; 90
1712.4Metz, A.; Heck, J.; Gohlke, C.M.; Krockert, K.; Louven, Y.; McKeown, P.; Hoffmann, A.; Jones, M.D.; Herres-Pawlis, S.
Reactivity of Zinc Halide Complexes Containing Camphor-Derived Guanidine Ligands with Technical rac-Lactide
Inorganics, 2017, 5, 85
1556560 CIFC44 H44 B4 Cl6 Dy2 N24 O4P 1 21/n 113.987; 15.1052; 14.8741
90; 107.659; 90
2994.5Ishikawa, R.; Michiwaki, S.; Noda, T.; Katoh, K.; Yamashita, M.; Matsubara, K.; Kawata, S.
Field-Induced Slow Magnetic Relaxation of Mono- and Dinuclear Dysprosium(III) Complexes Coordinated by a Chloranilate with Different Resonance Forms
Inorganics, 2018, 6, 7
1556561 CIFC44 H44 B4 Cl6 Gd2 N24 O4P 1 21/n 113.9697; 15.0061; 14.9113
90; 107.843; 90
2975.5Ishikawa, R.; Michiwaki, S.; Noda, T.; Katoh, K.; Yamashita, M.; Matsubara, K.; Kawata, S.
Field-Induced Slow Magnetic Relaxation of Mono- and Dinuclear Dysprosium(III) Complexes Coordinated by a Chloranilate with Different Resonance Forms
Inorganics, 2018, 6, 7
1556562 CIFC34 H30 B2 Cl2 Co Dy N12 O4P 1 21/c 19.5145; 19.2573; 20.4459
90; 100.727; 90
3680.7Ishikawa, R.; Michiwaki, S.; Noda, T.; Katoh, K.; Yamashita, M.; Matsubara, K.; Kawata, S.
Field-Induced Slow Magnetic Relaxation of Mono- and Dinuclear Dysprosium(III) Complexes Coordinated by a Chloranilate with Different Resonance Forms
Inorganics, 2018, 6, 7
1556563 CIFC72 H50 Dy2 F36 N4 O12 S2C 1 2/c 128.34; 12.5017; 26.031
90; 112.042; 90
8548.6Cosquer, G.; Kamila, M.; Li, Z.-Y.; Breedlove, B.K.; Yamashita, M.
Photo-Modulation of Single-Molecule Magnetic Dynamics of a Dysprosium Dinuclear Complex via a Diarylethene Bridge
Inorganics, 2018, 6, 9
1556564 CIFC72 H50 Dy2 F36 N4 O12 S2P -111.7047; 19.6164; 20.8522
71.022; 79.601; 70.806
4261.3Cosquer, G.; Kamila, M.; Li, Z.-Y.; Breedlove, B.K.; Yamashita, M.
Photo-Modulation of Single-Molecule Magnetic Dynamics of a Dysprosium Dinuclear Complex via a Diarylethene Bridge
Inorganics, 2018, 6, 9
1556565 CIFC122 H87 F22 Ir4 N20 O9 PP -112.768; 15.562; 16.092
66.535; 81.889; 74.185
2820Gao, Tai-Bao; Zhang, Jing-JIng; Wen, Jing; Yang, Xue-Xiao; Ma, Haibo; Cao, Deng-Ke; Jiang, Dechen
Single-molecule MicroRNA Electrochemiluminescence Detection Using Cyclometalated Dinuclear Ir(III) Complex with Synergistic Effect.
Analytical chemistry, 2019
1556566 CIFC38 H23 F4 Ir N8 OP 1 21/c 110.273; 10.772; 29.566
90; 96.413; 90
3251.3Gao, Tai-Bao; Zhang, Jing-JIng; Wen, Jing; Yang, Xue-Xiao; Ma, Haibo; Cao, Deng-Ke; Jiang, Dechen
Single-molecule MicroRNA Electrochemiluminescence Detection Using Cyclometalated Dinuclear Ir(III) Complex with Synergistic Effect.
Analytical chemistry, 2019
1556567 CIFC20 H32 O3P 1 21 16.3628; 11.7561; 35.3232
90; 90; 90
2642.24Zheng, Guijuan; Zhou, Junfei; Huang, Lang; Zhang, Hao; Sun, Na; Zhang, Hanqi; Jin, Pengfei; Yue, Mingbo; Meng, Lingkui; Yao, Guangmin
Antinociceptive Grayanane Diterpenoids from the Leaves of <i>Pieris japonica</i>.
Journal of natural products, 2019, 82, 3330-3339
1556568 CIFC20 H34 O6P 1 21 112.7615; 23.2559; 12.8688
90; 90.966; 90
3818.66Zheng, Guijuan; Zhou, Junfei; Huang, Lang; Zhang, Hao; Sun, Na; Zhang, Hanqi; Jin, Pengfei; Yue, Mingbo; Meng, Lingkui; Yao, Guangmin
Antinociceptive Grayanane Diterpenoids from the Leaves of <i>Pieris japonica</i>.
Journal of natural products, 2019, 82, 3330-3339
1556569 CIFC40 H70 O13P 21 21 222.86913; 10.48269; 8.06194
90; 90; 90
1932.69Zheng, Guijuan; Zhou, Junfei; Huang, Lang; Zhang, Hao; Sun, Na; Zhang, Hanqi; Jin, Pengfei; Yue, Mingbo; Meng, Lingkui; Yao, Guangmin
Antinociceptive Grayanane Diterpenoids from the Leaves of <i>Pieris japonica</i>.
Journal of natural products, 2019, 82, 3330-3339
1556570 CIFC20 H30 O4P 43 21 29.247; 9.247; 42.695
90; 90; 90
3651Zheng, Guijuan; Zhou, Junfei; Huang, Lang; Zhang, Hao; Sun, Na; Zhang, Hanqi; Jin, Pengfei; Yue, Mingbo; Meng, Lingkui; Yao, Guangmin
Antinociceptive Grayanane Diterpenoids from the Leaves of <i>Pieris japonica</i>.
Journal of natural products, 2019, 82, 3330-3339
1556571 CIFC23 H38 O8P 1 21 16.5625; 17.9101; 9.5523
90; 100.924; 90
1102.39Zheng, Guijuan; Zhou, Junfei; Huang, Lang; Zhang, Hao; Sun, Na; Zhang, Hanqi; Jin, Pengfei; Yue, Mingbo; Meng, Lingkui; Yao, Guangmin
Antinociceptive Grayanane Diterpenoids from the Leaves of <i>Pieris japonica</i>.
Journal of natural products, 2019, 82, 3330-3339
1556572 CIFC20 H34 O5P 21 21 216.4945; 11.4293; 24.7998
90; 90; 90
1840.83Zheng, Guijuan; Zhou, Junfei; Huang, Lang; Zhang, Hao; Sun, Na; Zhang, Hanqi; Jin, Pengfei; Yue, Mingbo; Meng, Lingkui; Yao, Guangmin
Antinociceptive Grayanane Diterpenoids from the Leaves of <i>Pieris japonica</i>.
Journal of natural products, 2019, 82, 3330-3339
1556573 CIFC21 H21 Br O6P b a 215.4343; 16.0851; 8.1341
90; 90; 90
2019.39Wang, Weihong; Park, Chanyoon; Oh, Eunseok; Sung, Youjung; Lee, Jusung; Park, Kyu-Hyung; Kang, Heonjoong
Benzophenone Compounds, from a Marine-Derived Strain of the Fungus <i>Pestalotiopsis neglecta</i>, Inhibit Proliferation of Pancreatic Cancer Cells by Targeting the MEK/ERK Pathway.
Journal of natural products, 2019, 82, 3357-3365
1556574 CIFC24 H25 N O6 SP -110.5708; 10.6193; 11.9805
86.943; 79.883; 60.207
1148.05Wang, Dongyang; Wang, Yi; Ouyang, Yinfeng; Fu, Peng; Zhu, Weiming
Cytotoxic <i>p</i>-Terphenyls from a Marine-Derived <i>Nocardiopsis</i> Species.
Journal of natural products, 2019, 82, 3504-3508
1556575 CIFC28 H30 N4 O7 SP 21 21 218.736; 16.3578; 18.2142
90; 90; 90
2602.84Kong, Fan-Dong; Zhang, Sheng-Liang; Zhou, Shuang-Qing; Ma, Qing-Yun; Xie, Qing-Yi; Chen, Jin-Ping; Li, Jiu-Hui; Zhou, Li-Man; Yuan, Jing-Zhe; Hu, Zhong; Dai, Hao-Fu; Huang, Xiao-Long; Zhao, You-Xing
Quinazoline-Containing Indole Alkaloids from the Marine-Derived Fungus <i>Aspergillus</i> sp. HNMF114.
Journal of natural products, 2019, 82, 3456-3463
1556576 CIFC280 H378 O238 Yb42P -116.5526; 32.2692; 32.7633
103.703; 102.725; 100.939
16034.9Shi, Dongliang; Yang, Xiaoping; Xiao, Zhiyin; Liu, Xiaoming; Chen, Hongfen; Ma, Yanan; Schipper, Desmond; Jones, Richard A.
A 42-metal Yb(iii) nanowheel with NIR luminescent response to anions.
Nanoscale, 2020, 12, 1384-1388
1556577 CIFC2 H5 N O2P 1 21/n 15.223; 12.435; 5.563
90; 111.14; 90
336.99Broadhurst, Edward T.; Xu, Hongyi; Clabbers, Max T. B.; Lightowler, Molly; Nudelman, Fabio; Zou, Xiaodong; Parsons, Simon
Polymorph evolution during crystal growth studied by 3D electron diffraction
IUCrJ, 2020, 7, 5-9
1556578 CIFC2 H5 N O2P 1 21 15.311; 6.454; 5.694
90; 112.86; 90
179.84Broadhurst, Edward T.; Xu, Hongyi; Clabbers, Max T. B.; Lightowler, Molly; Nudelman, Fabio; Zou, Xiaodong; Parsons, Simon
Polymorph evolution during crystal growth studied by 3D electron diffraction
IUCrJ, 2020, 7, 5-9
1556579 CIFC2 H5 N O2P 317.395; 7.395; 5.75
90; 90; 120
272.32Broadhurst, Edward T.; Xu, Hongyi; Clabbers, Max T. B.; Lightowler, Molly; Nudelman, Fabio; Zou, Xiaodong; Parsons, Simon
Polymorph evolution during crystal growth studied by 3D electron diffraction
IUCrJ, 2020, 7, 5-9
1556580 CIFC14 H36 F6 N O6 P Si2P 1 21 110.4542; 12.3869; 10.614
90; 117.912; 90
1214.57Dankert, F.; Reuter, K.; Donsbach, C.; Von Hanisch, C.
Hybrid Disila-Crown Ethers as Hosts for Ammonium Cations: The O-Si-Si-O Linkage as an Acceptor for Hydrogen Bonding
Inorganics, 2018, 6, 15
1556581 CIFC19 H38 Cl2 F6 N O6 P Si2C 1 c 114.9582; 12.6454; 16.3325
90; 104.95; 90
2984.8Dankert, F.; Reuter, K.; Donsbach, C.; Von Hanisch, C.
Hybrid Disila-Crown Ethers as Hosts for Ammonium Cations: The O-Si-Si-O Linkage as an Acceptor for Hydrogen Bonding
Inorganics, 2018, 6, 15
1556582 CIFC65 H47 Al3 F3 N6 O9P -113.06; 19.92; 21.49
65.028; 87.853; 89.408
5064Yin, H.-Y.; Lai, J.; Tang, J.; Shang, Y.; Zhang, J.-L.
A Cryptand-Type Aluminum Tris(salophen) Complex: Synthesis, Characterization, and Cell Imaging Application
Inorganics, 2018, 6, 20
1556583 CIFC22 H58 Si8P b c a17.338; 18.0108; 22.317
90; 90; 90
6969Akasaka, N.; Tanaka, K.; Ishida, S.; Iwamoto, T.
Synthesis and Functionalization of a 1,2-Bis(trimethylsilyl)-1,2-disilacyclohexene That Can Serve as a Unit of cis-1,2-Dialkyldisilene
Inorganics, 2018, 6, 21
1556584 CIFC26 H57 K Si7P 1 21/n 115.7323; 11.7003; 21.031
90; 107.188; 90
3698.3Akasaka, N.; Tanaka, K.; Ishida, S.; Iwamoto, T.
Synthesis and Functionalization of a 1,2-Bis(trimethylsilyl)-1,2-disilacyclohexene That Can Serve as a Unit of cis-1,2-Dialkyldisilene
Inorganics, 2018, 6, 21
1556585 CIFC25 H64 Si8P 1 21/n 19.0608; 37.64; 11.263
90; 103.23; 90
3739.3Akasaka, N.; Tanaka, K.; Ishida, S.; Iwamoto, T.
Synthesis and Functionalization of a 1,2-Bis(trimethylsilyl)-1,2-disilacyclohexene That Can Serve as a Unit of cis-1,2-Dialkyldisilene
Inorganics, 2018, 6, 21
1556586 CIFC33 H57 Br Si7P -19.0529; 11.9109; 19.1793
93.948; 90.181; 109.133
1948.47Akasaka, N.; Tanaka, K.; Ishida, S.; Iwamoto, T.
Synthesis and Functionalization of a 1,2-Bis(trimethylsilyl)-1,2-disilacyclohexene That Can Serve as a Unit of cis-1,2-Dialkyldisilene
Inorganics, 2018, 6, 21
1556587 CIFC33 H58 Si7P 1 21/c 117.7493; 9.0323; 23.7624
90; 91.283; 90
3808.6Akasaka, N.; Tanaka, K.; Ishida, S.; Iwamoto, T.
Synthesis and Functionalization of a 1,2-Bis(trimethylsilyl)-1,2-disilacyclohexene That Can Serve as a Unit of cis-1,2-Dialkyldisilene
Inorganics, 2018, 6, 21
1556588 CIFC51 H66 Si6P -111.9302; 12.8081; 15.7049
95.628; 98.481; 90.755
2361.1Akasaka, N.; Tanaka, K.; Ishida, S.; Iwamoto, T.
Synthesis and Functionalization of a 1,2-Bis(trimethylsilyl)-1,2-disilacyclohexene That Can Serve as a Unit of cis-1,2-Dialkyldisilene
Inorganics, 2018, 6, 21
1556589 CIFC38 H98 O0 Si14P -111.4093; 15.6821; 19.5623
84.802; 75.911; 71.975
3227.8Akasaka, N.; Tanaka, K.; Ishida, S.; Iwamoto, T.
Synthesis and Functionalization of a 1,2-Bis(trimethylsilyl)-1,2-disilacyclohexene That Can Serve as a Unit of cis-1,2-Dialkyldisilene
Inorganics, 2018, 6, 21
1556590 CIFC29 H44 Cl F6 Ir N3 O1.5 PP b c n11.9277; 19.21; 28.2172
90; 90; 90
6465.4Grotjahn, D.B.; Martin, J.K.; Tom, T.N.; Rheingold, A.L.
Cationic Protic Imidazolylidene NHC Complexes of Cp*IrCl+ and Cp*RhCl+ with a Pyridyl Tether Formed at Ambient Temperature
Inorganics, 2018, 6, 27
1556591 CIFC54 H84 Cl2 F18 Ir2 K N6 O2 P3P b c a22.6979; 20.6402; 28.5118
90; 90; 90
13357.5Grotjahn, D.B.; Martin, J.K.; Tom, T.N.; Rheingold, A.L.
Cationic Protic Imidazolylidene NHC Complexes of Cp*IrCl+ and Cp*RhCl+ with a Pyridyl Tether Formed at Ambient Temperature
Inorganics, 2018, 6, 27
1556592 CIFC29 H44 Cl F6 N3 O1.5 P RhP b c n12.1218; 19.268; 28.333
90; 90; 90
6617.5Grotjahn, D.B.; Martin, J.K.; Tom, T.N.; Rheingold, A.L.
Cationic Protic Imidazolylidene NHC Complexes of Cp*IrCl+ and Cp*RhCl+ with a Pyridyl Tether Formed at Ambient Temperature
Inorganics, 2018, 6, 27
1556593 CIFC23 H30 N2P b c n15.7258; 7.9668; 16.0813
90; 90; 90
2014.7Cybularczyk-Cecotka, M.; Dabrowska, A.M.; Gunka, P.A.; Horeglad, P.
Probing the Effect of Six-Membered N-Heterocyclic Carbene-6-Mes-on the Synthesis, Structure and Reactivity of Me2MOR(NHC) (M = Ga, In) Complexes
Inorganics, 2018, 6, 28
1556594 CIFC25 H37 In N2P 1 21/n 19.568; 16.9878; 16.0384
90; 106.868; 90
2494.71Cybularczyk-Cecotka, M.; Dabrowska, A.M.; Gunka, P.A.; Horeglad, P.
Probing the Effect of Six-Membered N-Heterocyclic Carbene-6-Mes-on the Synthesis, Structure and Reactivity of Me2MOR(NHC) (M = Ga, In) Complexes
Inorganics, 2018, 6, 28
1556595 CIFC38 H47 Ga N2 OP 1 21/c 111.5312; 18.7807; 19.0639
90; 100.916; 90
4053.85Cybularczyk-Cecotka, M.; Dabrowska, A.M.; Gunka, P.A.; Horeglad, P.
Probing the Effect of Six-Membered N-Heterocyclic Carbene-6-Mes-on the Synthesis, Structure and Reactivity of Me2MOR(NHC) (M = Ga, In) Complexes
Inorganics, 2018, 6, 28
1556596 CIFC38 H47 In N2 OI 41 c d28.4159; 28.4159; 19.2051
90; 90; 90
15507.4Cybularczyk-Cecotka, M.; Dabrowska, A.M.; Gunka, P.A.; Horeglad, P.
Probing the Effect of Six-Membered N-Heterocyclic Carbene-6-Mes-on the Synthesis, Structure and Reactivity of Me2MOR(NHC) (M = Ga, In) Complexes
Inorganics, 2018, 6, 28
1556597 CIFC32 H35 Dy O11 SP -18.2231; 12.833; 17.175
80.864; 77.901; 88.862
1749.5Khalfaoui, O.; Beghidja, A.; Long, J.; Beghidja, C.; Guari, Y.; Larionova, J.
Field-Induced Slow Relaxation in a Dinuclear Dysprosium(III) Complex Based on 3-Methoxycinnamic Acid
Inorganics, 2018, 6, 35
1556598 CIFC63 H73 Dy F18 O10 S4P 1 21/c 115.8351; 23.865; 19.0098
90; 101.191; 90
7047.3Flores Gonzalez, J.; Cador, O.; Ouahab, L.; Norkov, S.; Kuropatov, V.; Pointillart, F.
Field-Induced Dysprosium Single-Molecule Magnet Involving a Fused o-Semiquinone-Extended-Tetrathiafulvalene-o-Semiquinone Bridging Triad
Inorganics, 2018, 6, 45
1556599 CIFC87.5 H82 Ag2 Fe O7.5 P4P 1 21 113.2313; 30.795; 18.556
90; 94.183; 90
7540.6Liu, Kuan-Guan; Rouhani, Farzaneh; Gao, Xue-Mei; Abbasi-Azad, Mahsa; Li, Jing-Zhe; Hu, Xiu-De; Wang, Wei; Hu, Mao-Lin; Morsali, Ali
Bilateral photocatalytic mechanism of dye degradation by a designed ferrocene-functionalized cluster under natural sunlight
Catalysis Science & Technology, 2020, 10, 757-767
1556600 CIFC122.5 H108.5 Cu2 Fe O7 P6P b c a24.582; 20.281; 40.461
90; 90; 90
20172Liu, Kuan-Guan; Rouhani, Farzaneh; Gao, Xue-Mei; Abbasi-Azad, Mahsa; Li, Jing-Zhe; Hu, Xiu-De; Wang, Wei; Hu, Mao-Lin; Morsali, Ali
Bilateral photocatalytic mechanism of dye degradation by a designed ferrocene-functionalized cluster under natural sunlight
Catalysis Science & Technology, 2020, 10, 757-767
1556601 CIFC56 H80 N32 S8 Zn4I 4 2 219.78; 19.78; 20.291
90; 90; 90
7938.8Arefyeva, N.; Sandleben, A.; Krest, A.; Baumann, U.; Schafer, M.; Kempf, M.; Klein, A.
[2 x 2] Molecular Grids of Ni(II) and Zn(II) with Redox-Active 1,4-Pyrazine-Bis(thiosemicarbazone) Ligands
Inorganics, 2018, 6, 51
1556602 CIFC80 H64 N32 S8 Zn4I 4 2 219.0949; 19.0949; 21.3112
90; 90; 90
7770.4Arefyeva, N.; Sandleben, A.; Krest, A.; Baumann, U.; Schafer, M.; Kempf, M.; Klein, A.
[2 x 2] Molecular Grids of Ni(II) and Zn(II) with Redox-Active 1,4-Pyrazine-Bis(thiosemicarbazone) Ligands
Inorganics, 2018, 6, 51
1556603 CIFC48 H64 N32 Ni4 O S8I 4 2 220.065; 20.065; 19.1367
90; 90; 90
7704.5Arefyeva, N.; Sandleben, A.; Krest, A.; Baumann, U.; Schafer, M.; Kempf, M.; Klein, A.
[2 x 2] Molecular Grids of Ni(II) and Zn(II) with Redox-Active 1,4-Pyrazine-Bis(thiosemicarbazone) Ligands
Inorganics, 2018, 6, 51
1556604 CIFC40 H48 N32 Ni4 S8I 4 2 218.8863; 18.8863; 18.4813
90; 90; 90
6592.1Arefyeva, N.; Sandleben, A.; Krest, A.; Baumann, U.; Schafer, M.; Kempf, M.; Klein, A.
[2 x 2] Molecular Grids of Ni(II) and Zn(II) with Redox-Active 1,4-Pyrazine-Bis(thiosemicarbazone) Ligands
Inorganics, 2018, 6, 51
1556605 CIFC56 H80 N32 Ni4 S8I 4 2 220.4341; 20.4341; 19.355
90; 90; 90
8081.7Arefyeva, N.; Sandleben, A.; Krest, A.; Baumann, U.; Schafer, M.; Kempf, M.; Klein, A.
[2 x 2] Molecular Grids of Ni(II) and Zn(II) with Redox-Active 1,4-Pyrazine-Bis(thiosemicarbazone) Ligands
Inorganics, 2018, 6, 51
1556606 CIFC40 H48 N32 Ni4 O S8P 4 n c18.4946; 18.4946; 18.193
90; 90; 90
6222.9Arefyeva, N.; Sandleben, A.; Krest, A.; Baumann, U.; Schafer, M.; Kempf, M.; Klein, A.
[2 x 2] Molecular Grids of Ni(II) and Zn(II) with Redox-Active 1,4-Pyrazine-Bis(thiosemicarbazone) Ligands
Inorganics, 2018, 6, 51
1556607 CIFC60 H57 Dy N3 O14 P3P 1 21/n 111.04; 19.136; 27.568
90; 94.95; 90
5802Langley, S.K.; Vignesh, K.R.; Holton, K.; Benjamin, S.; Hix, G.B.; Phonsri, W.; Moubaraki, B.; Murray, K.S.; Rajaraman, G.
Mononuclear Dysprosium(III) Complexes with Triphenylphosphine Oxide Ligands: Controlling the Coordination Environment and Magnetic Anisotropy
Inorganics, 2018, 6, 61
1556608 CIFC72 H60 Dy N3 O13 P4P c c n16.0038; 16.5124; 26.6249
90; 90; 90
7035.9Langley, S.K.; Vignesh, K.R.; Holton, K.; Benjamin, S.; Hix, G.B.; Phonsri, W.; Moubaraki, B.; Murray, K.S.; Rajaraman, G.
Mononuclear Dysprosium(III) Complexes with Triphenylphosphine Oxide Ligands: Controlling the Coordination Environment and Magnetic Anisotropy
Inorganics, 2018, 6, 61
1556609 CIFC55.5 H48 Cl3 Dy O3.5 P3P 1 21/c 119.684; 15.211; 34.082
90; 95.91; 90
10150Langley, S.K.; Vignesh, K.R.; Holton, K.; Benjamin, S.; Hix, G.B.; Phonsri, W.; Moubaraki, B.; Murray, K.S.; Rajaraman, G.
Mononuclear Dysprosium(III) Complexes with Triphenylphosphine Oxide Ligands: Controlling the Coordination Environment and Magnetic Anisotropy
Inorganics, 2018, 6, 61
1556610 CIFC72 H60 Cl3 Dy O4 P4C 1 2/c 135.8608; 43.6134; 26.6974
90; 96.885; 90
41454Langley, S.K.; Vignesh, K.R.; Holton, K.; Benjamin, S.; Hix, G.B.; Phonsri, W.; Moubaraki, B.; Murray, K.S.; Rajaraman, G.
Mononuclear Dysprosium(III) Complexes with Triphenylphosphine Oxide Ligands: Controlling the Coordination Environment and Magnetic Anisotropy
Inorganics, 2018, 6, 61
1556611 CIFC72 H60 Cl6 Dy Fe O4 P4P -119.4549; 19.8966; 19.9214
90.301; 96.296; 115.612
6899.73Langley, S.K.; Vignesh, K.R.; Holton, K.; Benjamin, S.; Hix, G.B.; Phonsri, W.; Moubaraki, B.; Murray, K.S.; Rajaraman, G.
Mononuclear Dysprosium(III) Complexes with Triphenylphosphine Oxide Ligands: Controlling the Coordination Environment and Magnetic Anisotropy
Inorganics, 2018, 6, 61
1556612 CIFC116 H112 F12 N4 O24 Ru4 S4P -116.0557; 20.7694; 21.3136
115.639; 98.267; 101.194
6073.6Gaschard, M.; Nehzat, F.; Cheminel, T.; Therrien, B.
Arene Ruthenium Metalla-Assemblies with Anthracene Moieties for PDT Application
Inorganics, 2018, 6, 97
1556613 CIFC28 H16 N2P 1 21 15.0015; 16.944; 11.5374
90; 92.433; 90
976.9Gaschard, M.; Nehzat, F.; Cheminel, T.; Therrien, B.
Arene Ruthenium Metalla-Assemblies with Anthracene Moieties for PDT Application
Inorganics, 2018, 6, 97
1556614 CIFC32 H76 Si11P b c a11.3287; 17.976; 46.325
90; 90; 90
9433.8Akasaka, N.; Ishida, S.; Iwamoto, T.
Transformative Si8R8 Siliconoids
Inorganics, 2018, 6, 107
1556615 CIFC65.5 H136 Si16P -111.5327; 17.883; 21.56
69.416; 85.458; 76.379
4045.5Akasaka, N.; Ishida, S.; Iwamoto, T.
Transformative Si8R8 Siliconoids
Inorganics, 2018, 6, 107
1556616 CIFC48 H116 Si16C 1 2/c 121.538; 17.9167; 20.793
90; 118.875; 90
7026.3Akasaka, N.; Ishida, S.; Iwamoto, T.
Transformative Si8R8 Siliconoids
Inorganics, 2018, 6, 107
1556617 CIFC17 H26 Cu I N6F d d 218.055; 26.458; 16.438
90; 90; 90
7852Strassl, F.; Hoffmann, A.; Grimm-Lebsanft, B.; Rukser, D.; Biebl, F.; Tran, M.A.; Metz, F.; Rubhausen, M.; Herres-Pawlis, S.
Fluorescent Bis(guanidine) Copper Complexes as Precursors for Hydroxylation Catalysis
Inorganics, 2018, 6, 114
1556618 CIFC17 H26 Br Cu N6P 1 21/c 17.1936; 12.8127; 20.599
90; 93.439; 90
1895.2Strassl, F.; Hoffmann, A.; Grimm-Lebsanft, B.; Rukser, D.; Biebl, F.; Tran, M.A.; Metz, F.; Rubhausen, M.; Herres-Pawlis, S.
Fluorescent Bis(guanidine) Copper Complexes as Precursors for Hydroxylation Catalysis
Inorganics, 2018, 6, 114
1556619 CIFC17 H26 Cl Cu N6P 1 21/c 17.1451; 12.7869; 20.53
90; 93.699; 90
1871.8Strassl, F.; Hoffmann, A.; Grimm-Lebsanft, B.; Rukser, D.; Biebl, F.; Tran, M.A.; Metz, F.; Rubhausen, M.; Herres-Pawlis, S.
Fluorescent Bis(guanidine) Copper Complexes as Precursors for Hydroxylation Catalysis
Inorganics, 2018, 6, 114
1556620 CIFC17 H26 Cl2 Cu N6P 1 21/n 115.234; 8.1012; 17.631
90; 113.072; 90
2001.9Strassl, F.; Hoffmann, A.; Grimm-Lebsanft, B.; Rukser, D.; Biebl, F.; Tran, M.A.; Metz, F.; Rubhausen, M.; Herres-Pawlis, S.
Fluorescent Bis(guanidine) Copper Complexes as Precursors for Hydroxylation Catalysis
Inorganics, 2018, 6, 114
1556621 CIFC36 H52 Cu2 F6 N12 O6 S2P -113.8689; 14.0995; 14.6916
112.944; 96.288; 112.879
2319.2Strassl, F.; Hoffmann, A.; Grimm-Lebsanft, B.; Rukser, D.; Biebl, F.; Tran, M.A.; Metz, F.; Rubhausen, M.; Herres-Pawlis, S.
Fluorescent Bis(guanidine) Copper Complexes as Precursors for Hydroxylation Catalysis
Inorganics, 2018, 6, 114
1556622 CIFC45 H41 Cu F6 N O P3 SP 1 21/c 114.0474; 17.4236; 18.3028
90; 109.786; 90
4215.3Nohara, I.; Prescimone, A.; Housecroft, C.E.; Constable, E.C.
Softening the Donor-Set: From [Cu(P^P)(N^N)][PF6] to [Cu(P^P)(N^S)][PF6]
Inorganics, 2019, 7, 11
1556623 CIFC46 H43 Cu F6 N O P3 SP 1 21/c 113.8102; 18.4985; 18.0974
90; 107.745; 90
4403.3Nohara, I.; Prescimone, A.; Housecroft, C.E.; Constable, E.C.
Softening the Donor-Set: From [Cu(P^P)(N^N)][PF6] to [Cu(P^P)(N^S)][PF6]
Inorganics, 2019, 7, 11
1556624 CIFC13 H11 N O4 SP -19.0847; 10.5878; 13.3058
70.313; 82.104; 76.733
1170.35Hazra, S.; Rocha, B.G.M.; Guedes da Silva, M.F.C.; Karmakar, A.; Pombeiro, A.J.L.
Syntheses, Structures, and Catalytic Hydrocarbon Oxidation Properties of N-Heterocycle-Sulfonated Schiff Base Copper(II) Complexes
Inorganics, 2019, 7, 17
1556625 CIFC20 H20 Cu N2 O5 SP 1 21/n 19.5036; 18.3619; 11.339
90; 91.883; 90
1977.63Hazra, S.; Rocha, B.G.M.; Guedes da Silva, M.F.C.; Karmakar, A.; Pombeiro, A.J.L.
Syntheses, Structures, and Catalytic Hydrocarbon Oxidation Properties of N-Heterocycle-Sulfonated Schiff Base Copper(II) Complexes
Inorganics, 2019, 7, 17
1556626 CIFC24 H21 Cu N3 O5 SP 1 21/n 18.1099; 29.4538; 10.5303
90; 109.395; 90
2372.6Hazra, S.; Rocha, B.G.M.; Guedes da Silva, M.F.C.; Karmakar, A.; Pombeiro, A.J.L.
Syntheses, Structures, and Catalytic Hydrocarbon Oxidation Properties of N-Heterocycle-Sulfonated Schiff Base Copper(II) Complexes
Inorganics, 2019, 7, 17
1556627 CIFC32 H30 Cu2 N4 O10 S2P -17.4426; 10.2904; 11.4557
75.615; 71.959; 85.198
808.05Hazra, S.; Rocha, B.G.M.; Guedes da Silva, M.F.C.; Karmakar, A.; Pombeiro, A.J.L.
Syntheses, Structures, and Catalytic Hydrocarbon Oxidation Properties of N-Heterocycle-Sulfonated Schiff Base Copper(II) Complexes
Inorganics, 2019, 7, 17
1556628 CIFC32 H36 Cu2 N4 O10 S2P 1 21/n 16.9512; 18.534; 13.4906
90; 100.283; 90
1710.1Hazra, S.; Rocha, B.G.M.; Guedes da Silva, M.F.C.; Karmakar, A.; Pombeiro, A.J.L.
Syntheses, Structures, and Catalytic Hydrocarbon Oxidation Properties of N-Heterocycle-Sulfonated Schiff Base Copper(II) Complexes
Inorganics, 2019, 7, 17
1556629 CIFC15 H13 FP 1 21/n 113.5004; 5.6062; 15.1666
90; 104.738; 90
1110.13Fu, Wai Chung; Kwong, Fuk Yee
A denitrogenative palladium-catalyzed cascade for regioselective synthesis of fluorenes
Chemical Science, 2020, 11, 1411-1417
1556630 CIFC40 H50 Br N5 O5P 1 21/c 111.9227; 17.3502; 17.7857
90; 90.611; 90
3678.96Miao, Hong-Jie; Wang, Le-Le; Han, Hua-Bin; Zhao, Yong-De; Wang, Qi-Lin; Bu, Zhan-Wei
Regio- and diastereoselective dearomatizations of N-alkyl activated azaarenes: the maximization of the reactive sites
Chemical Science, 2020, 11, 1418-1424
1556631 CIFC29 H27 Cl N2 OP 1 21/c 110.8554; 18.2505; 12.2873
90; 105.01; 90
2351.26Miao, Hong-Jie; Wang, Le-Le; Han, Hua-Bin; Zhao, Yong-De; Wang, Qi-Lin; Bu, Zhan-Wei
Regio- and diastereoselective dearomatizations of N-alkyl activated azaarenes: the maximization of the reactive sites
Chemical Science, 2020, 11, 1418-1424
1556632 CIFC46 H42 Br N3 OP 1 21/n 110.2078; 19.152; 18.9514
90; 94.804; 90
3691.98Miao, Hong-Jie; Wang, Le-Le; Han, Hua-Bin; Zhao, Yong-De; Wang, Qi-Lin; Bu, Zhan-Wei
Regio- and diastereoselective dearomatizations of N-alkyl activated azaarenes: the maximization of the reactive sites
Chemical Science, 2020, 11, 1418-1424
1556633 CIFC28 H29 N3 OP 1 21/c 19.0448; 14.0503; 18.8685
90; 102.053; 90
2344.99Miao, Hong-Jie; Wang, Le-Le; Han, Hua-Bin; Zhao, Yong-De; Wang, Qi-Lin; Bu, Zhan-Wei
Regio- and diastereoselective dearomatizations of N-alkyl activated azaarenes: the maximization of the reactive sites
Chemical Science, 2020, 11, 1418-1424
1556634 CIFC31 H31 Br N2 OP 1 21/n 114.485; 10.8239; 16.4134
90; 90.869; 90
2573.07Miao, Hong-Jie; Wang, Le-Le; Han, Hua-Bin; Zhao, Yong-De; Wang, Qi-Lin; Bu, Zhan-Wei
Regio- and diastereoselective dearomatizations of N-alkyl activated azaarenes: the maximization of the reactive sites
Chemical Science, 2020, 11, 1418-1424
1556635 CIFC39 H39 N5 O5P 1 21/c 111.80408; 18.74504; 31.2581
90; 79.1361; 90
6792.46Miao, Hong-Jie; Wang, Le-Le; Han, Hua-Bin; Zhao, Yong-De; Wang, Qi-Lin; Bu, Zhan-Wei
Regio- and diastereoselective dearomatizations of N-alkyl activated azaarenes: the maximization of the reactive sites
Chemical Science, 2020, 11, 1418-1424
1556636 CIFC45 H39 Cl2 N3 OP 1 21/n 113.58053; 20.7753; 29.2921
90; 102.897; 90
8055.96Miao, Hong-Jie; Wang, Le-Le; Han, Hua-Bin; Zhao, Yong-De; Wang, Qi-Lin; Bu, Zhan-Wei
Regio- and diastereoselective dearomatizations of N-alkyl activated azaarenes: the maximization of the reactive sites
Chemical Science, 2020, 11, 1418-1424
1556637 CIF
HKL
Paper
C16 H24 N2 O2P 1 21/n 19.0277; 19.9356; 9.4811
90; 116.169; 90
1531.43Tapmeyer, Lukas; Beske, Maurice; Plackmeyer, Jörn
1,1,3,3-Tetraethyl-5-nitroisoindoline
IUCrData, 2019, 4, x191629
1556638 CIF
HKL
Paper
C9 H11 Mn N5 S3P 1 21/c 19.9355; 17.025; 9.7743
90; 116.107; 90
1484.66Peppel, Tim; Köckerling, Martin
Poly[1-ethyl-3-methylimidazolium [tri-μ-isothiocyanato-manganate(II)]]
IUCrData, 2019, 4, x191659
1556639 CIF
HKL
Paper
C18 H16 N2 O2P -17.0679; 9.6856; 12.151
101.56; 93.302; 111.27
751.66Loke, Shiva Krishna; Pagadala, Eswar; Kottalanka, Ravi K.
5,5'-(1-Phenylethane-1,1-diyl)bis(1<i>H</i>-pyrrole-2-carboxaldehyde)
IUCrData, 2019, 4, x191660
1556640 CIFC35 H36 Cl N3 O4P -18.3765; 9.2524; 21.5856
92.541; 91.378; 109.089
1578.08Begum, Nazma; Kaur, Supreet; Xiang, Ying; Yin, Heng; Mohiuddin, Golam; Rao, Nandiraju V. S.; Pal, Santanu Kumar
Photoswitchable Bent-Core Nematic Liquid Crystals with Methylated Azobenzene Wing Exhibiting Optic-Field-Enhanced Fréedericksz Transition Effect
The Journal of Physical Chemistry C, 2019
1556641 CIFC33 H32 Cl N3 O4P -18.276; 9.9957; 17.6584
90.12; 99.083; 95.775
1434.9Begum, Nazma; Kaur, Supreet; Xiang, Ying; Yin, Heng; Mohiuddin, Golam; Rao, Nandiraju V. S.; Pal, Santanu Kumar
Photoswitchable Bent-Core Nematic Liquid Crystals with Methylated Azobenzene Wing Exhibiting Optic-Field-Enhanced Fréedericksz Transition Effect
The Journal of Physical Chemistry C, 2019
1556642 CIFC50 H67 B2 P3P -110.6022; 10.6218; 20.1023
94.418; 99.288; 100.371
2184.47Stennett, Tom E.; Jayaraman, Arumugam; Brückner, Tobias; Schneider, Lea; Braunschweig, Holger
Hydrophosphination of boron–boron multiple bonds
Chemical Science, 2020, 11, 1335-1341
1556643 CIFC34 H48 B2 Br P3P b c a10.5062; 17.5469; 36.649
90; 90; 90
6756.3Stennett, Tom E.; Jayaraman, Arumugam; Brückner, Tobias; Schneider, Lea; Braunschweig, Holger
Hydrophosphination of boron–boron multiple bonds
Chemical Science, 2020, 11, 1335-1341
1556644 CIFC34 H48 B2 Br P3P 1 21/n 111.8091; 16.5734; 17.4767
90; 107.828; 90
3256.2Stennett, Tom E.; Jayaraman, Arumugam; Brückner, Tobias; Schneider, Lea; Braunschweig, Holger
Hydrophosphination of boron‒boron multiple bonds
Chemical Science, 2020, 11, 1335-1341
1556645 CIFC40 H55 B2 Br N2 P2F d d 228.3736; 57.198; 10.0055
90; 90; 90
16238.1Stennett, Tom E.; Jayaraman, Arumugam; Brückner, Tobias; Schneider, Lea; Braunschweig, Holger
Hydrophosphination of boron‒boron multiple bonds
Chemical Science, 2020, 11, 1335-1341
1556646 CIFC58 H71 B2 N4 PP -111.3635; 13.09; 19.2394
89.968; 76.353; 70.181
2606.41Stennett, Tom E.; Jayaraman, Arumugam; Brückner, Tobias; Schneider, Lea; Braunschweig, Holger
Hydrophosphination of boron‒boron multiple bonds
Chemical Science, 2020, 11, 1335-1341
1556647 CIFC26 H18 B F10 NP 1 21/c 116.8585; 9.6751; 15.4623
90; 111.832; 90
2341.14Tao, Xin; Škoch, Karel; Daniliuc, Constantin G.; Kehr, Gerald; Erker, Gerhard
Borane-induced ring closure reaction of oligomethylene-linked bis-allenes
Chemical Science, 2020, 11, 1542-1548
1556648 CIFC44 H30 B F10 PP -18.3209; 11.319; 19.7803
99.399; 98.04; 104.051
1751.34Tao, Xin; Škoch, Karel; Daniliuc, Constantin G.; Kehr, Gerald; Erker, Gerhard
Borane-induced ring closure reaction of oligomethylene-linked bis-allenes
Chemical Science, 2020, 11, 1542-1548
1556649 CIFC27 H20 B F10 NP 21 21 219.724; 14.9525; 16.4897
90; 90; 90
2397.57Tao, Xin; Škoch, Karel; Daniliuc, Constantin G.; Kehr, Gerald; Erker, Gerhard
Borane-induced ring closure reaction of oligomethylene-linked bis-allenes
Chemical Science, 2020, 11, 1542-1548
1556650 CIFC46 H38 B Cl2 F10 PP 1 21/c 111.605; 20.1373; 17.8823
90; 102.818; 90
4074.83Tao, Xin; Škoch, Karel; Daniliuc, Constantin G.; Kehr, Gerald; Erker, Gerhard
Borane-induced ring closure reaction of oligomethylene-linked bis-allenes
Chemical Science, 2020, 11, 1542-1548
1556651 CIFC46 H38 B Cl2 F10 PP -111.1982; 11.5411; 16.5533
96.789; 96.943; 106.576
2009Tao, Xin; Škoch, Karel; Daniliuc, Constantin G.; Kehr, Gerald; Erker, Gerhard
Borane-induced ring closure reaction of oligomethylene-linked bis-allenes
Chemical Science, 2020, 11, 1542-1548
1556652 CIFC39 H28 B F10 PP 1 21/c 112.2953; 14.3056; 20.8746
90; 100.3; 90
3612.5Tao, Xin; Škoch, Karel; Daniliuc, Constantin G.; Kehr, Gerald; Erker, Gerhard
Borane-induced ring closure reaction of oligomethylene-linked bis-allenes
Chemical Science, 2020, 11, 1542-1548
1556653 CIFC27 H21 B F10P 1 21/c 16.4255; 17.461; 21.2763
90; 95.037; 90
2377.9Tao, Xin; Škoch, Karel; Daniliuc, Constantin G.; Kehr, Gerald; Erker, Gerhard
Borane-induced ring closure reaction of oligomethylene-linked bis-allenes
Chemical Science, 2020, 11, 1542-1548
1556654 CIFC40 H30 B F10 PP -112.4783; 15.7635; 20.7617
102.312; 93.184; 112.263
3650.3Tao, Xin; Škoch, Karel; Daniliuc, Constantin G.; Kehr, Gerald; Erker, Gerhard
Borane-induced ring closure reaction of oligomethylene-linked bis-allenes
Chemical Science, 2020, 11, 1542-1548
1556655 CIFC43 H24 B2 F20 N2P -19.0564; 10.3497; 21.915
91.873; 96.63; 96.996
2022.9Tao, Xin; Škoch, Karel; Daniliuc, Constantin G.; Kehr, Gerald; Erker, Gerhard
Borane-induced ring closure reaction of oligomethylene-linked bis-allenes
Chemical Science, 2020, 11, 1542-1548
1556656 CIFC23 H35 B Ru2 S5C 1 2/c 131.732; 10.7145; 17.6302
90; 116.019; 90
5386.6Saha, K.; Kaur, U.; Borthakur, R.; Ghosh, S.
Synthesis of Trithia-Borinane Complexes Stabilized in Diruthenium Core: [(Cp*Ru)2(n1-S)(n1-CS){(CH2)2S3BR}] (R = H or SMe)
Inorganics, 2019, 7, 21
1556657 CIFC24 H37 B Ru2 S6P b c n34.157; 8.5558; 19.8431
90; 90; 90
5799Saha, K.; Kaur, U.; Borthakur, R.; Ghosh, S.
Synthesis of Trithia-Borinane Complexes Stabilized in Diruthenium Core: [(Cp*Ru)2(n1-S)(n1-CS){(CH2)2S3BR}] (R = H or SMe)
Inorganics, 2019, 7, 21
1556658 CIFC21 H37 B3 Ru2 S2P 1 21/n 18.5681; 39.1432; 15.1808
90; 95.922; 90
5064.21Saha, K.; Kaur, U.; Borthakur, R.; Ghosh, S.
Synthesis of Trithia-Borinane Complexes Stabilized in Diruthenium Core: [(Cp*Ru)2(n1-S)(n1-CS){(CH2)2S3BR}] (R = H or SMe)
Inorganics, 2019, 7, 21
1556659 CIFC24 H52 Cl Cr Li2 O6C 1 2/c 125.681; 8.9889; 18.4468
90; 133.511; 90
3088.3Ojelere, O.; Graf, D.; Mathur, S.
Molecularly Engineered Lithium-Chromium Alkoxide for Selective Synthesis of LiCrO2 and Li2CrO4 Nanomaterials
Inorganics, 2019, 7, 22
1556660 CIFC32 H44 Cr F6 Li N2 O6P 1 21/c 114.8499; 10.7574; 22.6334
90; 90.059; 90
3615.6Ojelere, O.; Graf, D.; Mathur, S.
Molecularly Engineered Lithium-Chromium Alkoxide for Selective Synthesis of LiCrO2 and Li2CrO4 Nanomaterials
Inorganics, 2019, 7, 22
1556661 CIFC144 H204 B6 I6 N36 S18 Zn6C 1 2/c 129.161; 30.102; 31.045
90; 102.323; 90
26624Tuchler, M.; Rambock, M.; Glanzer, S.; Zangger, K.; Belaj, F.; Mosch-Zanetti, N.C.
Mono- and Hexanuclear Zinc Halide Complexes with Soft Thiopyridazine Based Scorpionate Ligands
Inorganics, 2019, 7, 24
1556662 CIFC18 H28 Br2 N4 S2 ZnP 1 21/c 110.2147; 8.6489; 27.2498
90; 96.6196; 90
2391.36Tuchler, M.; Rambock, M.; Glanzer, S.; Zangger, K.; Belaj, F.; Mosch-Zanetti, N.C.
Mono- and Hexanuclear Zinc Halide Complexes with Soft Thiopyridazine Based Scorpionate Ligands
Inorganics, 2019, 7, 24
1556663 CIFC36 H54 B Br N8 S4 ZnP 21 21 2116.6456; 16.9851; 34.357
90; 90; 90
9713.7Tuchler, M.; Rambock, M.; Glanzer, S.; Zangger, K.; Belaj, F.; Mosch-Zanetti, N.C.
Mono- and Hexanuclear Zinc Halide Complexes with Soft Thiopyridazine Based Scorpionate Ligands
Inorganics, 2019, 7, 24
1556664 CIFC24 H37 B4 Cr O4 W2P c a 2123.323; 14.555; 17.009
90; 90; 90
5774Bag, R.; Saha, S.; Borthakur, R.; Mondal, B.; Roisnel, T.; Dorcet, V.; Halet, J.-F.; Ghosh, S.
Synthesis, Structures and Chemistry of the Metallaboranes of Group 4-9 with M2B5 Core Having a Cross Cluster M-M Bond
Inorganics, 2019, 7, 27
1556665 CIFC24 H30 B4 Mo O4 W2P -116.3096; 18.8186; 19.9272
85.532; 71.947; 89.111
5797.1Bag, R.; Saha, S.; Borthakur, R.; Mondal, B.; Roisnel, T.; Dorcet, V.; Halet, J.-F.; Ghosh, S.
Synthesis, Structures and Chemistry of the Metallaboranes of Group 4-9 with M2B5 Core Having a Cross Cluster M-M Bond
Inorganics, 2019, 7, 27
1556666 CIFC23 H38 B4 Fe O3 W2P 1 21/n 111.6885; 16.2795; 15.0773
90; 110.538; 90
2686.6Bag, R.; Saha, S.; Borthakur, R.; Mondal, B.; Roisnel, T.; Dorcet, V.; Halet, J.-F.; Ghosh, S.
Synthesis, Structures and Chemistry of the Metallaboranes of Group 4-9 with M2B5 Core Having a Cross Cluster M-M Bond
Inorganics, 2019, 7, 27
1556667 CIFC24 H38 B4 Cr Mo2 O4P 1 21/c 119.454; 13.243; 21.905
90; 94.494; 90
5626Bag, R.; Saha, S.; Borthakur, R.; Mondal, B.; Roisnel, T.; Dorcet, V.; Halet, J.-F.; Ghosh, S.
Synthesis, Structures and Chemistry of the Metallaboranes of Group 4-9 with M2B5 Core Having a Cross Cluster M-M Bond
Inorganics, 2019, 7, 27
1556668 CIFC24 H30 B4 O4 W3P -116.842; 19.051; 19.39
85.443; 79.671; 70.858
5780.8Bag, R.; Saha, S.; Borthakur, R.; Mondal, B.; Roisnel, T.; Dorcet, V.; Halet, J.-F.; Ghosh, S.
Synthesis, Structures and Chemistry of the Metallaboranes of Group 4-9 with M2B5 Core Having a Cross Cluster M-M Bond
Inorganics, 2019, 7, 27
1556669 CIFC38.44 H32.61 Au2 Cl2.84 O1.72 P2P 1 21/c 18.9838; 20.6008; 19.6703
90; 102.45; 90
3554.84Lankelma, M.; Vreeken, V.; Siegler, M.A.; van der Vlugt, J.I.
Dinuclear Gold Complexes Supported by Wide Bite Angle Diphosphines for Preorganization-Induced Selective Dual-Gold Catalysis
Inorganics, 2019, 7, 28
1556670 CIFC36 H26 Au2 Cl F6 O P2 SbP -110.9408; 13.9559; 22.9525
88.551; 87.044; 89.587
3498.74Lankelma, M.; Vreeken, V.; Siegler, M.A.; van der Vlugt, J.I.
Dinuclear Gold Complexes Supported by Wide Bite Angle Diphosphines for Preorganization-Induced Selective Dual-Gold Catalysis
Inorganics, 2019, 7, 28
1556671 CIFC49 H49 Au2 F6 O P2 SbP 1 21/c 113.9459; 31.1012; 10.9557
90; 105.449; 90
4580.2Lankelma, M.; Vreeken, V.; Siegler, M.A.; van der Vlugt, J.I.
Dinuclear Gold Complexes Supported by Wide Bite Angle Diphosphines for Preorganization-Induced Selective Dual-Gold Catalysis
Inorganics, 2019, 7, 28
1556672 CIFC16 H15 Fe2 N O5 S3P 1 21/c 18.797; 12.528; 18.181
90; 94.3; 90
1998.1Tard, C.; Borg, S.J.; Fairhurst, S.A.; Pickett, C.J.; Best, S.P.
Electronic Communication between Dithiolato-Bridged Diiron Carbonyl and S-Bridged Redox-Active Centres
Inorganics, 2019, 7, 37
1556673 CIFC36 H23 Cu2 F14 N8 O8 P S4P 1 21/c 119.7106; 9.9489; 22.7748
90; 99.808; 90
4400.83Nicolay, Amélie; Ziegler, Micah S.; Small, David W.; Grünbauer, Rebecca; Scheer, Manfred; Tilley, T. Don
Isomerism and dynamic behavior of bridging phosphaalkynes bound to a dicopper complex.
Chemical science, 2020, 11, 1607-1616
1556674 CIFC42 H34 Cu2 F14 N8 O9 S4P -112.5211; 14.8116; 15.6245
76.518; 67.701; 76.651
2574.23Nicolay, Amélie; Ziegler, Micah S.; Small, David W.; Grünbauer, Rebecca; Scheer, Manfred; Tilley, T. Don
Isomerism and dynamic behavior of bridging phosphaalkynes bound to a dicopper complex.
Chemical science, 2020, 11, 1607-1616
1556675 CIFC43 H39 Cu2 F14 N8 O9 P S4P -112.4499; 12.637; 18.5946
89.354; 84.84; 72.243
2774.4Nicolay, Amélie; Ziegler, Micah S.; Small, David W.; Grünbauer, Rebecca; Scheer, Manfred; Tilley, T. Don
Isomerism and dynamic behavior of bridging phosphaalkynes bound to a dicopper complex.
Chemical science, 2020, 11, 1607-1616
1556676 CIFC45 H35 Cu2 F14 N9 O8 S4P 21 21 2110.918; 20.4455; 23.1939
90; 90; 90
5177.4Nicolay, Amélie; Ziegler, Micah S.; Small, David W.; Grünbauer, Rebecca; Scheer, Manfred; Tilley, T. Don
Isomerism and dynamic behavior of bridging phosphaalkynes bound to a dicopper complex.
Chemical science, 2020, 11, 1607-1616
1556677 CIFC45 H35 Cu2 F14 N8 O8 P S4P 1 21/n 118.6915; 16.5896; 18.8035
90; 96.346; 90
5794.9Nicolay, Amélie; Ziegler, Micah S.; Small, David W.; Grünbauer, Rebecca; Scheer, Manfred; Tilley, T. Don
Isomerism and dynamic behavior of bridging phosphaalkynes bound to a dicopper complex.
Chemical science, 2020, 11, 1607-1616
1556678 CIFC21 H13 NP 1 21/c 112.2207; 8.2084; 14.738
90; 105.697; 90
1423.3Lucenti, E.; Forni, A.; Marinotto, D.; Previtali, A.; Righetto, S.; Cariati, E.
Tuning the Linear and Nonlinear Optical Properties of Pyrene-Pyridine Chromophores by Protonation and Complexation to d10 Metal Centers
Inorganics, 2019, 7, 38
1556679 CIFC23 H17 NP -18.2054; 9.7248; 10.4571
85.133; 79.4; 74.341
789.21Lucenti, E.; Forni, A.; Marinotto, D.; Previtali, A.; Righetto, S.; Cariati, E.
Tuning the Linear and Nonlinear Optical Properties of Pyrene-Pyridine Chromophores by Protonation and Complexation to d10 Metal Centers
Inorganics, 2019, 7, 38
1556680 CIFC23 H17 Cu I NP 1 21/c 120.4752; 4.502; 20.208
90; 103.158; 90
1813.86Lucenti, E.; Forni, A.; Marinotto, D.; Previtali, A.; Righetto, S.; Cariati, E.
Tuning the Linear and Nonlinear Optical Properties of Pyrene-Pyridine Chromophores by Protonation and Complexation to d10 Metal Centers
Inorganics, 2019, 7, 38
1556681 CIFC46 H32 N2 O4 ZnP n m a12.5192; 24.7373; 11.2498
90; 90; 90
3484Lucenti, E.; Forni, A.; Marinotto, D.; Previtali, A.; Righetto, S.; Cariati, E.
Tuning the Linear and Nonlinear Optical Properties of Pyrene-Pyridine Chromophores by Protonation and Complexation to d10 Metal Centers
Inorganics, 2019, 7, 38
1556682 CIFC15 H33 B10 Cl Ge N2P c a 2116.166; 11.279; 12.294
90; 90; 90
2241.6Liebing, P.; Harmgarth, N.; Zorner, F.; Engelhardt, F.; Hilfert, L.; Busse, S.; Edelmann, F.T.
Synthesis and Structural Characterization of Two New Main Group Element Carboranylamidinates
Inorganics, 2019, 7, 41
1556683 CIFC9 H25 B10 Cl2 N2 SbC 1 2/c 126.796; 8.141; 18.666
90; 103.29; 90
3963Liebing, P.; Harmgarth, N.; Zorner, F.; Engelhardt, F.; Hilfert, L.; Busse, S.; Edelmann, F.T.
Synthesis and Structural Characterization of Two New Main Group Element Carboranylamidinates
Inorganics, 2019, 7, 41
1556684 CIFC60 H70 Ni P2 S2P -110.7068; 16.6627; 17.9475
117.108; 92.836; 106.327
2675.5Alrefai, R.; Eggenweiler, H.; Schubert, H.; Berkefeld, A.
Understanding Factors that Control the Structural (Dis)Assembly of Sulphur-Bridged Bimetallic Sites
Inorganics, 2019, 7, 42
1556685 CIFC38 H44 F6 N Ni O4 P S3P -18.9541; 14.157; 16.8972
104.278; 98.592; 97.958
2017.85Alrefai, R.; Eggenweiler, H.; Schubert, H.; Berkefeld, A.
Understanding Factors that Control the Structural (Dis)Assembly of Sulphur-Bridged Bimetallic Sites
Inorganics, 2019, 7, 42
1556686 CIFC4 H20 B6 N3 O13.5 ZnC 1 2/c 126.0212; 9.1562; 13.6318
90; 99.58; 90
3202.55Altahan, M.A.; Beckett, M.A.; Coles, S.J.; Horton, P.N.
Hexaborate(2-) and Dodecaborate(6-) Anions as Ligands to Zinc(II) Centres: Self-Assembly and Single-Crystal XRD Characterization of [Zn{k3O-B6O7(OH)6}(k3N-dien)].0.5H2O (dien = NH(CH2-CH2NH2)2), (NH4)2[Zn{k2O-B6O7(OH)6}2 (H2O)2].2H2O and (1,3-pnH2)3[(k1N-H3N{CH2}3NH2) Zn{k3O-B12O18(OH)6}]2.14H2O (1,3-pn = 1,3-diaminopropane)
Inorganics, 2019, 7, 44
1556687 CIFB12 H28 N2 O30 ZnP -17.4831; 7.8551; 11.0111
108.065; 95.02; 90.118
612.68Altahan, M.A.; Beckett, M.A.; Coles, S.J.; Horton, P.N.
Hexaborate(2-) and Dodecaborate(6-) Anions as Ligands to Zinc(II) Centres: Self-Assembly and Single-Crystal XRD Characterization of [Zn{k3O-B6O7(OH)6}(k3N-dien)].0.5H2O (dien = NH(CH2-CH2NH2)2), (NH4)2[Zn{k2O-B6O7(OH)6}2 (H2O)2].2H2O and (1,3-pnH2)3[(k1N-H3N{CH2}3NH2) Zn{k3O-B12O18(OH)6}]2.14H2O (1,3-pn = 1,3-diaminopropane)
Inorganics, 2019, 7, 44
1556688 CIFC7.5 H49 B12 N5 O31 ZnP -19.3681; 10.691; 19.2746
82.954; 76.156; 68.655
1744.44Altahan, M.A.; Beckett, M.A.; Coles, S.J.; Horton, P.N.
Hexaborate(2-) and Dodecaborate(6-) Anions as Ligands to Zinc(II) Centres: Self-Assembly and Single-Crystal XRD Characterization of [Zn{k3O-B6O7(OH)6}(k3N-dien)].0.5H2O (dien = NH(CH2-CH2NH2)2), (NH4)2[Zn{k2O-B6O7(OH)6}2 (H2O)2].2H2O and (1,3-pnH2)3[(k1N-H3N{CH2}3NH2) Zn{k3O-B12O18(OH)6}]2.14H2O (1,3-pn = 1,3-diaminopropane)
Inorganics, 2019, 7, 44
1556689 CIFC22 H40 I16 N8P -18.3; 16.191; 21.221
108.167; 94.071; 104.453
2589.3Savastano, M.; Martinez-Camarena, A.; Bazzicalupi, C.; Delgado-Pinar, E.; Llinares, J.M.; Mariani, P.; Verdejo, B.; Garcia-Espana, E.; Bianchi, A.
Stabilization of Supramolecular Networks of Polyiodides with Protonated Small Tetra-azacyclophanes
Inorganics, 2019, 7, 48
1556690 CIFC14 H23 I14 N4 OP 1 21/m 19.226; 13.06; 17.377
90; 104.671; 90
2025.5Savastano, M.; Martinez-Camarena, A.; Bazzicalupi, C.; Delgado-Pinar, E.; Llinares, J.M.; Mariani, P.; Verdejo, B.; Garcia-Espana, E.; Bianchi, A.
Stabilization of Supramolecular Networks of Polyiodides with Protonated Small Tetra-azacyclophanes
Inorganics, 2019, 7, 48
1556691 CIFC15 H25 Cl3 Cu N2 O4P -17.706; 10.274; 13.666
93.846; 92.271; 107.216
1029.1Butsch, K.; Sandleben, A.; Dokoohaki, M.H.; Zolghadr, A.R.; Klein, A.
Pyridine-2,6-Dicarboxylic Acid Esters (pydicR2) as O,N,O-Pincer Ligands in CuII Complexes
Inorganics, 2019, 7, 53
1556692 CIFC14 H6 Cl2 Cu3 N2 O14P -18.185; 9.5; 9.682
69.01; 66.97; 89.04
640.2Butsch, K.; Sandleben, A.; Dokoohaki, M.H.; Zolghadr, A.R.; Klein, A.
Pyridine-2,6-Dicarboxylic Acid Esters (pydicR2) as O,N,O-Pincer Ligands in CuII Complexes
Inorganics, 2019, 7, 53
1556693 CIFC19 H11 I2 N O4P b c a13.52; 14.455; 19.496
90; 90; 90
3810Butsch, K.; Sandleben, A.; Dokoohaki, M.H.; Zolghadr, A.R.; Klein, A.
Pyridine-2,6-Dicarboxylic Acid Esters (pydicR2) as O,N,O-Pincer Ligands in CuII Complexes
Inorganics, 2019, 7, 53
1556694 CIFC10 H12 N4 NiC 1 2/c 19.5916; 33.666; 13.3219
90; 105.255; 90
4150.2Wang, D.; Moutet, J.; Tricoire, M.; Cordier, M.; Nocton, G.
Reactive Heterobimetallic Complex Combining Divalent Ytterbium and Dimethyl Nickel Fragments
Inorganics, 2019, 7, 58
1556695 CIFC37 H50 N4 Ni YbP -19.4362; 10.7558; 17.0271
103.204; 94.65; 93.872
1670.3Wang, D.; Moutet, J.; Tricoire, M.; Cordier, M.; Nocton, G.
Reactive Heterobimetallic Complex Combining Divalent Ytterbium and Dimethyl Nickel Fragments
Inorganics, 2019, 7, 58
1556696 CIFC56 H53 B Br Ir O3 P4C 1 2/c 140.6382; 12.2295; 24.2274
90; 125.09; 90
9852.3Maser, L.; Schneider, C.; Alig, L.; Langer, R.
Comparing the Acidity of (R3P)2BH-Based Donor Groups in Iridium Pincer Complexes
Inorganics, 2019, 7, 61
1556697 CIFC43 H45 Br2 N5 PdP 1 21/n 120.957; 8.1726; 22.929
90; 106.623; 90
3763Messelberger, J.; Grunwald, A.; Stegner, P.; Senft, L.; Heinemann, F.W.; Munz, D.
Transmetalation from Magnesium-NHCs-Convenient Synthesis of Chelating pi-Acidic NHC Complexes
Inorganics, 2019, 7, 65
1556698 CIFC50 H60 Br2 Mg N8P 1 21/n 119.086; 12.8472; 20.6882
90; 111.643; 90
4715.1Messelberger, J.; Grunwald, A.; Stegner, P.; Senft, L.; Heinemann, F.W.; Munz, D.
Transmetalation from Magnesium-NHCs-Convenient Synthesis of Chelating pi-Acidic NHC Complexes
Inorganics, 2019, 7, 65
1556699 CIFC21 H19 N O6P 21 21 216.89532; 12.63419; 20.7068
90; 90; 90
1803.91Bangalore, Pavan K.; Vagolu, Siva K.; Bollikanda, Rakesh K.; Veeragoni, Dileep K.; Choudante, Pallavi C.; Misra, Sunil; Sriram, Dharmarajan; Sridhar, Balasubramanian; Kantevari, Srinivas
Usnic Acid Enaminone-Coupled 1,2,3-Triazoles as Antibacterial and Antitubercular Agents
Journal of Natural Products, 2019
1556700 CIFC15 H26 O2P 21 21 217.6289; 13.0886; 14.6321
90; 90; 90
1461.04Varela, Kaitlyn; Arman, Hadi D.; Yoshimoto, Francis K.
Synthesis of [3,3-2H2]-Dihydroartemisinic Acid to Measure the Rate of Nonenzymatic Conversion of Dihydroartemisinic Acid to Artemisinin
Journal of Natural Products, 2019
1556701 CIFC15 H24 OP 21 21 215.1545; 14.0173; 18.2753
90; 90; 90
1320.43Varela, Kaitlyn; Arman, Hadi D.; Yoshimoto, Francis K.
Synthesis of [3,3-2H2]-Dihydroartemisinic Acid to Measure the Rate of Nonenzymatic Conversion of Dihydroartemisinic Acid to Artemisinin
Journal of Natural Products, 2019
1556702 CIF
HKL
C42 H38 F4 N8 Ni O8P b c a17.0353; 18.7759; 25.4659
90; 90; 90
8145.3Johnson, Corey R.; Basaran, Ismet; Rhaman, Md Mhahabubur; Powell, Douglas R.; Hossain, Md. Alamgir
Bis{2,6-bis[(<i>E</i>)-(4-fluorobenzylimino)methyl]pyridine}nickel(II) dinitrate dihydrate
IUCrData, 2019, 4, x191688
1556703 CIFC65.25 N4 O8 S2P -122.2613; 26.916; 28.2117
83.387; 73.393; 69.33
15154.3Su, Feng; Chen, Shuqi; Mo, Xiaogang; Wu, Kongchuan; Wu, Jiajun; Lin, Weidong; Lin, Zhiwei; Lin, Jianbin; Zhang, Hui-Jun; Wen, Ting-Bin
Trisulfur radical anion-triggered stitching thienannulation: rapid access to largely π-extended thienoacenes
Chemical Science, 2020, 11, 1503-1509
1556704 CIFC37 N4 O8 S3P 1 21 122.0328; 21.2168; 33.589
90; 102.198; 90
15347.2Su, Feng; Chen, Shuqi; Mo, Xiaogang; Wu, Kongchuan; Wu, Jiajun; Lin, Weidong; Lin, Zhiwei; Lin, Jianbin; Zhang, Hui-Jun; Wen, Ting-Bin
Trisulfur radical anion-triggered stitching thienannulation: rapid access to largely π-extended thienoacenes
Chemical Science, 2020, 11, 1503-1509
1556705 CIFC16 H32 Cu N6 O4P 1 21/c 124.916; 9.3586; 9.3255
90; 92.291; 90
2172.8Nesterova, O.V.; Kopylovich, M.N.; Nesterov, D.S.
A Comparative Study of the Catalytic Behaviour of Alkoxy-1,3,5-Triazapentadiene Copper(II) Complexes in Cyclohexane Oxidation
Inorganics, 2019, 7, 82
1556706 CIFC10 H16 Cl2 Cu N4 O2P -15.6535; 10.3149; 13.5498
108.336; 95.921; 98.615
732.01Gayfullina, R.; Jaaskelainen, S.; Koshevoy, I.O.; Hirva, P.
Activation of the Cyano Group at Imidazole via Copper Stimulated Alcoholysis
Inorganics, 2019, 7, 87
1556707 CIFC14 H16 Cl4 Cu2 N8 O2P -17.1887; 7.4368; 10.5356
82.585; 89.776; 84.799
556.22Gayfullina, R.; Jaaskelainen, S.; Koshevoy, I.O.; Hirva, P.
Activation of the Cyano Group at Imidazole via Copper Stimulated Alcoholysis
Inorganics, 2019, 7, 87
1556708 CIFC14 H16 Br4 Cu2 N8 O2P -17.3978; 7.6151; 10.7043
81.023; 88.684; 84.835
593.2Gayfullina, R.; Jaaskelainen, S.; Koshevoy, I.O.; Hirva, P.
Activation of the Cyano Group at Imidazole via Copper Stimulated Alcoholysis
Inorganics, 2019, 7, 87
1556709 CIFC8 H10 Br2 Cu N4 OP -17.3737; 8.4147; 10.6554
83.614; 76.079; 75.706
620.91Gayfullina, R.; Jaaskelainen, S.; Koshevoy, I.O.; Hirva, P.
Activation of the Cyano Group at Imidazole via Copper Stimulated Alcoholysis
Inorganics, 2019, 7, 87
1556710 CIFC25 H32 O6P 1 21 18.10721; 9.16946; 15.13501
90; 103.244; 90
1095.19Wen, Huiling; Yang, Xiliang; Liu, Qian; Li, Shuangjun; Li, Qin; Zang, Yi; Chen, Chunmei; Wang, Jianping; Zhu, Hucheng; Zhang, Yonghui
Structurally Diverse Meroterpenoids from a Marine-Derived Aspergillus sp. Fungus
Journal of Natural Products, 2019
1556711 CIFC27 H32 O8P 21 21 219.93659; 13.42999; 18.77544
90; 90; 90
2505.55Wen, Huiling; Yang, Xiliang; Liu, Qian; Li, Shuangjun; Li, Qin; Zang, Yi; Chen, Chunmei; Wang, Jianping; Zhu, Hucheng; Zhang, Yonghui
Structurally Diverse Meroterpenoids from a Marine-Derived Aspergillus sp. Fungus
Journal of Natural Products, 2019
1556712 CIFC24 H30 N0 O6I 1 2 117.78258; 7.75587; 15.80743
90; 98.7572; 90
2154.74Wen, Huiling; Yang, Xiliang; Liu, Qian; Li, Shuangjun; Li, Qin; Zang, Yi; Chen, Chunmei; Wang, Jianping; Zhu, Hucheng; Zhang, Yonghui
Structurally Diverse Meroterpenoids from a Marine-Derived Aspergillus sp. Fungus
Journal of Natural Products, 2019
1556713 CIFC33 H42 Cl0 N0 O12P 21 21 2112.44242; 13.08682; 18.83541
90; 90; 90
3067Wen, Huiling; Yang, Xiliang; Liu, Qian; Li, Shuangjun; Li, Qin; Zang, Yi; Chen, Chunmei; Wang, Jianping; Zhu, Hucheng; Zhang, Yonghui
Structurally Diverse Meroterpenoids from a Marine-Derived Aspergillus sp. Fungus
Journal of Natural Products, 2019
1556714 CIFC27 H32 O8P 21 21 2112.2786; 12.9947; 15.2581
90; 90; 90
2434.53Wen, Huiling; Yang, Xiliang; Liu, Qian; Li, Shuangjun; Li, Qin; Zang, Yi; Chen, Chunmei; Wang, Jianping; Zhu, Hucheng; Zhang, Yonghui
Structurally Diverse Meroterpenoids from a Marine-Derived Aspergillus sp. Fungus
Journal of Natural Products, 2019
1556715 CIFC8 H5 Cl N4P -13.7545; 10.0984; 11.3136
101.531; 93.707; 98.905
413.2Gärtner, Michael; Sauter, Eric; Nascimbeni, Giulia; Wiesner, Adrian; Kind, Martin; Werner, Philipp; Schuch, Christian; Abu-Husein, Tarek; Asyuda, Andika; Bats, Jan W.; Bolte, Michael; Zojer, Egbert; Terfort, Andreas; Zharnikov, Michael
Self-Assembled Monolayers with Distributed Dipole Moments Originating from Bipyrimidine Units
The Journal of Physical Chemistry C, 2019
1556716 CIFC20 H22 N8 O2 S4C 1 2/c 131.892; 5.1921; 14.655
90; 101.697; 90
2376.3Gärtner, Michael; Sauter, Eric; Nascimbeni, Giulia; Wiesner, Adrian; Kind, Martin; Werner, Philipp; Schuch, Christian; Abu-Husein, Tarek; Asyuda, Andika; Bats, Jan W.; Bolte, Michael; Zojer, Egbert; Terfort, Andreas; Zharnikov, Michael
Self-Assembled Monolayers with Distributed Dipole Moments Originating from Bipyrimidine Units
The Journal of Physical Chemistry C, 2019
1556717 CIFC8 H5 Br N4P 1 21/n 15.4612; 21.4321; 7.3001
90; 103.663; 90
830.26Gärtner, Michael; Sauter, Eric; Nascimbeni, Giulia; Wiesner, Adrian; Kind, Martin; Werner, Philipp; Schuch, Christian; Abu-Husein, Tarek; Asyuda, Andika; Bats, Jan W.; Bolte, Michael; Zojer, Egbert; Terfort, Andreas; Zharnikov, Michael
Self-Assembled Monolayers with Distributed Dipole Moments Originating from Bipyrimidine Units
The Journal of Physical Chemistry C, 2019
1556718 CIFC8 H6 N4 SP -13.8332; 10.1817; 10.393
91.928; 92.817; 90.42
404.89Gärtner, Michael; Sauter, Eric; Nascimbeni, Giulia; Wiesner, Adrian; Kind, Martin; Werner, Philipp; Schuch, Christian; Abu-Husein, Tarek; Asyuda, Andika; Bats, Jan W.; Bolte, Michael; Zojer, Egbert; Terfort, Andreas; Zharnikov, Michael
Self-Assembled Monolayers with Distributed Dipole Moments Originating from Bipyrimidine Units
The Journal of Physical Chemistry C, 2019
1556719 CIFC21 H19 N O SP -17.2702; 8.7819; 13.6782
98.564; 100.026; 104.633
814.84Ho, Hon Eong; Pagano, Angela; Rossi-Ashton, James A.; Donald, James R.; Epton, Ryan G.; Churchill, Jonathan C.; James, Michael J.; O'Brien, Peter; Taylor, Richard J. K.; Unsworth, William P.
Visible-light-induced intramolecular charge transfer in the radical spirocyclisation of indole-tethered ynones
Chemical Science, 2020, 11, 1353-1360
1556720 CIFC18 H13 N OP 1 21/c 111.42288; 8.41061; 28.0872
90; 100.454; 90
2653.64Ho, Hon Eong; Pagano, Angela; Rossi-Ashton, James A.; Donald, James R.; Epton, Ryan G.; Churchill, Jonathan C.; James, Michael J.; O'Brien, Peter; Taylor, Richard J. K.; Unsworth, William P.
Visible-light-induced intramolecular charge transfer in the radical spirocyclisation of indole-tethered ynones
Chemical Science, 2020, 11, 1353-1360
1556721 CIFC24 H19 N O SP 21 21 215.81156; 17.547; 18.1227
90; 90; 90
1848.07Ho, Hon Eong; Pagano, Angela; Rossi-Ashton, James A.; Donald, James R.; Epton, Ryan G.; Churchill, Jonathan C.; James, Michael J.; O'Brien, Peter; Taylor, Richard J. K.; Unsworth, William P.
Visible-light-induced intramolecular charge transfer in the radical spirocyclisation of indole-tethered ynones
Chemical Science, 2020, 11, 1353-1360
1556722 CIFC19 H15 N OP 21 21 217.4225; 9.90594; 19.5109
90; 90; 90
1434.57Ho, Hon Eong; Pagano, Angela; Rossi-Ashton, James A.; Donald, James R.; Epton, Ryan G.; Churchill, Jonathan C.; James, Michael J.; O'Brien, Peter; Taylor, Richard J. K.; Unsworth, William P.
Visible-light-induced intramolecular charge transfer in the radical spirocyclisation of indole-tethered ynones
Chemical Science, 2020, 11, 1353-1360
1556723 CIFC25 H21 N O SP -18.7543; 9.971; 11.6327
81.846; 74.281; 81.076
960.27Ho, Hon Eong; Pagano, Angela; Rossi-Ashton, James A.; Donald, James R.; Epton, Ryan G.; Churchill, Jonathan C.; James, Michael J.; O'Brien, Peter; Taylor, Richard J. K.; Unsworth, William P.
Visible-light-induced intramolecular charge transfer in the radical spirocyclisation of indole-tethered ynones
Chemical Science, 2020, 11, 1353-1360
1556724 CIFC24 Au4 Pt2 S8P 4/n :212.704; 12.704; 12.678
90; 90; 90
2046.1Hossain, Sakiat; Imai, Yukari; Motohashi, Yuichi; Chen, Zhaoheng; Suzuki, Daiki; Suzuki, Taiyo; Kataoka, Yuki; Hirata, Momoko; Ono, Tasuku; Kurashige, Wataru; Kawawaki, Tokuhisa; Yamamoto, Takahiro; Negishi, Yuichi
Understanding and designing one-dimensional assemblies of ligand-protected metal nanoclusters
Materials Horizons, 2020, 7, 796-803
1556725 CIFC98.5 H128 Au4 Pt2 S8C 1 2/c 144.07; 14.7091; 31.214
90; 98.553; 90
20009Hossain, Sakiat; Imai, Yukari; Motohashi, Yuichi; Chen, Zhaoheng; Suzuki, Daiki; Suzuki, Taiyo; Kataoka, Yuki; Hirata, Momoko; Ono, Tasuku; Kurashige, Wataru; Kawawaki, Tokuhisa; Yamamoto, Takahiro; Negishi, Yuichi
Understanding and designing one-dimensional assemblies of ligand-protected metal nanoclusters
Materials Horizons, 2020, 7, 796-803
1556726 CIFC67.5 H76 Au4 Pt2 S8P 1 21/n 118.0367; 30.034; 24.6
90; 94.589; 90
13283Hossain, Sakiat; Imai, Yukari; Motohashi, Yuichi; Chen, Zhaoheng; Suzuki, Daiki; Suzuki, Taiyo; Kataoka, Yuki; Hirata, Momoko; Ono, Tasuku; Kurashige, Wataru; Kawawaki, Tokuhisa; Yamamoto, Takahiro; Negishi, Yuichi
Understanding and designing one-dimensional assemblies of ligand-protected metal nanoclusters
Materials Horizons, 2020, 7, 796-803
1556727 CIFC56 Au4 Cl8 Pt2 S8I 41/a c d :230.11; 30.11; 15.878
90; 90; 90
14395Hossain, Sakiat; Imai, Yukari; Motohashi, Yuichi; Chen, Zhaoheng; Suzuki, Daiki; Suzuki, Taiyo; Kataoka, Yuki; Hirata, Momoko; Ono, Tasuku; Kurashige, Wataru; Kawawaki, Tokuhisa; Yamamoto, Takahiro; Negishi, Yuichi
Understanding and designing one-dimensional assemblies of ligand-protected metal nanoclusters
Materials Horizons, 2020, 7, 796-803
1556728 CIFC80 H104 Au4 Pt2 S8P -112.5672; 13.4332; 14.366
110.038; 107.982; 103.327
2007.8Hossain, Sakiat; Imai, Yukari; Motohashi, Yuichi; Chen, Zhaoheng; Suzuki, Daiki; Suzuki, Taiyo; Kataoka, Yuki; Hirata, Momoko; Ono, Tasuku; Kurashige, Wataru; Kawawaki, Tokuhisa; Yamamoto, Takahiro; Negishi, Yuichi
Understanding and designing one-dimensional assemblies of ligand-protected metal nanoclusters
Materials Horizons, 2020, 7, 796-803
1556729 CIFBa0.45 Ce1.04 K0.55 Na5.62 O76.74 Si18.76 Ti6C 1 2/c 135.908; 27.784; 33.126
90; 96.494; 90
32837Zolotarev, Jr, Andrey A.; Krivovichev, Sergey V.; Cámara, Fernando; Bindi, Luca; Zhitova, Elena S.; Hawthorne, Frank; Sokolova, Elena
Extraordinary structural complexity of ilmajokite: a multilevel hierarchical framework structure of natural origin
IUCrJ, 2020, 7, 121-128
1556730 CIFC20 H24 O2P 21 21 219.959; 11.731; 12.842
90; 90; 90
1500.3Fatima, Syeda Saima; Kumar, Rajesh; Choudhary, M. Iqbal; Yousuf, Sammer
Crystal engineering of exemestane to obtain a co-crystal with enhanced urease inhibition activity
IUCrJ, 2020, 7, 105-112
1556731 CIFC21 H28 N2 O2 SP 1 21 110.3797; 8.3706; 10.7275
90; 105.568; 90
897.9Fatima, Syeda Saima; Kumar, Rajesh; Choudhary, M. Iqbal; Yousuf, Sammer
Crystal engineering of exemestane to obtain a co-crystal with enhanced urease inhibition activity
IUCrJ, 2020, 7, 105-112
1556732 CIFC29.5 H24 Cl2 N2 PdP -112.1104; 13.4886; 16.6398
95.854; 90.584; 110.37
2531.84Liao, Guangfu; Xiao, Zefan; Chen, Xiaolin; Du, Cheng; Zhong, Liu; Cheung, Chi Shing; Gao, Haiyang
Fast and Regioselective Polymerization of para-Alkoxystyrene by Palladium Catalysts for Precision Production of High-Molecular-Weight Polystyrene Derivatives
Macromolecules, 2019
1556733 CIFC82 H69 B F24 N2 O PdP 1 21/c 117.8991; 17.9848; 24.2721
90; 98.602; 90
7725.6Liao, Guangfu; Xiao, Zefan; Chen, Xiaolin; Du, Cheng; Zhong, Liu; Cheung, Chi Shing; Gao, Haiyang
Fast and Regioselective Polymerization of para-Alkoxystyrene by Palladium Catalysts for Precision Production of High-Molecular-Weight Polystyrene Derivatives
Macromolecules, 2019
1556734 CIF
HKL
Paper
C31 H24 Br2 Cl2 N2 OC 1 2/c 117.7619; 12.7435; 28.2194
90; 102.478; 90
6236.5Devika, S.; Shraddha, K. N.; Begum, Noor Shahina
2-[4,5-Bis(4-bromophenyl)-1-(4-<i>tert</i>-butylphenyl)-1<i>H</i>-imidazol-2-yl]-4,6-dichlorophenol
IUCrData, 2019, 4, x191672
1556735 CIFAl7 B3 K Mg2 O28 Si6R 3 m :H15.955; 15.955; 7.227
90; 90; 120
1593.2Lussier, A.; Ball, N.A.; Hawthorne, F.C.; Henry, D.J.; Shimizu, R.; Ogasawara, Y.; Ota, T.
Maruyamaite, K(MgAl2)(Al5Mg)Si6O18(BO3)3O, a potassium-dominant tourmaline from the ultrahigh-pressure Kokchetav massif, northern Kazakhstan: Description and crystal structure
American Mineralogist, 2016, 101, 355-361
1556736 CIF
Paper
C13 H22 S Si2P -17.2016; 9.7603; 12.2829
95.4952; 92.51; 101.346
840.86Lumpi, Daniel; Kautny, Paul; Stöger, Berthold; Fröhlich, Johannes
Crystal chemistry of layered structures formed by linear rigid silyl-capped molecules.
IUCrJ, 2015, 2, 584-600
1556737 CIFC22 H30 S2 Si2C 1 2/c 134.148; 6.869; 10.3442
90; 98.343; 90
2400.7Lumpi, Daniel; Kautny, Paul; Stöger, Berthold; Fröhlich, Johannes
Crystal chemistry of layered structures formed by linear rigid silyl-capped molecules.
IUCrJ, 2015, 2, 584-600
1556738 CIFC22 H30 O4 S2 Si2P -16.8197; 12.1073; 16.1123
92.3607; 93.9781; 98.3425
1311.34Lumpi, Daniel; Kautny, Paul; Stöger, Berthold; Fröhlich, Johannes
Crystal chemistry of layered structures formed by linear rigid silyl-capped molecules.
IUCrJ, 2015, 2, 584-600
1556739 CIFC22 H30 O4 S2 Si2P -17.3096; 11.3935; 18.7425
73.167; 105.319; 118.926
1293.21Lumpi, Daniel; Kautny, Paul; Stöger, Berthold; Fröhlich, Johannes
Crystal chemistry of layered structures formed by linear rigid silyl-capped molecules.
IUCrJ, 2015, 2, 584-600
1556740 CIFC22 H30 O4 S2 Si2P -15.73; 10.2961; 10.9801
85.9433; 79.7181; 80.115
627.39Lumpi, Daniel; Kautny, Paul; Stöger, Berthold; Fröhlich, Johannes
Crystal chemistry of layered structures formed by linear rigid silyl-capped molecules.
IUCrJ, 2015, 2, 584-600
1556741 CIFC22 H32 O2 S3 Si2C 1 2/c 134.344; 8.1665; 20.0791
90; 100.532; 90
5536.7Lumpi, Daniel; Kautny, Paul; Stöger, Berthold; Fröhlich, Johannes
Crystal chemistry of layered structures formed by linear rigid silyl-capped molecules.
IUCrJ, 2015, 2, 584-600
1556742 CIFC22 H32 O2 S3 Si2P c c n33.63; 8.271; 19.717
90; 90; 90
5484Lumpi, Daniel; Kautny, Paul; Stöger, Berthold; Fröhlich, Johannes
Crystal chemistry of layered structures formed by linear rigid silyl-capped molecules.
IUCrJ, 2015, 2, 584-600
1556743 CIFC22 H30 O2 S3 Si2C 1 2/c 131.8766; 8.4003; 10.0737
90; 95.684; 90
2684.2Lumpi, Daniel; Kautny, Paul; Stöger, Berthold; Fröhlich, Johannes
Crystal chemistry of layered structures formed by linear rigid silyl-capped molecules.
IUCrJ, 2015, 2, 584-600
1556744 CIFC22 H30 O8 S3 Si2P -110.5399; 13.8276; 19.9987
79.94; 84.589; 89.771
2856.81Lumpi, Daniel; Kautny, Paul; Stöger, Berthold; Fröhlich, Johannes
Crystal chemistry of layered structures formed by linear rigid silyl-capped molecules.
IUCrJ, 2015, 2, 584-600
1556745 CIFC22 H38 S2 Si2P 21 21 217.7849; 10.5146; 31.2712
90; 90; 90
2559.7Lumpi, Daniel; Kautny, Paul; Stöger, Berthold; Fröhlich, Johannes
Crystal chemistry of layered structures formed by linear rigid silyl-capped molecules.
IUCrJ, 2015, 2, 584-600
1556746 CIFC20 H28 S3 Si2I 1 2/c 134.443; 6.7415; 10.1978
90; 96.889; 90
2350.8Lumpi, Daniel; Kautny, Paul; Stöger, Berthold; Fröhlich, Johannes
Crystal chemistry of layered structures formed by linear rigid silyl-capped molecules.
IUCrJ, 2015, 2, 584-600
1556747 CIFCu1.95 SeR -3 m :H4.0922; 4.0922; 20.459
90; 90; 120
296.71Eikeland, Espen; Blichfeld, Anders B.; Borup, Kasper A.; Zhao, Kunpeng; Overgaard, Jacob; Shi, Xun; Chen, Lidong; Iversen, Bo B.
Crystal structure across the β to α phase transition in thermoelectric Cu<sub>2-<i>x</i></sub> Se.
IUCrJ, 2017, 4, 476-485
1556748 CIFCu1.95 SeR -3 m :H4.1227; 4.1227; 20.449
90; 90; 120
301Eikeland, Espen; Blichfeld, Anders B.; Borup, Kasper A.; Zhao, Kunpeng; Overgaard, Jacob; Shi, Xun; Chen, Lidong; Iversen, Bo B.
Crystal structure across the β to α phase transition in thermoelectric Cu<sub>2-<i>x</i></sub> Se.
IUCrJ, 2017, 4, 476-485
1556749 CIFCu1.95 SeR -3 m :H4.1299; 4.1299; 20.393
90; 90; 120
301.22Eikeland, Espen; Blichfeld, Anders B.; Borup, Kasper A.; Zhao, Kunpeng; Overgaard, Jacob; Shi, Xun; Chen, Lidong; Iversen, Bo B.
Crystal structure across the β to α phase transition in thermoelectric Cu<sub>2-<i>x</i></sub> Se.
IUCrJ, 2017, 4, 476-485
1556750 CIFCu1.95 SeR -3 m :H4.1323; 4.1323; 20.358
90; 90; 120
301.06Eikeland, Espen; Blichfeld, Anders B.; Borup, Kasper A.; Zhao, Kunpeng; Overgaard, Jacob; Shi, Xun; Chen, Lidong; Iversen, Bo B.
Crystal structure across the β to α phase transition in thermoelectric Cu<sub>2-<i>x</i></sub> Se.
IUCrJ, 2017, 4, 476-485
1556751 CIFCu1.95 SeR -3 m :H4.1327; 4.1327; 20.281
90; 90; 120
299.98Eikeland, Espen; Blichfeld, Anders B.; Borup, Kasper A.; Zhao, Kunpeng; Overgaard, Jacob; Shi, Xun; Chen, Lidong; Iversen, Bo B.
Crystal structure across the β to α phase transition in thermoelectric Cu<sub>2-<i>x</i></sub> Se.
IUCrJ, 2017, 4, 476-485
1556752 CIFCu1.95 SeF m -3 m5.8449; 5.8449; 5.8449
90; 90; 90
199.678Eikeland, Espen; Blichfeld, Anders B.; Borup, Kasper A.; Zhao, Kunpeng; Overgaard, Jacob; Shi, Xun; Chen, Lidong; Iversen, Bo B.
Crystal structure across the β to α phase transition in thermoelectric Cu<sub>2-<i>x</i></sub> Se.
IUCrJ, 2017, 4, 476-485
1556753 CIFCu1.94 SeF m -3 m5.8538; 5.8538; 5.8538
90; 90; 90
200.592Eikeland, Espen; Blichfeld, Anders B.; Borup, Kasper A.; Zhao, Kunpeng; Overgaard, Jacob; Shi, Xun; Chen, Lidong; Iversen, Bo B.
Crystal structure across the β to α phase transition in thermoelectric Cu<sub>2-<i>x</i></sub> Se.
IUCrJ, 2017, 4, 476-485
1556754 CIFCu1.77 SeR -3 m :H4.1017; 4.1017; 20.42
90; 90; 120
297.52Eikeland, Espen; Blichfeld, Anders B.; Borup, Kasper A.; Zhao, Kunpeng; Overgaard, Jacob; Shi, Xun; Chen, Lidong; Iversen, Bo B.
Crystal structure across the β to α phase transition in thermoelectric Cu<sub>2-<i>x</i></sub> Se.
IUCrJ, 2017, 4, 476-485
1556755 CIFCu1.89 SeR -3 m :H4.1019; 4.1019; 20.533
90; 90; 120
299.2Eikeland, Espen; Blichfeld, Anders B.; Borup, Kasper A.; Zhao, Kunpeng; Overgaard, Jacob; Shi, Xun; Chen, Lidong; Iversen, Bo B.
Crystal structure across the β to α phase transition in thermoelectric Cu<sub>2-<i>x</i></sub> Se.
IUCrJ, 2017, 4, 476-485
1556756 CIFNi Se5 Ta2C m c m3.5029; 12.8699; 15.6768
90; 90; 90
706.74Nakano, Akitoshi; Sugawara, Kento; Tamura, Shinya; Katayama, Naoyuki; Matsubayashi, Kazuyuki; Okada, Taku; Uwatoko, Yoshiya; Munakata, Kouji; Nakao, Akiko; Sagayama, Hajime; Kumai, Reiji; Sugimoto, Kunihisa; Maejima, Naoyuki; Machida, Akihiko; Watanuki, Tetsu; Sawa, Hiroshi
Pressure-induced coherent sliding-layer transition in the excitonic insulator Ta<sub>2</sub>NiSe<sub>5</sub>.
IUCrJ, 2018, 5, 158-165
1556757 CIFNi Se5 Ta2C m c m3.4375; 12.375; 15.4437
90; 90; 90
656.96Nakano, Akitoshi; Sugawara, Kento; Tamura, Shinya; Katayama, Naoyuki; Matsubayashi, Kazuyuki; Okada, Taku; Uwatoko, Yoshiya; Munakata, Kouji; Nakao, Akiko; Sagayama, Hajime; Kumai, Reiji; Sugimoto, Kunihisa; Maejima, Naoyuki; Machida, Akihiko; Watanuki, Tetsu; Sawa, Hiroshi
Pressure-induced coherent sliding-layer transition in the excitonic insulator Ta<sub>2</sub>NiSe<sub>5</sub>.
IUCrJ, 2018, 5, 158-165
1556758 CIFNi Se5 Ta2P m n m :23.437; 5.861; 15.512
90; 90; 90
312.48Nakano, Akitoshi; Sugawara, Kento; Tamura, Shinya; Katayama, Naoyuki; Matsubayashi, Kazuyuki; Okada, Taku; Uwatoko, Yoshiya; Munakata, Kouji; Nakao, Akiko; Sagayama, Hajime; Kumai, Reiji; Sugimoto, Kunihisa; Maejima, Naoyuki; Machida, Akihiko; Watanuki, Tetsu; Sawa, Hiroshi
Pressure-induced coherent sliding-layer transition in the excitonic insulator Ta<sub>2</sub>NiSe<sub>5</sub>.
IUCrJ, 2018, 5, 158-165
1556759 CIFNi Se5 Ta2P 1 2/n 13.437; 5.849; 15.512
90; 90.53; 90
311.8Nakano, Akitoshi; Sugawara, Kento; Tamura, Shinya; Katayama, Naoyuki; Matsubayashi, Kazuyuki; Okada, Taku; Uwatoko, Yoshiya; Munakata, Kouji; Nakao, Akiko; Sagayama, Hajime; Kumai, Reiji; Sugimoto, Kunihisa; Maejima, Naoyuki; Machida, Akihiko; Watanuki, Tetsu; Sawa, Hiroshi
Pressure-induced coherent sliding-layer transition in the excitonic insulator Ta<sub>2</sub>NiSe<sub>5</sub>.
IUCrJ, 2018, 5, 158-165
1556760 CIFC11 H11 N O5P -16.5133; 8.1853; 11.4965
103.458; 93.925; 113.018
539.85Kaur, Ramanpreet; Gautam, Raj; Cherukuvada, Suryanarayan; Guru Row, Tayur N.
Do carboximide-carboxylic acid combinations form co-crystals? The role of hydroxyl substitution on the formation of co-crystals and eutectics.
IUCrJ, 2015, 2, 341-351
1556761 CIFC11 H11 N O6P -16.7358; 6.9119; 12.3937
74.468; 85.298; 73.28
532.43Kaur, Ramanpreet; Gautam, Raj; Cherukuvada, Suryanarayan; Guru Row, Tayur N.
Do carboximide-carboxylic acid combinations form co-crystals? The role of hydroxyl substitution on the formation of co-crystals and eutectics.
IUCrJ, 2015, 2, 341-351
1556762 CIFC18 H17 N O10P 1 21/c 16.7323; 12.1142; 21.2077
90; 97.146; 90
1716.19Kaur, Ramanpreet; Gautam, Raj; Cherukuvada, Suryanarayan; Guru Row, Tayur N.
Do carboximide-carboxylic acid combinations form co-crystals? The role of hydroxyl substitution on the formation of co-crystals and eutectics.
IUCrJ, 2015, 2, 341-351
1556763 CIFC15 H16 N2 O9P 21 21 217.0213; 8.8214; 25.1416
90; 90; 90
1557.21Kaur, Ramanpreet; Gautam, Raj; Cherukuvada, Suryanarayan; Guru Row, Tayur N.
Do carboximide-carboxylic acid combinations form co-crystals? The role of hydroxyl substitution on the formation of co-crystals and eutectics.
IUCrJ, 2015, 2, 341-351
1556764 CIFC15 H16 N2 O9P -14.9225; 11.7839; 13.854
97.248; 96.773; 90.663
791.35Kaur, Ramanpreet; Gautam, Raj; Cherukuvada, Suryanarayan; Guru Row, Tayur N.
Do carboximide-carboxylic acid combinations form co-crystals? The role of hydroxyl substitution on the formation of co-crystals and eutectics.
IUCrJ, 2015, 2, 341-351
1556765 CIFC25 H29 N O17P -19.3161; 11.2092; 13.7362
102.926; 104.398; 96.571
1332.01Kaur, Ramanpreet; Gautam, Raj; Cherukuvada, Suryanarayan; Guru Row, Tayur N.
Do carboximide-carboxylic acid combinations form co-crystals? The role of hydroxyl substitution on the formation of co-crystals and eutectics.
IUCrJ, 2015, 2, 341-351
1556766 CIFC11 H9 N O5P 1 21/n 110.8426; 6.5202; 16.1326
90; 106.391; 90
1094.16Kaur, Ramanpreet; Gautam, Raj; Cherukuvada, Suryanarayan; Guru Row, Tayur N.
Do carboximide-carboxylic acid combinations form co-crystals? The role of hydroxyl substitution on the formation of co-crystals and eutectics.
IUCrJ, 2015, 2, 341-351
1556767 CIFC11 H9 N O6I 1 2/a 112.5506; 6.6807; 26.1586
90; 98.815; 90
2167.41Kaur, Ramanpreet; Gautam, Raj; Cherukuvada, Suryanarayan; Guru Row, Tayur N.
Do carboximide-carboxylic acid combinations form co-crystals? The role of hydroxyl substitution on the formation of co-crystals and eutectics.
IUCrJ, 2015, 2, 341-351
1556768 CIFC25 H27 N O17P -19.3796; 10.3981; 15.6415
80.62; 72.913; 66.089
1331.3Kaur, Ramanpreet; Gautam, Raj; Cherukuvada, Suryanarayan; Guru Row, Tayur N.
Do carboximide-carboxylic acid combinations form co-crystals? The role of hydroxyl substitution on the formation of co-crystals and eutectics.
IUCrJ, 2015, 2, 341-351
1556769 CIFC19 H19 N O8P c a 2140.692; 5.4524; 16.3546
90; 90; 90
3628.6Kaur, Ramanpreet; Gautam, Raj; Cherukuvada, Suryanarayan; Guru Row, Tayur N.
Do carboximide-carboxylic acid combinations form co-crystals? The role of hydroxyl substitution on the formation of co-crystals and eutectics.
IUCrJ, 2015, 2, 341-351
1556770 CIFC12 H13 N O6P -16.6761; 9.1128; 10.9447
93.397; 107.694; 108.173
593.92Kaur, Ramanpreet; Gautam, Raj; Cherukuvada, Suryanarayan; Guru Row, Tayur N.
Do carboximide-carboxylic acid combinations form co-crystals? The role of hydroxyl substitution on the formation of co-crystals and eutectics.
IUCrJ, 2015, 2, 341-351
1556771 CIFC18 H16 N2 O2C 1 2/c 118.451; 10.54; 8.157
90; 98.824; 90
1567.5Garai, Mousumi; Biradha, Kumar
Exploration and exploitation of homologous series of bis(acrylamido)alkanes containing pyridyl and phenyl groups: β-sheet versus two-dimensional layers in solid-state photochemical [2 + 2] reactions.
IUCrJ, 2015, 2, 523-533
1556772 CIFC20 H20 N2 O2P 1 21/c 117.899; 4.8544; 9.5259
90; 101.847; 90
810.1Garai, Mousumi; Biradha, Kumar
Exploration and exploitation of homologous series of bis(acrylamido)alkanes containing pyridyl and phenyl groups: β-sheet versus two-dimensional layers in solid-state photochemical [2 + 2] reactions.
IUCrJ, 2015, 2, 523-533
1556773 CIFC24 H28 N2 O2P 1 21/c 120.243; 4.9756; 20.839
90; 99.148; 90
2072.2Garai, Mousumi; Biradha, Kumar
Exploration and exploitation of homologous series of bis(acrylamido)alkanes containing pyridyl and phenyl groups: β-sheet versus two-dimensional layers in solid-state photochemical [2 + 2] reactions.
IUCrJ, 2015, 2, 523-533
1556774 CIFC16 H14 N4 O2P 1 21/n 14.7315; 9.213; 16.39
90; 97.02; 90
709.1Garai, Mousumi; Biradha, Kumar
Exploration and exploitation of homologous series of bis(acrylamido)alkanes containing pyridyl and phenyl groups: β-sheet versus two-dimensional layers in solid-state photochemical [2 + 2] reactions.
IUCrJ, 2015, 2, 523-533
1556775 CIFC18 H26 N4 O6P 1 21/c 19.353; 10.9015; 19.9985
90; 94.547; 90
2032.7Garai, Mousumi; Biradha, Kumar
Exploration and exploitation of homologous series of bis(acrylamido)alkanes containing pyridyl and phenyl groups: β-sheet versus two-dimensional layers in solid-state photochemical [2 + 2] reactions.
IUCrJ, 2015, 2, 523-533
1556776 CIFC22 H30 N4 O4P 1 21/c 17.6364; 30.058; 4.8885
90; 95.523; 90
1116.9Garai, Mousumi; Biradha, Kumar
Exploration and exploitation of homologous series of bis(acrylamido)alkanes containing pyridyl and phenyl groups: β-sheet versus two-dimensional layers in solid-state photochemical [2 + 2] reactions.
IUCrJ, 2015, 2, 523-533
1556777 CIFC16 H14 N4 O2P 1 21/c 110.403; 7.16; 19.202
90; 101.156; 90
1403.2Garai, Mousumi; Biradha, Kumar
Exploration and exploitation of homologous series of bis(acrylamido)alkanes containing pyridyl and phenyl groups: β-sheet versus two-dimensional layers in solid-state photochemical [2 + 2] reactions.
IUCrJ, 2015, 2, 523-533
1556778 CIFC18 H18 N4 O2C 1 2/c 134.566; 9.3338; 10.4191
90; 100.401; 90
3306.3Garai, Mousumi; Biradha, Kumar
Exploration and exploitation of homologous series of bis(acrylamido)alkanes containing pyridyl and phenyl groups: β-sheet versus two-dimensional layers in solid-state photochemical [2 + 2] reactions.
IUCrJ, 2015, 2, 523-533
1556779 CIFC18 H18 N4 O2P 1 21/n 14.7967; 11.547; 14.726
90; 96.451; 90
810.5Garai, Mousumi; Biradha, Kumar
Exploration and exploitation of homologous series of bis(acrylamido)alkanes containing pyridyl and phenyl groups: β-sheet versus two-dimensional layers in solid-state photochemical [2 + 2] reactions.
IUCrJ, 2015, 2, 523-533
1556780 CIFC20 H26 N4 O4P 1 21/c 112.78; 4.681; 16.21
90; 93.42; 90
968Garai, Mousumi; Biradha, Kumar
Exploration and exploitation of homologous series of bis(acrylamido)alkanes containing pyridyl and phenyl groups: β-sheet versus two-dimensional layers in solid-state photochemical [2 + 2] reactions.
IUCrJ, 2015, 2, 523-533
1556781 CIFC22 H30 N4 O4P 1 21/n 17.372; 4.9035; 31.586
90; 90.197; 90
1141.78Garai, Mousumi; Biradha, Kumar
Exploration and exploitation of homologous series of bis(acrylamido)alkanes containing pyridyl and phenyl groups: β-sheet versus two-dimensional layers in solid-state photochemical [2 + 2] reactions.
IUCrJ, 2015, 2, 523-533
1556782 CIFC14 H12 F4 I N3 OP 1 21/c 113.9735; 17.2451; 13.6166
90; 105.489; 90
3162.1Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556783 CIFC16 H18 Br N3 OP -17.809; 9.6156; 11.452
101.314; 94.225; 113.541
761.9Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556784 CIFC23 H22 Br2 N2 O4P -19.3718; 9.6497; 14.1666
98.672; 105.769; 110.884
1107.38Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556785 CIFC14 H15 Br N2 O2P 1 21/c 113.5603; 8.17; 12.2863
90; 92.157; 90
1360.2Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556786 CIFC31 H19 F4 I N2 O4C 1 2 125.216; 6.0746; 19.0419
90; 107.453; 90
2782.5Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556787 CIFC17 H13 I N2 O2P -16.2888; 7.4027; 8.1348
84.773; 82.604; 83.781
372.2Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556788 CIFC19 H17 I N2 O2P 1 n 110.7653; 7.3634; 11.4066
90; 109.025; 90
854.8Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556789 CIFC14 H13 Br F4 N2 OP -14.4175; 12.5878; 13.4274
80.827; 82.672; 87.809
730.96Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556790 CIFC19 H13 Br F4 N2 O2P -14.8727; 10.7621; 16.595
87.808; 85.332; 83.646
861.66Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556791 CIFC15 H14 F4 I N3 OP 1 21/c 14.1573; 14.8817; 26.2084
90; 91.345; 90
1621.01Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556792 CIFC19 H14 F4 I N3 OP 1 21/n 16.2801; 11.2226; 26.846
90; 95.661; 90
1882.9Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556793 CIFC15 H13 F4 I N2 O2P n a 2117.5616; 14.8078; 6.1199
90; 90; 90
1591.47Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556794 CIFC17 H9 F4 I N2 O2P 1 21/c 112.1699; 11.1933; 12.2448
90; 104.562; 90
1614.42Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556795 CIFC26 H22 Br2 N2 O4P -17.1108; 7.4624; 11.2299
93.434; 94.022; 103.373
576.53Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556796 CIFC24 H18 Br2 N2 O4P 1 21/c 111.0467; 28.9658; 10.7956
90; 110.603; 90
3233.4Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556797 CIFC26 H14 Br2 F8 N4 O2P -15.837; 12.8464; 18.1146
103.537; 96.861; 93.06
1306.46Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556798 CIFC22 H10 Br2 F8 N2 O2P 1 21/c 113.6342; 5.8333; 13.3118
90; 90.944; 90
1058.58Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556799 CIFC24 H14 Br2 F8 N2 O2C 1 2/c 125.9125; 4.6925; 20.0909
90; 103.464; 90
2375.8Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556800 CIFC10 H5 F4 I N2 O2P 1 21/n 111.701; 4.6121; 21.594
90; 103.591; 90
1132.7Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556801 CIFC12 H5 F4 I N2 OP 1 21/n 112.7258; 4.9322; 20.729
90; 106.074; 90
1250.2Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556802 CIFC11 H5 F4 I N2 O3P -14.2485; 11.6204; 13.8288
110.206; 95.97; 98.531
624.68Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556803 CIFC13 H5 F4 I N2 O2P 1 21/c 17.4234; 35.8851; 10.0949
90; 101.028; 90
2639.5Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556804 CIFC13 H9 Br N2 O2P -17.363; 7.48; 12.446
80.617; 84.893; 62.018
597.17Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556805 CIFC12 H5 Br F4 N2 OP 1 21/n 112.2763; 5.0037; 20.666
90; 106.425; 90
1217.6Aakeröy, Christer B; Spartz, Christine L.; Dembowski, Sean; Dwyre, Savannah; Desper, John
A systematic structural study of halogen bonding versus hydrogen bonding within competitive supramolecular systems.
IUCrJ, 2015, 2, 498-510
1556806 CIFC42 H28C m c e26.7965; 7.1599; 14.1519
90; 90; 90
2715.19Hathwar, Venkatesha R.; Sist, Mattia; Jørgensen, Mads R V; Mamakhel, Aref H.; Wang, Xiaoping; Hoffmann, Christina M.; Sugimoto, Kunihisa; Overgaard, Jacob; Iversen, Bo Brummerstedt
Quantitative analysis of intermolecular interactions in orthorhombic rubrene.
IUCrJ, 2015, 2, 563-574
1556807 CIFC42 H28C m c e26.8106; 7.1602; 14.2029
90; 90; 90
2726.52Hathwar, Venkatesha R.; Sist, Mattia; Jørgensen, Mads R V; Mamakhel, Aref H.; Wang, Xiaoping; Hoffmann, Christina M.; Sugimoto, Kunihisa; Overgaard, Jacob; Iversen, Bo Brummerstedt
Quantitative analysis of intermolecular interactions in orthorhombic rubrene.
IUCrJ, 2015, 2, 563-574
1556808 CIFC12 H14 Cl2 N2P -16.5705; 7.6756; 12.6098
85.165; 76.785; 73.868
594.58Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556809 CIFC12 H14 Cl2 N2P -16.5705; 7.6756; 12.6098
85.165; 76.785; 73.868
594.58Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556810 CIFC6 H7 Cl NP -16.5742; 7.6702; 12.636
85.26; 76.735; 73.823
595.5Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556811 CIFC12 H14 Cl2 N2P -16.57; 7.676; 12.61
85.17; 76.79; 73.87
594.593Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556812 CIFC12 H14 Cl2 N2P -16.57; 7.676; 12.61
85.17; 76.79; 73.87
594.593Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556813 CIFC20 H14 Cl4P 1 21 113.551; 8.0183; 14.8834
90; 94.021; 90
1613.19Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556814 CIFC20 H14 Cl4P 1 21 113.551; 8.0183; 14.8834
90; 94.021; 90
1613.19Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556815 CIFC22 H16 Cl2P 1 21 113.589; 8.0415; 14.943
90; 93.998; 90
1628.9Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556816 CIFC14 H24 Cl2 N2 O2P 1 21/n 110.085; 9.811; 17.915
90; 101.639; 90
1736.1Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556817 CIFC14 H24 Cl2 N2 O2P 1 21/n 110.085; 9.811; 17.915
90; 101.639; 90
1736.1Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556818 CIFC14 H24 Cl2 N2 O2P 1 21/n 110.085; 9.811; 17.915
90; 101.639; 90
1736.1Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556819 CIFC14 H24 Cl2 N2 O2P 1 21/n 110.085; 9.811; 17.915
90; 101.64; 90
1736.13Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556820 CIFC14 H24 Cl2 N2 O2P 1 21/n 110.085; 9.811; 17.915
90; 101.64; 90
1736.13Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556821 CIFC20 H30 FeC m c e15.0905; 11.4741; 9.9484
90; 90; 90
1722.6Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556822 CIFC20 H30 FeC m c e15.0905; 11.4741; 9.9484
90; 90; 90
1722.6Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556823 CIFC20 H30 FeC m c e15.119; 11.492; 9.967
90; 90; 90
1731.7Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556824 CIFC20 H14P 21 21 218.0798; 8.1645; 20.3778
90; 90; 90
1344.27Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556825 CIFC20 H14P 21 21 218.0798; 8.1645; 20.3778
90; 90; 90
1344.27Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556826 CIFC20 H14P 21 21 218.1019; 8.1922; 20.442
90; 90; 90
1356.8Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556827 CIFC20 H14P 21 21 218.08; 8.165; 20.378
90; 90; 90
1344.4Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556828 CIFC20 H14P 21 21 218.08; 8.165; 20.378
90; 90; 90
1344.4Sanjuan-Szklarz, W Fabiola; Hoser, Anna A.; Gutmann, Matthias; Madsen, Anders Østergaard; Woźniak, Krzysztof
Yes, one can obtain better quality structures from routine X-ray data collection.
IUCrJ, 2016, 3, 61-70
1556829 CIFC30 H29 Cl2 Cu2 I2 N O2 S2P -111.7925; 11.9665; 13.4375
93.29; 95.681; 118.683
1643.38Park, In-Hyeok; Kang, Yunji; Lee, Eunji; Ju, Huiyeong; Kim, Seulgi; Seo, Sujin; Jung, Jong Hwa; Lee, Shim Sung
Snapshot and crystallographic observations of kinetic and thermodynamic products for NO<sub>2</sub>S<sub>2</sub> macrocyclic complexes.
IUCrJ, 2018, 5, 45-53
1556830 CIFC29 H27 Cd2 I4 N O2 S2C 1 2/c 123.3017; 13.4569; 26.9935
90; 102.963; 90
8248.6Park, In-Hyeok; Kang, Yunji; Lee, Eunji; Ju, Huiyeong; Kim, Seulgi; Seo, Sujin; Jung, Jong Hwa; Lee, Shim Sung
Snapshot and crystallographic observations of kinetic and thermodynamic products for NO<sub>2</sub>S<sub>2</sub> macrocyclic complexes.
IUCrJ, 2018, 5, 45-53
1556831 CIFC58 H54 Cd4 I8 N2 O4 S4P -111.66; 12.147; 12.585
75.142; 87.056; 86.996
1719.2Park, In-Hyeok; Kang, Yunji; Lee, Eunji; Ju, Huiyeong; Kim, Seulgi; Seo, Sujin; Jung, Jong Hwa; Lee, Shim Sung
Snapshot and crystallographic observations of kinetic and thermodynamic products for NO<sub>2</sub>S<sub>2</sub> macrocyclic complexes.
IUCrJ, 2018, 5, 45-53
1556832 CIFC116 H106 Cd8 I16 N4 O8 S8P -111.3166; 13.4404; 24.586
86.655; 89.396; 78.371
3656.5Park, In-Hyeok; Kang, Yunji; Lee, Eunji; Ju, Huiyeong; Kim, Seulgi; Seo, Sujin; Jung, Jong Hwa; Lee, Shim Sung
Snapshot and crystallographic observations of kinetic and thermodynamic products for NO<sub>2</sub>S<sub>2</sub> macrocyclic complexes.
IUCrJ, 2018, 5, 45-53
1556833 CIFC29 H27 Cd Cu I3 N O2 S2P -18.9645; 14.4098; 14.8826
65.853; 73.386; 81.546
1680.04Park, In-Hyeok; Kang, Yunji; Lee, Eunji; Ju, Huiyeong; Kim, Seulgi; Seo, Sujin; Jung, Jong Hwa; Lee, Shim Sung
Snapshot and crystallographic observations of kinetic and thermodynamic products for NO<sub>2</sub>S<sub>2</sub> macrocyclic complexes.
IUCrJ, 2018, 5, 45-53
1556834 CIFC0.26 Na0.01 O2 SiF d -3 m :219.442; 19.442; 19.442
90; 90; 90
7348.9Scheidl, K. S.; Effenberger, H. S.; Yagi, T.; Momma, K.; Miletich, Ronald
The hydrocarbon-bearing clathrasil chibaite and its host-guest structure at low temperature.
IUCrJ, 2018, 5, 595-607
1556835 CIFC0.26 Na0.01 O2 SiF d -3 m :219.4214; 19.4214; 19.4214
90; 90; 90
7325.6Scheidl, K. S.; Effenberger, H. S.; Yagi, T.; Momma, K.; Miletich, Ronald
The hydrocarbon-bearing clathrasil chibaite and its host-guest structure at low temperature.
IUCrJ, 2018, 5, 595-607
1556836 CIFC0.58 Na0.02 O4.53 Si2.27A 1 2/n 123.7844; 13.732; 23.784
90; 109.47; 90
7324Scheidl, K. S.; Effenberger, H. S.; Yagi, T.; Momma, K.; Miletich, Ronald
The hydrocarbon-bearing clathrasil chibaite and its host-guest structure at low temperature.
IUCrJ, 2018, 5, 595-607
1556837 CIFC0.26 Na0.01 O2 SiF d -3 m :219.4199; 19.4199; 19.4199
90; 90; 90
7323.9Scheidl, K. S.; Effenberger, H. S.; Yagi, T.; Momma, K.; Miletich, Ronald
The hydrocarbon-bearing clathrasil chibaite and its host-guest structure at low temperature.
IUCrJ, 2018, 5, 595-607
1556838 CIFC0.58 Na0.02 O4.53 Si2.27A 1 2/n 123.834; 13.76; 23.833
90; 109.47; 90
7369Scheidl, K. S.; Effenberger, H. S.; Yagi, T.; Momma, K.; Miletich, Ronald
The hydrocarbon-bearing clathrasil chibaite and its host-guest structure at low temperature.
IUCrJ, 2018, 5, 595-607
1556839 CIFC0.26 Na0.01 O2 SiF d -3 m :219.3944; 19.3944; 19.3944
90; 90; 90
7295.1Scheidl, K. S.; Effenberger, H. S.; Yagi, T.; Momma, K.; Miletich, Ronald
The hydrocarbon-bearing clathrasil chibaite and its host-guest structure at low temperature.
IUCrJ, 2018, 5, 595-607
1556840 CIFC0.58 Na0.02 O4.53 Si2.27A 1 2/n 123.834; 13.76; 23.833
90; 109.47; 90
7369Scheidl, K. S.; Effenberger, H. S.; Yagi, T.; Momma, K.; Miletich, Ronald
The hydrocarbon-bearing clathrasil chibaite and its host-guest structure at low temperature.
IUCrJ, 2018, 5, 595-607
1556841 CIFC0.26 Na0.01 O2 SiF d -3 m :219.3944; 19.3944; 19.3944
90; 90; 90
7295.1Scheidl, K. S.; Effenberger, H. S.; Yagi, T.; Momma, K.; Miletich, Ronald
The hydrocarbon-bearing clathrasil chibaite and its host-guest structure at low temperature.
IUCrJ, 2018, 5, 595-607
1556842 CIFC0.58 Na0.02 O4.53 Si2.27A 1 2/n 123.7054; 13.6861; 23.7051
90; 109.47; 90
7251Scheidl, K. S.; Effenberger, H. S.; Yagi, T.; Momma, K.; Miletich, Ronald
The hydrocarbon-bearing clathrasil chibaite and its host-guest structure at low temperature.
IUCrJ, 2018, 5, 595-607
1556843 CIFC0.26 Na0.01 O2 SiF d -3 m :219.3944; 19.3944; 19.3944
90; 90; 90
7295.1Scheidl, K. S.; Effenberger, H. S.; Yagi, T.; Momma, K.; Miletich, Ronald
The hydrocarbon-bearing clathrasil chibaite and its host-guest structure at low temperature.
IUCrJ, 2018, 5, 595-607
1556844 CIFC45 H57 B N2 O2P -19.6381; 11.485; 19.0369
85.238; 75.946; 75.838
1981.44Bhunia, Mrinal; Sahoo, Sumeet Ranjan; Das, Arpan; Ahmed, Jasimuddin; P., Sreejyothi; Mandal, Swadhin K.
Transition metal-free catalytic reduction of primary amides using an abnormal NHC based potassium complex: integrating nucleophilicity with Lewis acidic activation
Chemical Science, 2020, 11, 1848-1854
1556845 CIFC244 H327 Ag31 Cl5 F24 O2 P6 Pt S16 Sb4P -121.515; 24.1156; 35.321
81.037; 78.006; 68.595
16625Kang, Xi; Jin, Shan; Xiong, Lin; Wei, Xiao; Zhou, Manman; Qin, Chenwanli; Pei, Yong; Wang, Shuxin; Zhu, Manzhou
Nanocluster growth <i>via</i> "graft-onto": effects on geometric structures and optical properties.
Chemical science, 2020, 11, 1691-1697
1556846 CIFC11 H13 F9 O2P 21 21 215.6044; 9.5819; 26.472
90; 90; 90
1421.57Sperandio, Céline; Rodriguez, Jean; Quintard, Adrien
Development of copper-catalyzed enantioselective decarboxylative aldolization for the preparation of perfluorinated 1,3,5-triols featuring supramolecular recognition properties.
Chemical science, 2020, 11, 1629-1635
1556847 CIFC7 H10 F6 O3P 1 21 14.9029; 9.8824; 10.7838
90; 100.543; 90
513.68Sperandio, Céline; Rodriguez, Jean; Quintard, Adrien
Development of copper-catalyzed enantioselective decarboxylative aldolization for the preparation of perfluorinated 1,3,5-triols featuring supramolecular recognition properties.
Chemical science, 2020, 11, 1629-1635
1556848 CIF
HKL
Paper
C16 H20 N2 O2 SP 1 21/n 114.4124; 14.9172; 15.1412
90; 100.377; 90
3202R, Shashi; Begum, Noor Shahina
Ethyl 4-(2,5-dimethylphenyl)-6-methyl-2-sulfanylidene-1,2,3,4-tetrahydropyrimidine-5-carboxylate
IUCrData, 2017, 2, x171440
1556849 CIFC16 H6 F6 N2 O2P b c n11.7327; 9.6358; 13.0361
90; 90; 90
1473.8Liu, Jingfeng; Meng, Qingjie; Li, Liying; Lu, Gewu; Yuan, Hang; Cui, Lei; Liu, Xia; Mu, Hongliang; Ji, Jingjing; Zhou, Defeng; Wang, Zhen; Yan, Jingling
A high-performance polycyanurate network derived from 4,4′-biscyanato-2,2′-trifluoromethylbiphenyl
Polymer Chemistry, 2020, 11, 784-788
1556850 CIFC20 H28 O3P 1 21 18.26597; 9.64323; 10.64668
90; 98.2546; 90
839.862Guo, Yong-Wei; Gong, Ben-Qiang; Yuan, Jie; Li, Hou-Jin; Mahmud, Taifo; Huang, Yun; Li, Jian-Feng; Yang, De-Po; Lan, Wen-Jian
l-Phenylalanine Alters the Privileged Secondary Metabolite Production in the Marine-Derived Fungus Trichoderma erinaceum F1-1
Journal of Natural Products, 2019
1556851 CIFC29 H31 N O S2P 1 21/c 15.512; 27.2877; 16.0208
90; 90; 90
2409.7Lee, Eunji; Ju, Huiyeong; Park, In-Hyeok; Park, Sunhong; Ikeda, Mari; Habata, Yoichi; Lee, Shim Sung
Mechanistic insights into heavy metal ion sensing by NOS<sub>2</sub>-macrocyclic fluorosensors via the structure-function relationship: influences of fluorophores, solvents and anions.
The Analyst, 2020, 145, 1667-1676
1556852 CIFC21 H24 N2 O S3P -111.4995; 13.626; 14.631
79.476; 69.652; 70.613
2021.8Lee, Eunji; Ju, Huiyeong; Park, In-Hyeok; Park, Sunhong; Ikeda, Mari; Habata, Yoichi; Lee, Shim Sung
Mechanistic insights into heavy metal ion sensing by NOS<sub>2</sub>-macrocyclic fluorosensors via the structure-function relationship: influences of fluorophores, solvents and anions.
The Analyst, 2020, 145, 1667-1676
1556853 CIFC174 H186 Ag6 Cl6 N6 O30 S12P a -325.8366; 25.8366; 25.8366
90; 90; 90
17246.7Lee, Eunji; Ju, Huiyeong; Park, In-Hyeok; Park, Sunhong; Ikeda, Mari; Habata, Yoichi; Lee, Shim Sung
Mechanistic insights into heavy metal ion sensing by NOS<sub>2</sub>-macrocyclic fluorosensors via the structure-function relationship: influences of fluorophores, solvents and anions.
The Analyst, 2020, 145, 1667-1676
1556854 CIFC22 H26 Ag Cl2 F6 N2 O P S3C 1 2 127.888; 14.9539; 7.2021
90; 95.118; 90
2991.5Lee, Eunji; Ju, Huiyeong; Park, In-Hyeok; Park, Sunhong; Ikeda, Mari; Habata, Yoichi; Lee, Shim Sung
Mechanistic insights into heavy metal ion sensing by NOS<sub>2</sub>-macrocyclic fluorosensors via the structure-function relationship: influences of fluorophores, solvents and anions.
The Analyst, 2020, 145, 1667-1676
1556855 CIFC24 H30 Cl2 Hg N2 O10 S3P 1 21/c 112.902; 21.339; 11.771
90; 116.33; 90
2904.5Lee, Eunji; Ju, Huiyeong; Park, In-Hyeok; Park, Sunhong; Ikeda, Mari; Habata, Yoichi; Lee, Shim Sung
Mechanistic insights into heavy metal ion sensing by NOS<sub>2</sub>-macrocyclic fluorosensors via the structure-function relationship: influences of fluorophores, solvents and anions.
The Analyst, 2020, 145, 1667-1676
1556856 CIFC21 H24 Hg I2 N2 O S3C m c 2110.0374; 31.171; 8.3311
90; 90; 90
2606.6Lee, Eunji; Ju, Huiyeong; Park, In-Hyeok; Park, Sunhong; Ikeda, Mari; Habata, Yoichi; Lee, Shim Sung
Mechanistic insights into heavy metal ion sensing by NOS<sub>2</sub>-macrocyclic fluorosensors via the structure-function relationship: influences of fluorophores, solvents and anions.
The Analyst, 2020, 145, 1667-1676
1556857 CIFC32 H54 O4P 21 21 216.2668; 14.648; 31.434
90; 90; 90
2885.5Li, Bin; Kuang, Yi; He, Jun-Bin; Tang, Rui; Xu, Lu-Lu; Leung, Chung-Hang; Ma, Dik-Lung; Qiao, Xue; Ye, Min
Antcamphorols A‒K, Cytotoxic and ROS Scavenging Triterpenoids from Antrodia camphorata
Journal of Natural Products, 2019
1556858 CIFC29 H44 O2P 21 21 2111.0367; 12.1537; 18.4758
90; 90; 90
2478.3Li, Bin; Kuang, Yi; He, Jun-Bin; Tang, Rui; Xu, Lu-Lu; Leung, Chung-Hang; Ma, Dik-Lung; Qiao, Xue; Ye, Min
Antcamphorols A–K, Cytotoxic and ROS Scavenging Triterpenoids from Antrodia camphorata
Journal of Natural Products, 2019
1556859 CIFC15 H16 N2 O2A e a 211.4176; 13.5604; 16.3722
90; 90; 90
2534.9Wen, Jin; Turowski, Michał; Dron, Paul I.; Chalupský, Jakub; Grotjahn, Robin; Maier, Toni M.; Fatur, Steven M.; Havlas, Zdeněk; Johnson, Justin C.; Kaupp, Martin; Michl, Josef
Electronic States of 2,3-Diamino-1,4-naphthoquinone and Its N-Alkylated Derivatives
The Journal of Physical Chemistry C, 2019
1556860 CIFC45 H44 Cl F5 N4 NiP 1 21/c 119.2423; 10.9261; 21.5899
90; 106.046; 90
4362.3Dong, Yuyang; Lukens, James T.; Clarke, Ryan M.; Zheng, Shao-Liang; Lancaster, Kyle M.; Betley, Theodore A.
Synthesis, characterization and C‒H amination reactivity of nickel iminyl complexes
Chemical Science, 2020, 11, 1260-1268
1556861 CIFC45 H50 F5 N3 NiP 1 21/c 112.0799; 14.6404; 24.1769
90; 91.408; 90
4274.5Dong, Yuyang; Lukens, James T.; Clarke, Ryan M.; Zheng, Shao-Liang; Lancaster, Kyle M.; Betley, Theodore A.
Synthesis, characterization and C‒H amination reactivity of nickel iminyl complexes
Chemical Science, 2020, 11, 1260-1268
1556862 CIFC44 H45 F5 N3 NiP -19.5949; 11.8426; 18.3253
92.953; 104.293; 100.626
1972.9Dong, Yuyang; Lukens, James T.; Clarke, Ryan M.; Zheng, Shao-Liang; Lancaster, Kyle M.; Betley, Theodore A.
Synthesis, characterization and C‒H amination reactivity of nickel iminyl complexes
Chemical Science, 2020, 11, 1260-1268
1556863 CIFC45 H49 F5 N3 NiP n a 2114.1294; 16.6197; 15.8282
90; 90; 90
3716.9Dong, Yuyang; Lukens, James T.; Clarke, Ryan M.; Zheng, Shao-Liang; Lancaster, Kyle M.; Betley, Theodore A.
Synthesis, characterization and C‒H amination reactivity of nickel iminyl complexes
Chemical Science, 2020, 11, 1260-1268
1556864 CIFC40 H39 F5 N3 NiP 1 21/c 117.7017; 15.1269; 13.141
90; 109.571; 90
3315.5Dong, Yuyang; Lukens, James T.; Clarke, Ryan M.; Zheng, Shao-Liang; Lancaster, Kyle M.; Betley, Theodore A.
Synthesis, characterization and C‒H amination reactivity of nickel iminyl complexes
Chemical Science, 2020, 11, 1260-1268
1556865 CIFC12 H8 I2 N2 O7P n a 218.2007; 7.7793; 24.6164
90; 90; 90
1570.42Zhang, Guangtao; Wang, Yuanxun; Xu, Jun; Sun, Jiyun; Sun, Fengxia; Zhang, Yilin; Zhang, Chenglin; Du, Yunfei
A new hypervalent iodine(iii/v) oxidant and its application to the synthesis of 2H-azirines
Chemical Science, 2020, 11, 947-953
1556866 CIFC36 H50 B2P -19.035; 12.0924; 14.7514
92.899; 103.022; 103.134
1520.32Su, Xiaojun; Baker, J. J.; Martin, Caleb D.
Dimeric boroles: effective sources of monomeric boroles for heterocycle synthesis.
Chemical science, 2020, 11, 126-131
1556867 CIFC32 H35 B OP 1 21/c 110.6036; 17.5824; 17.446
90; 125.621; 90
2643.98Su, Xiaojun; Baker, J. J.; Martin, Caleb D.
Dimeric boroles: effective sources of monomeric boroles for heterocycle synthesis.
Chemical science, 2020, 11, 126-131
1556868 CIFC34 H31 B OP b c a10.0358; 12.1076; 43.226
90; 90; 90
5252.4Su, Xiaojun; Baker, J. J.; Martin, Caleb D.
Dimeric boroles: effective sources of monomeric boroles for heterocycle synthesis.
Chemical science, 2020, 11, 126-131
1556869 CIFC61 H60 Cl2 N4 O2 RuP 1 21/c 111.5545; 17.3432; 25.028
90; 95.757; 90
4990.1Wang, Hai-Xu; Wan, Qingyun; Low, Kam-Hung; Zhou, Cong-Ying; Huang, Jie-Sheng; Zhang, Jun-Long; Che, Chi-Ming
Stable group 8 metal porphyrin mono- and bis(dialkylcarbene) complexes: synthesis, characterization, and catalytic activity.
Chemical science, 2020, 11, 2243-2259
1556870 CIFC64 H52 F4 N4 OsP -111.0536; 11.1353; 11.8926
97.46; 108.927; 107.647
1276.53Wang, Hai-Xu; Wan, Qingyun; Low, Kam-Hung; Zhou, Cong-Ying; Huang, Jie-Sheng; Zhang, Jun-Long; Che, Chi-Ming
Stable group 8 metal porphyrin mono- and bis(dialkylcarbene) complexes: synthesis, characterization, and catalytic activity.
Chemical science, 2020, 11, 2243-2259
1556871 CIFC59 H27 F20 Fe N5P 110.5317; 14.347; 17.434
76.71; 80.147; 84.826
2522.3Wang, Hai-Xu; Wan, Qingyun; Low, Kam-Hung; Zhou, Cong-Ying; Huang, Jie-Sheng; Zhang, Jun-Long; Che, Chi-Ming
Stable group 8 metal porphyrin mono- and bis(dialkylcarbene) complexes: synthesis, characterization, and catalytic activity.
Chemical science, 2020, 11, 2243-2259
1556872 CIFC59 H50 Cl3 D Fe N4P -111.3588; 13.5043; 16.5422
85.786; 84.24; 70.986
2384.6Wang, Hai-Xu; Wan, Qingyun; Low, Kam-Hung; Zhou, Cong-Ying; Huang, Jie-Sheng; Zhang, Jun-Long; Che, Chi-Ming
Stable group 8 metal porphyrin mono- and bis(dialkylcarbene) complexes: synthesis, characterization, and catalytic activity.
Chemical science, 2020, 11, 2243-2259
1556873 CIFC65.5 H39.5 F20 N8 RuC 1 2/c 124.815; 20.891; 24.043
90; 100.174; 90
12268Wang, Hai-Xu; Wan, Qingyun; Low, Kam-Hung; Zhou, Cong-Ying; Huang, Jie-Sheng; Zhang, Jun-Long; Che, Chi-Ming
Stable group 8 metal porphyrin mono- and bis(dialkylcarbene) complexes: synthesis, characterization, and catalytic activity.
Chemical science, 2020, 11, 2243-2259
1556874 CIFC48 H54 Cu F12 N6 O2 P2P 1 21/n 121.313; 9.951; 24.687
90; 107.778; 90
4986Ryan, Michael C.; Kim, Yeon Jung; Gerken, James B.; Wang, Fei; Aristov, Michael M.; Martinelli, Joseph R.; Stahl, Shannon S.
Mechanistic insights into copper-catalyzed aerobic oxidative coupling of N–N bonds
Chemical Science, 2020, 11, 1170-1175
1556875 CIFC311.2 H387.9 B90.2 F18 Fe4 N55.5 O36 S6C 1 c 133.357; 32.3478; 45.8124
90; 102.32; 90
48294.4Lu, Zhenpin; Ronson, Tanya K.; Nitschke, Jonathan R.
Reversible reduction drives anion ejection and C60 binding within an FeII4L6 cage
Chemical Science, 2020, 11, 1097-1101
1556876 CIFC26 H42 N2 S8 Sn2P -17.7711; 10.3961; 12.6341
113.062; 96.284; 98.114
914.39Xie, Jiaze; Boyn, Jan-Niklas; Filatov, Alexander S.; McNeece, Andrew J.; Mazziotti, David A.; Anderson, John S.
Redox, transmetalation, and stacking properties of tetrathiafulvalene-2,3,6,7-tetrathiolate bridged tin, nickel, and palladium compounds
Chemical Science, 2020, 11, 1066-1078
1556877 CIFC120 H88 B2 F48 Fe2 O2 S8 Sn2P 1 21/c 112.734; 31.568; 18.543
90; 107.358; 90
7115Xie, Jiaze; Boyn, Jan-Niklas; Filatov, Alexander S.; McNeece, Andrew J.; Mazziotti, David A.; Anderson, John S.
Redox, transmetalation, and stacking properties of tetrathiafulvalene-2,3,6,7-tetrathiolate bridged tin, nickel, and palladium compounds
Chemical Science, 2020, 11, 1066-1078
1556878 CIFC57 H53.5 B F24 N0.5 O0.5 S8 Sn2P 1 21/c 19.5804; 23.505; 30.294
90; 97.92; 90
6756.8Xie, Jiaze; Boyn, Jan-Niklas; Filatov, Alexander S.; McNeece, Andrew J.; Mazziotti, David A.; Anderson, John S.
Redox, transmetalation, and stacking properties of tetrathiafulvalene-2,3,6,7-tetrathiolate bridged tin, nickel, and palladium compounds
Chemical Science, 2020, 11, 1066-1078
1556879 CIFC122 H72 B2 F48 Ni2 P4 S8C 1 2/c 140.752; 18.985; 17.7197
90; 107.903; 90
13045.5Xie, Jiaze; Boyn, Jan-Niklas; Filatov, Alexander S.; McNeece, Andrew J.; Mazziotti, David A.; Anderson, John S.
Redox, transmetalation, and stacking properties of tetrathiafulvalene-2,3,6,7-tetrathiolate bridged tin, nickel, and palladium compounds
Chemical Science, 2020, 11, 1066-1078
1556880 CIFC90 H60 B F24 Ni2 P4 S8P -114.1624; 18.3974; 20.189
94.073; 103.397; 106.515
4852.9Xie, Jiaze; Boyn, Jan-Niklas; Filatov, Alexander S.; McNeece, Andrew J.; Mazziotti, David A.; Anderson, John S.
Redox, transmetalation, and stacking properties of tetrathiafulvalene-2,3,6,7-tetrathiolate bridged tin, nickel, and palladium compounds
Chemical Science, 2020, 11, 1066-1078
1556881 CIFC102 H92 B2 F48 O4 S8 Sn2P -112.9111; 15.863; 16.368
88.537; 88.979; 69.195
3132.6Xie, Jiaze; Boyn, Jan-Niklas; Filatov, Alexander S.; McNeece, Andrew J.; Mazziotti, David A.; Anderson, John S.
Redox, transmetalation, and stacking properties of tetrathiafulvalene-2,3,6,7-tetrathiolate bridged tin, nickel, and palladium compounds
Chemical Science, 2020, 11, 1066-1078
1556882 CIFC106 H68 B F24 Fe2 P4 Pd2 S8P -113.503; 19.054; 28.239
105.082; 91.975; 90.73
7009Xie, Jiaze; Boyn, Jan-Niklas; Filatov, Alexander S.; McNeece, Andrew J.; Mazziotti, David A.; Anderson, John S.
Redox, transmetalation, and stacking properties of tetrathiafulvalene-2,3,6,7-tetrathiolate bridged tin, nickel, and palladium compounds
Chemical Science, 2020, 11, 1066-1078
1556883 CIFC540 H360 B6 F144 P24 Pd12 S48P -129.421; 31.324; 35.123
92.011; 91.984; 99.304
31897Xie, Jiaze; Boyn, Jan-Niklas; Filatov, Alexander S.; McNeece, Andrew J.; Mazziotti, David A.; Anderson, John S.
Redox, transmetalation, and stacking properties of tetrathiafulvalene-2,3,6,7-tetrathiolate bridged tin, nickel, and palladium compounds
Chemical Science, 2020, 11, 1066-1078
1556884 CIFC40 H36 F6 N3 O3 PP 1 21 18.20579; 29.4208; 16.5731
90; 93.223; 90
3994.76Duwald, Romain; Bosson, Johann; Pascal, Simon; Grass, Stéphane; Zinna, Francesco; Besnard, Céline; Di Bari, Lorenzo; Jacquemin, Denis; Lacour, Jérôme
Merging polyacenes and cationic helicenes: from weak to intense chiroptical properties in the far red region
Chemical Science, 2020, 11, 1165-1169
1556885 CIFC61 H46 F6 N5 O2 PC 1 2/c 127.6234; 16.7146; 21.7661
90; 106.545; 90
9633.6Duwald, Romain; Bosson, Johann; Pascal, Simon; Grass, Stéphane; Zinna, Francesco; Besnard, Céline; Di Bari, Lorenzo; Jacquemin, Denis; Lacour, Jérôme
Merging polyacenes and cationic helicenes: from weak to intense chiroptical properties in the far red region
Chemical Science, 2020, 11, 1165-1169
1556886 CIFC95 H78 Cl6 F12 N6 O2 P2P 1 21/c 111.678; 12.9347; 27.785
90; 90.912; 90
4196.4Duwald, Romain; Bosson, Johann; Pascal, Simon; Grass, Stéphane; Zinna, Francesco; Besnard, Céline; Di Bari, Lorenzo; Jacquemin, Denis; Lacour, Jérôme
Merging polyacenes and cationic helicenes: from weak to intense chiroptical properties in the far red region
Chemical Science, 2020, 11, 1165-1169
1556887 CIFC40 H48 B2 Ca F48 O16I 41/a :219.597; 19.597; 36.7108
90; 90; 90
14098.5Li, Zhenyou; Fuhr, Olaf; Fichtner, Maximilian; Zhao-Karger, Zhirong
Towards stable and efficient electrolytes for room-temperature rechargeable calcium batteries
Energy & Environmental Science, 2019, 12, 3496
1556888 CIFC18 H14 F4 N2 O4 SP 1 21/c 114.8945; 12.1188; 10.2846
90; 105.825; 90
1786.05Korlyukov, Alexander A.; Malinska, Maura; Vologzhanina, Anna V.; Goizman, Mikhail S.; Trzybinski, Damian; Wozniak, Krzysztof
Charge density view on bicalutamide molecular interactions in the monoclinic polymorph and androgen receptor binding pocket
IUCrJ, 2020, 7, 71-82
1556889 CIFC54 H42 Cu2 N2 O8C 1 2/c 124.633; 12.093; 15.509
90; 108.48; 90
4382Yadava, Khushboo; Gallo, Gianpiero; Bette, Sebastian; Mulijanto, Caroline Evania; Karothu, Durga Prasad; Park, In-Hyeok; Medishetty, Raghavender; Naumov, Panče; Dinnebier, Robert E.; Vittal, Jagadese J.
Extraordinary anisotropic thermal expansion in photosalient crystals
IUCrJ, 2020, 7, 83-89
1556890 CIFC54 H40 Cu2 F2 N2 O8C 1 2/c 124.9699; 12.1074; 15.4675
90; 108.809; 90
4426.4Yadava, Khushboo; Gallo, Gianpiero; Bette, Sebastian; Mulijanto, Caroline Evania; Karothu, Durga Prasad; Park, In-Hyeok; Medishetty, Raghavender; Naumov, Panče; Dinnebier, Robert E.; Vittal, Jagadese J.
Extraordinary anisotropic thermal expansion in photosalient crystals
IUCrJ, 2020, 7, 83-89
1556891 CIFC54 H40 Cu2 F2 N2 O8C 1 2/c 125.1802; 12.0004; 15.5976
90; 108.802; 90
4461.7Yadava, Khushboo; Gallo, Gianpiero; Bette, Sebastian; Mulijanto, Caroline Evania; Karothu, Durga Prasad; Park, In-Hyeok; Medishetty, Raghavender; Naumov, Panče; Dinnebier, Robert E.; Vittal, Jagadese J.
Extraordinary anisotropic thermal expansion in photosalient crystals
IUCrJ, 2020, 7, 83-89
1556892 CIFC54 H40 Cu2 F2 N2 O8P -110.3725; 11.0398; 12.0294
71.354; 66.229; 65.356
1126.6Yadava, Khushboo; Gallo, Gianpiero; Bette, Sebastian; Mulijanto, Caroline Evania; Karothu, Durga Prasad; Park, In-Hyeok; Medishetty, Raghavender; Naumov, Panče; Dinnebier, Robert E.; Vittal, Jagadese J.
Extraordinary anisotropic thermal expansion in photosalient crystals
IUCrJ, 2020, 7, 83-89
1556893 CIFC5 H5 NP 21 21 215.392; 6.806; 11.261
90; 90; 90
413.3Giordano, Nico; Beavers, Christine M.; Campbell, Branton J.; Eigner, Václav; Gregoryanz, Eugene; Marshall, Willliam G.; Peña-Álvarez, Miriam; Teat, Simon J.; Vennari, Cara E.; Parsons, Simon
High-pressure polymorphism in pyridine
IUCrJ, 2020, 7, 58-70
1556894 CIFC5 H5 NP 41 21 25.4053; 5.4053; 13.4853
90; 90; 90
394Giordano, Nico; Beavers, Christine M.; Campbell, Branton J.; Eigner, Václav; Gregoryanz, Eugene; Marshall, Willliam G.; Peña-Álvarez, Miriam; Teat, Simon J.; Vennari, Cara E.; Parsons, Simon
High-pressure polymorphism in pyridine
IUCrJ, 2020, 7, 58-70
1556895 CIF
HKL
Paper
C42 H19 F16 Os P S4P 1 21/c 112.4008; 13.8892; 25.2321
90; 100.991; 90
4266.2Zeleny, Paulina; Arroyo, Maribel; Meléndez, Lidia; Bernès, Sylvain
Tetrakis(2,3,5,6-tetrafluorobenzenethiolato-κ<i>S</i>)(triphenylphosphane-κ<i>P</i>)osmium(IV): a monoclinic polymorph
IUCrData, 2019, 4, x191622
1556896 CIF
HKL
Paper
C52 H50 O8 P2P 1 21/c 125.1072; 8.8634; 21.3401
90; 112.444; 90
4389.2Leidecker, Benedict N.; Kubis, Christoph; Spannenberg, Anke; Franke, Robert; Börner, Armin
6,6'-[(3,3'-Di-<i>tert</i>-butyl-5,5'-dimethoxy-1,1'-biphenyl-2,2'-diyl)bis(oxy)]bis(dibenzo[<i>d</i>,<i>f</i>][1,3,2]dioxaphosphepine) benzene monosolvate
IUCrData, 2019, 4, x191636
1556897 CIF
HKL
Paper
C12 H10 N2 O2 SP 1 21/c 113.5979; 7.3148; 12.5931
90; 112.763; 90
1155.02Alicea-Velázquez, Nilda L.; Crundwell, Guy
(<i>E</i>)-1-(5-Methylthiophen-2-yl)-<i>N</i>-(4-nitrophenyl)methanimine
IUCrData, 2019, 4, x191601
1556898 CIF
HKL
Paper
C29 H26 Cl N O4P 1 21/n 110.519; 22.059; 11.246
90; 97.867; 90
2584.9Ameen, K. K. Mohammed; Ahamed, F. M. Mashood; Padusha, M. Syed Ali; Gunasekaran, B.
Diethyl 4-(3-chlorophenyl)-2,6-diphenyl-1,4-dihydropyridine-3,5-dicarboxylate
IUCrData, 2019, 4, x191644
1556899 CIFC144 H300 Ni6 S12P -113.0353; 18.6391; 19.8731
108.331; 108.152; 101.306
4117.5Zhuang, Zhihua; Chen, Wei
One-step rapid synthesis of Ni<sub>6</sub>(C<sub>12</sub>H<sub>25</sub>S)<sub>12</sub> nanoclusters for electrochemical sensing of ascorbic acid.
The Analyst, 2020, 145, 2621-2630
1556900 CIFC62 H79 Cl2 N5 O6 Pt SI 1 2/a 126.7934; 12.4321; 39.1414
90; 106.494; 90
12501.4Zhang, Zhihui; Tizzard, Graham J.; Williams, J. A. Gareth; Goldup, Stephen M.
Rotaxane PtII-complexes: mechanical bonding for chemically robust luminophores and stimuli responsive behaviour
Chemical Science, 2020, 11, 1839-1847
1556901 CIFC67 H79 B2 F8 N7 O6 PtP -110.1982; 18.2063; 19.7708
105.665; 99.693; 96.105
3439.2Zhang, Zhihui; Tizzard, Graham J.; Williams, J. A. Gareth; Goldup, Stephen M.
Rotaxane PtII-complexes: mechanical bonding for chemically robust luminophores and stimuli responsive behaviour
Chemical Science, 2020, 11, 1839-1847
1556902 CIFC65 H76 F6 N6 O6 Pt SbP -111.78747; 15.5279; 22.4447
101.252; 102.144; 103.723
3769.49Zhang, Zhihui; Tizzard, Graham J.; Williams, J. A. Gareth; Goldup, Stephen M.
Rotaxane PtII-complexes: mechanical bonding for chemically robust luminophores and stimuli responsive behaviour
Chemical Science, 2020, 11, 1839-1847
1556903 CIFC66 H77 B F4 N8 O5 PtP 1 21/n 121.738; 14.9289; 21.8888
90; 107.531; 90
6773.5Zhang, Zhihui; Tizzard, Graham J.; Williams, J. A. Gareth; Goldup, Stephen M.
Rotaxane PtII-complexes: mechanical bonding for chemically robust luminophores and stimuli responsive behaviour
Chemical Science, 2020, 11, 1839-1847
1556904 CIFC69 H85 Ag F12 N6 O6 Pt Sb2P 1 21/n 118.7462; 15.4022; 27.6759
90; 104.791; 90
7726.1Zhang, Zhihui; Tizzard, Graham J.; Williams, J. A. Gareth; Goldup, Stephen M.
Rotaxane PtII-complexes: mechanical bonding for chemically robust luminophores and stimuli responsive behaviour
Chemical Science, 2020, 11, 1839-1847
1556905 CIFC60 H72 B F4 N5 O5 PtP -112.2375; 14.6363; 18.2789
81.118; 76.017; 74.098
3041.7Zhang, Zhihui; Tizzard, Graham J.; Williams, J. A. Gareth; Goldup, Stephen M.
Rotaxane PtII-complexes: mechanical bonding for chemically robust luminophores and stimuli responsive behaviour
Chemical Science, 2020, 11, 1839-1847
1556906 CIFC67 H77 Ag F15 N7 O5 Pt Sb2.5P -113.0371; 18.3984; 18.4639
88.81; 89.789; 83.438
4398.8Zhang, Zhihui; Tizzard, Graham J.; Williams, J. A. Gareth; Goldup, Stephen M.
Rotaxane PtII-complexes: mechanical bonding for chemically robust luminophores and stimuli responsive behaviour
Chemical Science, 2020, 11, 1839-1847
1556907 CIFC23 H24 N2 O5 SP 21 21 230.4605; 11.6596; 6.1159
90; 90; 90
2172.11Dean, Conor; Rajkumar, Sundaram; Roesner, Stefan; Carson, Nessa; Clarkson, Guy J.; Wills, Martin; Jones, Matthew; Shipman, Michael
Readily accessible sp<sup>3</sup>-rich cyclic hydrazine frameworks exploiting nitrogen fluxionality.
Chemical science, 2020, 11, 1636-1642
1556908 CIFC20 H23 N3 O3P 21 21 217.191; 13.5045; 18.6644
90; 90; 90
1812.52Dean, Conor; Rajkumar, Sundaram; Roesner, Stefan; Carson, Nessa; Clarkson, Guy J.; Wills, Martin; Jones, Matthew; Shipman, Michael
Readily accessible sp<sup>3</sup>-rich cyclic hydrazine frameworks exploiting nitrogen fluxionality.
Chemical science, 2020, 11, 1636-1642
1556909 CIFC20 H25 N3 O2P 1 21/n 16.8118; 17.5495; 15.1113
90; 91.427; 90
1805.9Dean, Conor; Rajkumar, Sundaram; Roesner, Stefan; Carson, Nessa; Clarkson, Guy J.; Wills, Martin; Jones, Matthew; Shipman, Michael
Readily accessible sp<sup>3</sup>-rich cyclic hydrazine frameworks exploiting nitrogen fluxionality.
Chemical science, 2020, 11, 1636-1642
1556910 CIFC22 H21.25 N3 O2.125P 1 21 110.18405; 9.71457; 18.82762
90; 93.0169; 90
1860.1Dean, Conor; Rajkumar, Sundaram; Roesner, Stefan; Carson, Nessa; Clarkson, Guy J.; Wills, Martin; Jones, Matthew; Shipman, Michael
Readily accessible sp<sup>3</sup>-rich cyclic hydrazine frameworks exploiting nitrogen fluxionality.
Chemical science, 2020, 11, 1636-1642
1556911 CIFC24 H21 F3 N2 O4 SP 21 21 2132.8358; 11.60538; 5.85758
90; 90; 90
2232.16Dean, Conor; Rajkumar, Sundaram; Roesner, Stefan; Carson, Nessa; Clarkson, Guy J.; Wills, Martin; Jones, Matthew; Shipman, Michael
Readily accessible sp<sup>3</sup>-rich cyclic hydrazine frameworks exploiting nitrogen fluxionality.
Chemical science, 2020, 11, 1636-1642
1556912 CIFC22 H25 N3 O2P 1 21 112.4713; 9.02632; 17.84198
90; 92.8702; 90
2005.95Dean, Conor; Rajkumar, Sundaram; Roesner, Stefan; Carson, Nessa; Clarkson, Guy J.; Wills, Martin; Jones, Matthew; Shipman, Michael
Readily accessible sp<sup>3</sup>-rich cyclic hydrazine frameworks exploiting nitrogen fluxionality.
Chemical science, 2020, 11, 1636-1642
1556913 CIFC20 H19 N3 OP 1 21 110.10659; 5.94958; 13.62038
90; 99.5974; 90
807.53Dean, Conor; Rajkumar, Sundaram; Roesner, Stefan; Carson, Nessa; Clarkson, Guy J.; Wills, Martin; Jones, Matthew; Shipman, Michael
Readily accessible sp<sup>3</sup>-rich cyclic hydrazine frameworks exploiting nitrogen fluxionality.
Chemical science, 2020, 11, 1636-1642
1556914 CIFC28 H30 N2 O2P 21 21 218.33247; 15.71709; 17.93381
90; 90; 90
2348.65Dean, Conor; Rajkumar, Sundaram; Roesner, Stefan; Carson, Nessa; Clarkson, Guy J.; Wills, Martin; Jones, Matthew; Shipman, Michael
Readily accessible sp<sup>3</sup>-rich cyclic hydrazine frameworks exploiting nitrogen fluxionality.
Chemical science, 2020, 11, 1636-1642
1556915 CIFC24 H24 N2 O4 SP 21 21 216.0985; 11.5023; 30.8387
90; 90; 90
2163.2Dean, Conor; Rajkumar, Sundaram; Roesner, Stefan; Carson, Nessa; Clarkson, Guy J.; Wills, Martin; Jones, Matthew; Shipman, Michael
Readily accessible sp<sup>3</sup>-rich cyclic hydrazine frameworks exploiting nitrogen fluxionality.
Chemical science, 2020, 11, 1636-1642
1556916 CIFC19 H20 N4 O8P -19.6356; 9.7619; 23.71
87.91; 82.49; 64.631
1997.4Berg, Ulf; Butts, Craig P.; Eberson, Lennart; Hartshorn, Michael P.; Persson, Ola
Photochemical Nitration by Tetranitromethane. Part XLIV. Some Reactions of 2-Phenylpropene and 2,4,6-Trimethylstyrene with Tetranitromethane: Competition between the Radical Chain Addition Reaction and Isoxazolidine Formation: Nitrogen Inversion in Some Isoxazolidines.
Acta Chemica Scandinavica, 1998, 52, 761-769
1556917 CIFC22 H22 Cu2 N4 O14C 1 2/c 113.687; 8.169; 21.619
90; 92.32; 90
2415.2Sletten, Jorunn; Bjorsvik, Ole
Synthesis and Crystal Structures of Two Dinuclear Copper(II) Complexes with 2,3-Bis(2-pyridyl)pyrazine as Bridging Ligand
Acta Chemica Scandinavica, 1998, 52, 770-777
1556918 CIFC24 H20 Cu2 N4 O15P -18.654; 9.702; 16.156
94.63; 99.75; 98.93
1312.7Sletten, Jorunn; Bjorsvik, Ole
Synthesis and Crystal Structures of Two Dinuclear Copper(II) Complexes with 2,3-Bis(2-pyridyl)pyrazine as Bridging Ligand
Acta Chemica Scandinavica, 1998, 52, 770-777
1556919 CIFC13 H11 N3 O2R -3 :H24.5798; 24.5798; 11.7412
90; 90; 120
6143.3Desta, Israel Tilahun; Chizhik, Stanislav A.; Sidelnikov, Anatoli A.; Karothu, Durga Prasad; Boldyreva, Elena V.; Naumov, Pance
Mechanically Responsive Crystals: Analysis of Macroscopic Strain Reveals "Hidden" Processes.
The journal of physical chemistry. A, 2019
1556920 CIFC26 H37 N2 O11.5P 1 21 17.46638; 22.8958; 15.81982
90; 91.5281; 90
2703.42Guo, Qiang; Si, Xiali; Shi, Yuntao; Yang, Hongshuai; Liu, Xinyu; Liang, Hong; Tu, Pengfei; Zhang, Qingying
Glucoconjugated Monoterpene Indole Alkaloids from <i>Uncaria rhynchophylla</i>.
Journal of natural products, 2019, 82, 3288-3301
1556921 CIFC26 H35 N2 O11.5P 21 21 215.6664; 8.4625; 52.2037
90; 90; 90
2503.27Guo, Qiang; Si, Xiali; Shi, Yuntao; Yang, Hongshuai; Liu, Xinyu; Liang, Hong; Tu, Pengfei; Zhang, Qingying
Glucoconjugated Monoterpene Indole Alkaloids from <i>Uncaria rhynchophylla</i>.
Journal of natural products, 2019, 82, 3288-3301
1556922 CIFC29 H34 N2 O12P 21 21 218.15738; 10.7672; 33.9634
90; 90; 90
2983.08Guo, Qiang; Si, Xiali; Shi, Yuntao; Yang, Hongshuai; Liu, Xinyu; Liang, Hong; Tu, Pengfei; Zhang, Qingying
Glucoconjugated Monoterpene Indole Alkaloids from <i>Uncaria rhynchophylla</i>.
Journal of natural products, 2019, 82, 3288-3301
1556923 CIFC32 H48 N2 O19P 1 21 112.69983; 8.73522; 17.77957
90; 98.7531; 90
1949.42Guo, Qiang; Si, Xiali; Shi, Yuntao; Yang, Hongshuai; Liu, Xinyu; Liang, Hong; Tu, Pengfei; Zhang, Qingying
Glucoconjugated Monoterpene Indole Alkaloids from <i>Uncaria rhynchophylla</i>.
Journal of natural products, 2019, 82, 3288-3301
1556924 CIFC26 H32 N2 O9P 1 21 112.01025; 9.55452; 13.71388
90; 92.4358; 90
1572.28Guo, Qiang; Si, Xiali; Shi, Yuntao; Yang, Hongshuai; Liu, Xinyu; Liang, Hong; Tu, Pengfei; Zhang, Qingying
Glucoconjugated Monoterpene Indole Alkaloids from <i>Uncaria rhynchophylla</i>.
Journal of natural products, 2019, 82, 3288-3301
1556925 CIFC27 H35 N2 O10.5P 1 21 118.6115; 8.4248; 21.2254
90; 109.341; 90
3140.3Guo, Qiang; Si, Xiali; Shi, Yuntao; Yang, Hongshuai; Liu, Xinyu; Liang, Hong; Tu, Pengfei; Zhang, Qingying
Glucoconjugated Monoterpene Indole Alkaloids from <i>Uncaria rhynchophylla</i>.
Journal of natural products, 2019, 82, 3288-3301
1556926 CIFC32 H40 N2 O13P 1 21 117.4386; 6.02603; 18.7078
90; 94.6535; 90
1959.44Guo, Qiang; Si, Xiali; Shi, Yuntao; Yang, Hongshuai; Liu, Xinyu; Liang, Hong; Tu, Pengfei; Zhang, Qingying
Glucoconjugated Monoterpene Indole Alkaloids from <i>Uncaria rhynchophylla</i>.
Journal of natural products, 2019, 82, 3288-3301
1556927 CIFC9 H19 I2 N3 PdC 1 2/c 114.7908; 7.8079; 27.592
90; 99.197; 90
3145.5Khazipov, Oleg V.; Shevchenko, Maxim A.; Pasyukov, Dmitry V.; Chernenko, Andrey Yu.; Astakhov, Alexander V.; Tafeenko, Victor A.; Chernyshev, Victor M.; Ananikov, Valentine P.
Preventing Pd‒NHC bond cleavage and switching from nano-scale to molecular catalytic systems: amines and temperature as catalyst activators
Catalysis Science & Technology, 2020, 10, 1228-1247
1556928 CIFC13 H21 I2 N3 PdP 1 21/c 117.5721; 12.5994; 8.4655
90; 99.55; 90
1848.27Khazipov, Oleg V.; Shevchenko, Maxim A.; Pasyukov, Dmitry V.; Chernenko, Andrey Yu.; Astakhov, Alexander V.; Tafeenko, Victor A.; Chernyshev, Victor M.; Ananikov, Valentine P.
Preventing Pd‒NHC bond cleavage and switching from nano-scale to molecular catalytic systems: amines and temperature as catalyst activators
Catalysis Science & Technology, 2020, 10, 1228-1247
1556929 CIFC15 H17 I2 N3 PdC 1 2/c 121.6545; 8.657; 20.1671
90; 95.408; 90
3763.8Khazipov, Oleg V.; Shevchenko, Maxim A.; Pasyukov, Dmitry V.; Chernenko, Andrey Yu.; Astakhov, Alexander V.; Tafeenko, Victor A.; Chernyshev, Victor M.; Ananikov, Valentine P.
Preventing Pd‒NHC bond cleavage and switching from nano-scale to molecular catalytic systems: amines and temperature as catalyst activators
Catalysis Science & Technology, 2020, 10, 1228-1247
1556930 CIFC16 H19 I2 N3 PdP -19.5333; 10.964; 11.3716
62.48; 79.571; 67.896
976.59Khazipov, Oleg V.; Shevchenko, Maxim A.; Pasyukov, Dmitry V.; Chernenko, Andrey Yu.; Astakhov, Alexander V.; Tafeenko, Victor A.; Chernyshev, Victor M.; Ananikov, Valentine P.
Preventing Pd‒NHC bond cleavage and switching from nano-scale to molecular catalytic systems: amines and temperature as catalyst activators
Catalysis Science & Technology, 2020, 10, 1228-1247
1556931 CIFC25 H24 N2 O4I -418.1165; 18.1165; 12.8619
90; 90; 90
4221.4George, Josemon; Ward, Jas S.; Sherburn, Michael S.
A general synthesis of dendralenes
Chemical Science, 2019, 10, 9969
1556932 CIFC25 H24.34 N2 O4.17C 1 2 122.1402; 6.8047; 14.236
90; 100.71; 90
2107.4George, Josemon; Ward, Jas S.; Sherburn, Michael S.
A general synthesis of dendralenes
Chemical Science, 2019, 10, 9969
1556933 CIFC25 H24 N2 O4C 1 2/c 121.8655; 6.7309; 29.0129
90; 100.54; 90
4197.9George, Josemon; Ward, Jas S.; Sherburn, Michael S.
A general synthesis of dendralenes
Chemical Science, 2019, 10, 9969
1556934 CIFC131 H56 N4 Ni Ti3C 1 2/m 125.0964; 15.1544; 19.7269
90; 95.336; 90
7470Yu, Pengyuan; Shen, Wangqiang; Bao, Lipiao; Pan, Changwang; Slanina, Zdenek; Lu, Xing
Trapping an unprecedented Ti3C3 unit inside the icosahedral C80 fullerene: a crystallographic survey
Chemical Science, 2019, 10, 10925
1556935 CIFC26 H27 N3 O SP -17.0287; 11.0372; 15.2233
76.459; 89.714; 78.323
1123.27Hoche, Joscha; Schulz, Alexander; Dietrich, Lysanne Monika; Humeniuk, Alexander; Stolte, Matthias; Schmidt, David; Brixner, Tobias; Würthner, Frank; Mitric, Roland
The origin of the solvent dependence of fluorescence quantum yields in dipolar merocyanine dyes
Chemical Science, 2019, 10, 11013
1556936 CIFC21 H25 B F5 N O P SP 1 21 16.5464; 17.3658; 21.0198
90; 96.37; 90
2374.85Qiu, Haile; Chen, Xiaofeng; Zhang, Junliang
Design, synthesis and application of a new type of bifunctional Le-Phos in highly enantioselective γ-addition reactions of N-centered nucleophiles to allenoates
Chemical Science, 2019, 10, 10510
1556937 CIFC19 H20 N2 O2 SP 1 21 17.2656; 9.5413; 13.0878
90; 100.119; 90
893.18Qiu, Haile; Chen, Xiaofeng; Zhang, Junliang
Design, synthesis and application of a new type of bifunctional Le-Phos in highly enantioselective γ-addition reactions of N-centered nucleophiles to allenoates
Chemical Science, 2019, 10, 10510
1556938 CIFC21 H26 B F5 N O P SP 1 21 117.1138; 6.6266; 20.6037
90; 93.452; 90
2332.4Qiu, Haile; Chen, Xiaofeng; Zhang, Junliang
Design, synthesis and application of a new type of bifunctional Le-Phos in highly enantioselective γ-addition reactions of N-centered nucleophiles to allenoates
Chemical Science, 2019, 10, 10510
1556939 CIFC22 H24 F N O4P 1 21/c 111.4515; 13.8216; 13.0859
90; 95.239; 90
2062.56Qiu, Haile; Chen, Xiaofeng; Zhang, Junliang
Design, synthesis and application of a new type of bifunctional Le-Phos in highly enantioselective γ-addition reactions of N-centered nucleophiles to allenoates
Chemical Science, 2019, 10, 10510
1556940 CIFC18 H19 N3 TiP -17.7583; 9.5204; 11.4421
70.673; 88.342; 84.629
794.01Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556941 CIFC40 H52 O4 TiP -4 21 c15.2024; 15.2024; 7.9195
90; 90; 90
1830.3Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556942 CIFC56 H84 O4 TiP -4 21 c12.312; 12.312; 17.7572
90; 90; 90
2691.73Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556943 CIFC40 H48 F4 O4 TiP -4 21 c15.2973; 15.2973; 8.263
90; 90; 90
1933.6Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556944 CIFC35.67 H51.5 O2.67 Ti0.67P 1 21/c 112.9534; 21.2798; 19.3799
90; 98.805; 90
5279Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556945 CIFC44 H48 Br4 O4 TiI 41/a :222.37; 22.37; 9.5963
90; 90; 90
4802.2Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556946 CIFC19 H35 Cr N3 OP 1 21/n 19.1061; 9.1819; 25.815
90; 93.065; 90
2155.34Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556947 CIFC48.5 H70.5 O4 TiC 1 2/c 122.452; 9.4744; 22.253
90; 90.71; 90
4733.3Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556948 CIFC30 H45 Cl3 O4 TiP -111.5725; 12.3899; 13.0612
67.658; 80.546; 66.699
1590.67Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556949 CIFC44 H60 O8 TiP 1 21 110.0587; 14.8851; 14.1568
90; 90.284; 90
2119.6Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556950 CIFC44 H48 F12 O4 TiC 1 2/c 122.059; 9.8711; 22.6307
90; 110.609; 90
4612.4Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556951 CIFC65 H88 N3 O4 Ti2C 1 2/c 134.0256; 17.3283; 25.5196
90; 121.054; 90
12890.1Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556952 CIFC23 H30 I2 O2 TiP -19.69; 9.8844; 13.151
90.518; 92.411; 95.161
1253.3Aldrich, Kelly E.; Kansal, Dhwani; Odom, Aaron L.
Catalyst design insights from modelling a titanium-catalyzed multicomponent reaction.
Faraday discussions, 2019, 220, 208-230
1556953 CIF
HKL
Paper
C24 H16 Cl4I 1 2/c 113.7822; 10.7752; 27.0787
90; 99.901; 90
3961.5Detert, Heiner; Schollmeyer, Dieter
5,8,13,13-Tetrachloro-13<i>H</i>-dibenzo[<i>a</i>,<i>i</i>]fluorene cyclohexane hemisolvate
IUCrData, 2019, 4, x190236
1556954 CIFC15 H12 F4 O2P 1 21/m 16.849; 13.452; 8.072
90; 103.95; 90
721.8Dahl, Tor
Crystal Structure of the 1:1 Complex Between Mesitylene and Fluoranil. Analysis of Stacking Interactions in Complexes Containing Fluoranil
Acta Chemica Scandinavica, 1998, 52, 1006-1009
1556955 CIFC15 H20 Cl2 Co N4 O10P -18.076; 10.129; 13.894
80.11; 83.69; 80.46
1100.3Jantti, Anu; Rissanen, Kari; Valkonen, Jussi
Synthesis of Open-Chain Schiff-Base Ligand 1,3-Di(pyridine-2-carboxaldimino)propane Incorporating Nitrogen-Donor Atoms and Crystal Structures of Its CoII, CuII and ZnII Complexes
Acta Chemica Scandinavica, 1998, 52, 1010-1016
1556956 CIFC15 H16 Cl2 Cu N4 O8P 1 21/c 114.419; 7.118; 19.704
90; 110.34; 90
1896.2Jantti, Anu; Rissanen, Kari; Valkonen, Jussi
Synthesis of Open-Chain Schiff-Base Ligand 1,3-Di(pyridine-2-carboxaldimino)propane Incorporating Nitrogen-Donor Atoms and Crystal Structures of Its CoII, CuII and ZnII Complexes
Acta Chemica Scandinavica, 1998, 52, 1010-1016
1556957 CIFC15 H16 Cl2 N4 O8 ZnP -18.748; 9.169; 25.081
82.13; 83.1; 75.56
1922.1Jantti, Anu; Rissanen, Kari; Valkonen, Jussi
Synthesis of Open-Chain Schiff-Base Ligand 1,3-Di(pyridine-2-carboxaldimino)propane Incorporating Nitrogen-Donor Atoms and Crystal Structures of Its CoII, CuII and ZnII Complexes
Acta Chemica Scandinavica, 1998, 52, 1010-1016
1556958 CIFC15 H40 Co Ir N12 O5P -18.467; 9.022; 18.303
89.4; 101.05; 99.2
1354.3Brorson, Michael; Galsbol, Frode; Simonsen, Kim; Skov, Lars K.; Sotofte, Inger
Preparation and Characterization of cis- and trans-[Ir(tn)2Cl2]CF3SO3 and of [Ir(tn)3]Cl3 (tn = propane-1,3-diamine)
Acta Chemica Scandinavica, 1998, 52, 1017-1023
1556959 CIFC5 H15 Cd N5 O6P -18.026; 8.113; 10.321
90.449; 89.862; 114.77
610.2Mondal, Arunendu; Chaudhuri, Siddhartha; Ghosh, Ashutosh; Laskar, Inamur Rahaman; Chaudhuri, Nirmalendu Ray
Synthesis and Single-Crystal Structure of an Unusual Heptacoordinate Cadmium(II) Complex, [Cd(medien)(NO3)2] (medien = bis(2-aminoethyl)methylamine)
Acta Chemica Scandinavica, 1998, 52, 1064-1067
1556960 CIFC20 H16 N2 O3P 1 21/c 111.2; 10.0306; 15.005
90; 111.72; 90
1566Fatum, Tine M.; Anthoni, Uffe; Christophersen, Carsten; Nielsen, Per Halfdan
Stereochemistry of Dimerisation of Indole-3-acetic Acid and its Propyl Ester
Acta Chemica Scandinavica, 1998, 52, 784-789
1556961 CIFC22 H29 N3P 1 21/c 19.381; 10.94; 17.856
90; 97.01; 90
1818.8Songe, Pal; Kolsaker, Per; Romming, Christian
Syntheses and Reactions of Some Cyclopropyl-Substituted Imines. Part 1.
Acta Chemica Scandinavica, 1998, 52, 790-796
1556962 CIFC18 H24 N2P 1 21/c 19.526; 16.086; 9.672
90; 92.71; 90
1480.4Songe, Pal; Kolsaker, Per; Romming, Christian
Syntheses and Reactions of Some Cyclopropyl-Substituted Imines. Part 1.
Acta Chemica Scandinavica, 1998, 52, 790-796
1556963 CIFC27 H37 Cl2 Cu N7 O8P 21 c n10.175; 15.191; 20.79
90; 90; 90
3213.5Bu, Xian-He; Chen, Wei; Fang, Ya-Yin; Lu, Shou-Liang; Wang, Chang-Feng; Zhang, Ruo-Hua
Synthesis and Crystal Structure of the Copper(II) Complex of 1-Methyl-4,7,10-(2-pyridylmethyl)-1,4,7,10-tetraazacyclododecane (L), [CuL]2+
Acta Chemica Scandinavica, 1998, 52, 813-815
1556964 CIFC12 H14 N2 O22 Pb4P b c m9.309; 8.4023; 34.331
90; 90; 90
2685.3Svensson, Goran; Olson, Solveig; Albertsson, Jorgen
Coordination Between Lead and Oxydiacetic Acid
Acta Chemica Scandinavica, 1998, 52, 868-872
1556965 CIFC56 H68 Cl4 Cu N4 O9C 1 2/c 128.271; 14.829; 15.892
90; 117.29; 90
5921Liu, Cai-Ming; Xiong, Ren-Gen; You, Xiao-Zeng; Chen, Wei
Crystal Structures and Luminescence Spectra of Transition Metal Complexes of Rhodamine 6G: R2[CuCl4].3H2O and R2[MnCl4].(EtOH)0.5 [R = 9-(2-Ethoxycarbonyl)phenyl-3,6-bis(ethylamino)-2,7-dimethylxanthylium]
Acta Chemica Scandinavica, 1998, 52, 883-890
1556966 CIFC57 H65 Cl4 Mn N4 O6.5P -111.677; 12.532; 20.683
99.42; 99.57; 96.46
2913.8Liu, Cai-Ming; Xiong, Ren-Gen; You, Xiao-Zeng; Chen, Wei
Crystal Structures and Luminescence Spectra of Transition Metal Complexes of Rhodamine 6G: R2[CuCl4].3H2O and R2[MnCl4].(EtOH)0.5 [R = 9-(2-Ethoxycarbonyl)phenyl-3,6-bis(ethylamino)-2,7-dimethylxanthylium]
Acta Chemica Scandinavica, 1998, 52, 883-890
1556967 CIFC58 H40 S2P -114.419; 13.874; 16.723
108.8; 62.58; 132.38
2193Henriksen, Michael; Hazell, Rita G.; Larsen, Finn Krebs; Schultz, Thomas; Sylvester-Hvid, Kristian O.; Klabunde, Kenneth J.; Mikkelsen, Kurt V.; Senning, Alexander
Synthesis of trans-(±)-1,2,3,3a,4a,5,6,7-Octaphenyl- 3aH,4aH-dicyclopenta[b,e][1,4]dithiin by Dimerization and Further Rearrangement of the Transient 2,3,4,5-Tetraphenyl-2,4-cyclopentadiene-1-thione
Acta Chemica Scandinavica, 1998, 52, 950-957
1556968 CIFC8 H32 Al2 Cl2 O20P -16.956; 8.413; 10.737
89.78; 106.9; 95.25
598.5Karlsson, Magnus; Bostrom, Dan; Ohman, Lars-Olof
Equilibrium and Structural Studies of Silicon(IV) and Aluminium(III) in Aqueous Solution. 33. The Al(methylmalonate)2(H2O)2- Complex Crystallised as a Double Salt with Al(H2O)6(3+) and Cl-
Acta Chemica Scandinavica, 1998, 52, 995-999
1556969 CIFFe0.773 Mn0.228 Na0.8817 O4 PP b n m4.882; 10.387; 6.091
90; 90; 90
308.87Vignola, P.; Hatert, F.; Fransolet, A.-M.; Medenbach, O.; Diella, V.; Ando, S.
Karenwebberite, Na(Fe2+,Mn2+)PO4, a new member of the triphylite group from the Malpensata pegmatite, Lecco Province, Italy
American Mineralogist, 2013, 98, 762-772
1556970 CIFAs0.5 Fe H0.5 O4.5 S0.5I -15.1639; 5.1863; 12.9457
89.209; 89.675; 87.892
346.433Paktunc, D.; Majzlan, J.; Palatinus, L.; Dutrizac, J.; Klementova, M.; Poirier, G.
Characterization of ferric arsenate-sulfate compounds: Implications for arsenic control in refractory gold processing residues
American Mineralogist, 2013, 98, 554-565
1556971 CIFB3 H4 Mg3 Na O30 Si6 V6R 3 m :H16.1908; 16.1908; 7.4143
90; 90; 120
1683.21Bosi, F.; Reznitskii, L.Z.; Sklyarov, E.V.
Oxy-vanadium-dravite, NaV3(V4Mg2)(Si6O18)(BO3)3(OH)3O: Crystal structure and redefinition of the "vanadium-dravite" tourmaline
American Mineralogist, 2013, 98, 501-505
1556972 CIFAl7.94 Bi1.08 Ca16.74 Ce0.07 Cu0.1 Fe2.02 H7.55 Mg1.88 Mn0.47 O78 Pb0.11 Si17.84 Ti0.84P 4/n n c :215.7018; 15.7018; 11.8648
90; 90; 90
2925.2Halenius, U.; Bosi, F.; Gatedal, K.
Crystal structure and chemistry of skarn-associated bismuthian vesuvianite
American Mineralogist, 2013, 98, 566-573
1556973 CIFCa10 Cl F0.99 H2.53 O20.01 Si4.87C 1 2/c 17.5915; 18.5774; 15.4919
90; 104.668; 90
2113.62Gfeller, F.; Armbruster, T.; Galuskin, E.V.; Galuskina, I.O.; Lazic, B.; Savelyeva, V.B.; Zadov, A.E.; Dzierzanowski, P.; Gazeev, V.M.
Crystal chemistry and hydrogen bonding of rustumite Ca10(Si2O7)2(SiO4)(OH)2Cl2 with variable OH, Cl, F : low-Cl, F-bearing rustumite from Baika Lake area, Russia
American Mineralogist, 2013, 98, 493-500
1556974 CIFCa10 Cl1.96 F0.87 H1.17 O19.17 Si5C 1 2/c 17.641; 18.559; 15.537
90; 104.21; 90
2135.9Gfeller, F.; Armbruster, T.; Galuskin, E.V.; Galuskina, I.O.; Lazic, B.; Savelyeva, V.B.; Zadov, A.E.; Dzierzanowski, P.; Gazeev, V.M.
Crystal chemistry and hydrogen bonding of rustumite Ca10(Si2O7)2(SiO4)(OH)2Cl2 with variable OH, Cl, F : F-bearing rustumite from Upper Chegem Caldera, Russia
American Mineralogist, 2013, 98, 493-500
1556975 CIFCa10 Cl1.28 F0.12 H2.6 O20.6 Si5C 1 2/c 17.61428; 18.5772; 15.5714
90; 104.734; 90
2130.18Gfeller, F.; Armbruster, T.; Galuskin, E.V.; Galuskina, I.O.; Lazic, B.; Savelyeva, V.B.; Zadov, A.E.; Dzierzanowski, P.; Gazeev, V.M.
Crystal chemistry and hydrogen bonding of rustumite Ca10(Si2O7)2(SiO4)(OH)2Cl2 with variable OH, Cl, F : low Cl rustumite from Rize batholith, Turkey
American Mineralogist, 2013, 98, 493-500
1556976 CIFAl7 B3 Fe2 H3 Na O31 Si6R 3 m :H15.9853; 15.9853; 7.1538
90; 90; 120
1583.1Bacik, P.; Cempirek, J.; Uher, P.; Novak, M.; Ozdin, D.; Filip, J.; Skoda, R.; Breiter, K.; Klementova, M.; Duda, R.; Groat, L.A.
Oxy-schorl, Na(Fe2+2Al)Al6Si6O18(BO3)3(OH)3O, a new mineral from Zlata Idka, Slovak Republic and Pribyslavice, Czech Republic : sample from Pribyslavice
American Mineralogist, 2013, 98, 485-492
1556977 CIFAl7 B3 Fe2 H3 Na O31 Si6R 3 m :H15.916; 15.916; 7.1071
90; 90; 120
1559.2Bacik, P.; Cempirek, J.; Uher, P.; Novak, M.; Ozdin, D.; Filip, J.; Skoda, R.; Breiter, K.; Klementova, M.; Duda, R.; Groat, L.A.
Oxy-schorl, Na(Fe2+2Al)Al6Si6O18(BO3)3(OH)3O, a new mineral from Zlata Idka, Slovak Republic and Pribyslavice, Czech Republic : sample from Zlata Idka
American Mineralogist, 2013, 98, 485-492
1556978 CIFAl3.96 Fe0.42 H0.9 Mg1.57 Mn0.07 Na0.07 O18.45 Si4.98C c c m16.959; 9.653; 9.217
90; 90; 90
1508.9Likhacheva, A.Y.; Goryainov, S.V.; Bulbak, T.A.
An X-ray diffraction study of the pressure-induced hydration in cordierite at 4-5 GPa : at 4.9 GPa
American Mineralogist, 2013, 98, 181-186
1556979 CIFAl3.96 Fe0.42 H0.9 Mg1.57 Mn0.07 Na0.07 O18.45 Si4.98C c c m16.944; 9.656; 9.216
90; 90; 90
1507.8Likhacheva, A.Y.; Goryainov, S.V.; Bulbak, T.A.
An X-ray diffraction study of the pressure-induced hydration in cordierite at 4-5 GPa : at 4.4 GPa
American Mineralogist, 2013, 98, 181-186
1556980 CIFAl3.96 Fe0.42 H0.9 Mg1.57 Mn0.07 Na0.07 O18.45 Si4.98C c c m17.104; 9.746; 9.333
90; 90; 90
1555.8Likhacheva, A.Y.; Goryainov, S.V.; Bulbak, T.A.
An X-ray diffraction study of the pressure-induced hydration in cordierite at 4-5 GPa : at 1 bar
American Mineralogist, 2013, 98, 181-186
1556981 CIFLa3 Li6.5 Nb0.5 O12 Zr1.5I a -3 d12.913; 12.913; 12.913
90; 90; 90
2153.2Kataoka, K.
Oxide single crystals with high lithium-ion conductivity as solid electrolytes for all-solid-state lithium secondary battery applications
Journal of the Ceramic Society of Japan, 2020, 128, 7-18
1556982 CIFLa3 Li6.5 O12 Ta0.5 Zr1.5I a -3 d12.9445; 12.9445; 12.9445
90; 90; 90
2168.98Kataoka, K.
Oxide single crystals with high lithium-ion conductivity as solid electrolytes for all-solid-state lithium secondary battery applications
Journal of the Ceramic Society of Japan, 2020, 128, 7-18
1556983 CIFC23 H19.35 N5 O4.18P 21 21 217.4338; 19.1874; 28.7281
90; 90; 90
4097.64Lin, Shuang; Yu, Huimin; Yang, Beiye; Li, Fengli; Chen, Xia; Li, Huaqiang; Zhang, Sitian; Wang, Jianping; Hu, Youcai; Hu, Zhengxi; Zhang, Yonghui
Reisolation and Configurational Reinvestigation of Cottoquinazolines E-G from an Arthropod-Derived Strain of the Fungus <i>Neosartorya fischeri</i>.
Journal of natural products, 2020, 83, 169-173
1556984 CIFC25 H25 N5 O5P 6113.718; 13.718; 21.48
90; 90; 120
3500.6Lin, Shuang; Yu, Huimin; Yang, Beiye; Li, Fengli; Chen, Xia; Li, Huaqiang; Zhang, Sitian; Wang, Jianping; Hu, Youcai; Hu, Zhengxi; Zhang, Yonghui
Reisolation and Configurational Reinvestigation of Cottoquinazolines E-G from an Arthropod-Derived Strain of the Fungus <i>Neosartorya fischeri</i>.
Journal of natural products, 2020, 83, 169-173
1556985 CIFC6 H12 N4 O8 P2 S2P 1 21/c 14.6777; 8.716; 17.1651
90; 91.394; 90
699.628Yuan, Guohao; Takeda, Takashi; Hoshino, Norihisa; Akutagawa, Tomoyuki
Highly Proton-Conducting Mixed Proton-Transferred [(H2PO4–)(H3PO4)]∞ Networks Supported by 2,2′-Diaminobithiazolium in Crystals
The Journal of Physical Chemistry C, 2020
1556986 CIFC6 H20 N4 O16 P4 S2P 1 21/n 111.0254; 7.0847; 13.0691
90; 96.516; 90
1014.26Yuan, Guohao; Takeda, Takashi; Hoshino, Norihisa; Akutagawa, Tomoyuki
Highly Proton-Conducting Mixed Proton-Transferred [(H2PO4‒)(H3PO4)]∞Networks Supported by 2,2′-Diaminobithiazolium in Crystals
The Journal of Physical Chemistry C, 2020
1556987 CIFC3 H6 N2 O4 P SP -15.40917; 7.805; 8.856
63.995; 84.123; 83.101
333.08Yuan, Guohao; Takeda, Takashi; Hoshino, Norihisa; Akutagawa, Tomoyuki
Highly Proton-Conducting Mixed Proton-Transferred [(H2PO4–)(H3PO4)]∞ Networks Supported by 2,2′-Diaminobithiazolium in Crystals
The Journal of Physical Chemistry C, 2020
1556988 CIFC3 H9 N2 O8 P2 SP -15.26221; 8.96277; 10.8217
97.609; 95.9417; 98.5964
496.242Yuan, Guohao; Takeda, Takashi; Hoshino, Norihisa; Akutagawa, Tomoyuki
Highly Proton-Conducting Mixed Proton-Transferred [(H2PO4–)(H3PO4)]∞ Networks Supported by 2,2′-Diaminobithiazolium in Crystals
The Journal of Physical Chemistry C, 2020
1556989 CIFC6 H9 N4 O4 P S2P 1 21/c 113.8433; 10.0451; 8.1208
90; 95.19; 90
1124.63Yuan, Guohao; Takeda, Takashi; Hoshino, Norihisa; Akutagawa, Tomoyuki
Highly Proton-Conducting Mixed Proton-Transferred [(H2PO4–)(H3PO4)]∞ Networks Supported by 2,2′-Diaminobithiazolium in Crystals
The Journal of Physical Chemistry C, 2020
1556990 CIFC3 Na4 O11 UC 1 c 19.2919; 16.0991; 6.4436
90; 91.404; 90
963.62Plasil, J.; Fejfarova, K.; Dusek, M.; Skoda, R.; Rohlicek, J.
Revision of the symmetry and the crystal structure of cejkaite, Na4(UO2)(CO3)3
American Mineralogist, 2013, 98, 549-553
1556991 CIFAs4 Br0.3 Cl0.5 F0.2 H1.92 K0.52 N0.48 O6P 6/m m m5.2386; 5.2386; 9.014
90; 90; 120
214.23Garavelli, A.; Mitolo, D.; Pinto, D.; Vurro, F.
Lucabindiite, (K,NH4)As4O6(Cl,Br), a new fumarole mineral from the "La Fossa" crater at Vulcano, Aeolian Islands, Italy
American Mineralogist, 2013, 98, 470-477
1556992 CIFC18 H16 O4P b c n9.7263; 11.8883; 24.935
90; 90; 90
2883.2Liang, Kangjiang; Li, Tao; Li, Na; Zhang, Yang; Shen, Lei; Ma, Zhixian; Xia, Chengfeng
Redox-neutral photochemical Heck-type arylation of vinylphenols activated by visible light
Chemical Science, 2020, 11, 2130-2135
1556993 CIFC26 H24 N2 O2 SP -110.6565; 11.1408; 12.3
69.374; 76.912; 65.303
1236.26Lee, Jiyoun; Ko, Donguk; Park, Hyunju; Yoo, Eun Jeong
Direct cyclopropanation of activated N-heteroarenes <i>via</i> site- and stereoselective dearomative reactions.
Chemical science, 2020, 11, 1672-1676
1556994 CIFC28 H26 N2P 21 21 219.072; 9.846; 23.918
90; 90; 90
2136.4Lee, Jiyoun; Ko, Donguk; Park, Hyunju; Yoo, Eun Jeong
Direct cyclopropanation of activated N-heteroarenes <i>via</i> site- and stereoselective dearomative reactions.
Chemical science, 2020, 11, 1672-1676
1556995 CIFC54 H31.2 F0.8 O8 Zn2C 1 2/c 137.1066; 31.0733; 11.8903
90; 99.208; 90
13533.1Lustig, William P.; Shen, Zeqing; Teat, Simon J.; Javed, Nasir; Velasco, Ever; O'Carroll, Deirdre M.; Li, Jing
Rational design of a high-efficiency, multivariate metal‒organic framework phosphor for white LED bulbs
Chemical Science, 2020, 11, 1814-1824
1556996 CIFCa H14 O24 Si5 U2P b c n18.3; 14.2331; 17.9192
90; 90; 90
4667.3Plasil, J.; Fejfarova, K.; Cejka, J.; Dusek, M.; Skoda, R.; Sejkora, J.
Revision of the crystal structure and chemical formula of haiweeite, Ca(UO2)2(Si5O12)(OH)2*6H2O
American Mineralogist, 2013, 98, 718-723
1556997 CIFAl1.15 Cr0.05 F0.03 Fe0.35 H1.3292 K0.92 Mg2.28 Na0.04 Ni0.01 O11.97 Si2.89 Ti0.27P 31 1 25.3235; 5.3235; 30.188
90; 90; 120
740.9Schingaro, E.; Lacalamita, M.; Scordari, F.; Mesto, E.
3T-phlogopite from Kasenyi kamafugite (SW Uganda): EPMA, XPS, FTIR, and SCXRD study
American Mineralogist, 2013, 98, 709-717
1556998 CIFAl Ca0.01 K0.01 Na1.01 O8 Si2.98C -18.133; 12.81; 7.171
94.1; 116.59; 87.79
666.4Balic-Zunic, T.; Piazolo, S.; Katerinopoulou, A.; Schmith, J.H.
Full analysis of feldspar texture and crystal structure by combining X-ray and electron techniques : albite sample 16
American Mineralogist, 2013, 98, 41-52
1556999 CIFAl0.99 Fe0.01 K0.01 Na1.02 O8 Si2.99C -18.166; 12.845; 7.188
94.24; 116.59; 87.715
672.4Balic-Zunic, T.; Piazolo, S.; Katerinopoulou, A.; Schmith, J.H.
Full analysis of feldspar texture and crystal structure by combining X-ray and electron techniques : albite sample 45
American Mineralogist, 2013, 98, 41-52
1557000 CIFAl K0.86 Na0.17 O8 Si2.99C -18.598; 12.97; 7.2
90.029; 116.137; 89.498
720.8Balic-Zunic, T.; Piazolo, S.; Katerinopoulou, A.; Schmith, J.H.
Full analysis of feldspar texture and crystal structure by combining X-ray and electron techniques : K-feldspar sample 16
American Mineralogist, 2013, 98, 41-52
1557001 CIFAl0.99 K Na0.04 O8 Si3C -18.585; 12.979; 7.2282
90.512; 115.914; 87.711
723.8Balic-Zunic, T.; Piazolo, S.; Katerinopoulou, A.; Schmith, J.H.
Full analysis of feldspar texture and crystal structure by combining X-ray and electron techniques : K-feldspar sample 45
American Mineralogist, 2013, 98, 41-52
1557002 CIFD1.96 H0.04 Mg O2P -3 m 13.14291; 3.14291; 4.72398
90; 90; 120
40.4113Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 20 K
American Mineralogist, 2013, 98, 1-6
1557003 CIFD1.96 H0.04 Mg O2P -3 m 13.14289; 3.14289; 4.72413
90; 90; 120
40.412Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 30 K
American Mineralogist, 2013, 98, 1-6
1557004 CIFD1.96 H0.04 Mg O2P -3 m 13.14282; 3.14282; 4.7243
90; 90; 120
40.4117Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 40 K
American Mineralogist, 2013, 98, 1-6
1557005 CIFD1.96 H0.04 Mg O2P -3 m 13.14287; 3.14287; 4.72506
90; 90; 120
40.4195Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 50 K
American Mineralogist, 2013, 98, 1-6
1557006 CIFD1.96 H0.04 Mg O2P -3 m 13.1431; 3.1431; 4.72562
90; 90; 120
40.4302Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 60 K
American Mineralogist, 2013, 98, 1-6
1557007 CIFD1.96 H0.04 Mg O2P -3 m 13.14297; 3.14297; 4.7264
90; 90; 120
40.4335Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 70 K
American Mineralogist, 2013, 98, 1-6
1557008 CIFD1.96 H0.04 Mg O2P -3 m 13.14312; 3.14312; 4.72688
90; 90; 120
40.4415Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 80 K
American Mineralogist, 2013, 98, 1-6
1557009 CIFD1.96 H0.04 Mg O2P -3 m 13.14311; 3.14311; 4.7277
90; 90; 120
40.4482Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 90 K
American Mineralogist, 2013, 98, 1-6
1557010 CIFD1.96 H0.04 Mg O2P -3 m 13.14294; 3.14294; 4.72821
90; 90; 120
40.4482Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 100 K
American Mineralogist, 2013, 98, 1-6
1557011 CIFD1.96 H0.04 Mg O2P -3 m 13.14304; 3.14304; 4.7298
90; 90; 120
40.4644Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 120 K
American Mineralogist, 2013, 98, 1-6
1557012 CIFD1.96 H0.04 Mg O2P -3 m 13.1433; 3.1433; 4.73246
90; 90; 120
40.4939Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 150 K
American Mineralogist, 2013, 98, 1-6
1557013 CIFD1.96 H0.04 Mg O2P -3 m 13.14385; 3.14385; 4.73856
90; 90; 120
40.56Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 200 K
American Mineralogist, 2013, 98, 1-6
1557014 CIFD1.96 H0.04 Mg O2P -3 m 13.14597; 3.14597; 4.75387
90; 90; 120
40.746Chakoumakos, B.C.; Horita, J.; Garlea, V.O.
H/D isotope effects in brucite at low temperatures : At 295 K
American Mineralogist, 2013, 98, 1-6
1557015 CIFAg1.02 As0.06 Bi1.47 Pb0.87 S5.94 Sb1.54P 1 21/c 16.9764; 19.351; 8.387
90; 107.519; 90
1079.73Yang, H.; Downs, R.T.; Evans, S.H.; Pinch, W.W.
Terrywallaceite, AgPb(Sb,Bi)3S6, isotypic with gustavite, a new mineral from in a Herminia, Julcani Mining District, Huancavelica, Peru
American Mineralogist, 2013, 98, 1310-1314
1557016 CIFC22 H30 O2P 1 21/n 19.223; 6.718; 15.694
90; 90.983; 90
972.3Shu, Zhibin; Zhang, Qing; Zhang, Pan; Qin, Zhengsheng; Liu, Dan; Gao, Xiong; Guan, Bo; Qi, Haoyuan; Xiao, Mengqi; Wei, Zhongming; Dong, Huanli; Hu, Wenping
Preparing two-dimensional crystalline conjugated polymer films by synergetic polymerization and self-assembly at air/water interface
Polymer Chemistry, 2020, 11, 1572-1579
1557017 CIFC40 H33 Cl P2 Pt SP -112.139; 12.706; 13.335
90.44; 115; 108.81
1739.5Oilunkaniemi, Raija; Niiranen, Marjaana; Laitinen, Risto S.; Ahlgren, Markku; Pursiainen, Jouni
Crystal and Molecular Structure of trans-Chlorobis(triphenylphosphine)(2-thienyl) Platinum(II)
Acta Chemica Scandinavica, 1998, 52, 1068-1070
1557018 CIFC9 H14 Br3 N Se2P 1 21/c 18.618; 12.914; 13.609
90; 95.13; 90
1508.5Hauge, Sverre; Janickis, Vitalijus; Maroy, Kjartan
Syntheses and Crystal Structures of Salts of Hexabromotetraselenate(I) and Hexabromoselenate(IV)bis{dibromodiselenate(I)}
Acta Chemica Scandinavica, 1998, 52, 1104-1108
1557019 CIFC10 H16 Br3 N Se2P 1 21/c 18.417; 12.673; 14.813
90; 97.06; 90
1568.1Hauge, Sverre; Janickis, Vitalijus; Maroy, Kjartan
Syntheses and Crystal Structures of Salts of Hexabromotetraselenate(I) and Hexabromoselenate(IV)bis{dibromodiselenate(I)}
Acta Chemica Scandinavica, 1998, 52, 1104-1108
1557020 CIFC18 H28 Br10 N2 Se5P 1 21/n 18.683; 12.762; 16.34
90; 104.29; 90
1754.7Hauge, Sverre; Janickis, Vitalijus; Maroy, Kjartan
Syntheses and Crystal Structures of Salts of Hexabromotetraselenate(I) and Hexabromoselenate(IV)bis{dibromodiselenate(I)}
Acta Chemica Scandinavica, 1998, 52, 1104-1108
1557021 CIFC10 H16 Al Na O10R -3 :H12.046; 12.046; 28.705
90; 90; 120
3607.2Karlsson, Magnus; Bostrom, Dan; Clausen, Maria; Ohman, Lars-Olof
Equilibrium and Structural Studies of Silicon(IV) and Aluminium(III) in Aqueous Solution. 34. A Crystal Structure Determination of the Al(methylmalonate)2(CH3OH)2- Complex with Na+ as Counter-Ion
Acta Chemica Scandinavica, 1998, 52, 1116-1121
1557022 CIFC4 H18 Br5 N3 Pb S2P 1 21 110.066; 8.4068; 10.9787
90; 104.155; 90
900.8Bakthavatsalam, Rangarajan; Haris, Muhammed P. U.; Shaikh, Samir R.; Lohar, Amruta; Mohanty, Ashutosh; Moghe, Dhanashree; Sharma, Shivani; Biswas, Chinmoy; Raavi, Sai Santhosh Kumar; Gonnade, Rajesh G.; Kundu, Janardan
Ligand Structure Directed Dimensionality Reduction (2D →1D) in Lead Bromide Perovskite
The Journal of Physical Chemistry C, 2020
1557023 CIFC3 H11 Br4 N3 Pb SP 1 21/c 113.3113; 8.5838; 12.0368
90; 90.406; 90
1375.31Bakthavatsalam, Rangarajan; Haris, Muhammed P. U.; Shaikh, Samir R.; Lohar, Amruta; Mohanty, Ashutosh; Moghe, Dhanashree; Sharma, Shivani; Biswas, Chinmoy; Raavi, Sai Santhosh Kumar; Gonnade, Rajesh G.; Kundu, Janardan
Ligand Structure Directed Dimensionality Reduction (2D →1D) in Lead Bromide Perovskite
The Journal of Physical Chemistry C, 2020
1557024 CIFC38 H34 S4C 1 2/c 141.708; 5.7563; 12.67
90; 98.46; 90
3008.8Suzuki, Mitsuharu; Terai, Kengo; Quinton, Cassandre; Hayashi, Hironobu; Aratani, Naoki; Yamada, Hiroko
Open-circuit-voltage shift of over 0.5 V in organic photovoltaic cells induced by a minor structural difference in alkyl substituents
Chemical Science, 2020, 11, 1825-1831
1557025 CIFC42 H42 S4P 1 21/c 123.82; 5.837; 12.5
90; 104.133; 90
1685Suzuki, Mitsuharu; Terai, Kengo; Quinton, Cassandre; Hayashi, Hironobu; Aratani, Naoki; Yamada, Hiroko
Open-circuit-voltage shift of over 0.5 V in organic photovoltaic cells induced by a minor structural difference in alkyl substituents
Chemical Science, 2020, 11, 1825-1831
1557026 CIFC42 H42 S4P 1 21/c 122.15; 5.7413; 13.1188
90; 95.85; 90
1659.6Suzuki, Mitsuharu; Terai, Kengo; Quinton, Cassandre; Hayashi, Hironobu; Aratani, Naoki; Yamada, Hiroko
Open-circuit-voltage shift of over 0.5 V in organic photovoltaic cells induced by a minor structural difference in alkyl substituents
Chemical Science, 2020, 11, 1825-1831
1557027 CIFC66 H30 Al3 Ba F89 O9P 1 c 128.173; 16.4313; 20.453
90; 90.107; 90
9468.1Schorpp, Marcel; Krossing, Ingo
Soft interactions with hard Lewis acids: generation of mono- and dicationic alkaline-earth metal arene-complexes by direct oxidation.
Chemical science, 2020, 11, 2068-2076
1557028 CIFC52 H26 Al2 Ca F68 O7P 1 21 117.765; 20.654; 20.031
90; 93.018; 90
7340Schorpp, Marcel; Krossing, Ingo
Soft interactions with hard Lewis acids: generation of mono- and dicationic alkaline-earth metal arene-complexes by direct oxidation.
Chemical science, 2020, 11, 2068-2076
1557029 CIFC36 H18 Al2 F55 In O6P -110.6319; 22.3961; 24.4869
79.144; 79.696; 77.759
5537.2Schorpp, Marcel; Krossing, Ingo
Soft interactions with hard Lewis acids: generation of mono- and dicationic alkaline-earth metal arene-complexes by direct oxidation.
Chemical science, 2020, 11, 2068-2076
1557030 CIFC50 H22 Al2 F74 Mg N6 O8P 114.3953; 18.2606; 25.8315
73.784; 74.37; 66.821
5895.1Schorpp, Marcel; Krossing, Ingo
Soft interactions with hard Lewis acids: generation of mono- and dicationic alkaline-earth metal arene-complexes by direct oxidation.
Chemical science, 2020, 11, 2068-2076
1557031 CIFC84 H34 Al4 F118 O12 SrP -113.8661; 20.2883; 23.0336
80.031; 85.985; 79.942
6278.6Schorpp, Marcel; Krossing, Ingo
Soft interactions with hard Lewis acids: generation of mono- and dicationic alkaline-earth metal arene-complexes by direct oxidation.
Chemical science, 2020, 11, 2068-2076
1557032 CIFC84 H34 Al4 Ca F118 O12P -113.9542; 20.3286; 22.9128
80.085; 84.743; 80.239
6296.8Schorpp, Marcel; Krossing, Ingo
Soft interactions with hard Lewis acids: generation of mono- and dicationic alkaline-earth metal arene-complexes by direct oxidation.
Chemical science, 2020, 11, 2068-2076
1557033 CIFC60 H26 Al3 Ca F87 O9P 1 21/c 123.429; 18.9075; 22.4874
90; 118.27; 90
8773.4Schorpp, Marcel; Krossing, Ingo
Soft interactions with hard Lewis acids: generation of mono- and dicationic alkaline-earth metal arene-complexes by direct oxidation.
Chemical science, 2020, 11, 2068-2076
1557034 CIFC66 H30 Al3 F89 O9 SrP -113.5412; 25.3825; 27.3385
90.017; 90.111; 92.474
9387.7Schorpp, Marcel; Krossing, Ingo
Soft interactions with hard Lewis acids: generation of mono- and dicationic alkaline-earth metal arene-complexes by direct oxidation.
Chemical science, 2020, 11, 2068-2076
1557035 CIFC12 H58 Cr Mo6 N3 O32P 1 21/n 114.421; 11.263; 28.954
90; 99.7; 90
4636Wery, Ana S. J.; Gutierrez-Zorrilla, Juan M.; Luque, Antonio; Ugalde, Maria; Roman, Pascual; Lezama, Luis; Rojo, Teofilo
Synthesis, Crystal Structure, and Vibrational and Electron Spin Resonance Study of tert-Butylammonium Chromohexamolybdates, [(CH3)3CNH3]n[H(9-n)CrMo6O24].mH2O (n = 2, m = 2; n = 3, m = 8). Effects of Degrees of Protonation and Hydration
Acta Chemica Scandinavica, 1998, 52, 1194-1201
1557036 CIFC8 H35 Cr Mo6 N2 O26C 1 2/c 127.923; 11.191; 11.783
90; 102.15; 90
3599.5Wery, Ana S. J.; Gutierrez-Zorrilla, Juan M.; Luque, Antonio; Ugalde, Maria; Roman, Pascual; Lezama, Luis; Rojo, Teofilo
Synthesis, Crystal Structure, and Vibrational and Electron Spin Resonance Study of tert-Butylammonium Chromohexamolybdates, [(CH3)3CNH3]n[H(9-n)CrMo6O24].mH2O (n = 2, m = 2; n = 3, m = 8). Effects of Degrees of Protonation and Hydration
Acta Chemica Scandinavica, 1998, 52, 1194-1201
1557037 CIFC5 H15 Cd I2 N3P 1 21/n 17.8814; 10.0188; 16.1304
90; 101.448; 90
1248.35Mondal, Arunendu; Chaudhuri, Siddhartha; Ghosh, Ashutosh; Laskar, Inamur Rahaman; Chaudhuri, Nirmalendu Ray
Synthesis, Characterization and Thermal Studies of Bis(2-aminoethyl)methylamine(medien) Complexes of Cadmium(II). Single Crystal Structure of Cd(medien)I2
Acta Chemica Scandinavica, 1998, 52, 1202-1208
1557038 CIFC20 H32 O4P 21 21 219.3134; 11.3699; 17.7933
90; 90; 90
1884.2Eklund, Ann-Marie; Forsblom, Ingrid; Berg, Jan-Eric; Damberg, Charlotta; Wahlberg, Inger
Tobacco Chemistry. 83. Four New Cyclized Cembranoids from Tobacco
Acta Chemica Scandinavica, 1998, 52, 1254-1262
1557039 CIFC20 H32 O4P 21 21 2114.419; 15.8566; 17.355
90; 90; 90
3968Eklund, Ann-Marie; Forsblom, Ingrid; Berg, Jan-Eric; Damberg, Charlotta; Wahlberg, Inger
Tobacco Chemistry. 83. Four New Cyclized Cembranoids from Tobacco
Acta Chemica Scandinavica, 1998, 52, 1254-1262
1557040 CIFC17 H10 Br2 N2 OP 1 21/n 110.0349; 8.3874; 17.4347
90; 91.005; 90
1467.2Sala, Samuele; Nealon, Gareth L.; Sobolev, Alexandre N.; Fromont, Jane; Gomez, Oliver; Flematti, Gavin R.
Structure Reassignment of Echinosulfone A and the Echinosulfonic Acids A-D Supported by Single-Crystal X-ray Diffraction and Density Functional Theory Analysis.
Journal of natural products, 2020, 83, 105-110
1557041 CIFC40 H49 Br N2 OP 1 21/n 111.1088; 21.1979; 15.9518
90; 108.641; 90
3559.32Rottschäfer, Dennis; Glodde, Timo; Neumann, Beate; Stammler, Hans-Georg; Ghadwal, Rajendra S.
A crystalline C5-protonated 1,3-imidazol-4-ylidene.
Chemical communications (Cambridge, England), 2020, 56, 2027-2030
1557042 CIFC42 H44 N2 Ni O3P -110.35522; 11.18263; 16.4194
100.307; 95.6535; 99.0466
1831.63Rottschäfer, Dennis; Glodde, Timo; Neumann, Beate; Stammler, Hans-Georg; Ghadwal, Rajendra S.
A crystalline C5-protonated 1,3-imidazol-4-ylidene.
Chemical communications (Cambridge, England), 2020, 56, 2027-2030
1557043 CIFC46 H52 Au Cl N2P 1 21/c 112.2795; 16.812; 19.2885
90; 93.6946; 90
3973.7Rottschäfer, Dennis; Glodde, Timo; Neumann, Beate; Stammler, Hans-Georg; Ghadwal, Rajendra S.
A crystalline C5-protonated 1,3-imidazol-4-ylidene.
Chemical communications (Cambridge, England), 2020, 56, 2027-2030
1557044 CIFC39 H44 N2I 41/a :238.4682; 38.4682; 9.5772
90; 90; 90
14172.4Rottschäfer, Dennis; Glodde, Timo; Neumann, Beate; Stammler, Hans-Georg; Ghadwal, Rajendra S.
A crystalline C5-protonated 1,3-imidazol-4-ylidene.
Chemical communications (Cambridge, England), 2020, 56, 2027-2030
1557045 CIFC17 H14 Cl N O2P 21 21 215.3182; 10.94; 23.9705
90; 90; 90
1394.63Burg, Finn; Breitenlechner, Stefan; Jandl, Christian; Bach, Thorsten
Enantioselective oxygenation of exocyclic methylene groups by a manganese porphyrin catalyst with a chiral recognition site
Chemical Science, 2020, 11, 2121-2129
1557046 CIFC12 H35 Cl4 Cr2 N8 Na O18P 1 21/a 114.417; 18.045; 23.48
90; 90.244; 90
6108.4Andersen, Peter; Bengaard, Hanne; Glerup, Jorgen; Gumm, Andreas; Larsen, Sine
Synthesis and Characterization of a Dinuclear Chromium(III) Complex with Two Amido Bridges and One Hydroxo Bridge. Crystal Structure of Na[(tacn)Cr(mu-NH2)2(mu-OH)Cr(tacn)](ClO4)4.H2O (tacn = 1,4,7-Triazacyclononane)
Acta Chemica Scandinavica, 1998, 52, 1313-1321
1557047 CIFC41 H38 Cd Cl3 N8 O14P 1 2 111.7365; 11.7808; 16.851
90; 92.386; 90
2327.9Liu, Cai-Ming; Xiong, Ren-Gen; You, Xiao-Zeng; Chen, Wei
A Two-Dimensional Square Network Inclusion Compound Incorporating Guest Molecules Through Both Hydrogen Bonding and Nonionic Electrostatic Attraction. Crystal Structure of [Cd(4,4'-bpy)2(H2O)2]-(ClO4)2.1.5(4,4'-bpy).(C6H4NO3Cl).H2O
Acta Chemica Scandinavica, 1998, 52, 1353-1358
1557048 CIFC14 H40 N6 O16P -18.626; 9.361; 9.385
66.02; 71.95; 86.7
656.3Roman, Pascual; Guzman-Miralles, Carmen; Luque, Antonio; Beitia, Javier I.
Synthesis, Crystal Structure and Thermal Behaviour of the Diethylenetriammonium Oxalate-Water (1/4), (H3dien)2(ox)3.4H2O
Acta Chemica Scandinavica, 1997, 51, 13-18
1557049 CIFC15 H32 N2 O4P 1 21 18.6404; 24.6286; 9.367
90; 115.175; 90
1803.97Gorbitz, Carl Henrik
Solvent Site Preferences in the Crystal Structures of L-Leucyl-L-leucine Alcohol (1:1) Complexes
Acta Chemica Scandinavica, 1998, 52, 1343-1352
1557050 CIFC15 H32 N2 O4P 1 21 18.7343; 23.998; 9.448
90; 115.267; 90
1790.89Gorbitz, Carl Henrik
Solvent Site Preferences in the Crystal Structures of L-Leucyl-L-leucine Alcohol (1:1) Complexes
Acta Chemica Scandinavica, 1998, 52, 1343-1352
1557051 CIFC14 H30 N2 O4P 1 21 18.6634; 24.0971; 9.3265
90; 115.379; 90
1759.12Gorbitz, Carl Henrik
Solvent Site Preferences in the Crystal Structures of L-Leucyl-L-leucine Alcohol (1:1) Complexes
Acta Chemica Scandinavica, 1998, 52, 1343-1352
1557052 CIFC22 H28 NP -15.899; 7.547; 20.535
83.465; 84.681; 82.512
897.7Mongin, Cédric; Ardoy, Alejandro Mendez; Méreau, Raphaël; Bassani, Dario M.; Bibal, Brigitte
Singlet oxygen stimulus for switchable functional organic cages
Chemical Science, 2020, 11, 1478-1484
1557053 CIFC28 H18 O2P 1 21/c 113.0175; 9.329; 8.3512
90; 106.37; 90
973.06Mongin, Cédric; Ardoy, Alejandro Mendez; Méreau, Raphaël; Bassani, Dario M.; Bibal, Brigitte
Singlet oxygen stimulus for switchable functional organic cages
Chemical Science, 2020, 11, 1478-1484
1557054 CIFC20 H14 I NP c c n16.5305; 18.7386; 10.5281
90; 90; 90
3261.2Martinez, Thibaut; Alahyen, Ismail; Lemière, Gilles; Mouriès-Mansuy, Virginie; Fensterbank, Louis
Straightforward Access to 2-Iodoindolizines via Iodine-Mediated Cyclization of 2-Pyridylallenes
Organic Process Research & Development, 2020
1557055 CIFC20 H21 B Cl2 O2C 1 2/c 127.001; 6.0841; 25.1455
90; 108.298; 90
3922Rami, Fabian; Bächtle, Franziska; Plietker, Bernd
Hydroboration of internal alkynes catalyzed by FeH(CO)(NO)(PPh3)2: a case of boron-source controlled regioselectivity
Catalysis Science & Technology, 2020, 10, 1492-1497
1557056 CIFC22 H27 B O2C 1 2/c 135.07; 6.2286; 20.596
90; 119.212; 90
3926.8Rami, Fabian; Bächtle, Franziska; Plietker, Bernd
Hydroboration of internal alkynes catalyzed by FeH(CO)(NO)(PPh3)2: a case of boron-source controlled regioselectivity
Catalysis Science & Technology, 2020, 10, 1492-1497
1557057 CIFC22 H27 B O2P c a 2125.447; 6.3811; 24.281
90; 90; 90
3942.7Rami, Fabian; Bächtle, Franziska; Plietker, Bernd
Hydroboration of internal alkynes catalyzed by FeH(CO)(NO)(PPh3)2: a case of boron-source controlled regioselectivity
Catalysis Science & Technology, 2020, 10, 1492-1497
1557058 CIFC36.5 H57 B Cl F4 N4 P4 RhP 31 2 113.824; 13.824; 40.089
90; 90; 120
6635Cunillera, Anton; de los Bernardos, Miriam Díaz; Urrutigoïty, Martine; Claver, Carmen; Ruiz, Aurora; Godard, Cyril
Efficient synthesis of chiral γ-aminobutyric esters via direct rhodium-catalysed enantioselective hydroaminomethylation of acrylates
Catalysis Science & Technology, 2020, 10, 630-634
1557059 CIFC27 H42 B Cl2 F4 N2 P2 RhP 1 21 19.7105; 14.3281; 11.2851
90; 96.031; 90
1561.44Cunillera, Anton; de los Bernardos, Miriam Díaz; Urrutigoïty, Martine; Claver, Carmen; Ruiz, Aurora; Godard, Cyril
Efficient synthesis of chiral γ-aminobutyric esters via direct rhodium-catalysed enantioselective hydroaminomethylation of acrylates
Catalysis Science & Technology, 2020, 10, 630-634
1557060 CIFC18 H19 N S SiP -18.52831; 10.39109; 11.21545
117.584; 92.3119; 95.1854
873.5Bürger, Marcel; Loch, Maximilian N.; Jones, Peter G.; Werz, Daniel B.
From 1,2-difunctionalisation to cyanide-transfer cascades – Pd-catalysed cyanosulfenylation of internal (oligo)alkynes
Chemical Science, 2020, 11, 1912-1917
1557061 CIFC17 H13 N O SC 1 2/c 120.6204; 9.4103; 16.7239
90; 120.205; 90
2804.6Bürger, Marcel; Loch, Maximilian N.; Jones, Peter G.; Werz, Daniel B.
From 1,2-difunctionalisation to cyanide-transfer cascades – Pd-catalysed cyanosulfenylation of internal (oligo)alkynes
Chemical Science, 2020, 11, 1912-1917
1557062 CIFC18 H15 N O SP b c a13.1964; 13.3812; 16.7048
90; 90; 90
2949.79Bürger, Marcel; Loch, Maximilian N.; Jones, Peter G.; Werz, Daniel B.
From 1,2-difunctionalisation to cyanide-transfer cascades – Pd-catalysed cyanosulfenylation of internal (oligo)alkynes
Chemical Science, 2020, 11, 1912-1917
1557063 CIFC11 H9 N O SP 1 21/c 110.9143; 7.26579; 12.4737
90; 104.425; 90
957.99Bürger, Marcel; Loch, Maximilian N.; Jones, Peter G.; Werz, Daniel B.
From 1,2-difunctionalisation to cyanide-transfer cascades – Pd-catalysed cyanosulfenylation of internal (oligo)alkynes
Chemical Science, 2020, 11, 1912-1917
1557064 CIFC16 H21 N S Se SiP 1 21/c 110.6588; 8.0663; 20.1272
90; 95.886; 90
1721.35Bürger, Marcel; Loch, Maximilian N.; Jones, Peter G.; Werz, Daniel B.
From 1,2-difunctionalisation to cyanide-transfer cascades – Pd-catalysed cyanosulfenylation of internal (oligo)alkynes
Chemical Science, 2020, 11, 1912-1917
1557065 CIFC22 H23 N SP 1 21/c 113.9373; 7.7203; 17.0136
90; 105.984; 90
1759.89Bürger, Marcel; Loch, Maximilian N.; Jones, Peter G.; Werz, Daniel B.
From 1,2-difunctionalisation to cyanide-transfer cascades – Pd-catalysed cyanosulfenylation of internal (oligo)alkynes
Chemical Science, 2020, 11, 1912-1917
1557066 CIFC21 H20 SP 1 21/n 17.5133; 25.6215; 8.2645
90; 100.591; 90
1563.83Bürger, Marcel; Loch, Maximilian N.; Jones, Peter G.; Werz, Daniel B.
From 1,2-difunctionalisation to cyanide-transfer cascades – Pd-catalysed cyanosulfenylation of internal (oligo)alkynes
Chemical Science, 2020, 11, 1912-1917
1557067 CIFC10 H7 N SP -16.9027; 7.3743; 9.3503
68.861; 73.292; 84.246
425.18Bürger, Marcel; Loch, Maximilian N.; Jones, Peter G.; Werz, Daniel B.
From 1,2-difunctionalisation to cyanide-transfer cascades – Pd-catalysed cyanosulfenylation of internal (oligo)alkynes
Chemical Science, 2020, 11, 1912-1917
1557068 CIFC16 H11 N O SP b c a12.2557; 9.5626; 21.5616
90; 90; 90
2526.94Bürger, Marcel; Loch, Maximilian N.; Jones, Peter G.; Werz, Daniel B.
From 1,2-difunctionalisation to cyanide-transfer cascades – Pd-catalysed cyanosulfenylation of internal (oligo)alkynes
Chemical Science, 2020, 11, 1912-1917
1557069 CIFC17 H17 N SP 1 21/c 111.1885; 11.263; 12.1884
90; 116.756; 90
1371.48Bürger, Marcel; Loch, Maximilian N.; Jones, Peter G.; Werz, Daniel B.
From 1,2-difunctionalisation to cyanide-transfer cascades – Pd-catalysed cyanosulfenylation of internal (oligo)alkynes
Chemical Science, 2020, 11, 1912-1917
1557070 CIFC9 H10 Cl3 N5 O2P n m a28.008; 6.738; 7.291
90; 90; 90
1375.9Dahl, Tor; Rasmussen, Inge
Crystal Structures of N(6),N(6)-Dimethyladeninium Trichloroacetate and N(6)-Methyladeninium Dinitrate.
Acta Chemica Scandinavica, 1997, 51, 19-23
1557071 CIFC6 H9 N7 O6P 1 21/c 16.428; 20.269; 16.918
90; 98.56; 90
2179.7Dahl, Tor; Rasmussen, Inge
Crystal Structures of N(6),N(6)-Dimethyladeninium Trichloroacetate and N(6)-Methyladeninium Dinitrate.
Acta Chemica Scandinavica, 1997, 51, 19-23
1557072 CIFC20 H40 Cl5 Li O5 ZrP 1 21/c 110.466; 16.361; 17.645
90; 105.59; 90
2910Polamo, Mika; Leskela, Markku
Formation of Tetrahydrofuran Adducts of LiZrCl5 in the Reaction of Li(NPh2) and ZrCl4: Crystal Structures of [Li(thf)4][ZrCl5(thf)] and Li(thf)3-mu-Cl-ZrCl4(thf).
Acta Chemica Scandinavica, 1997, 51, 44-48
1557073 CIFC16 H32 Cl5 Li O4 ZrP 1 21/n 111.32; 17.686; 13.622
90; 90.37; 90
2727Polamo, Mika; Leskela, Markku
Formation of Tetrahydrofuran Adducts of LiZrCl5 in the Reaction of Li(NPh2) and ZrCl4: Crystal Structures of [Li(thf)4][ZrCl5(thf)] and Li(thf)3-mu-Cl-ZrCl4(thf).
Acta Chemica Scandinavica, 1997, 51, 44-48
1557074 CIFC44 H36 Hf N8C 1 2/c 124.213; 7.916; 20.432
90; 112.01; 90
3631Polamo, Mika; Leskela, Markku
Synthesis and Crystal Structure of an 8-Coordinated Tetrakis[2-(phenylamido)pyridine]hafnium(IV) and Comparison with a 4-Coordinated Tetrakis(diphenylamido)hafnium(IV)
Acta Chemica Scandinavica, 1997, 51, 69-72
1557075 CIFC55 H67 N3 O6 P2 RuP 1 21/n 117.5623; 13.934; 20.8795
90; 92.113; 90
5106Artús Suàrez, Lluís; Jayarathne, Upul; Balcells, David; Bernskoetter, Wesley H.; Hazari, Nilay; Jaraiz, Martín; Nova, Ainara
Rational selection of co-catalysts for the deaminative hydrogenation of amides.
Chemical science, 2020, 11, 2225-2230
1557076 CIFC9 H10 N4 O9P -16.097; 10.29; 11.188
73.23; 86.8; 83.91
668Butts, Craig P.; Eberson, Lennart; Hartshorn, Michael P.; Robinson, Ward T.; Timmerman-Vaughan, David J.
Photochemical Nitration by Tetranitromethane. Part XXXVII. Adduct Formation and the Regiochemistry of Attack of Trinitromethanide Ion on Radical Cations in the Photochemical Reactions of 2-Methyl-, 2,3-Dimethyl- and 2,4-Dimethylanisoles
Acta Chemica Scandinavica, 1997, 51, 73-87
1557077 CIFC14 H14 Cu N4 O7P 1 21/c 17.662; 20.359; 11.642
90; 117.6; 90
1609Heldal, H. E.; Sletten, J.
Crystal Structure of Aquadinitrato(2,9-dimethyl-1,10-phenanthroline)copper(II)
Acta Chemica Scandinavica, 1997, 51, 122-124
1557078 CIFNa2 O6 Si2 ZnC 1 2/c 16.176; 9.413; 9.79
90; 93.7; 90
567.95Grins, Jekabs; Werner, Per-Erik; Kanno, Yoshinori
Determination of the Substructure of Na2ZnSi2O6, Synthesized in the Solid State
Acta Chemica Scandinavica, 1997, 51, 259-263
1557079 CIFC25 H23 N O3P 1 21 112.77764; 5.95718; 12.86001
90; 100.546; 90
962.352Di Sanza, Riccardo; Nguyen, Thi Le Nhon; Iqbal, Naeem; Argent, Stephen P.; Lewis, William; Lam, Hon Wai
Enantioselective nickel-catalyzed arylative and alkenylative intramolecular 1,2-allylations of tethered allene–ketones
Chemical Science, 2020, 11, 2401-2406
1557080 CIFC23 H29 N O2P 21 21 2110.3193; 10.5258; 18.2046
90; 90; 90
1977.36Di Sanza, Riccardo; Nguyen, Thi Le Nhon; Iqbal, Naeem; Argent, Stephen P.; Lewis, William; Lam, Hon Wai
Enantioselective nickel-catalyzed arylative and alkenylative intramolecular 1,2-allylations of tethered allene–ketones
Chemical Science, 2020, 11, 2401-2406
1557081 CIFC25 H25 N O3 SP 21 21 215.909; 12.8175; 27.4929
90; 90; 90
2082.27Di Sanza, Riccardo; Nguyen, Thi Le Nhon; Iqbal, Naeem; Argent, Stephen P.; Lewis, William; Lam, Hon Wai
Enantioselective nickel-catalyzed arylative and alkenylative intramolecular 1,2-allylations of tethered allene–ketones
Chemical Science, 2020, 11, 2401-2406
1557082 CIFC24 H18 O3C 1 2/c 121.613; 12.1859; 13.5922
90; 104.043; 90
3472.8He, Zhen; Perry, Gregory J. P.; Procter, David J.
Sulfoxide-mediated oxidative cross-coupling of phenols
Chemical Science, 2020, 11, 2001-2005
1557083 CIFC26 H24 O6P 1 21/c 114.145; 7.441; 24.56
90; 96.17; 90
2570He, Zhen; Perry, Gregory J. P.; Procter, David J.
Sulfoxide-mediated oxidative cross-coupling of phenols
Chemical Science, 2020, 11, 2001-2005
1557084 CIFC22 H15 Cl O3P 1 21/n 116.2589; 6.7715; 16.4568
90; 106.511; 90
1737.14He, Zhen; Perry, Gregory J. P.; Procter, David J.
Sulfoxide-mediated oxidative cross-coupling of phenols
Chemical Science, 2020, 11, 2001-2005
1557085 CIFC25 H24 O7P 1 21/n 112.5579; 5.2167; 35.021
90; 94.917; 90
2285.8He, Zhen; Perry, Gregory J. P.; Procter, David J.
Sulfoxide-mediated oxidative cross-coupling of phenols
Chemical Science, 2020, 11, 2001-2005
1557086 CIFC25 H28 O8C 1 2/c 129.9022; 11.0935; 13.4816
90; 99.73; 90
4407.8He, Zhen; Perry, Gregory J. P.; Procter, David J.
Sulfoxide-mediated oxidative cross-coupling of phenols
Chemical Science, 2020, 11, 2001-2005
1557087 CIFC39 H34 F6 N3 O PP 1 21/c 19.3923; 29.4208; 11.9664
90; 102.511; 90
3228.14Zheng, Zheng; Liu, Haixiang; Zhai, Shaodong; Zhang, Haoke; Shan, Guogang; Kwok, Ryan T. K.; Ma, Chao; Sung, Herman H. Y.; Williams, Ian D.; Lam, Jacky W. Y.; Wong, Kam Sing; Hu, Xianglong; Tang, Ben Zhong
Highly efficient singlet oxygen generation, two-photon photodynamic therapy and melanoma ablation by rationally designed mitochondria-specific near-infrared AIEgens
Chemical Science, 2020, 11, 2494-2503
1557088 CIFC27 H22 N2 OP 1 21/n 19.53897; 23.141; 9.5721
90; 107.33; 90
2017.04Zheng, Zheng; Liu, Haixiang; Zhai, Shaodong; Zhang, Haoke; Shan, Guogang; Kwok, Ryan T. K.; Ma, Chao; Sung, Herman H. Y.; Williams, Ian D.; Lam, Jacky W. Y.; Wong, Kam Sing; Hu, Xianglong; Tang, Ben Zhong
Highly efficient singlet oxygen generation, two-photon photodynamic therapy and melanoma ablation by rationally designed mitochondria-specific near-infrared AIEgens
Chemical Science, 2020, 11, 2494-2503
1557089 CIFC78 H190 Dy2 K2 N6 O21 Si12C 1 2/c 125.4899; 18.8304; 25.7453
90; 103.128; 90
12034.4Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557090 CIFC42 H102 Dy K N3 O12 Si6P 1 21/n 111.0616; 27.199; 21.7721
90; 103.885; 90
6359Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557091 CIFC78 H190 K2 N6 O21 Si12 Tm2C 1 2/c 125.453; 18.757; 25.744
90; 103.142; 90
11969Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557092 CIFC42 H102 K N3 O12 Si6 TmP 21 21 2121.956; 22.554; 25.737
90; 90; 90
12745Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557093 CIFC52 H124 Gd2 K2 N4 O16 Si8P -112.6614; 15.5498; 21.205
94.4758; 94.0831; 105.746
3987.4Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557094 CIFC36 H90 Gd K N5 O6 Si6R 3 2 :H18.564; 18.564; 18.05
90; 90; 120
5387Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557095 CIFC42 H102 Er K N3 O12 Si6P 1 21/n 111.064; 27.08; 21.797
90; 103.991; 90
6337Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557096 CIFC42 H102 Ho K N3 O12 Si6P 1 21/n 111.0476; 27.157; 21.797
90; 103.905; 90
6347.9Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557097 CIFC42 H102 Gd K N3 O12 Si6P 1 21/n 111.1493; 27.059; 21.755
90; 104.007; 90
6368.1Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557098 CIFC42 H102 K N3 O12 Si6 TbP 1 21/n 111.1324; 27.081; 21.775
90; 103.924; 90
6371.8Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557099 CIFC78 H190 Gd2 K2 N6 O21 Si12C 1 2/c 125.507; 18.806; 25.726
90; 103.21; 90
12014Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557100 CIFC42 H102 K N3 O12 Si6 YP 1 21/n 111.0774; 27.0905; 21.7959
90; 104; 90
6346.5Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557101 CIFC78 H190 Ho2 K2 N6 O21 Si12C 1 2/c 125.514; 18.8; 25.712
90; 103.167; 90
12009Ryan, Austin J.; Ziller, Joseph W.; Evans, William J.
The importance of the counter-cation in reductive rare-earth metal chemistry: 18-crown-6 instead of 2,2,2-cryptand allows isolation of [YII(NR2)3]1− and ynediolate and enediolate complexes from CO reactions
Chemical Science, 2020, 11, 2006-2014
1557102 CIFH9 N2 O8.5 Se2 UP 1 21/c 17.193; 10.368; 13.823
90; 91.47; 90
1030.5Koskenlinna, Markus; Mutikainen, Ilpo; Leskela, Tuula; Leskela, Markku
Low-Temperature Crystal Structures and Thermal Decomposition of Uranyl Hydrogen Selenite Monohydrate, UO2(HSeO3)2.H2O and Diammonium Uranyl Selenite Hemihydrate, (NH4)2UO2(SeO3)2.0.5H2O
Acta Chemica Scandinavica, 1997, 51, 264-269
1557103 CIFH4 O9 Se2 UC 1 2/c 19.924; 12.546; 6.324
90; 98.09; 90
779.5Koskenlinna, Markus; Mutikainen, Ilpo; Leskela, Tuula; Leskela, Markku
Low-Temperature Crystal Structures and Thermal Decomposition of Uranyl Hydrogen Selenite Monohydrate, UO2(HSeO3)2.H2O and Diammonium Uranyl Selenite Hemihydrate, (NH4)2UO2(SeO3)2.0.5H2O
Acta Chemica Scandinavica, 1997, 51, 264-269
1557104 CIFC20 H20 N2 Ni O2P 1 21 110.964; 12.735; 12.329
90; 95.26; 90
1714.2Wojtczak, A.; Szlyk, E.; Jaskolski, M.; Larsen, E.
An Optically Active Nickel(II) Schiff Base Coordination Compound N,N'-(1R,2R)-(-)-1,2-Cyclohexylenebis(salicylideneiminato)nickel(II)
Acta Chemica Scandinavica, 1997, 51, 274-278
1557105 CIFC104 H96 B4 F16 N8 O4 Pd2I 1 2/a 128.36; 12.35285; 27.666
90; 94.6541; 90
9660.2Lewis, James E. M.; Tarzia, Andrew; White, Andrew J. P.; Jelfs, Kim E.
Conformational control of Pd2L4 assemblies with unsymmetrical ligands
Chemical Science, 2020, 11, 677-683
1557106 CIFC123 H119 B4 F16 N17 O9 Pd2C 1 2/c 123.2193; 15.8896; 38.7298
90; 112.281; 90
13222.3Lewis, James E. M.; Tarzia, Andrew; White, Andrew J. P.; Jelfs, Kim E.
Conformational control of Pd2L4 assemblies with unsymmetrical ligands
Chemical Science, 2020, 11, 677-683
1557107 CIFC16 H19 I N2P 1 21/c 16.29025; 7.62301; 32.0065
90; 90.1584; 90
1534.73Guo, Lifang; Li, Chuanya; Shang, Hai; Zhang, Ruoyao; Li, Xuechen; Lu, Qing; Cheng, Xiao; Liu, Zhiqiang; Sun, Jing Zhi; Yu, Xiaoqiang
A side-chain engineering strategy for constructing fluorescent dyes with direct and ultrafast self-delivery to living cells
Chemical Science, 2020, 11, 661-670
1557108 CIFC64 H87 I3 N5 O2P -114.6729; 15.6807; 16.4518
85.945; 73.88; 62.636
3222.3Guo, Lifang; Li, Chuanya; Shang, Hai; Zhang, Ruoyao; Li, Xuechen; Lu, Qing; Cheng, Xiao; Liu, Zhiqiang; Sun, Jing Zhi; Yu, Xiaoqiang
A side-chain engineering strategy for constructing fluorescent dyes with direct and ultrafast self-delivery to living cells
Chemical Science, 2020, 11, 661-670
1557109 CIFC17 H18 I N2P 21 21 216.9063; 7.9318; 30.157
90; 90; 90
1651.98Guo, Lifang; Li, Chuanya; Shang, Hai; Zhang, Ruoyao; Li, Xuechen; Lu, Qing; Cheng, Xiao; Liu, Zhiqiang; Sun, Jing Zhi; Yu, Xiaoqiang
A side-chain engineering strategy for constructing fluorescent dyes with direct and ultrafast self-delivery to living cells
Chemical Science, 2020, 11, 661-670
1557110 CIFC73 H92 N5 O2 UP -113.2857; 13.9411; 20.5686
103.573; 95.666; 116.252
3230.4Yadav, Munendra; Metta-Magaña, Alejandro; Fortier, Skye
Intra- and intermolecular interception of a photochemically generated terminal uranium nitride
Chemical Science, 2020, 11, 2381-2387
1557111 CIFC75 H88 N8 UP -113.1219; 13.5561; 20.3099
78.109; 76.264; 68.201
3230.5Yadav, Munendra; Metta-Magaña, Alejandro; Fortier, Skye
Intra- and intermolecular interception of a photochemically generated terminal uranium nitride
Chemical Science, 2020, 11, 2381-2387
1557112 CIFC76 H99 N6 O P UP 1 21/c 125.884; 13.889; 21.315
90; 110.09; 90
7197Yadav, Munendra; Metta-Magaña, Alejandro; Fortier, Skye
Intra- and intermolecular interception of a photochemically generated terminal uranium nitride
Chemical Science, 2020, 11, 2381-2387
1557113 CIFC75 H96 N6 UP 1 21/n 114.7113; 12.979; 36.748
90; 94.521; 90
6994.8Yadav, Munendra; Metta-Magaña, Alejandro; Fortier, Skye
Intra- and intermolecular interception of a photochemically generated terminal uranium nitride
Chemical Science, 2020, 11, 2381-2387
1557114 CIFC82 H101 N7 O UP -113.1812; 15.8571; 19.6743
110.71; 90.48; 105.002
3692.6Yadav, Munendra; Metta-Magaña, Alejandro; Fortier, Skye
Intra- and intermolecular interception of a photochemically generated terminal uranium nitride
Chemical Science, 2020, 11, 2381-2387
1557115 CIFC33 H26 O2P 21 21 2111.3659; 11.9259; 17.9314
90; 90; 90
2430.58Liu, Xihong; Zhang, Jingying; Bai, Lutao; Wang, Linqing; Yang, Dongxu; Wang, Rui
Catalytic asymmetric multiple dearomatizations of phenols enabled by a cascade 1,8-addition and Diels–Alder reaction
Chemical Science, 2020, 11, 671-676
1557116 CIFC64 H88P -114.635; 18.1373; 22.0161
79.631; 75.201; 74.12
5396.2Storey, Caroline M.; Kalpokas, Audrius; Gyton, Matthew R.; Krämer, Tobias; Chaplin, Adrian B.
A shape changing tandem Rh(CNC) catalyst: preparation of bicyclo[4.2.0]octa-1,5,7-trienes from terminal aryl alkynes.
Chemical science, 2020, 11, 2051-2057
1557117 CIFC61 H39 B F24 N7 RhP -112.9083; 14.2464; 20.148
74.898; 79.351; 89.459
3512.7Storey, Caroline M.; Kalpokas, Audrius; Gyton, Matthew R.; Krämer, Tobias; Chaplin, Adrian B.
A shape changing tandem Rh(CNC) catalyst: preparation of bicyclo[4.2.0]octa-1,5,7-trienes from terminal aryl alkynes.
Chemical science, 2020, 11, 2051-2057
1557118 CIFC67 H62 B F24 N5 RhP -111.7452; 16.7896; 18.5777
84.062; 73.668; 70.038
3304.3Storey, Caroline M.; Kalpokas, Audrius; Gyton, Matthew R.; Krämer, Tobias; Chaplin, Adrian B.
A shape changing tandem Rh(CNC) catalyst: preparation of bicyclo[4.2.0]octa-1,5,7-trienes from terminal aryl alkynes.
Chemical science, 2020, 11, 2051-2057
1557119 CIFC32 H16 F8P -110.7497; 11.175; 11.5688
96.962; 96.945; 116.711
1207.93Storey, Caroline M.; Kalpokas, Audrius; Gyton, Matthew R.; Krämer, Tobias; Chaplin, Adrian B.
A shape changing tandem Rh(CNC) catalyst: preparation of bicyclo[4.2.0]octa-1,5,7-trienes from terminal aryl alkynes.
Chemical science, 2020, 11, 2051-2057
1557120 CIFC60 H51 B Cl2 F24 N5 RhC 1 c 119.4406; 17.1714; 19.516
90; 103.079; 90
6345.86Storey, Caroline M.; Kalpokas, Audrius; Gyton, Matthew R.; Krämer, Tobias; Chaplin, Adrian B.
A shape changing tandem Rh(CNC) catalyst: preparation of bicyclo[4.2.0]octa-1,5,7-trienes from terminal aryl alkynes.
Chemical science, 2020, 11, 2051-2057
1557121 CIFC54 H37 B F24 N5 RhC 1 2/c 116.95902; 18.45666; 34.7576
90; 98.7133; 90
10753.8Storey, Caroline M.; Kalpokas, Audrius; Gyton, Matthew R.; Krämer, Tobias; Chaplin, Adrian B.
A shape changing tandem Rh(CNC) catalyst: preparation of bicyclo[4.2.0]octa-1,5,7-trienes from terminal aryl alkynes.
Chemical science, 2020, 11, 2051-2057
1557122 CIFC68 H45 B F25 N5 O RhP -113.01044; 20.05043; 26.99316
90.7652; 97.9088; 106.636
6672.31Storey, Caroline M.; Kalpokas, Audrius; Gyton, Matthew R.; Krämer, Tobias; Chaplin, Adrian B.
A shape changing tandem Rh(CNC) catalyst: preparation of bicyclo[4.2.0]octa-1,5,7-trienes from terminal aryl alkynes.
Chemical science, 2020, 11, 2051-2057
1557123 CIFC21 H20 O6P 21 21 218.6977; 9.9164; 20.6241
90; 90; 90
1778.83Cole, Charles J. F.; Fuentes, Lilia; Snyder, Scott A.
Asymmetric pyrone Diels–Alder reactions enabled by dienamine catalysis
Chemical Science, 2020, 11, 2175-2180
1557124 CIFC37 H32 Br2 O9P 1 21/c 115.4799; 12.7561; 17.7032
90; 110.471; 90
3275Cole, Charles J. F.; Fuentes, Lilia; Snyder, Scott A.
Asymmetric pyrone Diels–Alder reactions enabled by dienamine catalysis
Chemical Science, 2020, 11, 2175-2180
1557125 CIFC20 H20 O6P 1 21/c 111.1979; 12.5205; 24.904
90; 93.401; 90
3485.5Cole, Charles J. F.; Fuentes, Lilia; Snyder, Scott A.
Asymmetric pyrone Diels–Alder reactions enabled by dienamine catalysis
Chemical Science, 2020, 11, 2175-2180
1557126 CIFC18 H16 O5P 1 21 111.2987; 10.6941; 11.9582
90; 90.723; 90
1444.79Cole, Charles J. F.; Fuentes, Lilia; Snyder, Scott A.
Asymmetric pyrone Diels–Alder reactions enabled by dienamine catalysis
Chemical Science, 2020, 11, 2175-2180
1557127 CIFC18 H18 O7P 1 21/n 113.6526; 9.772; 24.8831
90; 101.015; 90
3258.6Cole, Charles J. F.; Fuentes, Lilia; Snyder, Scott A.
Asymmetric pyrone Diels–Alder reactions enabled by dienamine catalysis
Chemical Science, 2020, 11, 2175-2180
1557128 CIFC27 H29 N O8P 1 21 110.1038; 12.0566; 10.4153
90; 97.827; 90
1256.95Cole, Charles J. F.; Fuentes, Lilia; Snyder, Scott A.
Asymmetric pyrone Diels–Alder reactions enabled by dienamine catalysis
Chemical Science, 2020, 11, 2175-2180
1557129 CIFC17 H20 O6P 1 21 17.091; 16.2621; 13.2704
90; 92.494; 90
1528.82Cole, Charles J. F.; Fuentes, Lilia; Snyder, Scott A.
Asymmetric pyrone Diels–Alder reactions enabled by dienamine catalysis
Chemical Science, 2020, 11, 2175-2180
1557130 CIFC27 H29 N O8C 1 2 126.9187; 7.6682; 12.9814
90; 108.271; 90
2544.5Cole, Charles J. F.; Fuentes, Lilia; Snyder, Scott A.
Asymmetric pyrone Diels–Alder reactions enabled by dienamine catalysis
Chemical Science, 2020, 11, 2175-2180
1557131 CIFC6 H5 D N2P b c a6.0431; 13.3857; 14.3592
90; 90; 90
1161.53Yang, Huan; Zhang, Li; Zhou, Fei-Yu; Jiao, Lei
An umpolung approach to the hydroboration of pyridines: a novel and efficient synthesis of N-H 1,4-dihydropyridines
Chemical Science, 2020, 11, 742-747
1557132 CIFIn8 Ir1.5 S5.25P 3 1 m13.9378; 13.9378; 8.2316
90; 90; 120
1384.9Khoury, Jason F.; He, Jiangang; Pfluger, Jonathan E.; Hadar, Ido; Balasubramanian, Mahalingam; Stoumpos, Constantinos C.; Zu, Rui; Gopalan, Venkatraman; Wolverton, Chris; Kanatzidis, Mercouri G.
Ir6In32S21, a polar, metal-rich semiconducting subchalcogenide
Chemical Science, 2020, 11, 870-878
1557133 CIFC8 H16 Cl2 Pd S2C 1 2/c 115.648; 9.157; 9.215
90; 111.94; 90
1224.8Noren, Bertil; Oskarsson, Ake; Svensson, Christer
cis/trans Influences on Bond Distances in Square-Planar Complexes. Crystal Structures of trans-Dichlorobis(tetrahydrothiophene)palladium(II) and trans-Dichlorobis(tetrahydrothiophene)platinum(II)
Acta Chemica Scandinavica, 1997, 51, 289-293
1557134 CIFC8 H16 Cl2 Pt S2C 1 2/c 115.62; 9.146; 9.255
90; 111.98; 90
1226.1Noren, Bertil; Oskarsson, Ake; Svensson, Christer
cis/trans Influences on Bond Distances in Square-Planar Complexes. Crystal Structures of trans-Dichlorobis(tetrahydrothiophene)palladium(II) and trans-Dichlorobis(tetrahydrothiophene)platinum(II)
Acta Chemica Scandinavica, 1997, 51, 289-293
1557135 CIFC2 H8 Cd Cl2 N4 S2P m n 2113.11; 5.813; 6.482
90; 90; 90
493.98Krunks, Malle; Madarasz, Janos; Hiltunen, Lassi; Mannonen, Risto; Mellikov, Enn; Niinisto, Lauri
Structure and Thermal Behaviour of Dichlorobis(thiourea)cadmium(II), a Single-Source Precursor for CdS Thin Films
Acta Chemica Scandinavica, 1997, 51, 294-301
1557136 CIFC15 H12 N2P -110.479; 10.718; 11.391
99.76; 92.02; 111.48
1166.7Polamo, Mika; Repo, Timo; Leskela, Markku
Crystal Structures of 2-(1-Naphthylamino)pyridine and 2-(Phenylamino)pyridine at 193 K
Acta Chemica Scandinavica, 1997, 51, 325-329
1557137 CIFC11 H10 N2P 1 21/c 110.18; 8.035; 12.052
90; 113.37; 90
904.9Polamo, Mika; Repo, Timo; Leskela, Markku
Crystal Structures of 2-(1-Naphthylamino)pyridine and 2-(Phenylamino)pyridine at 193 K
Acta Chemica Scandinavica, 1997, 51, 325-329
1557138 CIFC19 H30 O3P 1 21 18.4484; 22.6578; 17.8169
90; 90.006; 90
3410.55Chen, He-Ping; Zhao, Zhen-Zhu; Cheng, Gui-Guang; Zhao, Kuan; Han, Kai-Yue; Zhou, Lin; Feng, Tao; Li, Zheng-Hui; Liu, Ji-Kai
Immunosuppressive Nor-isopimarane Diterpenes from Cultures of the Fungicolous Fungus <i>Xylaria longipes</i> HFG1018.
Journal of natural products, 2020
1557139 CIFC19 H30 O3P 21 21 216.8215; 10.0565; 24.1425
90; 90; 90
1656.2Chen, He-Ping; Zhao, Zhen-Zhu; Cheng, Gui-Guang; Zhao, Kuan; Han, Kai-Yue; Zhou, Lin; Feng, Tao; Li, Zheng-Hui; Liu, Ji-Kai
Immunosuppressive Nor-isopimarane Diterpenes from Cultures of the Fungicolous Fungus <i>Xylaria longipes</i> HFG1018.
Journal of natural products, 2020
1557140 CIFC19 H30 O2C 1 2 121.2462; 8.9711; 8.8437
90; 98.376; 90
1667.65Chen, He-Ping; Zhao, Zhen-Zhu; Cheng, Gui-Guang; Zhao, Kuan; Han, Kai-Yue; Zhou, Lin; Feng, Tao; Li, Zheng-Hui; Liu, Ji-Kai
Immunosuppressive Nor-isopimarane Diterpenes from Cultures of the Fungicolous Fungus <i>Xylaria longipes</i> HFG1018.
Journal of natural products, 2020
1557141 CIFC68 H50 N2 O4P 1 21 113.949; 15.719; 15.272
90; 107.438; 90
3194.7Chen, Michelle; Powers-Riggs, Natalia E.; Coleman, Adam F.; Young, Ryan M.; Wasielewski, Michael R.
Singlet Fission in Quaterrylenediimide Thin Films
The Journal of Physical Chemistry C, 2020
1557142 CIFC18 H20 Cl N3 O PdP -17.5074; 11.2005; 11.2581
70.42; 78.131; 84.462
872.46Czyz, Milena L.; Weragoda, Geethika K.; Horngren, Tyra H.; Connell, Timothy U.; Gomez, Daniel; O'Hair, Richard A. J.; Polyzos, Anastasios
Photoexcited Pd(ii) auxiliaries enable light-induced control in C(sp3)‒H bond functionalisation
Chemical Science, 2020, 11, 2455-2463
1557143 CIFC23 H24 N O4 PP 1 21/c 114.1914; 9.0659; 16.0033
90; 101.488; 90
2017.7Hirai, Yuichi; Wrona-Piotrowicz, Anna; Zakrzewski, Janusz; Brosseau, Arnaud; Guillot, Régis; Métivier, Rémi; Allain, Clémence
Mechanofluorochromism of pyrene-derived amidophosphonates.
Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology, 2020, 19, 229-234
1557144 CIFC25 H28 N O4 PC 1 2/c 126.8408; 9.9974; 17.4578
90; 110.506; 90
4387.8Hirai, Yuichi; Wrona-Piotrowicz, Anna; Zakrzewski, Janusz; Brosseau, Arnaud; Guillot, Régis; Métivier, Rémi; Allain, Clémence
Mechanofluorochromism of pyrene-derived amidophosphonates.
Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology, 2020, 19, 229-234
1557145 CIFC28 H26 N O4 PP -19.7414; 10.2898; 13.4571
110.284; 109.513; 90.732
1179.9Hirai, Yuichi; Wrona-Piotrowicz, Anna; Zakrzewski, Janusz; Brosseau, Arnaud; Guillot, Régis; Métivier, Rémi; Allain, Clémence
Mechanofluorochromism of pyrene-derived amidophosphonates.
Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology, 2020, 19, 229-234
1557146 CIFC21 H30 F6 N O PP 1 21/m 16.007; 14.899; 13.269
90; 92.21; 90
1186.7Potschke, Norbert; Nieger, Martin; Niecke, Edgar
Crystal Structure of 1,1,1,3,3,3-Hexafluoro-2-propanyloxy-(2,4,6-tri-tert-butylphenylimino)phosphine
Acta Chemica Scandinavica, 1997, 51, 337-339
1557147 CIFC11 H24 Br Cl Cu N4 O4P 1 21/n 18.097; 22.75; 8.983
90; 94.21; 90
1650.3Springborg, Johan; Sotofte, Inger
Synthetic, Thermodynamic and Crystallographic Studies of Pentacoordinated Copper(II) Complexes with [24.31]Adamanzane, 1,4,7,10-Tetraazabicyclo[5.5.3]pentadecane, and Bromide, Iodide, Hydroxide, Water or Ammonia
Acta Chemica Scandinavica, 1997, 51, 357-366
1557148 CIFC11 H24 Cu I2 N4P n n 213.678; 13.359; 9.219
90; 90; 90
1684.5Springborg, Johan; Sotofte, Inger
Synthetic, Thermodynamic and Crystallographic Studies of Pentacoordinated Copper(II) Complexes with [24.31]Adamanzane, 1,4,7,10-Tetraazabicyclo[5.5.3]pentadecane, and Bromide, Iodide, Hydroxide, Water or Ammonia
Acta Chemica Scandinavica, 1997, 51, 357-366
1557149 CIFC30 H32 N4 O3P 1 21/n 112.2782; 11.9261; 18.859
90; 103.754; 90
2682.4Wang, Shuo; Ren, Jia-Shu; Shan, Lian-Yun; Sun, Xiao-Yan; Di, Bin; Gu, Ning; Chen, Jin-Long
Triplexed Tracking Labile Sulfur-Containing Species on a Single-Molecule "Nezha" Sensor.
Analytical chemistry, 2020
1557150 CIFC28 H29 N O10P 21 21 218.0096; 12.0536; 28.063
90; 90; 90
2709.3Marthi, Katalin; Larsen, Sine; Acs, Maria; Balint, Jozsef; Fogassy, Elemer
Optical Resolution of 2-(2'-Hydroxyethylamino)-1-phenylethanol, and the Crystal Structures of Two Polymorphic Modifications of the (2R,3R)-O,O'-Dibenzoyl Hydrogen Tartrate Salt of the (S)-(+)-Enantiomer
Acta Chemica Scandinavica, 1997, 51, 367-378
1557151 CIFC28 H29 N O10P 1 21 18.0047; 11.865; 28.065
90; 91.41; 90
2664.7Marthi, Katalin; Larsen, Sine; Acs, Maria; Balint, Jozsef; Fogassy, Elemer
Optical Resolution of 2-(2'-Hydroxyethylamino)-1-phenylethanol, and the Crystal Structures of Two Polymorphic Modifications of the (2R,3R)-O,O'-Dibenzoyl Hydrogen Tartrate Salt of the (S)-(+)-Enantiomer
Acta Chemica Scandinavica, 1997, 51, 367-378
1557152 CIFC3 Ca2 K2 O9R 3 :H13.01; 13.01; 8.615
90; 90; 120
1262.8Winbo, Camilla; Bostrom, Dan; Gobbels, Matthias
Crystal Structure of the Double Carbonate K2Ca2(CO3)3
Acta Chemica Scandinavica, 1997, 51, 387-391
1557153 CIFC25 H38 N4 O4 SC 1 2 121.3; 9.674; 6.986
90; 104.27; 90
1395.1Hammer, Kristin; Benneche, Tore; Hope, Hakon; Undheim, Kjell
Stereoselective Synthesis of Thiophenedimethyl- and Benzenedimethyl- alpha,alpha'-Bridged Bis(glycines)
Acta Chemica Scandinavica, 1997, 51, 392-402
1557154 CIFAl2 Br6P 1 21/a 110.301; 7.095; 7.525
90; 96.45; 90
546.5Berg, Rolf Willestofte; Poulsen, Finn Willy; Nielsen, Kurt
Redetermination of the Crystal Structure of Al2Br6. A Comparison of Three Methods
Acta Chemica Scandinavica, 1997, 51, 442-448
1557155 CIFC116 H154 Cl N9 O9 Ti2P 1 21/n 126.5998; 13.18144; 32.7719
90; 104.629; 90
11118.1Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557156 CIFC30 H44 Cl2 O2 TiP 1 21 111.0509; 9.6943; 14.8668
90; 108.131; 90
1513.61Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557157 CIFC220 H283 Cl6 N15 O20 Ti6P -117.651; 18.2749; 19.8507
67.4531; 68.6833; 73.3966
5428.93Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557158 CIFC125 H172.5 Cl N8.5 O9 Ti2P -117.4371; 17.7765; 21.1345
100.63; 93.526; 104.426
6195.8Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557159 CIFC120 H164 Cl2 N6 O8 Ti2P -112.5697; 18.1183; 27.5282
104.559; 98.781; 102.093
5792.04Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557160 CIFC108 H140 Cl N7 O9 Ti2P -113.9465; 17.4744; 23.5392
85.6028; 74.2347; 74.5316
5320.83Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557161 CIFC130.71 H174.42 Cl N2.85 O11.43 Ti2P -116.3253; 17.3213; 23.5069
102.481; 91.495; 101.593
6340.9Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557162 CIFC113 H149.5 Cl N7.5 O9 Ti2P 1 21/n 126.6007; 13.18235; 32.7812
90; 104.622; 90
11122.7Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557163 CIFC49 H61 Cl N2 O4 TiP -112.14575; 18.0271; 21.0909
95.2564; 105.355; 90.2869
4432.27Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557164 CIFC54 H72 Cl2 N2 O4 TiC 1 2/c 143.9803; 12.41683; 19.4608
90; 94.9954; 90
10587.1Sun, Ziyue; Zhao, Yanxia; Santoro, Orlando; Elsegood, Mark R. J.; Bedwell, Elizabeth V.; Zahra, Khadisha; Walton, Alex; Redshaw, Carl
Use of titanocalix[4]arenes in the ring opening polymerization of cyclic esters
Catalysis Science & Technology, 2020, 10, 1619-1639
1557165 CIFC100 H102 Au4 P2 Ru2 S8P 1 21/c 113.9904; 14.295; 48.384
90; 94.664; 90
9644.4Sun, Yongnan; Pei, Wei; Xie, Mingcai; Xu, Shun; Zhou, Si; Zhao, Jijun; Xiao, Kang; Zhu, Yan
Excitonic Au4Ru2(PPh3)2(SC2H4Ph)8 cluster for light-driven dinitrogen fixation
Chemical Science, 2020, 11, 2440-2447
1557166 CIFBa2 O14 Si4 V2I 4/m7.0429; 7.0429; 11.444
90; 90; 90
567.65Hans-Peter Bojar; Franz Walter; Judith Baumgartner
Bavsiite, Ba2V2O2[Si4O12], mineral data and crystal structure
Mineralogical Magazine, 2019, 83, 821-827
1557167 CIFC24 H22 Cl3 N4 NbP 1 21/c 118.292; 19.904; 17.646
90; 109.47; 90
6057Polamo, Mika; Leskela, Markku
Syntheses and Crystal Structures of Bis[2-(benzylamido)pyridine]trichloro Complexes of Niobium(V) and Tantalum(V)
Acta Chemica Scandinavica, 1997, 51, 449-454
1557168 CIFC24 H22 Cl3 N4 TaP 1 21/n 19.227; 20.005; 16.804
90; 100.08; 90
3054Polamo, Mika; Leskela, Markku
Syntheses and Crystal Structures of Bis[2-(benzylamido)pyridine]trichloro Complexes of Niobium(V) and Tantalum(V)
Acta Chemica Scandinavica, 1997, 51, 449-454
1557169 CIFC23 H22 O5P 1 21/c 116.4615; 7.573; 16.0803
90; 111.302; 90
1867.7Maeda, Gasper; van der Wal, Jelle; Gupta, Arvind Kumar; Munissi, Joan J. E.; Orthaber, Andreas; Sunnerhagen, Per; Nyandoro, Stephen S.; Erdélyi, Máté
Oxygenated Cyclohexene Derivatives and Other Constituents from the Roots of <i>Monanthotaxis trichocarpa</i>.
Journal of natural products, 2020
1557170 CIFC22 H21 Cl O6P 1 21 15.933; 13.4485; 12.3282
90; 96.291; 90
977.74Maeda, Gasper; van der Wal, Jelle; Gupta, Arvind Kumar; Munissi, Joan J. E.; Orthaber, Andreas; Sunnerhagen, Per; Nyandoro, Stephen S.; Erdélyi, Máté
Oxygenated Cyclohexene Derivatives and Other Constituents from the Roots of <i>Monanthotaxis trichocarpa</i>.
Journal of natural products, 2020
1557171 CIFC37 H53 F N2 O2 ZnP 1 21/n 122.1881; 11.5778; 29.7479
90; 106.38; 90
7331.75Jiang, Jinxing; Cui, Yaqin; Lu, Yaguang; Zhang, Bin; Pan, Xiaobo; Wu, Jincai
Weak Lewis Pairs as Catalysts for Highly Isoselective Ring-Opening Polymerization of Epimerically Labile rac-O-Carboxyanhydride of Mandelic Acid
Macromolecules, 2020
1557172 CIFC36 H51 F N2 O2 ZnP 1 21/c 115.3766; 17.6353; 13.571
90; 105.2; 90
3551.32Jiang, Jinxing; Cui, Yaqin; Lu, Yaguang; Zhang, Bin; Pan, Xiaobo; Wu, Jincai
Weak Lewis Pairs as Catalysts for Highly Isoselective Ring-Opening Polymerization of Epimerically Labile rac-O-Carboxyanhydride of Mandelic Acid
Macromolecules, 2020
1557173 CIFC54.28 H49.13 Ir O0.28 P3P 1 21/c 117.31801; 12.99024; 19.71788
90; 94.4442; 90
4422.5Tickner, Ben J.; Semenova, Olga; Iali, Wissam; Rayner, Peter J.; Whitwood, Adrian C.; Duckett, Simon B.
Optimisation of pyruvate hyperpolarisation using SABRE by tuning the active magnetisation transfer catalyst.
Catalysis science & technology, 2020, 10, 1343-1355
1557174 CIFC57 H68 Cl2 Ir2 N4 O S2P 1 21/c 112.9317; 16.6; 25.5365
90; 90.2757; 90
5481.76Tickner, Ben J.; Semenova, Olga; Iali, Wissam; Rayner, Peter J.; Whitwood, Adrian C.; Duckett, Simon B.
Optimisation of pyruvate hyperpolarisation using SABRE by tuning the active magnetisation transfer catalyst.
Catalysis science & technology, 2020, 10, 1343-1355
1557175 CIF
HKL
Paper
C16 H21 N3 O4P -18.127; 8.411; 12.536
105.36; 96.52; 94.77
815.2Yoo, Miri; Koh, Dongsoo
Diethyl 4-(1<i>H</i>-imidazol-2-yl)-2,6-dimethyl-1,4-dihydropyridine-3,5-dicarboxylate
IUCrData, 2020, 5, x200034
1557176 CIF
HKL
Paper
C25 H22 N2 O2 SeP 1 21/c 113.209; 6.343; 27.08
90; 103.356; 90
2207.5Morris, LaQuze L.; Alvarado, Clarisa A.; Goncalves, Julia M.; Singh, Ravi P.; Lovely, Carl J.; Yousufuddin, Muhammed
[4-(4-Methoxyphenyl)-8-oxo-3-(phenylselanyl)spiro[4.5]deca-3,6,9-trien-2-yl]methylcyanamide
IUCrData, 2020, 5, x200078
1557177 CIF
HKL
Paper
C40 H74 Co N8 S4P -17.484; 8.587; 18.523
83.782; 81.868; 71.189
1113Giltzau, Niels Ole; Köckerling, Martin
Bis(1-dodecyl-4-aza-1-azoniabicyclo[2.2.2]octane)tetraisothiocyanatocobalt(II)
IUCrData, 2020, 5, x200023
1557178 CIF
HKL
Paper
C18 H17 F O5P 1 21/c 115.5801; 8.3414; 12.1298
90; 97.086; 90
1564.35Yoo, Miri; Koh, Dongsoo
(<i>E</i>)-1-(4-Fluoro-2-hydroxyphenyl)-3-(2,3,4-trimethoxyphenyl)prop-2-en-1-one
IUCrData, 2020, 5, x200071
1557179 CIFAl Br4 CsP n m a12.2137; 7.5304; 9.9293
90; 90; 90
913.2Berg, Rolf Willestofte
The CsBr-AlBr3 Phase Diagram and the Crystal Structure of CsAlBr4
Acta Chemica Scandinavica, 1997, 51, 455-461
1557180 CIFC20 H26 N4 S2P b c a8.459; 10.552; 22.823
90; 90; 90
2037.2Laitinen, Riitta H.; Csoban, Katalin; Pursiainen, Jouni; Huuskonen, Juhani; Rissanen, Kari
Synthesis and Characterization of Some New Bipyridyl-Based Multidentate Ligands and Their CuI Complexes
Acta Chemica Scandinavica, 1997, 51, 462-469
1557181 CIFC22 H30 N4 S2P -19.1239; 9.518; 7.3299
95.26; 107.805; 112.17
545.5Laitinen, Riitta H.; Csoban, Katalin; Pursiainen, Jouni; Huuskonen, Juhani; Rissanen, Kari
Synthesis and Characterization of Some New Bipyridyl-Based Multidentate Ligands and Their CuI Complexes
Acta Chemica Scandinavica, 1997, 51, 462-469
1557182 CIFC20 H28 Br Cu N4 O S2P -19.799; 10.416; 12.947
66.186; 73.45; 85.07
1158.2Laitinen, Riitta H.; Csoban, Katalin; Pursiainen, Jouni; Huuskonen, Juhani; Rissanen, Kari
Synthesis and Characterization of Some New Bipyridyl-Based Multidentate Ligands and Their CuI Complexes
Acta Chemica Scandinavica, 1997, 51, 462-469
1557183 CIFC26 H28 N4 O5P 4111.7728; 11.7728; 17.1159
90; 90; 90
2372.2Yang, Yaxi; Zhang, Rukang; Li, Zhaojun; Mei, Lianghe; Wan, Shili; Ding, Hong; Chen, Zhifeng; Xing, Jing; Feng, Huijin; Han, Jie; Jiang, Hualiang; Zheng, Mingyue; Luo, Cheng; Zhou, Bing
Discovery of Highly Potent, Selective, and Orally Efficacious p300/CBP Histone Acetyltransferases Inhibitors.
Journal of medicinal chemistry, 2020
1557184 CIFC13 H15 N3 O5P 21 21 218.4194; 8.5433; 19.1641
90; 90; 90
1378.46Yang, Yaxi; Zhang, Rukang; Li, Zhaojun; Mei, Lianghe; Wan, Shili; Ding, Hong; Chen, Zhifeng; Xing, Jing; Feng, Huijin; Han, Jie; Jiang, Hualiang; Zheng, Mingyue; Luo, Cheng; Zhou, Bing
Discovery of Highly Potent, Selective, and Orally Efficacious p300/CBP Histone Acetyltransferases Inhibitors.
Journal of medicinal chemistry, 2020
1557185 CIFC25 H23 F4 N5 O5P 110.1492; 10.1392; 25.2626
96.515; 96.515; 107.35
2435.42Yang, Yaxi; Zhang, Rukang; Li, Zhaojun; Mei, Lianghe; Wan, Shili; Ding, Hong; Chen, Zhifeng; Xing, Jing; Feng, Huijin; Han, Jie; Jiang, Hualiang; Zheng, Mingyue; Luo, Cheng; Zhou, Bing
Discovery of Highly Potent, Selective, and Orally Efficacious p300/CBP Histone Acetyltransferases Inhibitors.
Journal of medicinal chemistry, 2020
1557186 CIFC15 H14 N4 O2P 21 21 215.8178; 16.9835; 28.2863
90; 90; 90
2794.9Yang, Yaxi; Zhang, Rukang; Li, Zhaojun; Mei, Lianghe; Wan, Shili; Ding, Hong; Chen, Zhifeng; Xing, Jing; Feng, Huijin; Han, Jie; Jiang, Hualiang; Zheng, Mingyue; Luo, Cheng; Zhou, Bing
Discovery of Highly Potent, Selective, and Orally Efficacious p300/CBP Histone Acetyltransferases Inhibitors.
Journal of medicinal chemistry, 2020
1557187 CIFC15 H16 O6P 1 21/c 16.20271; 12.9748; 17.3444
90; 96.612; 90
1386.57Liu, Tingting; Wu, Haibo; Zhang, Jing; Deng, Wenjie; Yang, Luowenlei
Modified Eremophilanes from Parasenecio hastatus and Their Neuroprotective Activities
Journal of Natural Products, 2020
1557188 CIFC16 H18 O3P 1 21 18.7529; 5.1376; 14.4614
90; 104.921; 90
628.39Liu, Tingting; Wu, Haibo; Zhang, Jing; Deng, Wenjie; Yang, Luowenlei
Modified Eremophilanes from Parasenecio hastatus and Their Neuroprotective Activities
Journal of Natural Products, 2020
1557189 CIFC22 H12 F6 N2 O3P 1 21/n 110.7749; 15.2475; 12.314
90; 108.515; 90
1918.4Malla, Javid Ahmad; Umesh, Rintu M.; Vijay, Amal; Mukherjee, Arnab; Lahiri, Mayurika; Talukdar, Pinaki
Apoptosis-inducing activity of a fluorescent barrel-rosette M+/Cl− channel
Chemical Science, 2020, 11, 2420-2428
1557190 CIFC33 H35 Cl3 Cu N6 O11 VC 1 2/c 123.445; 16.392; 20.612
90; 106.955; 90
7577Hazell, Alan; McKenzie, Christine J.; Moubaraki, Boujemaa; Murray, Keith S.
Crystal Structure and Magnetic Properties of a Copper(II)-Vanadium(IV) Complex of an 'Open-Ended' Dinucleating Ligand
Acta Chemica Scandinavica, 1997, 51, 470-475
1557191 CIFCu3 Fe2 O18 Se6P 1 21/n 15.362; 18.84; 7.612
90; 92.72; 90
768.1Giester, G.
Synthesis and Crystal Structure of the New Polymorph Cu3Fe2(SeO3)6-II
Acta Chemica Scandinavica, 1997, 51, 501-514
1557192 CIFC36 H32 N6 O4 S2 ZnC 1 2/c 121.811; 11.523; 14.063
90; 98.64; 90
3494.3Romero, Jaime; Garcia-Vazquez, Jose A.; Duran, Maria L.; Castineiras, Alfonso; Sousa, Antonio; Garnovskii, Alexander D.; Garnovskii, D. A.
Electrochemical Synthesis of Zinc and Cadmium Complexes with N-[(2-pyrrolyl)methylidyne]-N'-tosylbenzene-1,2-diamine. The Crystal Structure of Bis-{N-[(2-pyrrolyl)methylidene]-N'-tosylbenzene-1,2-diaminato}zinc(II)
Acta Chemica Scandinavica, 1997, 51, 672-675
1557193 CIFC20 H14P 1 21/c 114.0565; 5.9201; 7.8474
90; 92.837; 90
652.23Shibuya, Yusuke; Aonuma, Kazuhiro; Kimura, Tomohiro; Kaneko, Takuro; Fujiwara, Wataru; Yamaguchi, Yuji; Kumaki, Daisuke; Tokito, Shizuo; Katagiri, Hiroshi
Linear Biazulene Isomers: Effects of Molecular and Packing Structure on Optoelectronic and Charge-Transport Properties
The Journal of Physical Chemistry C, 2020
1557194 CIFC20 H14P 1 21/c 113.5349; 6.0042; 8.1543
90; 94.232; 90
660.86Shibuya, Yusuke; Aonuma, Kazuhiro; Kimura, Tomohiro; Kaneko, Takuro; Fujiwara, Wataru; Yamaguchi, Yuji; Kumaki, Daisuke; Tokito, Shizuo; Katagiri, Hiroshi
Linear Biazulene Isomers: Effects of Molecular and Packing Structure on Optoelectronic and Charge-Transport Properties
The Journal of Physical Chemistry C, 2020
1557195 CIFC20 H14P -15.9457; 7.8815; 14.0822
86.684; 87.09; 88.848
657.85Shibuya, Yusuke; Aonuma, Kazuhiro; Kimura, Tomohiro; Kaneko, Takuro; Fujiwara, Wataru; Yamaguchi, Yuji; Kumaki, Daisuke; Tokito, Shizuo; Katagiri, Hiroshi
Linear Biazulene Isomers: Effects of Molecular and Packing Structure on Optoelectronic and Charge-Transport Properties
The Journal of Physical Chemistry C, 2020
1557196 CIFC20 H14P -16.087; 7.5639; 14.4293
97.942; 95.597; 90.921
654.54Shibuya, Yusuke; Aonuma, Kazuhiro; Kimura, Tomohiro; Kaneko, Takuro; Fujiwara, Wataru; Yamaguchi, Yuji; Kumaki, Daisuke; Tokito, Shizuo; Katagiri, Hiroshi
Linear Biazulene Isomers: Effects of Molecular and Packing Structure on Optoelectronic and Charge-Transport Properties
The Journal of Physical Chemistry C, 2020
1557197 CIFC58 H62 N6 O13 Zn2P 1 21/c 115.21; 16.731; 23.716
90; 104.529; 90
5842Fu, Guorui; He, Yani; Li, Wentao; Miao, Tiezheng; Lü, Xingqiang; He, Hongshan; Liu, Li; Wong, Wai-Yeung
Efficient white polymer light-emitting diodes (WPLEDs) based on covalent-grafting of [Zn2(MP)3(OAc)] into PVK
Chemical Science, 2020, 11, 2640-2646
1557198 CIFC26 H52 Cu F6 Mn N8 O8 S2P 1 21/a 117.525; 17.955; 12.804
90; 104.97; 90
3892.2Baron, V.; Gillon, B.; Kahn, O.; Rundlof, H.; Tellgren, R.
Low-Temperature Neutron and X-Ray Diffraction Studies on Mn(cth)Cu(oxpn)(CF3SO3)2: (cth) = (±)-5,7,7,12,14,14-Hexamethyl-1,4,8,11-tetraazacyclotetradecane; (oxpn) = N,N'-Bis(3-aminopropyl)oxamide
Acta Chemica Scandinavica, 1997, 51, 683-688
1557199 CIFC6 H18 I4 N3 P SeP n a 2114.003; 10.958; 11.801
90; 90; 90
1810.8Rudd, Martin D.; Lindeman, Sergey V.; Husebye, Steinar
Three-Center, Four-Electron Bonding and Structural Characteristics of Two-Coordinate Iodine(I) Complexes with Halogen and Chalcogen Ligands. Synthesis, Spectroscopic Characterization and X-Ray Structural Studies of (Triiodo)[tris(dimethylamino)phosphaneselenide]iodine(I) and Bis{(triiodo)[tri(N-morpholyl)phosphaneselenide]iodine(I)}/Diiodine Molecular Complex
Acta Chemica Scandinavica, 1997, 51, 689-708
1557200 CIFC12 H24 I5 N3 O3 P SeP 1 21/c 18.999; 16.874; 16.996
90; 103.98; 90
2504.4Rudd, Martin D.; Lindeman, Sergey V.; Husebye, Steinar
Three-Center, Four-Electron Bonding and Structural Characteristics of Two-Coordinate Iodine(I) Complexes with Halogen and Chalcogen Ligands. Synthesis, Spectroscopic Characterization and X-Ray Structural Studies of (Triiodo)[tris(dimethylamino)phosphaneselenide]iodine(I) and Bis{(triiodo)[tri(N-morpholyl)phosphaneselenide]iodine(I)}/Diiodine Molecular Complex
Acta Chemica Scandinavica, 1997, 51, 689-708
1557201 CIFC23 H28 O8P 1 21 15.996; 12.4304; 14.2341
90; 94.361; 90
1057.83Wang, Rong; Fan, Run-Zhu; Ni, Fu-Qiang; Sang, Jun; Xie, Xing-Lin; Luo, Si-Yuan; Tang, Gui-Hua; Yin, Sheng
19-nor-, 20-nor-, and tetranor-Halimane-Type Furanoditerpenoids from Croton crassifolius
Journal of Natural Products, 2020
1557202 CIFC21 H26 O5P 16.3062; 7.6848; 9.7183
87.904; 80.198; 87.694
463.505Wang, Rong; Fan, Run-Zhu; Ni, Fu-Qiang; Sang, Jun; Xie, Xing-Lin; Luo, Si-Yuan; Tang, Gui-Hua; Yin, Sheng
19-nor-, 20-nor-, and tetranor-Halimane-Type Furanoditerpenoids from Croton crassifolius
Journal of Natural Products, 2020
1557203 CIFC21 H26 O6P 21 21 218.0315; 8.3527; 27.8078
90; 90; 90
1865.48Wang, Rong; Fan, Run-Zhu; Ni, Fu-Qiang; Sang, Jun; Xie, Xing-Lin; Luo, Si-Yuan; Tang, Gui-Hua; Yin, Sheng
19-nor-, 20-nor-, and tetranor-Halimane-Type Furanoditerpenoids from Croton crassifolius
Journal of Natural Products, 2020
1557204 CIFC24 H26 O10P 21 21 217.77753; 10.89287; 25.97545
90; 90; 90
2200.63Wang, Rong; Fan, Run-Zhu; Ni, Fu-Qiang; Sang, Jun; Xie, Xing-Lin; Luo, Si-Yuan; Tang, Gui-Hua; Yin, Sheng
19-nor-, 20-nor-, and tetranor-Halimane-Type Furanoditerpenoids from Croton crassifolius
Journal of Natural Products, 2020
1557205 CIFC23 H28 O8P 21 21 217.9019; 10.2955; 25.9952
90; 90; 90
2114.81Wang, Rong; Fan, Run-Zhu; Ni, Fu-Qiang; Sang, Jun; Xie, Xing-Lin; Luo, Si-Yuan; Tang, Gui-Hua; Yin, Sheng
19-nor-, 20-nor-, and tetranor-Halimane-Type Furanoditerpenoids from Croton crassifolius
Journal of Natural Products, 2020
1557206 CIFC20 H30 N2 O2P 1 21/c 111.012; 16.138; 11.225
90; 96.899; 90
1980Chen, Hang; Ye, Hebo; Hai, Yu; Zhang, Ling; You, Lei
n → π* interactions as a versatile tool for controlling dynamic imine chemistry in both organic and aqueous media
Chemical Science, 2020, 11, 2707-2715
1557207 CIFC19 H29 N3 O2I 1 2/a 117.03; 10.58; 22.26
90; 103.23; 90
3904Chen, Hang; Ye, Hebo; Hai, Yu; Zhang, Ling; You, Lei
n → π* interactions as a versatile tool for controlling dynamic imine chemistry in both organic and aqueous media
Chemical Science, 2020, 11, 2707-2715
1557208 CIF
HKL
Paper
C20 H24 N2 O6 S2C 1 2/c 129.1537; 8.8739; 19.9919
90; 123.621; 90
4306.9Narvekar, Kedar U.; Srinivasan, Bikshandarkoil R.
Benzene-1,2-diaminium bis(4-methylbenzene-1-sulfonate)
IUCrData, 2020, 5, x200100
1557209 CIF
HKL
Paper
Br Cs F4I m m m5.5075; 6.789; 12.2572
90; 90; 90
458.3Malin, Artem V.; Ivlev, Sergei I.; Ostvald, Roman V.; Kraus, Florian
Redetermination of the crystal structure of caesium tetrafluoridobromate(III) from single-crystal X-ray diffraction data
IUCrData, 2020, 5, x200114
1557210 CIF
HKL
Paper
C19 H13 I O2P 1 21/n 17.0481; 18.2185; 12.6391
90; 104.947; 90
1568.02Dean, Raven; Miller, Chelsea N.; Zingales, Sarah K.; Padgett, Clifford W.
3-(4-Iodophenyl)-2,3-dihydro-1<i>H</i>-benzo[<i>f</i>]chromen-1-one
IUCrData, 2020, 5, x200110
1557211 CIFC26 H26 Cl3 N4 TaC 1 2/c 110.577; 23.018; 11.102
90; 93.35; 90
2698Polamo, Mika; Leskela, Markku
Syntheses and Crystal Structures of Bis[2-(benzylamino)-4-methylpyridinato]trichlorotantalum(V) and Bis[2-(benzylamino)-6-methylpyridinato]trichlorotantalum(V)
Acta Chemica Scandinavica, 1997, 51, 709-713
1557212 CIFC34 H36 Cl3 N4 TaP -110.066; 12.113; 14.329
106.53; 100.51; 90.15
1644Polamo, Mika; Leskela, Markku
Syntheses and Crystal Structures of Bis[2-(benzylamino)-4-methylpyridinato]trichlorotantalum(V) and Bis[2-(benzylamino)-6-methylpyridinato]trichlorotantalum(V)
Acta Chemica Scandinavica, 1997, 51, 709-713
1557213 CIFC29 H21 NP 1 21/c 116.841; 5.9463; 21.001
90; 96.31; 90
2090.3Li, Ye-Xin; Chen, You-Gui; Yu, Zhen-Feng; Yang, Xiao-Feng; Nie, Yong; Cui, Yu; Sun, Guo-Xin
Polymorph-Dependent Multicolor-Switchable Mechanofluorochromism of 1-(9-Anthryl)vinyl-3-(3-pyridyl)vinylbenzene: Molecular Conformation versus Intermolecular Interaction
The Journal of Physical Chemistry C, 2020
1557214 CIFC29 H21 NP 4/n :227.4933; 27.4933; 5.8624
90; 90; 90
4431.3Li, Ye-Xin; Chen, You-Gui; Yu, Zhen-Feng; Yang, Xiao-Feng; Nie, Yong; Cui, Yu; Sun, Guo-Xin
Polymorph-Dependent Multicolor-Switchable Mechanofluorochromism of 1-(9-Anthryl)vinyl-3-(3-pyridyl)vinylbenzene: Molecular Conformation versus Intermolecular Interaction
The Journal of Physical Chemistry C, 2020
1557215 CIFC29 H21 NP 1 21/c 15.5332; 11.857; 31.179
90; 90.172; 90
2045.6Li, Ye-Xin; Chen, You-Gui; Yu, Zhen-Feng; Yang, Xiao-Feng; Nie, Yong; Cui, Yu; Sun, Guo-Xin
Polymorph-Dependent Multicolor-Switchable Mechanofluorochromism of 1-(9-Anthryl)vinyl-3-(3-pyridyl)vinylbenzene: Molecular Conformation versus Intermolecular Interaction
The Journal of Physical Chemistry C, 2020
1557216 CIFC30 H32 P2 S4P 1 21/n 113.586; 7.729; 15.57
90; 112.95; 90
1505.5Laitinen, Riitta H.; Losonczi, Judit; Pursiainen, Jouni; Ahlgren, Markku
X-Ray Crystal Structure of 1,2-Bis[bis(2-methylthiophenyl)phosphino]ethane
Acta Chemica Scandinavica, 1997, 51, 804-806
1557217 CIFC26 H27 Cu N9 O7P -19.529; 10.14; 14.423
86.05; 77.71; 86.89
1357.3Sletten, Jorunn; Grove, Hilde
Copper(II) Complex of the Tripodal Ligand Tris((benzimidazol-2-yl)methyl)amine and its Bonding to a Sulfur Ligand of Thiolate Character
Acta Chemica Scandinavica, 1997, 51, 822-831
1557218 CIFC24 H23 Cu N9 O7P -19.791; 9.644; 13.622
96.31; 96.93; 97.08
1256.9Sletten, Jorunn; Grove, Hilde
Copper(II) Complex of the Tripodal Ligand Tris((benzimidazol-2-yl)methyl)amine and its Bonding to a Sulfur Ligand of Thiolate Character
Acta Chemica Scandinavica, 1997, 51, 822-831
1557219 CIFC52 H53 Cu2 N21 O11 SP -113.339; 14.151; 16.232
103.05; 108.82; 93.21
2797.5Sletten, Jorunn; Grove, Hilde
Copper(II) Complex of the Tripodal Ligand Tris((benzimidazol-2-yl)methyl)amine and its Bonding to a Sulfur Ligand of Thiolate Character
Acta Chemica Scandinavica, 1997, 51, 822-831
1557220 CIFS8F d d d :210.331; 12.6786; 24.3519
90; 90; 90
3189.7MIKURIYA, Masahiro; TANIGUCHI, Kazuki; KOYAMA, Yoshiki; WATANABE, Hiroaki; YOSHIOKA, Daisuke; MITSUHASHI, Ryoji; ASATO, Eiji
Crystal Structure of S<sub>8</sub> Molecule from Thiourea
X-ray Structure Analysis Online, 2020, 36, 1-2
1557221 CIFC398.15 H435.65 B16 Co8 F64 N74.85 O39.35C 1 2/c 132.77108; 30.00687; 40.3365
90; 96.1279; 90
39438.6Mozaceanu,; Taylor,; Piper,; Argent,; Ward,
Catalysis of an Aldol Condensation Using a Coordination Cage
Chemistry, 2020, 2, 22-32
1557222 CIFC20 H12 Cu N2 O4P 1 21/c 15.6674; 10.9072; 14.5876
90; 93.491; 90
900.07He, Tengjiao; Xiao, Yonghou; Zhao, Qidong; Zhou, Mengxue; He, Gaohong
Ultramicroporous Metal‒Organic Framework Qc-5-Cu for Highly Selective Adsorption of CO2 from C2H4 Stream
Industrial & Engineering Chemistry Research, 2020
1557223 CIFC55.6 H49 Br2 Cl2 Cu F6 N2 O1.9 P3P -110.93; 14.2927; 19.2894
70.366; 86.491; 73.206
2715Nohara, Isaak; Keller, Aramis; Tarassenko, Nikolai; Prescimone, Alessandro; Constable, Edwin C.; Housecroft, Catherine E.
Heteroleptic [Cu(P^P)(N^N)][PF6] Compounds with Isomeric Dibromo-1,10-Phenanthroline Ligands
Inorganics, 2020, 8, 4
1557224 CIFC49 H36 Br2 Cl2 Cu F6 N2 O P3P -112.4032; 18.9805; 22.0591
70.33; 77.791; 87.292
4777.9Nohara, Isaak; Keller, Aramis; Tarassenko, Nikolai; Prescimone, Alessandro; Constable, Edwin C.; Housecroft, Catherine E.
Heteroleptic [Cu(P^P)(N^N)][PF6] Compounds with Isomeric Dibromo-1,10-Phenanthroline Ligands
Inorganics, 2020, 8, 4
1557225 CIFC50 H39 Br2 Cu F6 N2 O1.5 P3P -115.1949; 18.5322; 18.5423
107.867; 104.444; 101.088
4603.2Nohara, Isaak; Keller, Aramis; Tarassenko, Nikolai; Prescimone, Alessandro; Constable, Edwin C.; Housecroft, Catherine E.
Heteroleptic [Cu(P^P)(N^N)][PF6] Compounds with Isomeric Dibromo-1,10-Phenanthroline Ligands
Inorganics, 2020, 8, 4
1557226 CIFC54.9 H47.2 Br2 Cl2.2 Cu F6 N2 O1.7 P3P -110.1768; 13.7504; 20.1505
90.204; 98.12; 99.535
2751.9Nohara, Isaak; Keller, Aramis; Tarassenko, Nikolai; Prescimone, Alessandro; Constable, Edwin C.; Housecroft, Catherine E.
Heteroleptic [Cu(P^P)(N^N)][PF6] Compounds with Isomeric Dibromo-1,10-Phenanthroline Ligands
Inorganics, 2020, 8, 4
1557227 CIFC52.1 H40.2 Br2 Cl2.2 Cu F6 N2 O P3C 1 2/m 133.3182; 14.105; 11.8205
90; 102.059; 90
5432.5Nohara, Isaak; Keller, Aramis; Tarassenko, Nikolai; Prescimone, Alessandro; Constable, Edwin C.; Housecroft, Catherine E.
Heteroleptic [Cu(P^P)(N^N)][PF6] Compounds with Isomeric Dibromo-1,10-Phenanthroline Ligands
Inorganics, 2020, 8, 4
1557228 CIFC101 H48 F40 N12 Ni O7P n a 2127.571; 19.7599; 19.1951
90; 90; 90
10457.5Li, Chengjie; Zhang, Kai; Ishida, Masatoshi; Li, Qizhao; Shimomura, Keito; Baryshnikov, Glib; Li, Xin; Savage, Mathew; Wu, Xin-Yan; Yang, Sihai; Furuta, Hiroyuki; Xie, Yongshu
Tripyrrin-armed isosmaragdyrins: synthesis, heterodinuclear coordination, and protonation-triggered helical inversion
Chemical Science, 2020, 11, 2790-2795
1557229 CIFC89.5 H19 Cl Cu F40 N8 Ni O3C 1 2/c 147.886; 13.8742; 28.061
90; 119.602; 90
16210Li, Chengjie; Zhang, Kai; Ishida, Masatoshi; Li, Qizhao; Shimomura, Keito; Baryshnikov, Glib; Li, Xin; Savage, Mathew; Wu, Xin-Yan; Yang, Sihai; Furuta, Hiroyuki; Xie, Yongshu
Tripyrrin-armed isosmaragdyrins: synthesis, heterodinuclear coordination, and protonation-triggered helical inversion
Chemical Science, 2020, 11, 2790-2795
1557230 CIFC89 H22 F40 N8 O3P -111.6188; 14.403; 26.7956
82.937; 77.65; 70.954
4133.7Li, Chengjie; Zhang, Kai; Ishida, Masatoshi; Li, Qizhao; Shimomura, Keito; Baryshnikov, Glib; Li, Xin; Savage, Mathew; Wu, Xin-Yan; Yang, Sihai; Furuta, Hiroyuki; Xie, Yongshu
Tripyrrin-armed isosmaragdyrins: synthesis, heterodinuclear coordination, and protonation-triggered helical inversion
Chemical Science, 2020, 11, 2790-2795
1557231 CIFC97 H32 F40 N12 Ni O3P -114.057; 14.08; 24.646
92.257; 101.581; 108.23
4511.4Li, Chengjie; Zhang, Kai; Ishida, Masatoshi; Li, Qizhao; Shimomura, Keito; Baryshnikov, Glib; Li, Xin; Savage, Mathew; Wu, Xin-Yan; Yang, Sihai; Furuta, Hiroyuki; Xie, Yongshu
Tripyrrin-armed isosmaragdyrins: synthesis, heterodinuclear coordination, and protonation-triggered helical inversion
Chemical Science, 2020, 11, 2790-2795
1557232 CIFC89 H18 Cu F40 N8 Ni O3P -114.0363; 14.1385; 24.8547
91.904; 101.174; 107.743
4586.3Li, Chengjie; Zhang, Kai; Ishida, Masatoshi; Li, Qizhao; Shimomura, Keito; Baryshnikov, Glib; Li, Xin; Savage, Mathew; Wu, Xin-Yan; Yang, Sihai; Furuta, Hiroyuki; Xie, Yongshu
Tripyrrin-armed isosmaragdyrins: synthesis, heterodinuclear coordination, and protonation-triggered helical inversion
Chemical Science, 2020, 11, 2790-2795
1557233 CIFS8 V7P 32 2 16.689; 6.689; 17.403
90; 90; 120
674.3Bindi,; Zaccarini,; Ifandi,; Tsikouras,; Stanley,; Garuti,; Mauro,
Grammatikopoulosite, NiVP, a New Phosphide from the Chromitite of the Othrys Ophiolite, Greece
Minerals, 2020, 10, 131
1557234 CIFC61 H90 Au2 Cl2 F12 N2 P2 Sb2P 1 21/n 110.4398; 18.5854; 16.9617
90; 94.354; 90
3281.5Navarro, Miquel; Toledo, Alberto; Mallet-Ladeira, Sonia; Sosa Carrizo, E. Daiann; Miqueu, Karinne; Bourissou, Didier
Versatility and adaptative behaviour of the P^N chelating ligand MeDalphos within gold(i) π complexes
Chemical Science, 2020, 11, 2750-2758
1557235 CIFC34 H50 Au Cl2 F6 N O P SbP 1 21/c 110.9121; 17.7644; 19.509
90; 104.904; 90
3654.5Navarro, Miquel; Toledo, Alberto; Mallet-Ladeira, Sonia; Sosa Carrizo, E. Daiann; Miqueu, Karinne; Bourissou, Didier
Versatility and adaptative behaviour of the P^N chelating ligand MeDalphos within gold(i) π complexes
Chemical Science, 2020, 11, 2750-2758
1557236 CIFC33 H48 Au Cl2 F6 N O2 P SbP 1 21 114.8546; 12.2517; 20.5946
90; 99.848; 90
3692.9Navarro, Miquel; Toledo, Alberto; Mallet-Ladeira, Sonia; Sosa Carrizo, E. Daiann; Miqueu, Karinne; Bourissou, Didier
Versatility and adaptative behaviour of the P^N chelating ligand MeDalphos within gold(i) π complexes
Chemical Science, 2020, 11, 2750-2758
1557237 CIFC21 H20 N4 O5P 1 21/c 115.4212; 13.4652; 9.4134
90; 102.515; 90
1908.2Navarro, Miquel; Toledo, Alberto; Mallet-Ladeira, Sonia; Sosa Carrizo, E. Daiann; Miqueu, Karinne; Bourissou, Didier
Versatility and adaptative behaviour of the P^N chelating ligand MeDalphos within gold(i) π complexes
Chemical Science, 2020, 11, 2750-2758
1557238 CIFC29 H36 Au B10 Cl2 F6 P2 SbP 1 n 110.0221; 13.3021; 14.7578
90; 95.633; 90
1957.94Navarro, Miquel; Toledo, Alberto; Mallet-Ladeira, Sonia; Sosa Carrizo, E. Daiann; Miqueu, Karinne; Bourissou, Didier
Versatility and adaptative behaviour of the P^N chelating ligand MeDalphos within gold(i) π complexes
Chemical Science, 2020, 11, 2750-2758
1557239 CIFC38 H47 Au F6 N2 O2 P SbP 1 21/c 110.7728; 11.143; 30.591
90; 98.974; 90
3627.2Navarro, Miquel; Toledo, Alberto; Mallet-Ladeira, Sonia; Sosa Carrizo, E. Daiann; Miqueu, Karinne; Bourissou, Didier
Versatility and adaptative behaviour of the P^N chelating ligand MeDalphos within gold(i) π complexes
Chemical Science, 2020, 11, 2750-2758
1557240 CIFC10 H16 Br4 SeC 1 2/c 120.9331; 6.0827; 15.253
90; 132.9; 90
1422.72Potapov, Vladimir A.; Musalov, Maxim V.; Kurkutov, Evgeny O.; Yakimov, Vladimir A.; Khabibulina, Alfiya G.; Musalova, Maria V.; Amosova, Svetlana V.; Borodina, Tatyana N.; Albanov, Alexander I.
Remarkable Alkene-to-Alkene and Alkene-to-Alkyne Transfer Reactions of Selenium Dibromide and PhSeBr. Stereoselective Addition of Selenium Dihalides to Cycloalkenes.
Molecules (Basel, Switzerland), 2020, 25, 194
1557241 CIFC10 H16 Cl4 SeC 1 2/c 120.6655; 6.0655; 14.7555
90; 133.69; 90
1337.4Potapov, Vladimir A.; Musalov, Maxim V.; Kurkutov, Evgeny O.; Yakimov, Vladimir A.; Khabibulina, Alfiya G.; Musalova, Maria V.; Amosova, Svetlana V.; Borodina, Tatyana N.; Albanov, Alexander I.
Remarkable Alkene-to-Alkene and Alkene-to-Alkyne Transfer Reactions of Selenium Dibromide and PhSeBr. Stereoselective Addition of Selenium Dihalides to Cycloalkenes.
Molecules (Basel, Switzerland), 2020, 25, 194
1557242 CIFC23 H19 Co N2 O7 SP -19.1273; 12.0439; 12.0526
62.4993; 75.9211; 79.9212
1136.88Chhetri, Pradhumna Mahat; Wu, Ming-Hao; Hsieh, Chou-Ting; Yang, Xiang-Kai; Wu, Chen-Ming; Yang, En-Che; Wang, Chih-Chieh; Chen, Jhy-Der
A Pair of Co<sup>II</sup> Supramolecular Isomers Based on Flexible Bis-Pyridyl-Bis-Amide and Angular Dicarboxylate Ligands.
Molecules (Basel, Switzerland), 2020, 25, 201
1557243 CIFC23.5 H22 Co N2 O8 SP -19.2206; 11.0642; 13.345
96.611; 109.696; 103.697
1216.7Chhetri, Pradhumna Mahat; Wu, Ming-Hao; Hsieh, Chou-Ting; Yang, Xiang-Kai; Wu, Chen-Ming; Yang, En-Che; Wang, Chih-Chieh; Chen, Jhy-Der
A Pair of Co<sup>II</sup> Supramolecular Isomers Based on Flexible Bis-Pyridyl-Bis-Amide and Angular Dicarboxylate Ligands.
Molecules (Basel, Switzerland), 2020, 25, 201
1557244 CIFC90 H126 Mn3 N12 O27P 1 21/m 112.323; 32.145; 12.931
90; 93.58; 90
5112Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557245 CIFC84 H84 Cl18 Mn3 N12 O12P 1 21/m 112.313; 31.877; 12.954
90; 92.93; 90
5078Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557246 CIFC105 H103.5 Mn3 N12 O12P -112.276; 12.869; 31.586
93.98; 97.43; 92.02
4931Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557247 CIFC111 H138 Mn3 N12 O21P -112.457; 13.242; 33.037
86.69; 86.08; 85.22
5411Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557248 CIFC97 H126 Mn3 N12 O18P -112.364; 12.947; 30.366
99.4; 97.35; 91.57
4750.4Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557249 CIFC93 H120 Mn3 N12 O21P 1 21/m 112.274; 32.826; 12.93
90; 95.51; 90
5186Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557250 CIFC97.5 H111 Mn3 N12 O19.5P 1 21/m 112.307; 31.637; 13.006
90; 92.1; 90
5061Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557251 CIFC111 H106 Cl2 Mn3 N12 O16 Rh2P 1 21/c 112.339; 33.798; 25.762
90; 96.1; 90
10683Peralta, Ricardo A.; Huxley, Michael T.; Young, Rosemary J.; Linder-Patton, Oliver M; Evans, Jack D.; Doonan, Christian J.; Sumby, Christopher J.
MOF matrix isolation: cooperative conformational mobility enables reliable single crystal transformations.
Faraday discussions, 2021, 225, 84-99
1557252 CIF
HKL
Paper
C29 H23 Cl N2 OP 1 21/n 19.0627; 10.7595; 24.4636
90; 100.599; 90
2344.7Shraddha, K. N.; Devika, S.; Begum, Noor Shahina
4-Chloro-2-[1-(4-ethylphenyl)-4,5-diphenyl-1<i>H</i>-imidazol-2-yl]phenol
IUCrData, 2020, 5, x191690
1557253 CIFC54 H99 Am Br3 O3 P3P c a 2128.768; 11.456; 18.185
90; 90; 90
5993Windorff, Cory J.; Celis-Barros, Cristian; Sperling, Joseph M.; McKinnon, Noah C.; Albrecht-Schmitt, Thomas E.
Probing a variation of the inverse-trans-influence in americium and lanthanide tribromide tris(tricyclohexylphosphine oxide) complexes
Chemical Science, 2020, 11, 2770-2782
1557254 CIFC54 H99 Br3 Nd O3 P3P c a 2128.7058; 11.4228; 18.1359
90; 90; 90
5946.8Windorff, Cory J.; Celis-Barros, Cristian; Sperling, Joseph M.; McKinnon, Noah C.; Albrecht-Schmitt, Thomas E.
Probing a variation of the inverse-trans-influence in americium and lanthanide tribromide tris(tricyclohexylphosphine oxide) complexes
Chemical Science, 2020, 11, 2770-2782
1557255 CIFC54 H99 Br3 Ce O3 P3P c a 2128.92; 11.434; 18.209
90; 90; 90
6021.2Windorff, Cory J.; Celis-Barros, Cristian; Sperling, Joseph M.; McKinnon, Noah C.; Albrecht-Schmitt, Thomas E.
Probing a variation of the inverse-trans-influence in americium and lanthanide tribromide tris(tricyclohexylphosphine oxide) complexes
Chemical Science, 2020, 11, 2770-2782
1557256 CIFC54 H99 Br3 La O3 P3P c a 2128.879; 11.4223; 18.2083
90; 90; 90
6006.3Windorff, Cory J.; Celis-Barros, Cristian; Sperling, Joseph M.; McKinnon, Noah C.; Albrecht-Schmitt, Thomas E.
Probing a variation of the inverse-trans-influence in americium and lanthanide tribromide tris(tricyclohexylphosphine oxide) complexes
Chemical Science, 2020, 11, 2770-2782
1557257 CIFC54 H99 Br3 O3 P3 PrP c a 2128.7155; 11.4126; 18.1299
90; 90; 90
5941.5Windorff, Cory J.; Celis-Barros, Cristian; Sperling, Joseph M.; McKinnon, Noah C.; Albrecht-Schmitt, Thomas E.
Probing a variation of the inverse-trans-influence in americium and lanthanide tribromide tris(tricyclohexylphosphine oxide) complexes
Chemical Science, 2020, 11, 2770-2782
1557258 CIFC34 H76 Cl4 Cu3 N12 O21P -6 2 m13.093; 13.093; 8.631
90; 90; 120
1281.4Springborg, Johan; Glerup, Jorgen; Sotofte, Inger
Synthesis and Crystal Structure of a Compound with Three [24.31]Adamanzanecopper(II) Species Coordinated to One Carbonate Ion, mu3-Carbonatotris{1,4,7,10-tetraazabicyclo[5.5.3]pentadecanecopper(II)} Perchlorate Dihydrate.
Acta Chemica Scandinavica, 1997, 51, 832-838
1557259 CIFC13 H9 N3 O7 SC 1 2/c 129.207; 12.714; 19.984
90; 128.94; 90
5771.9Butts, Craig P.; Eberson, Lennart; Hartshorn, Michael P.; Radner, Finn; Robinson, Ward T.; Wood, Bryan R.
Regiochemistry of the Reaction between Dibenzothiophene Radical Cation and Nucleophiles or Nitrogen Dioxide
Acta Chemica Scandinavica, 1997, 51, 839-848
1557260 CIFCr H9 N12P 17.661; 10.19; 5.807
93.58; 101.37; 81.3
439.1Dossing, Anders; Engberg, Pernille; Hazell, Rita
Crystal Structures and Nitrosation Reactions of Triamminetriazido Complexes of Chromium(III)
Acta Chemica Scandinavica, 1997, 51, 849-854

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