Crystallography Open Database

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7101267 CIFVI m -3 m3.026; 3.026; 3.026
90; 90; 90
27.708Simon Clarke; Oliver J. Rutt; Gareth R. Williams
Reversible lithium insertion and copper extrusion in layered oxysulfides
Chemical Communications, 2006
7101270 CIFVI m -3 m3.02658; 3.02658; 3.02658
90; 90; 90
27.724Simon Clarke; Oliver J. Rutt; Gareth R. Williams
Reversible lithium insertion and copper extrusion in layered oxysulfides
Chemical Communications, 2006
7110559 CIFLi N NiP -6 m 23.758; 3.758; 3.54
90; 90; 120
43.3Barker, Marten G.; Blake, Alexander J.; Gregory, Duncan H.; Siddons, Daniel J.; Smith, Susan E.; Edwards, Peter P.; Hamor, Thomas A.
Novel layered lithium nitridonickelates; effect of Li vacancy concentration on N co-ordination geometry and Ni oxidation state
Chemical Communications, 1999, 1187
7102756 CIFCo0.53 Li1.99 NP 6/m m m3.7343; 3.7343; 3.607
90; 90; 120
43.56Gordon, Alexandra G; Smith, Ronald I; Wilson, Claire; Stoeva, Zlatka; Gregory, Duncan H
Crystal growth, defect structure and magnetism of new Li3N-derived lithium nitridocobaltates.
Chemical communications (Cambridge, England), 2004, 2812-2813
7105364 CIF?P 63 m c3.19868; 3.19868; 5.19278
90; 90; 120
46.0121Yashima, Masatomo; Yamada, Hiroki; Maeda, Kazuhiko; Domen, Kazunari
Experimental visualization of covalent bonds and structural disorder in a gallium zinc oxynitride photocatalyst (Ga(1-x)Zn(x))(N(1-x)O(x)): origin of visible light absorption.
Chemical communications (Cambridge, England), 2010, 46, 2379-2381
7101269 CIFCuF m -3 m3.61447; 3.61447; 3.61447
90; 90; 90
47.221Simon Clarke; Oliver J. Rutt; Gareth R. Williams
Reversible lithium insertion and copper extrusion in layered oxysulfides
Chemical Communications, 2006
7101264 CIFCuF m -3 m3.61696; 3.61696; 3.61696
90; 90; 90
47.318Simon Clarke; Oliver J. Rutt; Gareth R. Williams
Reversible lithium insertion and copper extrusion in layered oxysulfides
Chemical Communications, 2006
7100128 CIFN Na SnP 63 m c3.3306; 3.3306; 10.8919
90; 90; 120
104.636Simon Clarke; Oltan Gal; Nicholas Watney; D. Webster; Simon J. Clarke
The first ternary tin (II) nitride: NaSnN
Chemical Communications, 2005
1008882 CIFNa O3I m 2 m3.507; 5.7703; 5.2701
90; 90; 90
106.6Klein, W; Armbruster, K; Jansen, M
Synthesis and crystal structure determination of sodium ozonide
Chemical Communications, 1998, 1998, 707-708
7103014 CIFO2 SiP 32 2 14.9115; 4.9115; 5.4038
90; 90; 120
112.892Henry, Paul F; Weller, Mark T; Wilson, Chick C
Hydrogenous materials using powder neutron diffraction: full structural determination of adsorbed water molecules in a zeolite.
Chemical communications (Cambridge, England), 2008, 1557-1559
7115847 CIFC4 H2 Li2 O4P -13.3392; 4.9297; 7.4736
76.777; 86.619; 78.68
117.42Hamish H.-M. Yeung; Monica Kosa; John M. Griffin; Clare P. Grey; Dan T. Major; Anthony K. Cheetham
Topotactic elimination of water across a C-C ligand bond in a dense 3-D metal-organic framework
Chem.Commun., 2014, 50, 13292
7120700 CIFBi NiC m c m3.3873; 9.4079; 3.7587
90; 90; 90
119.78Powderly, Kelly M.; Clarke, Samantha M.; Amsler, Maximilian; Wolverton, Chris M.; Malliakas, Christos D.; Meng, Yue; Jacobsen, Steven D.; Freedman, Danna
High-pressure discovery of β-NiBi
Chem. Commun., 2017
7116665 CIFFe1.172 H Li0.828 O SP 4/n m m :13.7038; 3.7038; 8.8852
90; 90; 90
121.888U. Pachmayr; D. Johrendt
[(Li0.8Fe0.2)OH]FeS and the ferromagnetic superconductors [(Li0.8Fe0.2)OH]Fe(S1-xSex) (0 < x ? 1)
Chem.Commun., 2015, 51, 4689
7117021 CIFGd H3 O3P 63/m6.2993; 6.2993; 3.6057
90; 90; 120
123.91Yan Yang; Qian-Chong Zhang; Yin-Yin Pan; La-Sheng Long; Lan-Sun Zheng
Magnetocaloric effect and thermal conductivity of Gd(OH)3 and Gd2O(OH)4(H2O)2
Chem.Commun., 2015, 51, 7317
7129253 CIFCu Fe O SP 4/n m m :23.8219; 3.8219; 8.645
90; 90; 90
126.28Du, Wei; zhang, ganghua; Chen, Ping; Tang, Pingying; Wang, Jing; Li, Dezeng; Hou, Jingshan; Fang, Yongzheng
Visible-light photoelectric response in semiconducting quaternary oxysulfide FeOCuS with anti-PbO-type structure
Chemical Communications, 2021
7110560 CIFLi5 N3 Ni3P -6 2 m6.475; 6.475; 3.555
90; 90; 120
129.08Barker, Marten G.; Blake, Alexander J.; Gregory, Duncan H.; Siddons, Daniel J.; Smith, Susan E.; Edwards, Peter P.; Hamor, Thomas A.
Novel layered lithium nitridonickelates; effect of Li vacancy concentration on N co-ordination geometry and Ni oxidation state
Chemical Communications, 1999, 1187
7101266 CIFO SrF m -3 m5.1326; 5.1326; 5.1326
90; 90; 90
135.21Simon Clarke; Oliver J. Rutt; Gareth R. Williams
Reversible lithium insertion and copper extrusion in layered oxysulfides
Chemical Communications, 2006
7102430 CIFO SrF m -3 m5.1432; 5.1432; 5.1432
90; 90; 90
136.05Hayward, M A
Selective deintercalation of apex over face-shared oxide ions in the topotactic reduction of Sr7Mn4O15 to Sr7Mn4O12.
Chemical communications (Cambridge, England), 2004, 170-171
7103589 CIFD0.09 O2 TiI 41/a m d :23.78582; 3.78582; 9.50739
90; 90; 90
136.264Chan, Wing K; Borghols, Wouter J H; Mulder, Fokko M
Direct observation of space charge induced hydrogen ion insertion in nanoscale anatase TiO2.
Chemical communications (Cambridge, England), 2008, 6342-6344
7128793 CIFC2 H5 N O2P 1 21 15.0757; 6.1737; 5.3882
90; 113.422; 90
154.931Hoser, Anna A.; Sztylko, Marcin; Trzybiński, Damian; Madsen, Anders Ø
Theoretically derived thermodynamic properties can be improved by the refinement of low-frequency modes against X-ray diffraction data.
Chemical communications (Cambridge, England), 2021, 57, 9370-9373
7129000 CIFCa2 N2 NiI 4/m m m3.57206; 3.57206; 12.19453
90; 90; 90
155.598Kloß, Simon D; Attfield, J. Paul
Low-dimensional magnetism in calcium nitridonickelate(II) Ca<sub>2</sub>NiN<sub>2</sub>.
Chemical communications (Cambridge, England), 2021, 57, 10427-10430
7115973 CIFC4 Cu D8 F2 N2 O2P -14.9115; 5.4216; 6.187
99.8; 105.24; 92.078
156.07A. Lanza; C. Fiolka; M. Fisch; N. Casati; M. Skoulatos; C. Ruegg; K. W. Kramer; Piero Macchi
New magnetic frameworks of [(CuF2(H2O)2)x(pyz)]
Chem.Commun., 2014, 50, 14504
7121699 CIFBa2 H3 N O6P -6 2 m6.9069; 6.9069; 3.8028
90; 90; 120
157.109Dong, Xuehua; Huang, Ling; Liu, Qingyu; Zeng, Hongmei; Lin, Zhien; Xu, Dingguo; Zou, Guohong
Perfect balance harmony in Ba<sub>2</sub>NO<sub>3</sub>(OH)<sub>3</sub>: a beryllium-free nitrate as a UV nonlinear optical material.
Chemical communications (Cambridge, England), 2018, 54, 5792-5795
7132179 CIFC2 H5 N O2P 1 21 15.0947; 6.2681; 5.3883
90; 113.232; 90
158.12Mettler, Marie; Dewandre, Adrien; Tumanov, Nikolay; Wouters, Johan; Septavaux, Jean
Single crystal formation in core-shell capsules.
Chemical communications (Cambridge, England), 2023
7130882 CIFAl Ca Dy O4I 4/m m m3.6501; 3.6501; 11.909
90; 90; 90
158.666Kazin, Pavel E.; Zykin, Mikhail; Dyakonov, Andrey K.; Vasiliev, Alexander V.; Karpov, Maxim A.; Gorbachev, Evgeny A.; Sleptsova, Anastasia E.; Jansen, Martin
Dy3+ single ion magnet in the extended inorganic solid Ca(Y,Dy)AlO4
Chemical Communications, 2022
7103195 CIFAg Br H3 NP 1 21/m 14.1931; 5.873; 6.757
90; 97.553; 90
164.955Chippindale, Ann M; Head, Laura E; Hibble, Simon J
Simple linear asymmetrical complexes of silver(I): NC-Ag-NH3 and Br-Ag-NH3.
Chemical communications (Cambridge, England), 2008, 3010-3012
7105575 CIFAl4.8 O9.6 Si1.2P b a m7.588; 7.688; 2.8895
90; 90; 90
168.56Zhang, Pengyu; Liu, Jiachen; Du, Haiyan; Li, Sha; Xu, Rui
A facile preparation of mullite [Al(2)(Al(2.8)Si(1.2))O(9.6)] nanowires by B(2)O(3)-doped molten salts synthesis.
Chemical communications (Cambridge, England), 2010, 46, 3988-3990
7126022 CIFC2 H5 Na OP -4 21 m4.41084; 4.41084; 9.06779
90; 90; 90
176.418Beske, Maurice; Tapmeyer, Lukas; Schmidt, Martin U.
Crystal structure of sodium ethoxide (C<sub>2</sub>H<sub>5</sub>ONa), unravelled after 180 years.
Chemical communications (Cambridge, England), 2020, 56, 3520-3523
7130954 CIFD3.8 La4 Li2 N1.69 O2.31I 4/m m m3.65603; 3.65603; 13.3557
90; 90; 90
178.52Zapp, Nicolas; Oehler, Florian; Bertmer, Marko; Auer, Henry; Sheptyakov, Denis; Ritter, Clemens; Kohlmann, Holger
Aliovalent anion substitution as a design concept for heteroanionic Ruddlesden–Popper hydrides
Chemical Communications, 2022
7130953 CIFH3.13 La4 Li2 N1.68 O2.32I 4/m m m3.6574; 3.6574; 13.3679
90; 90; 90
178.817Zapp, Nicolas; Oehler, Florian; Bertmer, Marko; Auer, Henry; Sheptyakov, Denis; Ritter, Clemens; Kohlmann, Holger
Aliovalent anion substitution as a design concept for heteroanionic Ruddlesden–Popper hydrides
Chemical Communications, 2022
7132177 CIFCl NaF m -3 m5.6357; 5.6357; 5.6357
90; 90; 90
178.996Mettler, Marie; Dewandre, Adrien; Tumanov, Nikolay; Wouters, Johan; Septavaux, Jean
Single crystal formation in core-shell capsules.
Chemical communications (Cambridge, England), 2023
7101738 CIFGeF d -3 m :25.6455; 5.6455; 5.6455
90; 90; 90
179.93Beekman, Matt; Kaduk, James A; Huang, Qing; Wong-Ng, Winnie; Yang, Zhi; Wang, Dongli; Nolas, George S
Synthesis and crystal structure of Na1-xGe3+z: a novel zeolite-like framework phase in the Na-Ge system.
Chemical communications (Cambridge, England), 2007, 837-839
7101739 CIFGeF d -3 m :25.6575; 5.6575; 5.6575
90; 90; 90
181.08Beekman, Matt; Kaduk, James A; Huang, Qing; Wong-Ng, Winnie; Yang, Zhi; Wang, Dongli; Nolas, George S
Synthesis and crystal structure of Na1-xGe3+z: a novel zeolite-like framework phase in the Na-Ge system.
Chemical communications (Cambridge, England), 2007, 837-839
7111201 CIFC6 H12 N2 O2P -15.1097; 5.5722; 7.0473
69.575; 87.12; 75.465
181.865Seaton, Colin C.; Tremayne, Maryjane
Differential evolution: crystal structure determination of a triclinic polymorph of adipamide from powder diffraction data
Chemical Communications, 2002, 880
7130952 CIFD4.92 La4 Li2 N3.08I 4/m m m3.69312; 3.69312; 13.41285
90; 90; 90
182.94Zapp, Nicolas; Oehler, Florian; Bertmer, Marko; Auer, Henry; Sheptyakov, Denis; Ritter, Clemens; Kohlmann, Holger
Aliovalent anion substitution as a design concept for heteroanionic Ruddlesden–Popper hydrides
Chemical Communications, 2022
7130951 CIFD4.84 La4 Li2 N3.16I 4/m m m3.69326; 3.69326; 13.4133
90; 90; 90
182.96Zapp, Nicolas; Oehler, Florian; Bertmer, Marko; Auer, Henry; Sheptyakov, Denis; Ritter, Clemens; Kohlmann, Holger
Aliovalent anion substitution as a design concept for heteroanionic Ruddlesden–Popper hydrides
Chemical Communications, 2022
7132674 CIFB2 F O4 SbP -14.3436; 6.3169; 7.0009
92.888; 95.126; 104.803
184.44Hu, Chenhui; Wu, Mengfan; Han, Jian; Yang, Zhihua; Han, Shujuan; Pan, Shilie
New antimony fluorooxoborates with strong birefringence and unprecedented structural characterisation.
Chemical communications (Cambridge, England), 2024, 60, 2653-2656
7130003 CIFC2 Cl3 N PbP m -3 m5.761; 5.761; 5.761
90; 90; 90
191.203Petrosova, Hanna R.; Kucheriv, Olesia I.; Shova, Sergiu; Gural'skiy, Il'ya A.
Aziridinium cation templating 3D lead halide hybrid perovskites
Chemical Communications, 2022
7101268 CIFLi3.62 Mn O2 S3 Sr2P 4/m m m4.05416; 4.05416; 11.79624
90; 90; 90
193.885Simon Clarke; Oliver J. Rutt; Gareth R. Williams
Reversible lithium insertion and copper extrusion in layered oxysulfides
Chemical Communications, 2006
7101077 CIFC6 H10 Cl2 N2P -14.285; 5.8053; 8.6259
71.035; 76.868; 79.631
196.3Jonathan Steed; Kirsty Anderson; Andres E. Goeta; Kirsty S. B. Hancock
Unusual variations in the incidence of Z'>1 in oxo-anion structures
Chemical Communications, 2006
7114937 CIFC4 H16 B2 N2P -15.833; 6.029; 6.24
80.372; 81.533; 65.942
196.8Jaska, Cory A.; Temple, Karen; Lough, Alan J.; Manners, Ian
Rhodium-catalyzed formation of boron‒nitrogen bonds: a mild route to cyclic aminoboranes and borazines
Chemical Communications, 2001, 962
7104410 CIFC H3 O3P 1 21/n 15.744; 3.098; 11.63
90; 106.15; 90
198.8Casati, Nicola; Macchi, Piero; Sironi, Angelo
Hydrogen migration in oxalic acid di-hydrate at high pressure?
Chemical communications (Cambridge, England), 2009, 34, 2679-2681
7104686 CIFAs2 Ba0.9 Fe2 Sn0.1I 4/m m m3.9297; 3.9297; 13.158
90; 90; 90
203.2Mathieu, Josiah L; Latturner, Susan E
Zintl phase as dopant source in the flux synthesis of Ba(1-x)K(x)Fe(2)As(2) type superconductors.
Chemical communications (Cambridge, England), 2009, 34, 4965-4967
7104682 CIFAs2 Ba0.5 Fe2 K0.4 Sn0.1I 4/m m m3.9021; 3.9021; 13.3538
90; 90; 90
203.33Mathieu, Josiah L; Latturner, Susan E
Zintl phase as dopant source in the flux synthesis of Ba(1-x)K(x)Fe(2)As(2) type superconductors.
Chemical communications (Cambridge, England), 2009, 34, 4965-4967
7104683 CIFAs2 Ba0.61 Fe2 K0.35 Sn0.04I 4/m m m3.9063; 3.9063; 13.352
90; 90; 90
203.75Mathieu, Josiah L; Latturner, Susan E
Zintl phase as dopant source in the flux synthesis of Ba(1-x)K(x)Fe(2)As(2) type superconductors.
Chemical communications (Cambridge, England), 2009, 34, 4965-4967
7104681 CIFAs2 Ba0.34 Fe2 K0.66I 4/m m m3.8822; 3.8822; 13.5396
90; 90; 90
204.06Mathieu, Josiah L; Latturner, Susan E
Zintl phase as dopant source in the flux synthesis of Ba(1-x)K(x)Fe(2)As(2) type superconductors.
Chemical communications (Cambridge, England), 2009, 34, 4965-4967
7104685 CIFAs2 Ba0.78 Fe2 K0.12 Sn0.1I 4/m m m3.922; 3.922; 13.285
90; 90; 90
204.38Mathieu, Josiah L; Latturner, Susan E
Zintl phase as dopant source in the flux synthesis of Ba(1-x)K(x)Fe(2)As(2) type superconductors.
Chemical communications (Cambridge, England), 2009, 34, 4965-4967
7101499 CIFB2 Os1.42 Ru Ti1.58P -6 2 m8.8554; 8.8554; 3.0336
90; 90; 120
206.02B.P.Fokwa T.; J.von Appen; R.Dronskowski
Synthesis of a missing structural link: The first trigonal planar B4 units in the novel complex boride Ti1+xOs2_xRuB2 (x = 0.6)
Chemical Communications, 2006
7104409 CIFC H3 O3P 1 21/n 15.8093; 3.1657; 11.676
90; 106.01; 90
206.39Casati, Nicola; Macchi, Piero; Sironi, Angelo
Hydrogen migration in oxalic acid di-hydrate at high pressure?
Chemical communications (Cambridge, England), 2009, 34, 2679-2681
7104684 CIFAs2 Ba0.68 Fe2 K0.24 Sn0.07I 4/m m m3.946; 3.946; 13.431
90; 90; 90
209.1Mathieu, Josiah L; Latturner, Susan E
Zintl phase as dopant source in the flux synthesis of Ba(1-x)K(x)Fe(2)As(2) type superconductors.
Chemical communications (Cambridge, England), 2009, 34, 4965-4967
7123351 CIFBiR -3 m4.5392; 4.5392; 11.8347
90; 90; 120
211.18Wei, Zheng; Dubceac, Cristina; Petrukhina, Marina A.; Dikarev, Evgeny V.
From a volatile molecular precursor to twin-free single crystals of bismuth
Chemical Communications, 2019
7123352 CIFBiR -3 m4.5481; 4.5481; 11.86
90; 90; 120
212.46Wei, Zheng; Dubceac, Cristina; Petrukhina, Marina A.; Dikarev, Evgeny V.
From a volatile molecular precursor to twin-free single crystals of bismuth
Chemical Communications, 2019
7130002 CIFC2 Br3 N PbP m -3 m5.9739; 5.9739; 5.9739
90; 90; 90
213.193Petrosova, Hanna R.; Kucheriv, Olesia I.; Shova, Sergiu; Gural'skiy, Il'ya A.
Aziridinium cation templating 3D lead halide hybrid perovskites
Chemical Communications, 2022
7101076 CIFC6 H10 Br2 N2P -14.4488; 6.089; 8.701
103.616; 104.616; 101.392
213.2Jonathan Steed; Kirsty Anderson; Andres E. Goeta; Kirsty S. B. Hancock
Unusual variations in the incidence of Z'>1 in oxo-anion structures
Chemical Communications, 2006
7119152 CIFC2 H6 CdP 42/m n m7.195; 7.195; 4.118
90; 90; 90
213.2Hanke, Felix; Hindley, Sarah; Jones, Anthony C.; Steiner, Alexander
The solid state structures of the high and low temperature phases of dimethylcadmium
Chemical Communications, 2016, 52, 10144
7123012 CIFCo Mn2 O6 ReP 1 21/n 15.2356; 5.3536; 7.633
90; 89.9627; 90
213.948Frank , Corey E.; McCabe, Emma; Orlandi, Fabio; Manuel, Pascal; Tan, Xiaoyan; Deng, Zheng; Croft, Mark; Cascos, Vanessa Amelia; Emge, Thomas J.; Feng, Hai; Lapidus, Saul H.; Jin, Changqing; Wu, Meixia; Li, Man-Rong; Ehrlich, Steven N.; Khalid, Syed; Quackenbush, Nicholas F.; Yu, Shuang; Walker, David; Greenblatt, Martha
Mn2CoReO6: A Robust Multisublattice Antiferromagnetic Perovskite with Small A-Site Cations
Chemical Communications, 2019
7130785 CIFC Br3 N2 PbP m -3 m5.9968; 5.9968; 5.9968
90; 90; 90
215.65Li, Chengmin; Juarez-Perez, Emilio J.; Mayoral, Alvaro
Atomic understanding of Formamidinium Hybrid Halide Perovskite, FAPbBr3
Chemical Communications, 2022
7117866 CIFBa0.5 F2 O2 Pd Sr1.5I 4/m m m4.0701; 4.0701; 13.1072
90; 90; 90
217.13Baikie, T.; Dixon, E.L.; Rooms, J.F.; Francesconi, M.G.; Young, N.A.
Ba2-x Srx Pd O2 F2 (0 <= x <= 1.5): the first palladium - oxide - fluorides
Chemical Communications, 2003, 2003, 1580-1581
7101265 CIFS SrF m -3 m6.019; 6.019; 6.019
90; 90; 90
218.05Simon Clarke; Oliver J. Rutt; Gareth R. Williams
Reversible lithium insertion and copper extrusion in layered oxysulfides
Chemical Communications, 2006
7131812 CIFC8 H8 F2 O4P -15.657; 6.5148; 6.5836
102.961; 109.449; 96.622
218.14Sharma, Ruchi; Jain, Swati; Sihag, Naveen; Yadav, M. Ramu
Ligand-free Pd-catalyzed double Heck reaction of <i>N</i>-(<i>o</i>-bromoaryl)acrylamides with α-F/CF<sub>3</sub>-acrylates.
Chemical communications (Cambridge, England), 2023
7104408 CIFC H3 O3P 1 21/n 15.983; 3.331; 11.833
90; 106.15; 90
226.5Casati, Nicola; Macchi, Piero; Sironi, Angelo
Hydrogen migration in oxalic acid di-hydrate at high pressure?
Chemical communications (Cambridge, England), 2009, 34, 2679-2681
7130869 CIFB2 Be2 O6 PbP m n 2110.737; 4.7501; 4.5368
90; 90; 90
231.39Chen, Yi-Gang; Jiang, Xingxing; Yang, Yuanyu; Dai, Zhe; Lin, Zheshuai; Zhang, Xian-Ming
PbBe2B2O6: An Excellent Ultraviolet Nonlinear-Optical Crystal with Unprecedented π-π Interacting BeBO5 Group
Chemical Communications, 2022
7100673 CIFC4 H4 O4P 1 c 13.6933; 7.484; 8.5933
90; 102.22; 90
232.14W. Jones; Graeme Day; W.D.Sam Motherwell; Andrew V. Trask
Investigating the latent polymorphism of maleic acid
Chemical Communications, 2006
7105956 CIFC H6 N4 O3P 1 c 14.867; 4.845; 10.14
90; 102.91; 90
233.06Andrzej Katrusiak; Marek Szafranski; Marcin Podsiadlo
Pressure-induced collapse of guanidinium nitrate NâHâ ââO bonded honeycomb layers into a 3-D pattern with varied H-acceptor capacity
Chem.Commun., 2011, 47, 2107
7112516 CIFC2 H5 N O2P 317.0111; 7.0111; 5.4843
90; 90; 120
233.47Ishikawa, Kazuhiko; Tanaka, Masahito; Suzuki, Toshiya; Sekine, Akiko; Kawasaki, Tsuneomi; Soai, Kenso; Shiro, Motoo; Lahav, Meir; Asahi, Toru
Absolute chirality of the γ-polymorph of glycine: correlation of the absolute structure with the optical rotation.
Chemical communications (Cambridge, England), 2012, 48, 6031
7112517 CIFC2 H5 N O2P 327.01706; 7.01706; 5.48499
90; 90; 120
233.893Ishikawa, Kazuhiko; Tanaka, Masahito; Suzuki, Toshiya; Sekine, Akiko; Kawasaki, Tsuneomi; Soai, Kenso; Shiro, Motoo; Lahav, Meir; Asahi, Toru
Absolute chirality of the γ-polymorph of glycine: correlation of the absolute structure with the optical rotation.
Chemical communications (Cambridge, England), 2012, 48, 6031
7117865 CIFBa2 F2 O2 PdI 4/m m m4.1398; 4.1398; 14.0459
90; 90; 90
240.718Baikie, T.; Rooms, J.F.; Dixon, E.L.; Young, N.A.; Francesconi, M.G.
Ba2-x Srx Pd O2 F2 (0 <= x <= 1.5): the first palladium - oxide - fluorides
Chemical Communications, 2003, 2003, 1580-1581
7105955 CIFC H6 N4 O3P 1 c 14.895; 4.8916; 10.337
90; 101.56; 90
242.49Andrzej Katrusiak; Marek Szafranski; Marcin Podsiadlo
Pressure-induced collapse of guanidinium nitrate NâHâ ââO bonded honeycomb layers into a 3-D pattern with varied H-acceptor capacity
Chem.Commun., 2011, 47, 2107
7117254 CIFC12 H18P -15.246; 6.1956; 7.9824
103.859; 98.602; 100.131
242.93Viswanadha G. Saraswatula; Binoy K. Saha
A thermal expansion investigation of the melting point anomaly in trihalomesitylenes
Chem.Commun., 2015, 51, 9829
7105954 CIFC H6 N4 O3P 1 c 14.899; 4.917; 10.35
90; 100.8; 90
244.9Andrzej Katrusiak; Marek Szafranski; Marcin Podsiadlo
Pressure-induced collapse of guanidinium nitrate NâHâ ââO bonded honeycomb layers into a 3-D pattern with varied H-acceptor capacity
Chem.Commun., 2011, 47, 2107
7117255 CIFC12 H18P -15.2512; 6.2279; 7.9892
103.846; 98.464; 99.919
245Viswanadha G. Saraswatula; Binoy K. Saha
A thermal expansion investigation of the melting point anomaly in trihalomesitylenes
Chem.Commun., 2015, 51, 9829
7117256 CIFC12 H18P -15.2639; 6.2567; 8.0155
103.858; 98.504; 99.75
247.65Viswanadha G. Saraswatula; Binoy K. Saha
A thermal expansion investigation of the melting point anomaly in trihalomesitylenes
Chem.Commun., 2015, 51, 9829
7117257 CIFC12 H18P -15.2748; 6.2602; 8.0316
103.949; 98.651; 99.531
248.77Viswanadha G. Saraswatula; Binoy K. Saha
A thermal expansion investigation of the melting point anomaly in trihalomesitylenes
Chem.Commun., 2015, 51, 9829
7110706 CIFAl2 Cs2 O9 P2P -14.925; 7.121; 8.066
96.51; 107.12; 108.68
249.28Huang, Qun; Hwu, Shiou-Jyh
Cs2Al2P2O9: an exception to Löwenstein’s rule. Synthesis and characterization of a novel layered aluminophosphate containing linear Al‒O‒Al linkages
Chemical Communications, 1999, 2343
7131120 CIFC H6 I PP 1 21/m 14.7369; 6.5201; 8.0744
90; 90.914; 90
249.35Zhang, Han-Yue; Xiong, Ren-Gen
Three-dimensional narrow-bandgap perovskite semiconductor ferroelectric methylphosphonium tin triiodide for potential photovoltaic application.
Chemical communications (Cambridge, England), 2023, 59, 920-923
7117258 CIFC12 H18P -15.2944; 6.2771; 8.0612
104.026; 98.839; 99.456
251.09Viswanadha G. Saraswatula; Binoy K. Saha
A thermal expansion investigation of the melting point anomaly in trihalomesitylenes
Chem.Commun., 2015, 51, 9829
7104407 CIFC H3 O3P 1 21/n 16.1169; 3.6053; 12.049
90; 106.303; 90
255.05Casati, Nicola; Macchi, Piero; Sironi, Angelo
Hydrogen migration in oxalic acid di-hydrate at high pressure?
Chemical communications (Cambridge, England), 2009, 34, 2679-2681
7131119 CIFC H6 I3 P SnP -4 3 m6.3464; 6.3464; 6.3464
90; 90; 90
255.613Zhang, Han-Yue; Xiong, Ren-Gen
Three-dimensional narrow-bandgap perovskite semiconductor ferroelectric methylphosphonium tin triiodide for potential photovoltaic application.
Chemical communications (Cambridge, England), 2023, 59, 920-923
7123322 CIFGa Ge2 ReC m c m3.26861; 9.17461; 8.53206
90; 90; 90
255.861Likhanov, Maxim; Khalaniya, Roman A.; Verchenko, Valeriy; Gippius, Andrei; Zhurenko, Sergei; Tkachev, Alexey V.; Fazlizhanova, Dina I.; Kuznetsov, Alexey N.; Shevelkov, Andrei V.
ReGaGe2: Intermetallic Compound with Semiconducting Properties and Localized Bonding
Chemical Communications, 2019
7130004 CIFC2 I3 N PbP m -3 m6.364; 6.364; 6.364
90; 90; 90
257.75Petrosova, Hanna R.; Kucheriv, Olesia I.; Shova, Sergiu; Gural'skiy, Il'ya A.
Aziridinium cation templating 3D lead halide hybrid perovskites
Chemical Communications, 2022
7126155 CIFBi Cu O Se2 SrP 1 21/m 17.6529; 4.0559; 9.1405
90; 113.758; 90
259.67Luo, Mengjia; Bu, Kejun; Zhang, Xian; Huang, Jian; Wang, Ruiqi; Huang, Fuqiang
Intrinsically low thermal conductivity in a p-type semiconductor SrOCuBiSe<sub>2</sub> with a [SrO]-intercalated CuBiSe<sub>2</sub> structure.
Chemical communications (Cambridge, England), 2020, 56, 4356-4359
7119176 CIFMn1.5 N O13 V4P 1 2/m 18.2011; 3.5207; 9.9129
90; 110.987; 90
267.234Martin K. Dufficy; Lan Luo; Peter S. Fedkiw; Paul A. Maggard
Vacancy-induced manganese vanadates and their potential application to Li-ion batteries
Chem.Commun., 2016, 52, 7509
7117434 CIFLi O8 Sb3P 1 21/a 110.2578; 4.7063; 5.6017
90; 96.467; 90
268.708Lopes, M.E.; Kirk, C.A.; Blake, S.M.; Marr, J.; West, A.R.
Li Sb3 O8: the first tetrarutile structure
Chemical Communications, 2000, 2000, 1951-1952
7101829 CIFC16 H8 N2P -13.7987; 8.398; 9.104
72.177; 78.528; 89.785
270.45Li, Jian-Rong; Tao, Ying; Yu, Qun; Bu, Xian-He
A pcu-type metal-organic framework with spindle [Zn7(OH)8]6+ cluster as secondary building units.
Chemical communications (Cambridge, England), 2007, 1527-1529
7101119 CIFCu2 H4 Na2 O13 Si4P -15.2228; 6.4109; 8.5169
101.107; 94.34; 102.48
271.16Brandao, P.; Almeida Paz, Filipe A.; Rocha, Joao
A Novel Microporous Copper Silicate: Na2Cu2Si4O11.2H2O
Chemical Communications, 2005
7125453 CIFCu3 Li O6 Ru2C 1 2/m 15.208536; 9.023652; 6.027403
90; 106.64; 90
271.424Huang, Bin; Liu, Ziyi; Han, Yifeng; Zhao, Shuang; Wu, Meixia; Frank, Corey E.; Greenblatt, Martha; Croft, Mark; Quackenbush, Nicholas F.; Liu, Sizhan; Tyson, Trevor A.; Zhang, Lei; Sun, Junliang; Shan, Pengfei; Dai, Jianhong; Yu, Xiaohui; Cheng, Jinguang; Li, Man-Rong
Nonmetallic metal toward a pressure-induced bad-metal state in two-dimensional Cu<sub>3</sub>LiRu<sub>2</sub>O<sub>6</sub>.
Chemical communications (Cambridge, England), 2019, 56, 265-268
7106717 CIFC2 H2 Cl4P 1 21/c 16.1941; 6.186; 7.361
90; 104.9; 90
272.57Maciej Bujak; Dieter Blaser; Andrzej Katrusiak; Roland Boese
Conformational Polymorphs of 1,1,2,2-Tetrachloroethane: Pressure vs.Temperature
Chem.Commun., 2011, 47, 8769
7111421 CIFHf Mo Sb4C 1 2/m 110.321; 3.6475; 8.393
90; 119.895; 90
273.92Derakhshan, Shahab; Kleinke, Katja M.; Dashjav, Enkhtsetseg; Kleinke, Holger
HfMoSb4, the first nonmetallic early transition metal antimonide
Chemical Communications, 2004, 2428-2429
7111948 CIFC4 H12 Cd N10P m -3 m6.5228; 6.5228; 6.5228
90; 90; 90
277.525Zi-Yi Du; Ying-Ping Zhao; Wei-Xiong Zhang; Hao-Long Zhou; Chun-Ting He; Wei Xue; Bao-Ying Wang; Xiao-Ming Chen
Above-room-temperature ferroelastic phase transition in a perovskite-like compound [N(CH3)4][Cd(N3)3]
Chem.Commun., 2014, 50, 1989
7129652 CIFC12 Mn5 O12P 6/m m m7.4696; 7.4696; 5.847
90; 90; 120
282.5Wu, Xiaoyu; Wu, Haowei; Wu, Sicheng; Sun, Yimeng; Zhu, Jia; Zou, Ye; Xu, Wei; Zhu, Daoben
Chemical structure modulation in conductive MOFs by adjusting the oxidation state of the ligand and introducing alkali metal ions
Chemical Communications, 2022
7117504 CIFBa2 O6 Ta YI 4/m5.8851; 5.8851; 8.3474
90; 90; 90
289.107Lufaso, M.W.; Vogt, T.; Lee, Y.; Macquart, R.B.; zur Loye, H.C.
Pressure induced octahedral tilting distortion in Ba2 Y Ta O6
Chemical Communications, 2006, 2006, 168-170
7106121 CIFN9 SbP -16.6694; 6.9045; 7.0314
83.651; 65.85; 83.595
292.85Stephan Schulz; Benjamin Lyhs; Georg Jansen; Dieter Blaser; Christoph Wolper
Syntheses and Structures of Triazides of Heavy Group 15 Elements
Chem.Commun., 2011, 47, 3401
7115205 CIFC4 H2 Mn2 O6P 1 21/c 13.376; 10.268; 8.575
90; 99.82; 90
292.9Yufit, Dmitrii S.; Howard, Judith A. K.; Price, Daniel J.; Gutschke, Siegfried O. H.; Powell, Annie K.; Wood, Paul T.
New type of metal squarates. Magnetic and multi-temperature X-ray study of di-hydroxy(μ6-squarato)manganese†
Chemical Communications, 1999, 1561
7115207 CIFC4 H2 Mn2 O6P 1 21/c 13.377; 10.269; 8.573
90; 99.8; 90
292.96Yufit, Dmitrii S.; Howard, Judith A. K.; Price, Daniel J.; Gutschke, Siegfried O. H.; Powell, Annie K.; Wood, Paul T.
New type of metal squarates. Magnetic and multi-temperature X-ray study of di-hydroxy(μ6-squarato)manganese†
Chemical Communications, 1999, 1561
7115206 CIFC4 H2 Mn2 O6P 1 21/c 13.377; 10.268; 8.576
90; 99.81; 90
293.02Yufit, Dmitrii S.; Howard, Judith A. K.; Price, Daniel J.; Gutschke, Siegfried O. H.; Powell, Annie K.; Wood, Paul T.
New type of metal squarates. Magnetic and multi-temperature X-ray study of di-hydroxy(μ6-squarato)manganese†
Chemical Communications, 1999, 1561
7115208 CIFC4 H2 Mn2 O6P 1 21/c 13.381; 10.268; 8.579
90; 99.85; 90
293.4Yufit, Dmitrii S.; Howard, Judith A. K.; Price, Daniel J.; Gutschke, Siegfried O. H.; Powell, Annie K.; Wood, Paul T.
New type of metal squarates. Magnetic and multi-temperature X-ray study of di-hydroxy(μ6-squarato)manganese†
Chemical Communications, 1999, 1561
7106942 CIFC H4 N2 O2P 21 21 214.6021; 7.3673; 8.6802
90; 90; 90
294.3Byeongno Lee; Seung Hee Kang; Donghyeon Kang; Kyu Hyung Lee; Jaeheung Cho; Wonwoo Nam; Oc Hee Han; Nam Hwi Hur
Isolation and structural characterization of the elusive 1 : 1 adduct of hydrazine and carbon dioxide
Chem.Commun., 2011, 47, 11219
7131057 CIFC15 H9 N O4P 13.855; 6.9039; 11.2145
91.025; 93.364; 96.825
295.75Duan, Wenzeng; Liu, Wenjing; Liu, Houting; Ji, Honghan; Huo, Yanmin; Wang, Huaiwei; Gong, Shuwen
AIE-active aurones for circularly polarized luminescence and trace water detection.
Chemical communications (Cambridge, England), 2022
7101263 CIFLi1.89 Mn O2 S2 Sr2I 4/m m m4.07036; 4.07036; 17.8721
90; 90; 90
296.101Simon Clarke; Oliver J. Rutt; Gareth R. Williams
Reversible lithium insertion and copper extrusion in layered oxysulfides
Chemical Communications, 2006
7117863 CIFCu2 S4 WI -4 2 m5.44427; 5.44427; 10.0687
90; 90; 90
298.437Crossland, C.J.; Evans, J.S.O.
Synthesis and characterisation of a new high pressure polymorph of Cu2 W S4
Chemical Communications, 2003, 2003, 2292-2293
7119756 CIFMg Mn2 O4I 41/a m d :25.753355; 5.753355; 9.132367
90; 90; 90
302.291Yin, Jiefu; Brady, Alexander B.; Takeuchi, Esther S.; Marschilok, Amy C.; Takeuchi, Kenneth J.
Magnesium-ion battery-relevant electrochemistry of MgMn2O4: crystallite size effects and the notable role of electrolyte water content.
Chemical communications (Cambridge, England), 2017, 53, 3665-3668
7124031 CIFB H4 I O7 SrP -16.595; 6.868; 7.12
96.73; 108.18; 92.37
303.2Peng, Guang; Lin, Chensheng; Zhao, Dan; Cao, Liling; Fan, Huixin; Chen, Kaichuang; Ye, Ning
Sr[B(OH)4](IO3) and Li4Sr5[B12O22(OH)4](IO3)2: Two Unprecedented Metal Borate-Iodates Showing Subtle Balance of Enlarged Band Gap and Birefringence
Chemical Communications, 2019
7128792 CIFC2 H5 N O2P 1 21/n 15.0867; 11.7982; 5.4598
90; 111.983; 90
303.84Hoser, Anna A.; Sztylko, Marcin; Trzybiński, Damian; Madsen, Anders Ø
Theoretically derived thermodynamic properties can be improved by the refinement of low-frequency modes against X-ray diffraction data.
Chemical communications (Cambridge, England), 2021, 57, 9370-9373
7119755 CIFMg0.25 Mn0.5 OI 41/a m d :25.721406; 5.721406; 9.298237
90; 90; 90
304.373Yin, Jiefu; Brady, Alexander B.; Takeuchi, Esther S.; Marschilok, Amy C.; Takeuchi, Kenneth J.
Magnesium-ion battery-relevant electrochemistry of MgMn2O4: crystallite size effects and the notable role of electrolyte water content.
Chemical communications (Cambridge, England), 2017, 53, 3665-3668
7130896 CIFC6 H9 F3P -14.7654; 6.2994; 10.5867
89.429; 89.677; 73.64
304.92O'Hagan, David; Yu, Cihang; Cormanich, Rodrigo A.; Slawin, Alexandra; Cordes, David Bradford; Piscelli, Bruno A.; Al-Maharik, Nawaf
Unexpected triaxial preferences in some all-syn 1,3,5-trifluorocyclohexanes
Chemical Communications, 2022
7111634 CIFC4 H5 N O4 SP -16.331; 7.472; 7.715
62.546; 73.171; 77.874
308.73Velaga, Sitaram P.; Vangala, Venu R.; Basavoju, Srinivas; Boström, Dan
Polymorphism in acesulfame sweetener: structure‒property and stability relationships of bending and brittle crystals
Chemical Communications, 2010, 46, 3562-3564
7132178 CIFC2 H5 N O2P 1 21/n 15.1018; 11.9664; 5.4624
90; 111.73; 90
309.78Mettler, Marie; Dewandre, Adrien; Tumanov, Nikolay; Wouters, Johan; Septavaux, Jean
Single crystal formation in core-shell capsules.
Chemical communications (Cambridge, England), 2023
7115193 CIFC4 Co N6P n n m7.0433; 5.9748; 7.4039
90; 90; 90
311.57Jensen, Paul; Batten, Stuart R.; Fallon, Gary D.; Moubaraki, Boujemaa; Murray, Keith S.; Price, David J.
Structural isomers of M(dca)2 molecule-based magnets. Crystal structure of tetrahedrally coordinated sheet-like β-Zn(dca)2 and β-Co/Zn(dca)2, and the octahedrally coordinated rutile-like α-Co(dca)2, where dca‒ = dicyanamide, N(CN)2−, and magnetism of β-Co(dca)2
Chemical Communications, 1999, 177
7101048 CIFC6 H6 N9 YbP m -3 m6.788; 6.788; 6.788
90; 90; 90
312.77Klaus Muller-Buschbaum; Yassin Mokaddem
3-Dimensional Networks of Lanthanide 1,2,4-Triazolates: 3-infinite[Yb(Tz)3] and 3-infinite[Eu2(Tz)5(TzH)2], the First 4f Networks with Complete Nitrogen Coordination
Chemical Communications, 2006
7111361 CIFC6 H7 N SP 1 c 17.2305; 5.8513; 7.7552
90; 107.364; 90
313.15Jetti, Ram K. R.; Boese, Roland; Thakur, Tejender S.; Vangala, Venu R.; Desiraju, Gautam R.
Proton transfer and N(+)?H?S(?) hydrogen bonds in the crystal structure of 4-aminothiophenol
Chemical Communications, 2004, 2526-2527
7125482 CIFC4 H12 Au NP 4/n m m :27.599; 7.599; 5.433
90; 90; 90
313.7Dietzel, P. D.; Jansen, M.
Synthesis and crystal structure determination of tetramethylammonium auride.
Chemical communications (Cambridge, England), 2001, 2208-2209
7107435 CIFC12 H10 Br2 Cd N2P -13.91426; 8.8696; 9.4343
79.568; 86.28; 86.248
320.97Mangayarkarasi Nagarathinam; Anjana Chanthapally; Saul Lapidus; Peter W. Stephens; Jagadese J. Vittal
Mechanochemical Reactions of Coordination Polymers by Grinding with KBr
Chem.Commun., 2012, 48, 2585
7127078 CIFF I O3 ZnP 1 21/n 15.0197; 5.2136; 12.4572
90; 95.943; 90
324.26Cao, Liling; Luo, Min; Lin, Chensheng; Zhou, Yuqiao; Zhao, Dan; Yan, Tao; Ye, Ning
From centrosymmetric to noncentrosymmetric: intriguing structure evolution in d<sup>10</sup>-transition metal iodate fluorides.
Chemical communications (Cambridge, England), 2020, 56, 10734-10737
7110462 CIFC3 H6 OC m c m6.1219; 5.2029; 10.244
90; 90; 90
326.29Allan, David R.; Clark, Stewart J.; Ibberson, Richard M.; Parsons, Simon; Pulham, Colin R.; Sawyer, Lindsay
The influence of pressure and temperature on the crystal structure of acetone
Chemical Communications, 1999, 751
7103193 CIFC H3 Ag N2P b c m3.9034; 15.7268; 5.3245
90; 90; 90
326.86Chippindale, Ann M; Head, Laura E; Hibble, Simon J
Simple linear asymmetrical complexes of silver(I): NC-Ag-NH3 and Br-Ag-NH3.
Chemical communications (Cambridge, England), 2008, 3010-3012
7116635 CIFC16 H4 Cl2 N4P -14.7573; 7.941; 8.892
92.898; 100.56; 94.347
328.6Shuaijun Yang; Danqing Liu; Xiaomin Xu; Qian Miao
Molecular packing and n-channel thin film transistors of chlorinated cyclobuta[1,2-b:3,4-b']diquinoxalines
Chem.Commun., 2015, 51, 4275
7127576 CIFC15 H13 N3 O3P 15.0971; 5.3649; 12.3429
99.966; 96.111; 90.897
330.34Saha, Debarshi; Taily, Irshad Maajid; Naik, Sumitra; Banerjee, Prabal
Electrochemical access to benzimidazolone and quinazolinone derivatives <i>via in situ</i> generation of isocyanates.
Chemical communications (Cambridge, England), 2021, 57, 631-634
7117507 CIFCl Hf N Na0.25R -3 m :H3.587907; 3.587907; 29.67848
90; 90; 120
330.868Oro-Sole, J.; Frontera, C.; Martinez, B.; Beltran-Porter, D.; Fuertes, A.; Palacin, M.R.
A new intermediate intercalate in superconducting sodium-doped hafnium nitride chloride
Chemical Communications, 2005, 2005, 3352-3354
7103194 CIFC H3 Ag N2C m c m3.9543; 15.9183; 5.2689
90; 90; 90
331.65Chippindale, Ann M; Head, Laura E; Hibble, Simon J
Simple linear asymmetrical complexes of silver(I): NC-Ag-NH3 and Br-Ag-NH3.
Chemical communications (Cambridge, England), 2008, 3010-3012
7131418 CIFC10 H14 Cl2 Mo O4P -17.2362; 7.3583; 7.9687
92.355; 112.501; 118.207
332.36Masero, Fabio; Mougel, Victor
Molybdenum(IV) β-diketonate complexes as highly active catalysts for allylic substitution reactions.
Chemical communications (Cambridge, England), 2023, 59, 4636-4639
7112816 CIFC8 H4 N2 OP -17.0278; 7.2916; 7.6914
117.269; 90.138; 106.131
332.64Fatila, Elisabeth M.; Goodreid, Jordan; Clérac, Rodolphe; Jennings, Michael; Assoud, Jalil; Preuss, Kathryn E.
High-spin supramolecular pair of Mn(II)/thiazyl radical complexes.
Chemical communications (Cambridge, England), 2010, 46, 6569-6571
7100788 CIFC12 H16 O6P -14.1673; 6.5063; 12.4424
97.557; 92.948; 91.67
333.77Roger Davey; G. Dent; S. Parveen
Linking solution chemistry to crystal nucleation:the case of tetrolic acid
Chemical Communications, 2005
7122341 CIFC14 H14 Cl2 N2 O2P -14.4516; 6.7274; 11.4945
86.957; 83.772; 77.68
334.16Kolesnichenko, Igor V.; Escamilla, P. Rogelio; Michael, Jason A.; Lynch, Vincent M.; Vanden Bout, David A.; Anslyn, Eric V.
Hydrogen peroxide production via a redox reaction of N,N'-dimethyl-2,6-diaza-9,10-anthraquinonediium by addition of bisulfite.
Chemical communications (Cambridge, England), 2018, 54, 11204-11207
7110440 CIFO5 S2 Sm2 Ti2I 4/m m m3.818; 3.818; 22.952
90; 90; 90
334.57Goga, M.; Seshadri, R.; Ksenofontov, V.; Gütlich, P.; Tremel, W.
Ln2Ti2S2O5 (Ln = Nd, Pr, Sm): a novel series of defective Ruddlesden‒Popper phases
Chemical Communications, 1999, 979
7130351 CIFC12 Br3 RbP m -3 m6.944; 6.944; 6.944
90; 90; 90
334.834Han, Keke; Zhang, Mengxia; Wei, Zhenhong; Ye, Xing; Rao, Wenjun; Zhang, Haina; Cai, Hu
Precise design and preparation of two 3D organic−inorganic perovskite ferroelectrics (1,5-diazabicyclo[3.2.2]nonane)RbX3 (X = Br, I)
Chemical Communications, 2022
7121335 CIFC7 H4 Br NC 1 m 19.509; 8.535; 4.127
90; 90.311; 90
334.9Alimi, Lukman O.; Lama, Prem; Smith, Vincent J.; Barbour, Leonard J.
Hand-twistable plastically deformable crystals of a rigid small organic molecule.
Chemical communications (Cambridge, England), 2018, 54, 2994-2997
7101565 CIFC6 H12 N6 O10 ZnP -16.3661; 7.5923; 8.0357
103.58; 103.119; 109.693
334.98I.Gural'skiy; P.V.Solntsev; H.Krautscheid; K.V.Domasevitch
Metal-organic frameworks exhibiting strong anion-pi interactions
Chemical Communications, 2006
7127999 CIFO4 S3 Tm2 Zr2P b a m6.4784; 14.1361; 3.6618
90; 90; 90
335.35Lu, Zhen-Tao; Yang, Si-Han; Liu, Wenlong; Guo, Sheng-Ping
A series of oxysulfides RE<sub>2</sub>M<sub>2</sub>S<sub>3</sub>O<sub>4</sub> (RE = Y, Tm; M = Zr, Hf) featuring a unique MS<sub>3</sub>O<sub>4</sub> motif and {[M<sub>2</sub>S<sub>3</sub>O<sub>4</sub>]<sup>8-</sup>}<sub>\ιnfty </sub> wrinkle layer.
Chemical communications (Cambridge, England), 2021, 57, 3500-3503
7122726 CIFC2 H5 O6 P2 SbP -14.6984; 4.9701; 15.6294
83.332; 83.799; 68.098
335.51Yin, Jinlin; Zhang, Guiyang; Peng, Chengdong; Fei, Honghan
An Ultrastable Metal-Organic Material Emits Effcient and Broadband Bluish White-Light Emission for Luminescent Thermometer
Chemical Communications, 2018
7121334 CIFC7 H4 Br NC 1 m 19.531; 8.5593; 4.1352
90; 90.295; 90
337.34Alimi, Lukman O.; Lama, Prem; Smith, Vincent J.; Barbour, Leonard J.
Hand-twistable plastically deformable crystals of a rigid small organic molecule.
Chemical communications (Cambridge, England), 2018, 54, 2994-2997
7118967 CIFC7 H3 Cl F2 OP -16.859; 7.2006; 8.0365
94.613; 104.275; 115.906
337.85Dhananjay Dey; Subhrajyoti Bhandary; Abhishek Sirohiwal; Venkatesha R. Hathwar; Deepak Chopra
'Conformational lock' via unusual intramolecular C-F^...^O[double bond, length as m-dash]C and C-H^...^Cl-C parallel dipoles observed in in situ cryocrystallized liquids
Chem.Commun., 2016, 52, 7225
7128501 CIFGa2 H2 O9 S TeP 1 21/m 14.9825; 9.7519; 6.9741
90; 93.55; 90
338.21Li, Peng-Fei; Hu, Chun-Li; Gong, Ya-Ping; Kong, Fang; Mao, Jiang-Gao
Hg<sub>3</sub>(Te<sub>3</sub>O<sub>8</sub>)(SO<sub>4</sub>): a new sulfate tellurite with a novel structure and large birefringence explored from d<sup>10</sup> metal compounds.
Chemical communications (Cambridge, England), 2021, 57, 7039-7042
7127998 CIFHf2 O4 S3 Y2P b a m6.5013; 14.177; 3.671
90; 90; 90
338.35Lu, Zhen-Tao; Yang, Si-Han; Liu, Wenlong; Guo, Sheng-Ping
A series of oxysulfides RE<sub>2</sub>M<sub>2</sub>S<sub>3</sub>O<sub>4</sub> (RE = Y, Tm; M = Zr, Hf) featuring a unique MS<sub>3</sub>O<sub>4</sub> motif and {[M<sub>2</sub>S<sub>3</sub>O<sub>4</sub>]<sup>8-</sup>}<sub>\ιnfty </sub> wrinkle layer.
Chemical communications (Cambridge, England), 2021, 57, 3500-3503
7120256 CIFC2 H0 Cu2 O6 SP 1 21/m 15.6115; 6.0587; 10.068
90; 93.612; 90
341.62Yang, Huimin; Fei, Honghan
Exfoliation of a Two-Dimensional Cationic Inorganic Network as a New Paradigm for High-Capacity CrVI-Anion Capture
Chem. Commun., 2017
7110441 CIFNd2 O5 S2 Ti2I 4/m m m3.849; 3.849; 23.064
90; 90; 90
341.69Goga, M.; Seshadri, R.; Ksenofontov, V.; Gütlich, P.; Tremel, W.
Ln2Ti2S2O5 (Ln = Nd, Pr, Sm): a novel series of defective Ruddlesden‒Popper phases
Chemical Communications, 1999, 979
7100432 CIFC17 H16 O4P 14.709; 8.2955; 9.1628
92.006; 94.865; 104.989
343.9Jonathan L. Sessler; Thomas Kohler; Vincent Lynch; David Sanchez-Garcia; Daniel Seidel
Straightforward synthesis of sulfur bridged oligopyrrolic macrocycles
Chemical Communications, 2005
7105588 CIFC16 H10 Hg N4 O2P -14.5549; 7.5368; 10.6347
106.904; 96.962; 94.24
344.43King, Kelsey N.; McNeil, Anne J.
Streamlined approach to a new gelator: inspiration from solid-state interactions for a mercury-induced gelation
Chemical Communications, 2010, 46, 3511
7129651 CIFC12 Mn3 O22.2 Rb2P 6/m m m7.851; 7.851; 6.462
90; 90; 120
344.9Wu, Xiaoyu; Wu, Haowei; Wu, Sicheng; Sun, Yimeng; Zhu, Jia; Zou, Ye; Xu, Wei; Zhu, Daoben
Chemical structure modulation in conductive MOFs by adjusting the oxidation state of the ligand and introducing alkali metal ions
Chemical Communications, 2022
7110442 CIFO5 Pr2 S2 Ti2I 4/m m m3.871; 3.871; 23.036
90; 90; 90
345.19Goga, M.; Seshadri, R.; Ksenofontov, V.; Gütlich, P.; Tremel, W.
Ln2Ti2S2O5 (Ln = Nd, Pr, Sm): a novel series of defective Ruddlesden‒Popper phases
Chemical Communications, 1999, 979
7111399 CIFC4 H6 Cd O6P -16.757; 7.544; 7.809
68.54; 86.53; 69.96
347.08Michaelides, Adonis; Skoulika, Stavroula; Siskos, Michael G.
Assembly of a photoreactive coordination polymer containing rectangular grids
Chemical Communications, 2004, 2418-2419
7127079 CIFCd F I O3P 21 21 215.5051; 5.7913; 10.9326
90; 90; 90
348.55Cao, Liling; Luo, Min; Lin, Chensheng; Zhou, Yuqiao; Zhao, Dan; Yan, Tao; Ye, Ning
From centrosymmetric to noncentrosymmetric: intriguing structure evolution in d<sup>10</sup>-transition metal iodate fluorides.
Chemical communications (Cambridge, England), 2020, 56, 10734-10737
7117794 CIFGe La2 Mg O6R 3 :H5.5125; 5.5125; 13.3295
90; 90; 120
350.786Swaffer, M.; Slater, P.R.; Matsumura, T.; Kamiyama, T.; Gover, R.K.B.; Kanno, R.
La2 Mg Ge O6 : a novel Ge based perovskite synthesised under ambient pressure
Chemical Communications, 2002, 2002, 1776-1777
7107634 CIFC8.5 H6 Fe N7 Pt S0.5P 4/m m m7.191; 7.191; 6.802
90; 90; 90
351.73Francisco J. Munoz Lara; Ana B. Gaspar; Daniel Aravena; Eliseo Ruiz; M. Carmen Munoz; Masaaki Ohba; Ryo Ohtani; Susumu Kitagawa; Jose A. Real
Enhanced bistability by guest inclusion in Fe(II) spin crossover porous coordination polymers
Chem.Commun., 2012, 48, 4686
7107635 CIFC8.5 H6 Fe N7 Pd S0.5P 4/m m m7.207; 7.207; 6.798
90; 90; 90
353.09Francisco J. Munoz Lara; Ana B. Gaspar; Daniel Aravena; Eliseo Ruiz; M. Carmen Munoz; Masaaki Ohba; Ryo Ohtani; Susumu Kitagawa; Jose A. Real
Enhanced bistability by guest inclusion in Fe(II) spin crossover porous coordination polymers
Chem.Commun., 2012, 48, 4686
7131465 CIFC6 H6 Cl N O2P 1 21/m 17.1749; 6.6728; 7.4888
90; 99.545; 90
353.58Li, Jie; Zhang, Tie; Lun, Meng-Meng; Su, Chang-Yuan; Zhang, Zhi-Xu; Huang, Pei-Zhi; Zhang, Yi; Teri, Gele; Fu, Da-Wei
Nicotinic acid bromide: a simple organic salt optical-electrical ferroelastic with high <i>T</i><sub>c</sub>.
Chemical communications (Cambridge, England), 2023, 59, 4644-4647
7125949 CIFC8 H9 N OP -16.5511; 6.9192; 8.0265
93.73; 102.78; 91.769
353.68Zhai, Shengxian; Zhang, Xinping; Cheng, Bin; Li, Hui; Li, Yuntong; He, Yixuan; Li, Yun; Wang, Taimin; Zhai, Hongbin
Synthesis of tetrasubstituted thiophenes via a [3+2] cascade cyclization reaction of pyridinium 1,4-zwitterionic thiolates and activated allenes.
Chemical communications (Cambridge, England), 2020, 56, 3085-3088
7124079 CIFCl Cu4 F H6 O6P 63/m m c6.672572; 6.672572; 9.18014
90; 90; 120
353.97Henderson, Alyssa May; Dong, Lianyang; Biswas, Sananda; Revell, Hannah; Xin, Yan; Valenti, Roser; Schlueter, John A.; Siegrist, Theo
Order-Disorder Transition in the S = ½ Kagome Antiferromagnets Claringbullite and Barlowite
Chemical Communications, 2019
7114820 CIFC10 H8 Co N6 O4 S2P -16.8922; 7.1528; 8.1074
82.49; 67.26; 74.06
354.31Sun, Hao-Ling; Ma, Bao-Qing; Gao, Song; Su, Gang
Pyrazine dioxide bridged two-dimensional antiferromagnets [M(NCS)2(pzdo)2] (M = Mn, Co; pzdo = pyrazine dioxide)Electronic supplementary information (ESI) available: Fig. S1: two types of coordination mode for pzdo. Fig. S2: perspective view of compound 2 along the [010] direction. See http://www.rsc.org/suppdata/cc/b1/b107334f/
Chemical Communications, 2001, 2586
7132472 CIFC5 H4 N6 O2P 1 21 16.6812; 7.0171; 7.8472
90; 104.571; 90
356.06Balaraju, Muntha; Kommu, Nagarjuna; Vangara, Srinivas; Sahoo, Aswini K.; Thaltiri, Vikranth; Sahoo, Akhila K.
Synthetic manifestation of trinitro-pyrazolo-2<i>H</i>-1,2,3-triazoles (TNPT) as insensitive energetic materials.
Chemical communications (Cambridge, England), 2024, 60, 827-830
7110436 CIFC12 H12 Cu N2 O6 S2P -17.7242; 9.7417; 4.9584
103.837; 98.12; 93.227
357.07Kimura, Kentaro; Kimura, Takahiro; Kinoshita, Isamu; Nakashima, Nobuaki; Kitano, Ken’ichi; Nishioka, Takanori; Isobe, Kiyoshi
Aerobic oxidation of a disulfide to its sulfonate leading to supramolecular pyridine-2-sulfonato Cu(II) and Zn(II) complexes
Chemical Communications, 1999, 497
7125493 CIFC12 H18 Co N O7P -16.442; 7.007; 9.12
68.79; 89.06; 69.72
357.2Braga, D.; Cojazzi, G.; Emiliani, D.; Maini, L.; Grepioni, F.
Reversible trapping of acid and base vapours into an amphoteric crystalline material.
Chemical communications (Cambridge, England), 2001, 2272-2273
7117022 CIFC8 H10 N14 O4P -15.4207; 6.797; 10.53
82.822; 77.868; 71.33
358.65Jiaheng Zhang; Damon A. Parrish; Jean'ne M. Shreeve
Curious cases of 3,6-dinitropyrazolo[4,3-c]pyrazole-based energetic cocrystals with high nitrogen content: an alternative to salt formation
Chem.Commun., 2015, 51, 7337
7124080 CIFBr Cu4 F H6 O6P 63/m m c6.675463; 6.675463; 9.2989
90; 90; 120
358.86Henderson, Alyssa May; Dong, Lianyang; Biswas, Sananda; Revell, Hannah; Xin, Yan; Valenti, Roser; Schlueter, John A.; Siegrist, Theo
Order-Disorder Transition in the S = ½ Kagome Antiferromagnets Claringbullite and Barlowite
Chemical Communications, 2019
7102626 CIFC12 H12 Cu3 N8P -15.5367; 6.7153; 10.0436
105.55; 90.044; 90.586
359.74Huang, Xiao-Chun; Zhang, Jie-Peng; Lin, Yan-Yong; Yu, Xiao-Lan; Chen, Xiao-Ming
Two mixed-valence copper(I,II) imidazolate coordination polymers: metal-valence tuning approach for new topological structures.
Chemical communications (Cambridge, England), 2004, 1100-1101
7116636 CIFC16 H4 Cl4 N4P -15.8383; 6.0989; 10.5832
82.636; 76.077; 82.498
360.8Shuaijun Yang; Danqing Liu; Xiaomin Xu; Qian Miao
Molecular packing and n-channel thin film transistors of chlorinated cyclobuta[1,2-b:3,4-b']diquinoxalines
Chem.Commun., 2015, 51, 4275
7109769 CIFC17 H20 N2 OP 16.0329; 7.7817; 9.0003
115.116; 101.212; 99.162
361.11Alberto Hernan-Gomez; Tyne D. Bradley; Alan R. Kennedy; Zoe Livingstone; Stuart D. Robertson; Eva Hevia
Developing catalytic applications of cooperative bimetallics: competitive hydroamination/trimerization reactions of isocyanates catalysed by sodium magnesiates
Chem.Commun., 2013, 49, 8659
7131467 CIFC12 H12 Br2 N2 O4P -17.07; 7.4103; 7.5264
79.944; 86.365; 68.488
361.21Li, Jie; Zhang, Tie; Lun, Meng-Meng; Su, Chang-Yuan; Zhang, Zhi-Xu; Huang, Pei-Zhi; Zhang, Yi; Teri, Gele; Fu, Da-Wei
Nicotinic acid bromide: a simple organic salt optical-electrical ferroelastic with high <i>T</i><sub>c</sub>.
Chemical communications (Cambridge, England), 2023, 59, 4644-4647
7112528 CIFC2 H9 N O6 P2P -15.578; 5.9177; 11.3992
82.368; 82.198; 78.166
362.72Chen, Shuo-ping; Hu, Le; Zhang, Yu-qin; Deng, Pu; Li, Cong; Chen, Xi; Yuan, Liang-jie
(AEDPH3)·(BtaH): a novel supramolecular plaster with formaldehyde adsorption and formaldehyde/ultraviolet ray-induced luminescence switching performance.
Chemical communications (Cambridge, England), 2012, 48, 552-554
7132415 CIFB4 O9 Pb TeP -16.574; 6.7445; 9.8903
70.105; 78.877; 61.726
362.88Zhang, Ruonan; Tudi, Abudukadi; Yang, Xia; Wang, Xuping; Yang, Zhihua; Han, Shujuan; Pan, Shilie
PbTeB<sub>4</sub>O<sub>9</sub>: a lead tellurium borate with unprecedented fundamental building block [B<sub>4</sub>O<sub>10</sub>] and large birefringence.
Chemical communications (Cambridge, England), 2024, 60, 340-343
7122192 CIFC4 H6 N Np O6P m m n8.2246; 9.7709; 4.538
90; 90; 90
364.68Payne, Maurice K.; Pyrch, Mikaela; Jubinsky, Matthew; Basile, Madeline; Forbes, Tori
Impacts of oxo interactions within actinyl metal organic materials: Highlight on thermal expansion behaviour
Chemical Communications, 2018
7117792 CIFBi2 Cu2 O4 Se2 YI 4/m m m3.86463; 3.86463; 24.428
90; 90; 90
364.841Evans, J.S.O.; Brogden, E.R.; Cordiner, R.L.; Thompson, A.L.
Synthesis and characterisation of the new oxyselenide Bi2 Y O4 Cu2 Se2
Chemical Communications, 2002, 2002, 912-913
7119568 CIFC5 H13 N O SP 1 21/m 16.2849; 8.8158; 6.6483
90; 96.781; 90
365.78Lohier, Jean-François; Glachet, Thomas; Marzag, Hamid; Gaumont, Annie-Claude; Reboul, Vincent
Mechanistic investigation of the NH-sulfoximination of sulfide. Evidence for λ(6)-sulfanenitrile intermediates.
Chemical communications (Cambridge, England), 2017, 53, 2064-2067
7114819 CIFC10 H8 Mn N6 O4 S2P -16.9405; 7.1938; 8.2566
82.237; 66.892; 74.971
365.94Sun, Hao-Ling; Ma, Bao-Qing; Gao, Song; Su, Gang
Pyrazine dioxide bridged two-dimensional antiferromagnets [M(NCS)2(pzdo)2] (M = Mn, Co; pzdo = pyrazine dioxide)Electronic supplementary information (ESI) available: Fig. S1: two types of coordination mode for pzdo. Fig. S2: perspective view of compound 2 along the [010] direction. See http://www.rsc.org/suppdata/cc/b1/b107334f/
Chemical Communications, 2001, 2586
7132970 CIFFe Nb Te2P 1 21/c 17.28; 6.305; 7.992
90; 92.33; 90
366.5Stepanova, Anna V.; Mironov, Andrei; Bogach, Alexey; Azarevich, Andrey; Presniakov, Igor A.; Sobolev, Alexey V.; Pankratov, Denis A.; Zayakhanov, Vladimir; Starchikov, Sergey; Verchenko, Valeriy; Shevelkov, Andrei V.
Bulk ferromagnetism in cleavable van der Waals telluride NbFeTe2
Chemical Communications, 2024
7115450 CIFC15 H12 Br F N2 O4P 15.6907; 7.4227; 9.3653
108.137; 100.781; 90.415
368.39Jacek Kwiatkowski; Yixin Lu
Asymmetric Michael addition of alpha-fluoro-alpha-nitroalkanes to nitroolefins: facile preparation of fluorinated amines and tetrahydropyrimidines
Chem.Commun., 2014, 50, 9313
7130681 CIFC15 H16 Cl2 N2 O2P 14.8117; 5.783; 13.449
84.087; 87.255; 83.055
369.27Xu, Xinyue; Chen, Zehang; Lei, yunxiang; Sun, Xinyu; Liu, Miaochang; Wu, Huayue; Huang, Xiaobo
Guest-activated Quaternary Ammonium Salt Hosts Emit Room Temperature Phosphorescence
Chemical Communications, 2022
7126458 CIFC6 H11 F O4P 1 21 18.1522; 4.739; 9.7711
90; 99.908; 90
371.86Valverde, Pablo; Vendeville, Jean-Baptiste; Hollingsworth, Kristian; Mattey, Ashley P.; Keenan, Tessa; Chidwick, Harriet; Ledru, Helene; Huonnic, Kler; Huang, Kun; Light, Mark E.; Turner, Nicholas; Jiménez-Barbero, Jesús; Galan, M. Carmen; Fascione, Martin A.; Flitsch, Sabine; Turnbull, W. Bruce; Linclau, Bruno
Chemoenzymatic synthesis of 3-deoxy-3-fluoro-l-fucose and its enzymatic incorporation into glycoconjugates.
Chemical communications (Cambridge, England), 2020, 56, 6408-6411
7129653 CIFC12 Cs2 Mn3 O17.94P 6/m m m7.844; 7.844; 6.985
90; 90; 120
372.2Wu, Xiaoyu; Wu, Haowei; Wu, Sicheng; Sun, Yimeng; Zhu, Jia; Zou, Ye; Xu, Wei; Zhu, Daoben
Chemical structure modulation in conductive MOFs by adjusting the oxidation state of the ligand and introducing alkali metal ions
Chemical Communications, 2022
7117671 CIFC8 H8 F6 N4 Ni O2 SiP 4/m m m7.0148; 7.0148; 7.5655
90; 90; 90
372.28Osama Shekhah; Youssef Belmabkhout; Karim Adil; Prashant M. Bhatt; Amy J. Cairns; Mohamed Eddaoudi
A facile solvent-free synthesis route for the assembly of a highly CO2 selective and H2S tolerant NiSIFSIX metal-organic framework
Chem.Commun., 2015, 51, 13595
7114069 CIFC16 H6 F10 N2P -16.3833; 7.7232; 8.2726
91.79; 107.64; 103.1
376.34Gordon, John C.; Shukla, Piyush; Cowley, Alan H.; Jones, Jamie N.; Keogh, D. Webster; Scott, Brian L.
Dialkyl aluminium amides: new reagents for the conversion of C???O into C???NR functionalitiesElectronic supplementary information (ESI) available: HRMS, 1H and 19F NMR data for 1???9. See http://www.rsc.org/suppdata/cc/b2/b203693b/
Chemical Communications, 2002, 2710
7126195 CIFC8 H12 N6 O8 UP -17.5785; 7.5951; 7.6538
117.032; 102.909; 92.179
377.53Kelley, Steven P.; Smetana, Volodymyr; Emerson, Stephen D.; Mudring, Anja-Verena; Rogers, Robin D.
Benchtop access to anhydrous actinide N-donor coordination complexes using ionic liquids.
Chemical communications (Cambridge, England), 2020, 56, 4232-4235
7110463 CIFC3 H6 OC m c m6.514; 5.4159; 10.756
90; 90; 90
379.5Allan, David R.; Clark, Stewart J.; Ibberson, Richard M.; Parsons, Simon; Pulham, Colin R.; Sawyer, Lindsay
The influence of pressure and temperature on the crystal structure of acetone
Chemical Communications, 1999, 751
7116227 CIFAl H5 Mg O10 P2P 1 21 15.0119; 7.769; 9.995
90; 102.595; 90
379.81Mu, Ying; Wang, Yanyan; Li, Yi; Li, Jiyang; Yu, Jihong
Organotemplate-free synthesis of an open-framework magnesium aluminophosphate with proton conduction properties.
Chemical communications (Cambridge, England), 2015, 51, 2149-2151
7106386 CIFC4 H10 B Cl N2 OP -16.2785; 6.5034; 9.6048
83.088; 87.368; 78.44
381.34Jose M. Marquez; Elisa Martinez-Castro; Serena Gabrielli; Oscar Lopez; Ines Maya; Manuel Angulo; Eleuterio Alvarez; Jose G. Fernandez-Bolanos
Alkoxyamine-cyanoboranes: efficient cyanoborane transfer agents
Chem.Commun., 2011, 47, 5617
7120415 CIFF2 N2 O7 Pb2A m m 25.1684; 15.051; 4.9061
90; 90; 90
381.64Peng, Guang; Yang, Yi; Tang, Yu-Huan; Luo, Min; Yan, Tao; Zhou, Yuqiao; Lin, Chensheng; Lin, Zheshuai; Ye, Ning
Collaborative Enhancement from Pb2+ and F- in Pb2(NO3)2(H2O)F2 Generates the Largest Second Harmonic Generation Effect Among Nitrates
Chem. Commun., 2017
7110877 CIFC5 H15 MoI 47.68; 7.68; 6.49
90; 90; 90
382.8Roessler, Beatrice; Kleinhenz, Sven; Seppelt, Konrad
Pentamethylmolybdenum
Chemical Communications, 2000, 1039
7121875 CIFC14 H16 Cl2 N2 O6P -14.9143; 7.458; 11.698
73.27; 89.528; 69.737
383.2Donoshita, Masaki; Hayashi, Mikihiro; Ikeda, Ryuichi; Yoshida, Yukihiro; Morikawa, Shota; Sugimoto, Kunihisa; Kitagawa, Hiroshi
Drastic rearrangement of self-assembled hydrogen-bonded tapes in a molecular crystal.
Chemical communications (Cambridge, England), 2018, 54, 8571-8574
7125072 CIFC5 H12 N O PP 1 21/m 15.941; 7.4092; 8.8324
90; 99.184; 90
383.8Jost, Maximilian; Finger, Lars H.; Sundermeyer, Jörg; von Hänisch, Carsten
Simple access to ionic liquids and organic salts containing the phosphaethynolate (PCO(-)) and Zintl (Sb11(3-)) anions.
Chemical communications (Cambridge, England), 2016, 52, 11646-11648
7123215 CIFBi6 Fe4.2 O18 Sc1.8R 3 c :H5.62949; 5.62949; 14.0273
90; 90; 120
384.984Khalyavin, Dmitry; Salak, Andrei; Frtman, Elena; Kotlyar, Oleksandr; Eardley, Edwin; Olekhnovich, N. M.; Pushkarev, Anatoli; Radyush, Yury; Fedorchenko, Alexey; Desnenko, Vladimir; Manuel, Pascal; Ding, Lei; Cizmar, Erik; Feher, Alexander
Phenomenon of Conversion Polymorphism in Bi-Containing Metastable Perovskites
Chemical Communications, 2019
7105696 CIFC12 H12 Co N10 OP -13.5226; 9.6595; 11.578
100.01; 94.9; 92.32
385.93Zu0-Xi Li; Yong-Fei Zeng; Hong Ma; Xiai-He Bu
A new 2D coordination polymer with an azide-bridged 1D homospin chain: C12 H12 Co N10 0
Chem.Commun., 2010, 46, 8540
7102704 CIFC10 H8 F8 I2 N2P -15.2447; 7.9197; 9.6803
84.078; 85.711; 75.147
386.09Metrangolo, Pierangelo; Pilati, Tullio; Resnati, Giuseppe; Stevenazzi, Andrea
Metric engineering of perfluorocarbon-hydrocarbon layered solids driven by the halogen bonding.
Chemical communications (Cambridge, England), 2004, 1492-1493
7119534 CIFO9 P2 Ti2P -15.08431; 8.6121; 9.6766
74.5011; 76.1455; 74.488
386.933García-Glez, Jorge; Amghouz, Zakariae; da Silva, Iván; Ania, Conchi O.; Parra, José B; Trobajo, Camino; García-Granda, Santiago
The ability of a fibrous titanium oxophosphate for nitrogen-adsorption above room temperature.
Chemical communications (Cambridge, England), 2017, 53, 2249-2251
7131466 CIFC6 H6 Br N O2P 1 21/m 17.4792; 6.9912; 7.5202
90; 100.036; 90
387.2Li, Jie; Zhang, Tie; Lun, Meng-Meng; Su, Chang-Yuan; Zhang, Zhi-Xu; Huang, Pei-Zhi; Zhang, Yi; Teri, Gele; Fu, Da-Wei
Nicotinic acid bromide: a simple organic salt optical-electrical ferroelastic with high <i>T</i><sub>c</sub>.
Chemical communications (Cambridge, England), 2023, 59, 4644-4647
7105442 CIFC9 H9 N O2P -17.264; 7.894; 8.328
104.845; 114.462; 103.622
387.21Smith, Keith; El-Hiti, Gamal A; Hegazy, Amany S
One-pot synthesis of substituted isoindolin-1-ones via lithiation and substitution of N'-benzyl-N,N-dimethylureas.
Chemical communications (Cambridge, England), 2010, 46, 2790-2792
7104547 CIFC6 H7 I O3P 1 21 16.368; 7.456; 8.308
90; 100.83; 90
387.4Boyd, Derek R; Sharma, Narain D; Malone, John F; Allen, Christopher C R
New families of enantiopure cyclohexenone cis-diol, o-quinol dimer and hydrate metabolites from dioxygenase-catalysed dihydroxylation of phenols.
Chemical communications (Cambridge, England), 2009, 34, 3633-3635
7111049 CIFC0.25 H0.25 N0.13 O0.38 W0.13I 4/m m m5.2288; 5.2288; 14.175
90; 90; 90
387.55Yan, Bangbo; Xu, Yan; Goh, Ngoh K.; Chia, Lian S.
Hydrothermal synthesis and crystal structures of two novel hybrid open-frameworks and a two-dimensional network based on tungsten(vi) oxides
Chemical Communications, 2000, 2169
7114917 CIFC6 H7 Br O4P -16.082; 6.329; 11.666
81.379; 88.407; 61.999
391.55Robinson, James J.; Buchanan, J. Grant; Kinsman, Richard G.; Mahon, Mary F.; Williams, Ian H.; Charlton, Michael H.
Evidence for α-lactone intermediates in addition of aqueous bromine to disodium dimethyl-maleate and -fumarate
Chemical Communications, 2001, 485
7127218 CIFC6 Cl Cu3 K4 N6 O6P -3 m 111.1833; 11.1833; 3.6304
90; 90; 120
393.21Kang, Kaijin; Liang, Fei; Meng, Xianghe; Tang, Jian; Zeng, Tixian; Xia, Mingjun; Lin, Zheshuai; Yin, Wenlong; Bin, Kang
K<sub>4</sub>Cu<sub>3</sub>(C<sub>3</sub>N<sub>3</sub>O<sub>3</sub>)<sub>2</sub>X (X = Cl, Br): strong anisotropic layered semiconductors containing mixed p-p and d-p conjugated π-bonds.
Chemical communications (Cambridge, England), 2020, 56, 12534-12537
7122593 CIFC12 H14 N2 P2 S4P -14.6979; 7.2032; 12.158
91.108; 99.021; 104.05
393.47Begum, Imtiaz; Schnakenburg, Gregor; Kelemen, Zsolt; Nyulászi, László; Boeré, René T; Streubel, Rainer
Expanding the chemistry of ring-fused 1,4-diphosphinines by stable mono anion formation.
Chemical communications (Cambridge, England), 2018, 54, 13555-13558
7121125 CIFC K3 O8 VC 1 m 19; 9.297; 5.601
90; 122.89; 90
394Song, Yunxia; Luo, Min; Liang, Fei; Ye, Ning; Lin, Zheshuai
The second-harmonic generation intensification derived from localization conjugated π-orbitals in O<sub>2</sub><sup>2</sup>.
Chemical communications (Cambridge, England), 2018, 54, 1445-1448
7110523 CIFC Ag3 N3 O6 SP -16.569; 7.732; 8.031
104.09; 93.94; 90.04
394.6Guo, Guo-Cong; Mak, Thomas C. W.
Unprecedented μ-1,2,3κS:4,5κN coordination mode of the thiocyanate anion in two new double salts of silver(I), AgSCN·2AgNO3 and AgSCN·AgClO4
Chemical Communications, 1999, 813
7111225 CIFC8 H14P 1 21/c 19.321; 4.914; 8.7545
90; 99.51; 90
395.47Bond, Andrew D.
C???H????? interactions in the low-temperature crystal structures of ??,??-unsaturated linear hydrocarbonsElectronic supplementary (ESI) information available: experimental details of crystal growth for 1???4, lattice-energy calculations for 1???4 and the n-alkanes, and definition and determination of the planar packing densities. See http://www.rsc.org/suppdata/cc/b2/b204261d/
Chemical Communications, 2002, 1664
7110878 CIFC5 H15 TaI 47.85; 7.85; 6.42
90; 90; 90
395.62Roessler, Beatrice; Kleinhenz, Sven; Seppelt, Konrad
Pentamethylmolybdenum
Chemical Communications, 2000, 1039
7121877 CIFC14 H16 Cl2 N2 O6P -14.6904; 8.921; 9.833
103.357; 96.447; 93.984
395.8Donoshita, Masaki; Hayashi, Mikihiro; Ikeda, Ryuichi; Yoshida, Yukihiro; Morikawa, Shota; Sugimoto, Kunihisa; Kitagawa, Hiroshi
Drastic rearrangement of self-assembled hydrogen-bonded tapes in a molecular crystal.
Chemical communications (Cambridge, England), 2018, 54, 8571-8574
7100428 CIFC6 H4 Cl N3 O4P 1 21 18.1619; 3.6646; 13.278
90; 91.31; 90
397.04C. Malla Reddy; Srinivas Basavoju; Gautam.Desiraju R
Sorting of polymorphs based on mechanical properties. Trimorphs of 6-chloro-2,4-dinitroaniline
Chemical Communications, 2005
7130259 CIFB Nd S3P n a 217.4818; 6.0037; 8.853
90; 90; 90
397.663Breton, Logan S.; Morrison, Gregory; Lacroix, Matthew; Halasyamani, P. Shiv; Zur Loye, Hans-Conrad
Lanthanide Thioborates, an Emerging Class of Nonlinear Optical Materials, Efficiently Synthesized Using the Boron-Chalcogen Mixture Method
Chemical Communications, 2022
7122255 CIFC8 H9 Cl N2P -15.5421; 7.9319; 9.4933
82.068; 76.113; 80.977
397.91Richards, Josh E.; Hooper, Alexander J. J.; Bayfield, Oliver W.; Cockett, Martin C. R.; Dear, Gordon J.; Holmes, A. Jonathon; John, Richard O.; Mewis, Ryan E.; Pridmore, Natalie; Roberts, Andy D.; Whitwood, Adrian C.; Duckett, Simon B.
Using hyperpolarised NMR and DFT to rationalise the unexpected hydrogenation of quinazoline to 3,4-dihydroquinazoline.
Chemical communications (Cambridge, England), 2018, 54, 10375-10378
7110482 CIFC18 H12 Cr F6P -17.3254; 9.2627; 6.6102
100.026; 112.327; 97.532
398.87Aspley, Catherine J.; Boxwell, Clive; Buil, Maria L.; Higgitt, Catherine L.; Perutz, Robin N.; Long, Conor
A new combination of donor and acceptor: bis(η6-benzene)chromium and hexafluorobenzene form a charge-transfer stacked crystal
Chemical Communications, 1999, 1027
7121103 CIFC16 H30 N2 O2P -14.8725; 5.548; 16.422
85.972; 89.944; 64.398
399.1Roy, Arundhati; Gautam, Amitosh; Malla, Javid Ahmad; Sarkar, Sohini; Mukherjee, Arnab; Talukdar, Pinaki
Self-assembly of small-molecule fumaramides allows transmembrane chloride channel formation.
Chemical communications (Cambridge, England), 2018, 54, 2024-2027
7112828 CIFC6 H9 F3 O3P 16.373; 6.623; 10.22
88.89; 72.96; 75.9
399.4Bresciani, Stefano; Lebl, Tomas; Slawin, Alexandra M. Z.; O'Hagan, David
Fluorosugars: synthesis of the 2,3,4-trideoxy-2,3,4-trifluoro hexose analogues of D-glucose and D-altrose and assessment of their erythrocyte transmembrane transport.
Chemical communications (Cambridge, England), 2010, 46, 5434-5436
7123840 CIFC18 H18 O2 SP 16.79; 8.39; 8.689
108.45; 102.39; 112.79
399.4Luo, Hui-Yun; Xie, Yu-Yang; Song, Xu-Feng; Dong, Jia-Wei; Zhu, Deng; Chen, Zhi-Min
Lewis Base-Catalyzed Asymmetric Sulfenylation of Alkenes: Construction of Sulfenylated Lactones and Application to the Formal Syntheses of (-)-Nicotlactone B and (−)-Galbacin
Chemical Communications, 2019
7129005 CIFC16 H13 F6 N5 OP 14.6849; 5.6677; 15.258
98.838; 91.269; 93.319
399.46You, Tingjie; Zeng, Si-Hao; Fan, Jianqiang; Wu, Liangliang; Kang, Fangyuan; Liu, Yungen; Che, Chi-Ming
A soluble iron(II)-phthalocyanine-catalyzed intramolecular C(sp<sup>3</sup>)-H amination with alkyl azides.
Chemical communications (Cambridge, England), 2021, 57, 10711-10714
7121876 CIFC14 H16 Cl2 N2 O6P -14.987; 7.592; 11.718
72.926; 89.449; 71.157
399.6Donoshita, Masaki; Hayashi, Mikihiro; Ikeda, Ryuichi; Yoshida, Yukihiro; Morikawa, Shota; Sugimoto, Kunihisa; Kitagawa, Hiroshi
Drastic rearrangement of self-assembled hydrogen-bonded tapes in a molecular crystal.
Chemical communications (Cambridge, England), 2018, 54, 8571-8574
7120830 CIFC8 H7 Cu O2 SP 1 n 13.9655; 19.103; 5.2888
90; 93.343; 90
399.96Veselska, Oleksandra; Podbevsek, Darjan; Ledoux, Gilles; Fateeva, Alexandra; Demessence, Aude
Intrinsic Triple-Emitting 2D Copper Thiolate Coordination Polymer as a Ratiometric Thermometer Working over 400 K Range
Chem. Commun., 2017
7126481 CIFC4 H1.5 D0.5 N2 O4P 41 21 25.5308; 5.5308; 13.126
90; 90; 90
401.5Funnell, Nicholas P.; Bull, Craig L.; Ridley, Christopher J.; Parsons, Simon; Tellam, James P.
Alloxan under pressure-squeezing an extremely dense molecular crystal structure.
Chemical communications (Cambridge, England), 2020, 56, 6428-6431
7119153 CIFC2 H6 CdP 1 21/n 17.483; 7.711; 7.734
90; 115.85; 90
401.6Hanke, Felix; Hindley, Sarah; Jones, Anthony C.; Steiner, Alexander
The solid state structures of the high and low temperature phases of dimethylcadmium
Chemical Communications, 2016, 52, 10144
7131468 CIFC12 H12 I2 N2 O4P -17.4174; 7.4195; 8.1011
81.904; 79.902; 67.021
402.8Li, Jie; Zhang, Tie; Lun, Meng-Meng; Su, Chang-Yuan; Zhang, Zhi-Xu; Huang, Pei-Zhi; Zhang, Yi; Teri, Gele; Fu, Da-Wei
Nicotinic acid bromide: a simple organic salt optical-electrical ferroelastic with high <i>T</i><sub>c</sub>.
Chemical communications (Cambridge, England), 2023, 59, 4644-4647
7130257 CIFB Pr S3P n a 217.5432; 6.0072; 8.8897
90; 90; 90
402.824Breton, Logan S.; Morrison, Gregory; Lacroix, Matthew; Halasyamani, P. Shiv; Zur Loye, Hans-Conrad
Lanthanide Thioborates, an Emerging Class of Nonlinear Optical Materials, Efficiently Synthesized Using the Boron-Chalcogen Mixture Method
Chemical Communications, 2022
7114329 CIFC8 H10 O5P 1 21 18.614; 4.5655; 11.0991
90; 112.515; 90
403.23Lorbach, Volker; Franke, Dirk; Nieger, Martin; Müller, Michael
Cyclohexadiene-trans-diols as versatile starting material in natural product synthesis: short and efficient synthesis of iso-crotepoxide and ent-senepoxide
Chemical Communications, 2002, 494
7107636 CIFC8.5 H6 Fe N7 Pt S0.5P 4/m m m7.4564; 7.4564; 7.2671
90; 90; 90
404.04Francisco J. Munoz Lara; Ana B. Gaspar; Daniel Aravena; Eliseo Ruiz; M. Carmen Munoz; Masaaki Ohba; Ryo Ohtani; Susumu Kitagawa; Jose A. Real
Enhanced bistability by guest inclusion in Fe(II) spin crossover porous coordination polymers
Chem.Commun., 2012, 48, 4686
7119496 CIFC8 H10 N4P 1 21/c 15.57982; 4.79015; 15.1644
90; 94.0417; 90
404.309Ahmed, Basil M.; Mezei, Gellert
Accessing the inaccessible: discrete multinuclear coordination complexes and selective anion binding attainable only by tethering ligands together.
Chemical communications (Cambridge, England), 2017, 53, 1029-1032
7124344 CIFBa0.81 Ga2 K0.38 Se4I 4 c m8.0211; 8.0211; 6.2888
90; 90; 90
404.61Li, Ya-Nan; Chi, Yang; Sun, Zong-Dong; Xue, Huaiguo; Suen, Nian-Tzu; Guo, Sheng-Ping
Partial substitution induced centrosymmetric to noncentrosymmetric structure transformation and promising second-order nonlinear optical properties of (K0.38Ba0.81)Ga2Se4
Chemical Communications, 2019
7127219 CIFC6 Br Cu3 K4 N6 O6P -3 m 111.2089; 11.2089; 3.7195
90; 90; 120
404.71Kang, Kaijin; Liang, Fei; Meng, Xianghe; Tang, Jian; Zeng, Tixian; Xia, Mingjun; Lin, Zheshuai; Yin, Wenlong; Bin, Kang
K<sub>4</sub>Cu<sub>3</sub>(C<sub>3</sub>N<sub>3</sub>O<sub>3</sub>)<sub>2</sub>X (X = Cl, Br): strong anisotropic layered semiconductors containing mixed p-p and d-p conjugated π-bonds.
Chemical communications (Cambridge, England), 2020, 56, 12534-12537
7116255 CIFC8 H12 N2 O2P 1 21/c 13.8328; 10.291; 10.396
90; 98.77; 90
405.26Aakeröy, Christer B; Wijethunga, Tharanga K.; Benton, Joshua; Desper, John
Stabilizing volatile liquid chemicals using co-crystallization.
Chemical communications (Cambridge, England), 2015, 51, 2425-2428
7130388 CIFB F H3 K O3P b c m5.4454; 10.6284; 7.0024
90; 90; 90
405.27Li, Yang; Chen, Xinglong; Ok, Kang Min
KF·B(OH)3: a KBBF-type material with large birefringence and remarkable deep-ultraviolet transparency
Chemical Communications, 2022
7100125 CIFC2 H5 Li SP 1 21/c 18.32854; 5.03756; 9.82453
90; 100.375; 90
405.454Matthias Wagner; Edith Alig; Robert E. Dinnebier; Hans-Wolfram Lerner; Kai Ruth; Ingebororg Sanger; S. Tonnes
Solvent-Free Methylthiomethyllithium [LiCH2SMe] : Solid State Structure and Thermal Decomposition.
Chemical Communications, 2005
7126564 CIFO4 Pb Si SrP 21 21 215.7628; 7.2333; 9.7316
90; 90; 90
405.65Jiang, Shutong; Zhou, Jinjie; Wu, Hongping; Yu, Hongwei; Hu, Zhanggui; Wang, Jiyang; Wu, Yicheng
PbSrSiO<sub>4</sub>: a new ultraviolet nonlinear optical material with a strong second harmonic generation response and moderate birefringence.
Chemical communications (Cambridge, England), 2020, 56, 7104-7107
7132055 CIFC4 H5 N7 O5P 1 c 14.7059; 10.5914; 8.1537
90; 93.137; 90
405.79Lei, Caijin; Xiao, Chuan; Tang, Jie; Yang, Hongwei; Zhang, Qinghua; Cheng, Guangbin
Synthesis of fused energetic compounds using the structural modification from local carbonyl to hydroxylamine/hydrazone
Chemical Communications, 2023
7102459 CIFC14 H12 Co3 N2 O12P -16.5875; 6.786; 9.975
76.123; 71.782; 77.067
405.8Tong, Ming-Liang; Kitagawa, Susumu; Chang, Ho-Chol; Ohba, Masaaki
Temperature-controlled hydrothermal synthesis of a 2D ferromagnetic coordination bilayered polymer and a novel 3D network with inorganic Co3(OH)2 ferrimagnetic chains.
Chemical communications (Cambridge, England), 2004, 418-419
7130349 CIFC8 I3 N6 RbP m -3 m7.4069; 7.4069; 7.4069
90; 90; 90
406.36Han, Keke; Zhang, Mengxia; Wei, Zhenhong; Ye, Xing; Rao, Wenjun; Zhang, Haina; Cai, Hu
Precise design and preparation of two 3D organic−inorganic perovskite ferroelectrics (1,5-diazabicyclo[3.2.2]nonane)RbX3 (X = Br, I)
Chemical Communications, 2022
7118599 CIFC21 H19 PP 15.6674; 8.267; 9.097
101.836; 101.813; 92.712
406.5Itazaki, Masumi; Katsube, Shinya; Kamitani, Masahiro; Nakazawa, Hiroshi
Synthesis of vinylphosphines and unsymmetric diphosphines: iron-catalyzed selective hydrophosphination reaction of alkynes and vinylphosphines with secondary phosphines.
Chemical communications (Cambridge, England), 2016, 52, 3163-3166
7115792 CIFC18 H22 O2 S2P -17.5624; 8.0233; 8.1209
84.776; 69.822; 61.946
406.65Jose A. Souto; Willian Lewis; Robert A. Stockman
Isolation of stable non cyclic 1,2-disulfoxides. Revisiting the thermolysis of S-aryl sulfinimines
Chem.Commun., 2014, 50, 12630
7117432 CIFCu O4 P RbP c 21 n8.5261; 5.3562; 8.9064
90; 90; 90
406.733Henry, P.F.; Hughes, R.W.; Weller, M.T.; Ward, S.C.
Rb Cu P O4 - a maximum copper tetrahedral framework adopting the zeotype ABW structure
Chemical Communications, 2000, 2000, 1959-1960
1571154 CIFC8 H4 N2 Se2P 1 21/n 14.1984; 8.1335; 12.0157
90; 96.9877; 90
407.26Hüßler, Christopher; Dietl, Martin C.; Kahle, Justin; Lopes, Eric F.; Kawamura, Miku; Krämer, Petra; Rominger, Frank; Rudolph, Matthias; Hachiya, Iwao; Hashmi, A Stephen K
Synthesis and structural properties of <i>para</i>-diselenopyrazines.
Chemical communications (Cambridge, England), 2024, 60, 3786-3789
7130258 CIFB Ce S3P n a 217.6059; 6.0181; 8.9311
90; 90; 90
408.804Breton, Logan S.; Morrison, Gregory; Lacroix, Matthew; Halasyamani, P. Shiv; Zur Loye, Hans-Conrad
Lanthanide Thioborates, an Emerging Class of Nonlinear Optical Materials, Efficiently Synthesized Using the Boron-Chalcogen Mixture Method
Chemical Communications, 2022
7131971 CIFLi0.39 O0.42 S10 V4.92P -15.6557; 8.6279; 9.0552
78.327; 84.1363; 71.0231
408.892Sun, Ruijin; Deng, Jun; Ma, Yuxin; Hao, Munan; Chen, Xu; Meng, Dezhong; Zhao, Changchun; Du, Shixuan; Jin, Shifeng; Chen, Xiaolong
Ferromagnetism induced by in-plane strain in a bulk VS2 based superlattice: (LiOH)0.1VS2
Chemical Communications, 2023
7126482 CIFC4 H1.5 D0.5 N2 O4P 41 21 25.5604; 5.5604; 13.245
90; 90; 90
409.51Funnell, Nicholas P.; Bull, Craig L.; Ridley, Christopher J.; Parsons, Simon; Tellam, James P.
Alloxan under pressure-squeezing an extremely dense molecular crystal structure.
Chemical communications (Cambridge, England), 2020, 56, 6428-6431
7125535 CIFC10 H7 N O2P -15.539; 7.2645; 10.4291
83.673; 83.789; 80.624
409.77Ramtohul, Yeeman K.; Martin, Nathaniel I.; Silkin, Lara; James, Michael N. G.; Vederas, John C.
Pseudoxazolones, a new class of inhibitors for cysteine proteinases: inhibition of hepatitis A virus and human rhinovirus 3C proteinases
Chemical Communications, 2001, 2740
7117532 CIFC7 H5 Cl N2 O2P -16.037; 8.101; 9.222
70.622; 74.48; 85.612
409.9Anup Rana; Pradeepta K. Panda
Beta-Tetrachlorotetramethoxyporphycenes: positional effect of substituents on structure and photophysical properties
Chem.Commun., 2015, 51, 12239
7127413 CIFC10 H6 N SP -13.938; 5.87; 18.06
80.84; 87.25; 86.08
410.9Deng, Jian; Wan, Yuejuan; Cai, Chang; Gu, Cheng; Ma, Yuguang
Organic single crystals of cyano-substituted <i>p</i>-phenylene vinylene derivatives as transistors with low surface trap density.
Chemical communications (Cambridge, England), 2020, 56, 13776-13779
7111220 CIFC8 H8 O S2P 1 21 17.7121; 4.7053; 11.6358
90; 102.587; 90
412.09Boyd, Derek R.; Sharma, Narain D.; Kennedy, Martina A.; Shepherd, Steven D.; Malone, John F.; Alves-Areias, André; Holt, Robert; Allenmark, Stig G.; Lemurell (née Andersson), Malin A.; Dalton, Howard; Luckarift, Heather
Enzyme-catalysed oxygenation and deoxygenation routes to chiral thiosulfinates
Chemical Communications, 2002, 1452
7119629 CIFAl H2 N11 O P6P 1 21/m 14.7566; 8.3266; 10.6298
90; 101.601; 90
412.41Neudert, Lukas; Heinke, Frank; Bräuniger, Thomas; Pucher, Florian J.; Vaughan, Gavin B.; Oeckler, Oliver; Schnick, Wolfgang
An unusual nitride network of aluminum-centered octahedra and phosphorus-centered tetrahedra and structure determination from microcrystalline samples.
Chemical communications (Cambridge, England), 2017, 53, 2709-2712
7105780 CIFC8 H10 O4P 1 21/c 13.89836; 7.87939; 13.51483
90; 95.9652; 90
412.883Manza Atkinson; Ivan Halasz; Dejan-Kresimir Bucar; Robert Dinnebier; Santhana Mariappan; Anatoliy Sokolov; Leonard MacGillivray
A solid-state trimerisation of a diene diacid affords a bicyclobutyl: reactant structure from X-ray powder data and product separation and structure determination via co-crystallisation
Chem.Commun., 2011, 47, 236
7124311 CIFBe H12 N10I -4 2 m8.014; 8.014; 6.4519
90; 90; 90
414.37Müller, Matthias; Buchner, Magnus Richard
Preparation and Crystal Structures of the Beryllium Ammines [Be(NH3)4]X2 (X = Br, I, CN, SCN, N3) and Be(NH3)2X’2 (X’ = Cl, Br, I).
Chemical Communications, 2019
7123818 CIFC7 H14 N O2P -15.5246; 7.433; 10.865
98.88; 100.86; 104.38
414.85Matsumoto, Akikazu; Miyata, Mikiji; Odani, Toru; Sada, Kazuki
One-way EZ-Isomerization of Di(n-butylammonium) (Z,Z)-Muconate under Photoirradiation in the Crystalline State
Chemical Communications, 2001, 19, 2004-2005
7111097 CIFC18 H14 N8P -16.384; 7.007; 9.941
76; 76; 80
415.52Jouaiti, Abdelaziz; Loï, Marielle; Hosseini, Mir Wais; De Cian, André
Metallacyclophanes formed by a tetrapyrazolyl ligand and copper(ii) cation
Chemical Communications, 2000, 2085
7114749 CIFC12 H14 Cl4 N4 O2 PtP -16.8888; 7.7068; 8.2032
88.779; 72.911; 89.466
416.19Angeloni, Alessandro; Orpen, A. Guy
Control of hydrogen bond network dimensionality in tetrachloroplatinate salts
Chemical Communications, 2001, 343
7105587 CIFC16 H12 Cl2 Hg N4 O2P -13.7754; 8.65; 12.9601
94.21; 92.222; 98.569
416.86King, Kelsey N.; McNeil, Anne J.
Streamlined approach to a new gelator: inspiration from solid-state interactions for a mercury-induced gelation
Chemical Communications, 2010, 46, 3511
7130256 CIFB La S3P n a 217.6766; 6.0445; 8.994
90; 90; 90
417.332Breton, Logan S.; Morrison, Gregory; Lacroix, Matthew; Halasyamani, P. Shiv; Zur Loye, Hans-Conrad
Lanthanide Thioborates, an Emerging Class of Nonlinear Optical Materials, Efficiently Synthesized Using the Boron-Chalcogen Mixture Method
Chemical Communications, 2022
7129529 CIFC9 H9 N O3P 1 21 15.61652; 8.245; 9.0227
90; 92.654; 90
417.38Cao, Haoying; Ma, Shanshan; Feng, Yanhong; Guo, Yawen; Jiao, Peng
Synthesis of β-Nitro Ketone from Geminal Bromonitroalkane and Silyl Enol Ether by Visible Light Photoredox Catalysis
Chemical Communications, 2022
7107111 CIFBa2 H4 Ni6 O20 V4C 1 2/m 110.213; 5.816; 7.888
90; 117.01; 90
417.4Danna E. Freedman; Robin Chisnell; Tyrel M. McQueen; Young S. Lee; Christophe Payen; Daniel G. Nocera
Frustrated magnetism in the S=1 kagome lattice BaNi3(OH)2(VO4)2
Chem.Commun., 2012, 48, 64
7103920 CIFC6 H8 N2 O4P 1 21/c 13.6994; 7.034; 16.1607
90; 96.068; 90
418.17Andrew Bond
In situ co-crystallisation as a tool for low-temperature crystal engineering
Chemical communications (Cambridge, England), 2003
7126478 CIFC4 H1.5 D0.5 N2 O4P 41 21 25.5997; 5.5997; 13.351
90; 90; 90
418.64Funnell, Nicholas P.; Bull, Craig L.; Ridley, Christopher J.; Parsons, Simon; Tellam, James P.
Alloxan under pressure-squeezing an extremely dense molecular crystal structure.
Chemical communications (Cambridge, England), 2020, 56, 6428-6431
7127292 CIFC20 H21 N O2 SP 16.0451; 8.3029; 9.2867
107.436; 107.421; 90.517
421.8Tao, Mengna; Li, Wenbo; Zhang, Junliang
Pd/Xiang-Phos-catalyzed enantioselective intermolecular carboheterofunctionalization of norbornene and norbornadiene.
Chemical communications (Cambridge, England), 2020, 56, 13125-13128
7121837 CIFC H4 Cl3 K N2 O ZnP 1 21/m 16.8599; 7.353; 8.4999
90; 99.069; 90
423.38Casali, Lucia; Mazzei, Luca; Shemchuk, Oleksii; Honer, Kenneth; Grepioni, Fabrizia; Ciurli, Stefano; Braga, Dario; Baltrusaitis, Jonas
Smart urea ionic co-crystals with enhanced urease inhibition activity for improved nitrogen cycle management.
Chemical communications (Cambridge, England), 2018, 54, 7637-7640
7128019 CIFAg2 Bi2 I4 O20 S2P 15.5189; 6.9129; 11.8527
90.598; 92.151; 109.895
424.78Liu, Hongming; Wu, Qingchen; Liu, Lili; Lin, Zheshuai; Halasyamani, P. Shiv; Chen, Xingguo; Qin, Jingui
AgBi(SO<sub>4</sub>)(IO<sub>3</sub>)<sub>2</sub>: aliovalent substitution induces structure dimensional upgrade and second harmonic generation enhancement.
Chemical communications (Cambridge, England), 2021, 57, 3712-3715
7128877 CIFC19 H21 N O2 SP 15.1578; 8.9611; 9.5418
92.623; 103.752; 95.143
425.62Wu, Xiang; Ding, Du; Zhang, Ying; Jiang, Hua-Jie; Wang, Tao; Zhao, Li-Ping
Enantioselective synthesis of 1-aminoindene derivatives <i>via</i> asymmetric Brønsted acid catalysis.
Chemical communications (Cambridge, England), 2021, 57, 9680-9683
7130898 CIFC8 H12 F3 N OP 1 21 19.161; 4.8349; 9.983
90; 105.3; 90
426.5O'Hagan, David; Yu, Cihang; Cormanich, Rodrigo A.; Slawin, Alexandra; Cordes, David Bradford; Piscelli, Bruno A.; Al-Maharik, Nawaf
Unexpected triaxial preferences in some all-syn 1,3,5-trifluorocyclohexanes
Chemical Communications, 2022
7126475 CIFC4 H1.5 D0.5 N2 O4P 41 21 25.6443; 5.6443; 13.507
90; 90; 90
430.31Funnell, Nicholas P.; Bull, Craig L.; Ridley, Christopher J.; Parsons, Simon; Tellam, James P.
Alloxan under pressure-squeezing an extremely dense molecular crystal structure.
Chemical communications (Cambridge, England), 2020, 56, 6428-6431
7129416 CIFC11 H9 N OP -13.9549; 10.6225; 10.6802
98.127; 98.311; 98.368
433.16Zhang, Xinyu; Wang, Dan; Lei, yunxiang; Liu, Miaochang; Cai, Zhengxu; Wu, Huayue; Shen, Guomin; Huang, Xiaobo; Dong, Yuping
Selenium atoms induce organic doped system to produce pure phosphorescence emission
Chemical Communications, 2022
7114471 CIFC10 H14 O2P 1 21 15.8208; 5.2546; 14.1791
90; 91.791; 90
433.47Clive, Derrick L. J.; Fletcher, Stephen P.
Synthesis of the bicyclic dienone core of the antitumor agent ottelione B
Chemical Communications, 2002, 1940
7111359 CIFC12 H32 Cu F2 N4 O4P -17.0993; 7.1315; 10.0059
108.567; 92.233; 112.912
434.56Fielden, John; Long, De-Liang; Cronin, Leroy
Secondary coordination sphere controlled reversible geometry reorganisations in copper(ii) complexes
Chemical Communications, 2004, 2156-2157
7115719 CIFC H7 B Cl NP n m a12.7715; 6.5471; 5.2055
90; 90; 90
435.26Owen J. Metters; Andy M. Chapman; Alasdair P. M. Robertson; Christopher H. Woodall; Paul J. Gates; Duncan F. Wass; Ian Manners
Generation of aminoborane monomers RR'N[double bond, length as m-dash]BH2 from amine-boronium cations [RR'NH-BH2L]^+^: metal catalyst-free formation of polyaminoboranes at ambient temperature
Chem.Commun., 2014, 50, 12146
7106863 CIFC6 H11 N3 O3P 1 21 14.7784; 10.846; 8.48
90; 97.832; 90
435.4Bani Kanta Sarma; Muhammed Yousufuddin; Thomas Kodadek
Acyl hydrazides as peptoid sub-monomers
Chem.Commun., 2011, 47, 10590
7102657 CIFB2 F2 H8 N2 O8 P2P 21 37.5913; 7.5913; 7.5913
90; 90; 90
437.47Li, Man-Rong; Liu, Wei; Ge, Ming-Hui; Chen, Hao-Hong; Yang, Xin-Xin; Zhao, Jing-Tai
NH4[BPO4F]: a novel open-framework ammonium fluorinated borophosphate with a zeolite-like structure related to gismondine topology.
Chemical communications (Cambridge, England), 2004, 1272-1273
7126477 CIFC4 H1.5 D0.5 N2 O4P 41 21 25.6753; 5.6753; 13.593
90; 90; 90
437.82Funnell, Nicholas P.; Bull, Craig L.; Ridley, Christopher J.; Parsons, Simon; Tellam, James P.
Alloxan under pressure-squeezing an extremely dense molecular crystal structure.
Chemical communications (Cambridge, England), 2020, 56, 6428-6431
7110944 CIFC6 H13 N O4P 1 2/n 18.386; 5.7; 9.456
90; 103.81; 90
438.9Mascal, Mark; Marjo, Christopher E.; Blake, Alexander J.
Breakdown of the hydrogen bond strength‒length analogy: a revision
Chemical Communications, 2000, 1591
7100912 CIFC20 H18 O8P -16.6793; 8.117; 9.238
69.157; 69.931; 81.34
439.42M. Bouvet; B. Malezieux; P. Herson
A Quinhydrone-Type 2:1 Acceptor-Donor Charge Transfer Complex Obtained Via a Solvent-free Reaction
Chemical Communications, 2006
7125566 CIFC7 H7 N O3 S ZnP 1 21 19.099; 5.098; 10.075
90; 108.445; 90
443.3Kondo, Mitsuru; Miyazawa, Makoto; Irie, Yasuhiko; Shinagawa, Reiko; Horiba, Tomonori; Nakamura, Akira; Naito, Tetsuyoshi; Maeda, Kenji; Utsuno, Shunji; Uchida, Fumio
A new Zn(II) coordination polymer with 4-pyridylthioacetate: assemblies of homo-chiral helices with sulfide sites.
Chemical communications (Cambridge, England), 2002, 2156-2157
7102182 CIFC8 H16 Na3 Np O16P -17.256; 7.399; 9.699
67.888; 87.284; 67.771
443.8Tian, Guoxin; Rao, Linfeng; Oliver, Allen
Symmetry and optical spectra: a "silent" 1 : 2 Np(V)-oxydiacetate complex.
Chemical communications (Cambridge, England), 2007, 4119-4121
7126560 CIFC6 H13 F I NP 1 21 15.9585; 7.6205; 10.1558
90; 105.571; 90
444.22Ai, Yong; Wu, Dong-Ji; Yang, Meng-Juan; Wang, Pan; He, Wen-Hui; Liao, Wei-Qiang
Highest-T<sub>c</sub> organic enantiomeric ferroelectrics obtained by F/H substitution.
Chemical communications (Cambridge, England), 2020, 56, 7033-7036
7126476 CIFC4 H1.5 D0.5 N2 O4P 41 21 25.7051; 5.7051; 13.6603
90; 90; 90
444.62Funnell, Nicholas P.; Bull, Craig L.; Ridley, Christopher J.; Parsons, Simon; Tellam, James P.
Alloxan under pressure-squeezing an extremely dense molecular crystal structure.
Chemical communications (Cambridge, England), 2020, 56, 6428-6431
7126557 CIFC6 H13 F I NP 1 21 15.9613; 7.6228; 10.163
90; 105.627; 90
444.75Ai, Yong; Wu, Dong-Ji; Yang, Meng-Juan; Wang, Pan; He, Wen-Hui; Liao, Wei-Qiang
Highest-T<sub>c</sub> organic enantiomeric ferroelectrics obtained by F/H substitution.
Chemical communications (Cambridge, England), 2020, 56, 7033-7036
7109945 CIFCl F O7 Pb2 Se2 TiP 1 21 18.2863; 5.3781; 10.7167
90; 111.191; 90
445.29Xue-Li Cao; Chun-Li Hu; Xiang Xu; Fang Kong; Jiang-Gao Mao
Pb2TiOF(SeO3)2Cl and Pb2NbO2(SeO3)2Cl: small changes in structure induced a very large SHG enhancement
Chem.Commun., 2013, 49, 9965
7123025 CIFC18 H12 Br4 N2P -13.924; 9.667; 12.375
75.801; 84.98; 78.541
445.64Crawford, Adam W.; Groeneman , Ryan; Unruh, Daniel K.; Hutchins, Kristin M.
Cooling-rate dependent single-crystal-to-single-crystal phase transition in an organic co-crystal
Chemical Communications, 2019
7128967 CIFC4 H9 Cl F3 N3 OP 1 21 14.977; 7.7308; 11.6315
90; 90.771; 90
447.5Cao, Tingting; Retailleau, Pascal; Milcent, Thierry; Crousse, Benoît
Synthesis of <i>N</i>-CF<sub>3</sub> hydrazines through radical trifluoromethylation of azodicarboxylates.
Chemical communications (Cambridge, England), 2021, 57, 10351-10354
7103365 CIFC2 H3 Cl3P 1 1 21/n4.9978; 8.208; 10.982
90; 90; 94.77
448.9Bujak, Maciej; Podsiadło, Marcin; Katrusiak, Andrzej
Energetics of conformational conversion between 1,1,2-trichloroethane polymorphs.
Chemical communications (Cambridge, England), 2008, 4439-4441
7125689 CIFC12 H16 N2 Ni O12 Se2P -16.7387; 7.6141; 9.7024
104.872; 91.645; 109.701
449.33He, Shichao; Allemond, Laynee L.; Dunning, Samuel G.; Reynolds, Joseph E.; Lynch, Vincent M.; Humphrey, Simon M.
In situ formation and solid-state oxidation of a triselenane NSeN-pincer MOF.
Chemical communications (Cambridge, England), 2020, 56, 1286-1289
7102458 CIFC7 H9 Co N O7P -17.1114; 7.873; 9.0284
76.627; 68.437; 76.232
450.77Tong, Ming-Liang; Kitagawa, Susumu; Chang, Ho-Chol; Ohba, Masaaki
Temperature-controlled hydrothermal synthesis of a 2D ferromagnetic coordination bilayered polymer and a novel 3D network with inorganic Co3(OH)2 ferrimagnetic chains.
Chemical communications (Cambridge, England), 2004, 418-419
7125536 CIFC11 H9 N O2P -16.0008; 7.237; 10.9282
95.403; 101.029; 102.046
451.1Ramtohul, Yeeman K.; Martin, Nathaniel I.; Silkin, Lara; James, Michael N. G.; Vederas, John C.
Pseudoxazolones, a new class of inhibitors for cysteine proteinases: inhibition of hepatitis A virus and human rhinovirus 3C proteinases
Chemical Communications, 2001, 2740
7105920 CIFH4 Mn7 O24 P6P -16.6101; 8.0655; 9.7339
104.044; 109.627; 101.306
451.78Bo Li; Xiaoying Zhang; Jumei Tian; Jingping Zhang
Two-Step Relaxation in the 3D Spin-Canted Manganese Phosphate with High P-O-Mn Connectivity
Chem.Commun., 2011, 47, 1737
7104068 CIFBr Cu H6 N2C 1 2/c 16.602; 12.879; 5.861
90; 114.91; 90
451.98Wagner Matthias; Jan W. Bats; Michael Bolte; Hans-Wolfram Lerner; Gunter Margraf
One- and three-dimensional infinite arrays of Cu(I) centres exhibited by [Cu(NH3)2]Br and [Cu(NH3)Cl] in the solid state.
Chemical communications (Cambridge, England), 2003
7126480 CIFC4 H1.5 D0.5 N2 O4P 41 21 25.7382; 5.7382; 13.747
90; 90; 90
452.65Funnell, Nicholas P.; Bull, Craig L.; Ridley, Christopher J.; Parsons, Simon; Tellam, James P.
Alloxan under pressure-squeezing an extremely dense molecular crystal structure.
Chemical communications (Cambridge, England), 2020, 56, 6428-6431
7108012 CIFC5 H15 Cl P2P m n 219.4581; 6.5601; 7.306
90; 90; 90
453.31Saurabh S. Chitnis; Elizabeth MacDonald; Neil Burford; Ulrike Werner-Zwanziger; Robert McDonald
P-P Menschutkin preparation of prototypical phosphinophosphonium salts
Chem.Commun., 2012, 48, 7359
7100707 CIFAl H6 O12 P3P 1 2/c 17.9659; 4.918; 11.6355
90; 95.851; 90
453.46Adrian Wright; Neal J. Checker; John Godber; Benson M. Kariuki; Steven Rishi
Synthesis and crystal structure of AlH2P3O10 2H2O; a new structure-type for layered acid phosphates.
Chemical Communications, 2006
7123020 CIFC18 H12 Br4 N2P -13.9561; 9.702; 12.444
75.878; 84.947; 78.556
453.6Crawford, Adam W.; Groeneman , Ryan; Unruh, Daniel K.; Hutchins, Kristin M.
Cooling-rate dependent single-crystal-to-single-crystal phase transition in an organic co-crystal
Chemical Communications, 2019
7125569 CIFC2.5 H0.5 Fe0.5 O2C 1 2/m 16.2378; 17.589; 4.6039
90; 115.863; 90
454.53Sanselme, M.; Grenèche, J M; Riou-Cavellec, M; Férey, G
[Fe2(C10O8H2)]: an antiferromagnetic 3D iron(II) carboxylate built from ferromagnetic edge-sharing octahedral chains (MIL-62).
Chemical communications (Cambridge, England), 2002, 2172-2173
7110822 CIFC9 H7 Cr N O3P -17.0198; 7.394; 9.4002
86.089; 86.591; 69.457
455.49Camiolo, Salvatore; Coles, Simon J.; Gale, Philip A.; Hursthouse, Michael B.; Mayer, Thomas A.; Paver, Michael A.
Hydrogen bonding networks and anion coordination in (η6-arene)Cr(CO)3 complexes: metal carbonyls as hydrogen bond acceptors
Chemical Communications, 2000, 275
7125980 CIFB4 Ba F6 H4 O6C 1 2/m 16.803; 7.008; 9.588
90; 92.96; 90
456.5Gai, Minqiang; Wang, Ying; Tong, Tinghao; Wang, Liying; Yang, Zhihua; Zhou, Xin; Pan, Shilie
Ba(B<sub>2</sub>OF<sub>3</sub>(OH)<sub>2</sub>)<sub>2</sub> with well-ordered OH/F anions and a unique B<sub>2</sub>OF<sub>3</sub>(OH)<sub>2</sub> dimer.
Chemical communications (Cambridge, England), 2020, 56, 3301-3304
7118284 CIFC2 H2 N4 O12P 1 21/c 17.5489; 7.2995; 8.3759
90; 97.935; 90
457.12Fischer, Dennis; Klapötke, Thomas M; Stierstorfer, Jörg
Tetranitratoethane.
Chemical communications (Cambridge, England), 2016, 52, 916-918
7126479 CIFC4 H1.5 D0.5 N2 O4P 41 21 25.758; 5.758; 13.794
90; 90; 90
457.33Funnell, Nicholas P.; Bull, Craig L.; Ridley, Christopher J.; Parsons, Simon; Tellam, James P.
Alloxan under pressure-squeezing an extremely dense molecular crystal structure.
Chemical communications (Cambridge, England), 2020, 56, 6428-6431
7109946 CIFCl Nb O8 Pb2 Se2P 1 21 18.511; 5.4148; 10.73
90; 111.753; 90
459.28Xue-Li Cao; Chun-Li Hu; Xiang Xu; Fang Kong; Jiang-Gao Mao
Pb2TiOF(SeO3)2Cl and Pb2NbO2(SeO3)2Cl: small changes in structure induced a very large SHG enhancement
Chem.Commun., 2013, 49, 9965
7103364 CIFC2 H3 Cl3P 1 1 21/n5.0448; 8.3551; 11.006
90; 90; 94.643
462.4Bujak, Maciej; Podsiadło, Marcin; Katrusiak, Andrzej
Energetics of conformational conversion between 1,1,2-trichloroethane polymorphs.
Chemical communications (Cambridge, England), 2008, 4439-4441
7117264 CIFC9 H9 Cl3P -17.5031; 8.7681; 8.7862
119.731; 106.219; 95.51
462.5Viswanadha G. Saraswatula; Binoy K. Saha
A thermal expansion investigation of the melting point anomaly in trihalomesitylenes
Chem.Commun., 2015, 51, 9829
7101127 CIFC15 H19 I N2 O4 S2P 17.2693; 7.7618; 8.7263
80.624; 72.296; 85.313
462.51Scott Miller; Jarred T. Blank; Jason E. Imbriglio; Steven M. Mennen; Michelle B. Tran
A Peptide-Catalyzed Asymmetric Stetter Reaction
Chemical Communications, 2005
7104548 CIFC18 H24 O6P 16.581; 7.123; 11.041
102.325; 96.496; 110.764
462.6Boyd, Derek R; Sharma, Narain D; Malone, John F; Allen, Christopher C R
New families of enantiopure cyclohexenone cis-diol, o-quinol dimer and hydrate metabolites from dioxygenase-catalysed dihydroxylation of phenols.
Chemical communications (Cambridge, England), 2009, 34, 3633-3635
7102705 CIFC12 H8 F12 I2 N2P -15.3183; 7.0369; 13.415
75.865; 86.012; 71.855
462.63Metrangolo, Pierangelo; Pilati, Tullio; Resnati, Giuseppe; Stevenazzi, Andrea
Metric engineering of perfluorocarbon-hydrocarbon layered solids driven by the halogen bonding.
Chemical communications (Cambridge, England), 2004, 1492-1493
7122595 CIFC12 H14 Cl2 N2 P2 S4P -16.5353; 6.6119; 10.7915
84.231; 88.651; 88.674
463.72Begum, Imtiaz; Schnakenburg, Gregor; Kelemen, Zsolt; Nyulászi, László; Boeré, René T; Streubel, Rainer
Expanding the chemistry of ring-fused 1,4-diphosphinines by stable mono anion formation.
Chemical communications (Cambridge, England), 2018, 54, 13555-13558
7120440 CIFC20 H16 N4 Se2P -15.3962; 7.7356; 11.7477
99.421; 94.558; 104.661
464.25Huynh, Huu-Tri; Jeannin, Olivier; Fourmigué, Marc
Organic selenocyanates as strong and directional chalcogen bond donors for crystal engineering
Chem. Commun., 2017
7126861 CIFC5 H2 Cu N3 OP b c m7.9478; 10.61; 5.5058
90; 90; 90
464.3García-Valdivia, Antonio A; Romero, Francisco J.; Cepeda, Javier; Morales, Diego P.; Casati, Nicola; Mota, Antonio J.; Zotti, Linda A.; Palacios, Juan J.; Choquesillo-Lazarte, Duane; F Salmerón, José; Rivadeneyra, Almudena; Rodríguez-Diéguez, Antonio
Rational design of an unusual 2D-MOF based on Cu(i) and 4-hydroxypyrimidine-5-carbonitrile as linker with conductive capabilities: a theoretical approach based on high-pressure XRD.
Chemical communications (Cambridge, England), 2020, 56, 9473-9476
7114748 CIFC12 H16 Cl4 N2 O6 PtP -16.9551; 8.5188; 8.9795
86.462; 73.017; 66.472
465.61Angeloni, Alessandro; Orpen, A. Guy
Control of hydrogen bond network dimensionality in tetrachloroplatinate salts
Chemical Communications, 2001, 343
7100683 CIFC H3 K O4 SP 1 21/c 19.1599; 6.9471; 7.3311
90; 93.147; 90
465.81Spencer Williams; Emma Denehy; Jonathan M. White
Ground state structures of sulfate monoesters and sulfamates reveal similar reaction coordinates for sulfuryl and sulfamyl transfer
Chemical Communications, 2006
7110921 CIFC20 H26 F N O2P 18.739; 9.404; 6.411
103.23; 97.33; 111
465.9Takahashi, Tamiko; Fukuishima, Aki; Tanaka, Yuki; Takeuchi, Yoshio; Kabuto, Kuninobu; Kabuto, Chizuko
CFTA, a new efficient agent for determination of absolute configurations of chiral secondary alcohols
Chemical Communications, 2000, 787
7111205 CIFC5 H8 Cl N5 O6P -14.825; 9.812; 10.052
100.444; 94.615; 91.416
466.1Davies, R. Jeremy H.; Stevenson, Clarke; Kumar, Shiv; Lyle, Jason; Cosby, Lisa; Malone, John F.; Boyd, Derek R.; Sharma, Narain D.; Hunter, Ann P.; Stein, Bridget K.
Novel oxidation products from guanine nucleosides reacted with dimethyldioxirane
Chemical Communications, 2002, 1378
7112882 CIFC4 H4 Cs I N2 O3P -17.302; 7.51; 9.4
110.8; 101.329; 94.472
466.3Braga, Dario; Grepioni, Fabrizia; Maini, Lucia; Prosperi, Susanna; Gobetto, Roberto; Chierotti, Michele R.
From unexpected reactions to a new family of ionic co-crystals: the case of barbituric acid with alkali bromides and caesium iodide.
Chemical communications (Cambridge, England), 2010, 46, 7715-7717
7118026 CIFC21 H14 Cl2 O S2P 16.8482; 7.9264; 8.7986
92.069; 99.774; 96.704
466.69Kui Liao; Feng Zhou; Jin-Sheng Yu; Wei-Ming Gao; Jian Zhou
Catalytic asymmetric sulfenylation to structurally diverse dithioketals
Chem.Commun., 2015, 51, 16255
7117265 CIFC9 H9 Cl3P -17.6629; 8.7822; 8.7994
119.644; 107.474; 96.23
466.72Viswanadha G. Saraswatula; Binoy K. Saha
A thermal expansion investigation of the melting point anomaly in trihalomesitylenes
Chem.Commun., 2015, 51, 9829
7111638 CIFC9 H10 N2 O SP 1 21 16.9633; 5.1097; 13.5723
90; 104.691; 90
467.12Banert, Klaus; Hagedorn, Manfred; Wutke, Jens; Ecorchard, Petra; Schaarschmidt, Dieter; Lang, Heinrich
Elusive ethynyl azides: trapping by 1,3-dipolar cycloaddition and decomposition to cyanocarbenes
Chemical Communications, 2010, 46, 4058
7114186 CIFC16 H12 Co N14P -17.1616; 7.6838; 9.1417
97.338; 108.909; 94.916
467.66Marshall, Shireen R.; Incarvito, Christopher D.; Shum, William W.; Rheingold, Arnold L.; Miller, Joel S.
Novel coordination of dicyanamide, [N(CN)2]???: preferential binding of the amide nitrogen
Chemical Communications, 2002, 3006
7127006 CIFC9 H8 N4P 42/n :28.3584; 8.3584; 6.7005
90; 90; 90
468.12Butera, Roberto; Shrinidhi, Annadka; Kurpiewska, Katarzyna; Kalinowska-Tłuścik, Justyna; Dömling, Alexander
Fourfold symmetric MCR's <i>via</i> the tetraisocyanide 1,3-diisocyano-2,2-bis(isocyanomethyl)propane.
Chemical communications (Cambridge, England), 2020, 56, 10662-10665

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