Crystallography Open Database

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Searching year of publication is 2018

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1548808 CIFC34 H56 N2 O2 SP 1 21/c 115.9714; 18.4729; 11.1685
90; 92.514; 90
3291.96Yamada, Manabu; Rajiv Gandhi, Muniyappan; Kaneta, Yu; Kimura, Nozomi; Katagiri, Hiroshi
Thiodiphenol-Based n-Dialkylamino Extractants for Selective Platinum Group Metal Separation from Automotive Catalysts
Industrial & Engineering Chemistry Research, 2018
1548809 CIFH2 Mn O2P -3 m 13.25; 3.25; 4.48
90; 90; 120
40.98Zhao, Qing; Kulik, Heather J.
Where Does the Density Localize in the Solid State? Divergent Behavior for Hybrids and DFT+U.
Journal of chemical theory and computation, 2018
1548810 CIFCo H2 O2P -3 m 13.186; 3.186; 4.653
90; 90; 120
40.9Zhao, Qing; Kulik, Heather J.
Where Does the Density Localize in the Solid State? Divergent Behavior for Hybrids and DFT+U.
Journal of chemical theory and computation, 2018
1548811 CIFH2 Ni O2P -3 m 13.1268; 3.1268; 4.606
90; 90; 120
38.999Zhao, Qing; Kulik, Heather J.
Where Does the Density Localize in the Solid State? Divergent Behavior for Hybrids and DFT+U.
Journal of chemical theory and computation, 2018
1548812 CIFC6 K3 Mn N6P 1 21/c 17.09; 10.49; 8.46
90; 107.6; 90
600Zhao, Qing; Kulik, Heather J.
Where Does the Density Localize in the Solid State? Divergent Behavior for Hybrids and DFT+U.
Journal of chemical theory and computation, 2018
1548813 CIFC2 H2 Co N4P n n m6.5694; 8.8057; 3.2621
90; 90; 90
188.707Zhao, Qing; Kulik, Heather J.
Where Does the Density Localize in the Solid State? Divergent Behavior for Hybrids and DFT+U.
Journal of chemical theory and computation, 2018
1548814 CIFC2 H2 N4 NiP n n m6.457; 8.768; 3.23
90; 90; 90
182.87Zhao, Qing; Kulik, Heather J.
Where Does the Density Localize in the Solid State? Divergent Behavior for Hybrids and DFT+U.
Journal of chemical theory and computation, 2018
1548815 CIFC2 H2 Fe N4P n n m6.6655; 8.7923; 3.3304
90; 90; 90
195.18Zhao, Qing; Kulik, Heather J.
Where Does the Density Localize in the Solid State? Divergent Behavior for Hybrids and DFT+U.
Journal of chemical theory and computation, 2018
1548816 CIFSe2 TiP -3 m 13.536; 3.536; 6.004
90; 90; 120
65.01Zhao, Qing; Kulik, Heather J.
Where Does the Density Localize in the Solid State? Divergent Behavior for Hybrids and DFT+U.
Journal of chemical theory and computation, 2018
1548817 CIFIr O2P 42/m n m4.5051; 4.5051; 3.1586
90; 90; 90
64.107Zhao, Qing; Kulik, Heather J.
Where Does the Density Localize in the Solid State? Divergent Behavior for Hybrids and DFT+U.
Journal of chemical theory and computation, 2018
1548818 CIFO2 RuP 42/m n m4.4919; 4.4919; 3.1066
90; 90; 90
62.68Zhao, Qing; Kulik, Heather J.
Where Does the Density Localize in the Solid State? Divergent Behavior for Hybrids and DFT+U.
Journal of chemical theory and computation, 2018, 14, 670-683
1548819 CIFO2 VP 42/m n m4.5546; 4.5546; 2.8528
90; 90; 90
59.18Zhao, Qing; Kulik, Heather J.
Where Does the Density Localize in the Solid State? Divergent Behavior for Hybrids and DFT+U.
Journal of chemical theory and computation, 2018
1548820 CIFMo O2P 42/m n m4.8473; 4.8473; 2.8136
90; 90; 90
66.109Zhao, Qing; Kulik, Heather J.
Where Does the Density Localize in the Solid State? Divergent Behavior for Hybrids and DFT+U.
Journal of chemical theory and computation, 2018
1548821 CIFNb O2P 42/m n m4.8463; 4.8463; 3.0315
90; 90; 90
71.2Zhao, Qing; Kulik, Heather J.
Where Does the Density Localize in the Solid State? Divergent Behavior for Hybrids and DFT+U.
Journal of chemical theory and computation, 2018
1548822 CIFC Mn O3R -3 c :H4.773; 4.773; 15.642
90; 90; 120
308.61Zhao, Qing; Kulik, Heather J.
Where Does the Density Localize in the Solid State? Divergent Behavior for Hybrids and DFT+U.
Journal of chemical theory and computation, 2018, 51, 929-939
1548823 CIFC Ni O3R -3 c :H4.6117; 4.6117; 14.735
90; 90; 120
271.4Zhao, Qing; Kulik, Heather J.
Where Does the Density Localize in the Solid State? Divergent Behavior for Hybrids and DFT+U.
Journal of chemical theory and computation, 2018, 42, 4-5
1548824 CIFC Fe O3R -3 c :H4.694; 4.694; 15.43
90; 90; 120
294.4Zhao, Qing; Kulik, Heather J.
Where Does the Density Localize in the Solid State? Divergent Behavior for Hybrids and DFT+U.
Journal of chemical theory and computation, 2018
1548825 CIFC Co O3R -3 c :H4.6618; 4.6618; 14.963
90; 90; 120
281.62Zhao, Qing; Kulik, Heather J.
Where Does the Density Localize in the Solid State? Divergent Behavior for Hybrids and DFT+U.
Journal of chemical theory and computation, 2018
1548826 CIFC21 H17 Br F3 N3 O3P 21 21 2110.3211; 19.696; 21.463
90; 90; 90
4363.1Shi, Jun; Gu, Zhengxiang; Jurica, Elizabeth Anne; Wu, Ximao; Haque, Lauren E.; Williams, Kristin N.; Hernandez, Andres S.; Hong, Zhenqiu; Gao, Qi; Dabros, Marta; Davulcu, Akin H.; Mathur, Arvind; Rampulla, Richard A.; Gupta, Arun Kumar; Jayaram, Ramya; Apedo, Atsu; Moore, Douglas B.; Liu, Heng; Kunselman, Lori K.; Brady, Edward J.; Wilkes, Jason J.; Zinker, Bradley A.; Cai, Hong; Shu, Yue-Zhong; Sun, Qin; Dierks, Elizabeth A.; Foster, Kimberly A.; Xu, Carrie; Wang, Tao; Panemangalore, Reshma; Cvijic, Mary Ellen; Xie, Chunshan; Cao, Gary G.; Zhou, Min; Krupinski, John; Whaley, Jean M.; Robl, Jeffrey A.; Ewing, William R.; Ellsworth, Bruce Alan
Discovery of Potent and Orally Bioavailable Dihydropyrazole GPR40 Agonists.
Journal of medicinal chemistry, 2018
1548827 CIFC27 H33 Cl3 Cr N7 O2P b c a18.2412; 14.5616; 23.1101
90; 90; 90
6138.53Nobbs, James D.; Tomov, Atanas K.; Young, Craig T.; White, Andrew J. P.; Britovsek, George J. P.
From alternating to selective distributions in chromium-catalysed ethylene oligomerisation with asymmetric BIMA ligands
Catalysis Science & Technology, 2018, 8, 1314
1548828 CIFC25 H33 Cl3 Cr N7 O2P 1 21/c 118.3091; 11.3311; 13.9361
90; 100.163; 90
2845.85Nobbs, James D.; Tomov, Atanas K.; Young, Craig T.; White, Andrew J. P.; Britovsek, George J. P.
From alternating to selective distributions in chromium-catalysed ethylene oligomerisation with asymmetric BIMA ligands
Catalysis Science & Technology, 2018, 8, 1314
1548829 CIFC260 H338 Au42 S26P -124.328; 24.845; 32.217
67.732; 76.94; 84.496
17553Zhuang, Shengli; Liao, Lingwen; Zhao, Yan; Yuan, Jinyun; Yao, Chuanhao; Liu, Xu; Li, Jin; Deng, Haiteng; Yang, Jinlong; Wu, Zhikun
Is the kernel-staples match a key-lock match?
Chemical science, 2018, 9, 2437-2442
1548830 CIF
HKL
Paper
C17 H11 Cl N2 O2P -18.7208; 8.7703; 9.6278
86.035; 80.227; 79.352
712.65Baral, Nilofar; Nayak, Sabita; Pal, Satyanarayan; Mohapatra, Seetaram
5-(2-Chlorophenyl)-3-(2<i>H</i>-chromen-3-yl)-1,2,4-oxadiazole
IUCrData, 2018, 3, x180129
1548831 CIF
HKL
Paper
C19 H24 O2P -16.36; 11.0807; 11.5351
114.539; 91.465; 93.401
737.06Kotha, Sambasivarao; Cheekatla, Subba Rao; Gunta, Rama
7-Hydroxyhexacyclo[7.5.1.0^1,7^.0^6,13^.0^8,12^.0^10,14^]pentadecan-15-one-11-spirocyclopentane
IUCrData, 2018, 3, x180090
1548832 CIF
HKL
Paper
C14 H8 N2 S SeP n a 2120.8533; 9.9698; 23.4151
90; 90; 90
4868.1Schollmeyer, Dieter; Detert, Heiner
Dibenzo[2,3:6,7]thiepino[4,5-<i>d</i>][1,2,3]selenadiazole
IUCrData, 2018, 3, x180070
1548833 CIFC18 H31 Cl O5P 1 21 14.6368; 7.8718; 25.885
90; 93.657; 90
942.9Huang, Rong; Jiang, Bo-Guang; Li, Xiao-Nian; Wang, Ya-Ting; Liu, Si-Si; Zheng, Kai-Xuan; He, Jian; Wu, Shao-Hua
Polyoxygenated Cyclohexenoids with Promising α-Glycosidase Inhibitory Activity Produced by Phomopsis sp. YE3250, an Endophytic Fungus Derived from Paeonia delavayi.
Journal of agricultural and food chemistry, 2018
1548834 CIFC18 H34 O7P 21 21 214.668; 9.785; 41.7773
90; 90; 90
1908.24Huang, Rong; Jiang, Bo-Guang; Li, Xiao-Nian; Wang, Ya-Ting; Liu, Si-Si; Zheng, Kai-Xuan; He, Jian; Wu, Shao-Hua
Polyoxygenated Cyclohexenoids with Promising α-Glycosidase Inhibitory Activity Produced by Phomopsis sp. YE3250, an Endophytic Fungus Derived from Paeonia delavayi.
Journal of agricultural and food chemistry, 2018
1548835 CIFC23 H23 N O4P 1 21/c 112.8609; 16.719; 8.987
90; 99.434; 90
1906.3Zhang, Wei; Lun, Shichun; Wang, Shu-Huan; Jiang, Xing-Wu; Yang, Fan; Tang, Jie; Manson, Abigail L.; Earl, Ashlee M.; Gunosewoyo, Hendra; Bishai, William R.; Yu, Li-Fang
Identification of Novel Coumestan Derivatives as Polyketide Synthase 13 Inhibitors against Mycobacterium tuberculosis.
Journal of medicinal chemistry, 2018
1548836 CIFC54 H96 O18P 1 21 110.752; 34.601; 16.762
90; 90.48; 90
6235.7May, Daniel S.; Kang, Hahk-Soo; Santarsiero, Bernard D.; Krunic, Aleksej; Shen, Qi; Burdette, Joanna E.; Swanson, Steven M.; Orjala, Jimmy
Ribocyclophanes A‒E, Glycosylated Cyclophanes with Antiproliferative Activity from Two Cultured Terrestrial Cyanobacteria
Journal of Natural Products, 2018
1548837 CIFC18 H24 Br2 O5P 1 21 14.7521; 25.2432; 17.1496
90; 90.701; 90
2057.1Sutour, Sylvain; Therrien, Bruno; von Reuss, Stephan H.; Tomi, Félix
Halogenated C15 Acetogenin Analogues of Obtusallene III from a Laurenciella sp. Collected in Corsica
Journal of Natural Products, 2018
1548838 CIFC18 H26 N4 O6 SP 17.4225; 16.5812; 21.1102
82.789; 85.375; 84.403
2559.1Lee, Jisun; Joullié, Madeleine M
Total synthesis of the reported structure of ceanothine D <i>via</i> a novel macrocyclization strategy.
Chemical science, 2018, 9, 2432-2436
1548839 CIFC21 H23 Ni0.5 O4P 1 21/n 19.6006; 15.4568; 11.7534
90; 93.542; 90
1740.8Vijaykumar, Gonela; Pariyar, Anand; Ahmed, Jasimuddin; Shaw, Bikash Kumar; Adhikari, Debashis; Mandal, Swadhin K.
Tuning the redox non-innocence of a phenalenyl ligand toward efficient nickel-assisted catalytic hydrosilylation.
Chemical science, 2018, 9, 2817-2825
1548840 CIF
HKL
Paper
C6 H12 O6P 1 21/a 112.8152; 6.29489; 18.9482
90; 108.347; 90
1450.85Taguchi, Hiroaki; Sogo, Kouta; Ishii, Tomohiko; Yoshihara, Akihide; Fukada, Kazuhiro
α-<small>D</small>,<small>L</small>-Sorbose
IUCrData, 2018, 3, x180114
1548841 CIF
HKL
Paper
C24 H26 O4P b c n15.1185; 11.0273; 24.141
90; 90; 90
4024.7Kalaivanan, R.; Sughanya, V.; Sureshbabu, N.
9-(4-Formylphenyl)-3,3,6,6-tetramethyl-3,4,5,6,7,9-hexahydro-1<i>H</i>-xanthene-1,8(2<i>H</i>)-dione
IUCrData, 2018, 3, x180105
1548842 CIF
HKL
Paper
C23 H15 N3 O SP 1 21/n 119.2666; 9.7769; 20.3265
90; 94.423; 90
3817.5El-Hiti, Gamal A.; Abdel-Wahab, Bakr F.; Alotaibi, Mohammad Hayal; Hegazy, Amany S.; Kariuki, Benson M.
(<i>E</i>)-2-Benzoyl-3-[1-phenyl-3-(thiophen-2-yl)-1<i>H</i>-pyrazol-4-yl]acrylonitrile
IUCrData, 2018, 3, x180171
1548843 CIF
HKL
Paper
C14 H11 N3 O2P 1 21/n 14.489; 19.77; 13.308
90; 93.608; 90
1178.7Mohamed Abdelahi, Mohamed Mokhtar; El Bakri, Youness; Benchidmi, Mohammed; Essassi, El Mokhtar; Mague, Joel T.
2-Benzyl-6-nitro-2<i>H</i>-indazole
IUCrData, 2018, 3, x180151
1548844 CIFC18 H17 N3 O5P 1 21/c 16.7656; 10.4687; 23.6305
90; 91.552; 90
1673.1Dhara, Koushik; Lohar, Somenath; Patra, Ayan; Roy, Priya; Saha, Swadhin Kumar; Sadhukhan, Gobinda Chandra; Chattopadhyay, Pabitra
A New Lysosome Targetable Turn-On Fluorogenic Probe for Carbon Monoxide Imaging in Living Cells.
Analytical chemistry, 2018
1548845 CIFC16 H22 F3 Li N4 O6P 1 21/n 112.4709; 8.2509; 20.2761
90; 91.312; 90
2085.79Dranka, Maciej; Jankowski, Piotr; Żukowska, Grażyna Z.
Snapshots of the Hydrolysis of Lithium 4,5-Dicyanoimidazolate‒Glyme Solvates. Impact of Water Molecules on Aggregation Processes in Lithium-Ion Battery Electrolytes
The Journal of Physical Chemistry C, 2018
1548846 CIFC36 H54 F6 Li2 N8 O15P 21 21 2114.2835; 17.9913; 18.1462
90; 90; 90
4663.19Dranka, Maciej; Jankowski, Piotr; Żukowska, Grażyna Z.
Snapshots of the Hydrolysis of Lithium 4,5-Dicyanoimidazolate‒Glyme Solvates. Impact of Water Molecules on Aggregation Processes in Lithium-Ion Battery Electrolytes
The Journal of Physical Chemistry C, 2018
1548847 CIFC26 H22 F9 Li3 N12 O5P b c a19.704; 13.9512; 26.6779
90; 90; 90
7333.61Dranka, Maciej; Jankowski, Piotr; Żukowska, Grażyna Z.
Snapshots of the Hydrolysis of Lithium 4,5-Dicyanoimidazolate‒Glyme Solvates. Impact of Water Molecules on Aggregation Processes in Lithium-Ion Battery Electrolytes
The Journal of Physical Chemistry C, 2018
1548848 CIFC6 H6 F3 Li N4 O3P 1 21/c 16.9332; 9.311; 15.6864
90; 91.59; 90
1012.25Dranka, Maciej; Jankowski, Piotr; Żukowska, Grażyna Z.
Snapshots of the Hydrolysis of Lithium 4,5-Dicyanoimidazolate‒Glyme Solvates. Impact of Water Molecules on Aggregation Processes in Lithium-Ion Battery Electrolytes
The Journal of Physical Chemistry C, 2018
1548849 CIFC6 H8 F3 Li N4 O4P 1 21/n 19.0805; 6.7141; 18.9826
90; 91.321; 90
1157Dranka, Maciej; Jankowski, Piotr; Żukowska, Grażyna Z.
Snapshots of the Hydrolysis of Lithium 4,5-Dicyanoimidazolate‒Glyme Solvates. Impact of Water Molecules on Aggregation Processes in Lithium-Ion Battery Electrolytes
The Journal of Physical Chemistry C, 2018
1548850 CIFC12 H12 F6 Li2 N8 O6P -17.3838; 8.5505; 9.9562
112.61; 109.205; 93.78
534.47Dranka, Maciej; Jankowski, Piotr; Żukowska, Grażyna Z.
Snapshots of the Hydrolysis of Lithium 4,5-Dicyanoimidazolate‒Glyme Solvates. Impact of Water Molecules on Aggregation Processes in Lithium-Ion Battery Electrolytes
The Journal of Physical Chemistry C, 2018
1548851 CIFC18 H16 F6 Li2 N8 O4P -18.5247; 10.0929; 15.4277
102.766; 99.27; 98.81
1252.86Dranka, Maciej; Jankowski, Piotr; Żukowska, Grażyna Z.
Snapshots of the Hydrolysis of Lithium 4,5-Dicyanoimidazolate‒Glyme Solvates. Impact of Water Molecules on Aggregation Processes in Lithium-Ion Battery Electrolytes
The Journal of Physical Chemistry C, 2018
1548852 CIFC16 H18 F6 Li2 N8 O6P 1 21/n 18.653; 18.007; 16.68
90; 91.5; 90
2598Dranka, Maciej; Jankowski, Piotr; Żukowska, Grażyna Z.
Snapshots of the Hydrolysis of Lithium 4,5-Dicyanoimidazolate‒Glyme Solvates. Impact of Water Molecules on Aggregation Processes in Lithium-Ion Battery Electrolytes
The Journal of Physical Chemistry C, 2018
1548853 CIFC23 H26 N2 O2 S2P -17.4148; 10.3516; 14.6348
82.054; 79.877; 73.007
1053.02Suzuki, Naoya; Suda, Kayo; Yokogawa, Daisuke; Kitoh-Nishioka, Hirotaka; Irle, Stephan; Ando, Akihiro; Abegão, Luis M G; Kamada, Kenji; Fukazawa, Aiko; Yamaguchi, Shigehiro
Near infrared two-photon-excited and -emissive dyes based on a strapped excited-state intramolecular proton-transfer (ESIPT) scaffold.
Chemical science, 2018, 9, 2666-2673
1548854 CIFC25 H30 N2 O2 S2P 1 21/a 110.7685; 14.2394; 16.386
90; 108.759; 90
2379.1Suzuki, Naoya; Suda, Kayo; Yokogawa, Daisuke; Kitoh-Nishioka, Hirotaka; Irle, Stephan; Ando, Akihiro; Abegão, Luis M G; Kamada, Kenji; Fukazawa, Aiko; Yamaguchi, Shigehiro
Near infrared two-photon-excited and -emissive dyes based on a strapped excited-state intramolecular proton-transfer (ESIPT) scaffold.
Chemical science, 2018, 9, 2666-2673
1548855 CIFC225 H333 Al9 N18 O18P -6 2 c19.559; 19.559; 41.863
90; 90; 120
13869Pang, Xuan; Duan, Ranlong; Li, Xiang; Hu, Chenyang; Wang, Xianhong; Chen, Xuesi
Breaking the Paradox between Catalytic Activity and Stereoselectivity: rac-Lactide Polymerization by Trinuclear Salen‒Al Complexes
Macromolecules, 2018, 51, 906
1548856 CIFC44 H36 N2P 1 21/c 18.6947; 17.563; 10.737
90; 97.361; 90
1626.1Sun, Xianglang; Xue, Qifan; Zhu, Zonglong; Xiao, Qi; Jiang, Kui; Yip, Hin-Lap; Yan, He; Li, Zhong'an
Fluoranthene-based dopant-free hole transporting materials for efficient perovskite solar cells.
Chemical science, 2018, 9, 2698-2704
1548857 CIFC46 H34 N4 O4P 1 21/c 114.1565; 17.917; 14.4208
90; 99.826; 90
3604.1Sun, Xianglang; Xue, Qifan; Zhu, Zonglong; Xiao, Qi; Jiang, Kui; Yip, Hin-Lap; Yan, He; Li, Zhong'an
Fluoranthene-based dopant-free hole transporting materials for efficient perovskite solar cells.
Chemical science, 2018, 9, 2698-2704
1548858 CIFC46 H34 N4P -111.856; 12.147; 13.446
102.687; 111.422; 93.005
1739.8Sun, Xianglang; Xue, Qifan; Zhu, Zonglong; Xiao, Qi; Jiang, Kui; Yip, Hin-Lap; Yan, He; Li, Zhong'an
Fluoranthene-based dopant-free hole transporting materials for efficient perovskite solar cells.
Chemical science, 2018, 9, 2698-2704
1548860 CIFC42 H36.34 N O2.17 PP 21 21 2113.9558; 15.4622; 30.6296
90; 90; 90
6609.5Ardkhean, Ruchuta; Mortimore, Mike; Paton, Robert S.; Fletcher, Stephen P.
Formation of quaternary centres by copper catalysed asymmetric conjugate addition to β-substituted cyclopentenones with the aid of a quantitative structure-selectivity relationship.
Chemical science, 2018, 9, 2628-2632
1548861 CIFC22 H20 Cl F6 NP 1 21 111.4023; 8.446; 12.168
90; 117.387; 90
1040.49Ardkhean, Ruchuta; Mortimore, Mike; Paton, Robert S.; Fletcher, Stephen P.
Formation of quaternary centres by copper catalysed asymmetric conjugate addition to β-substituted cyclopentenones with the aid of a quantitative structure-selectivity relationship.
Chemical science, 2018, 9, 2628-2632
1548862 CIFC24 H30 Cl NP 21 21 218.332; 11.3877; 22.1875
90; 90; 90
2105.2Ardkhean, Ruchuta; Mortimore, Mike; Paton, Robert S.; Fletcher, Stephen P.
Formation of quaternary centres by copper catalysed asymmetric conjugate addition to β-substituted cyclopentenones with the aid of a quantitative structure-selectivity relationship.
Chemical science, 2018, 9, 2628-2632
1548863 CIFC46.5 H39 Cl N O2 PP 1 21 113.9275; 18.6673; 15.2746
90; 110.757; 90
3713.47Ardkhean, Ruchuta; Mortimore, Mike; Paton, Robert S.; Fletcher, Stephen P.
Formation of quaternary centres by copper catalysed asymmetric conjugate addition to β-substituted cyclopentenones with the aid of a quantitative structure-selectivity relationship.
Chemical science, 2018, 9, 2628-2632
1548864 CIFC42.45 H36.9 Cl0.9 N O2 PP 21 21 224.2085; 16.0031; 8.8283
90; 90; 90
3420.18Ardkhean, Ruchuta; Mortimore, Mike; Paton, Robert S.; Fletcher, Stephen P.
Formation of quaternary centres by copper catalysed asymmetric conjugate addition to β-substituted cyclopentenones with the aid of a quantitative structure-selectivity relationship.
Chemical science, 2018, 9, 2628-2632
1548865 CIFC50 H82 B Cl N6 Ni O2 Si2C 1 2/c 127.8322; 21.4898; 26.4066
90; 116.468; 90
14138.5Hadlington, T. J.; Szilvási, T; Driess, M.
Striking transformations of the hydroborylene ligand in a HB:\ρightarrow Ni<sup>II</sup> complex with isocyanides and CO.
Chemical science, 2018, 9, 2595-2600
1548866 CIFC44 H71 B Cl N5 Ni O3 Si2P 1 21/c 110.8782; 25.2119; 17.866
90; 91.948; 90
4897.1Hadlington, T. J.; Szilvási, T; Driess, M.
Striking transformations of the hydroborylene ligand in a HB:\ρightarrow Ni<sup>II</sup> complex with isocyanides and CO.
Chemical science, 2018, 9, 2595-2600
1548867 CIFC38 H63 B Cl N5 O2P -19.8905; 12.6054; 16.945
69.66; 89.159; 78.594
1938.4Hadlington, T. J.; Szilvási, T; Driess, M.
Striking transformations of the hydroborylene ligand in a HB:\ρightarrow Ni<sup>II</sup> complex with isocyanides and CO.
Chemical science, 2018, 9, 2595-2600
1548868 CIFC66 H105 B Cl N6 Ni O6 Si2P -111.0148; 14.6131; 22.793
84.552; 83.601; 70.398
3428.1Hadlington, T. J.; Szilvási, T; Driess, M.
Striking transformations of the hydroborylene ligand in a HB:\ρightarrow Ni<sup>II</sup> complex with isocyanides and CO.
Chemical science, 2018, 9, 2595-2600
1548869 CIFC27 H49 B Cl N5P 1 21/n 113.7173; 15.3059; 15.7157
90; 110.275; 90
3095.16Hadlington, T. J.; Szilvási, T; Driess, M.
Striking transformations of the hydroborylene ligand in a HB:\ρightarrow Ni<sup>II</sup> complex with isocyanides and CO.
Chemical science, 2018, 9, 2595-2600
1548870 CIFC33 H59 B Cl N5 OP b c a15.6878; 12.3457; 36.8495
90; 90; 90
7136.9Hadlington, T. J.; Szilvási, T; Driess, M.
Striking transformations of the hydroborylene ligand in a HB:\ρightarrow Ni<sup>II</sup> complex with isocyanides and CO.
Chemical science, 2018, 9, 2595-2600
1548871 CIFC51 H78 B Cl N6 Ni O2 Si2P 1 21/c 114.0633; 26.4632; 18.1718
90; 100.801; 90
6643Hadlington, T. J.; Szilvási, T; Driess, M.
Striking transformations of the hydroborylene ligand in a HB:\ρightarrow Ni<sup>II</sup> complex with isocyanides and CO.
Chemical science, 2018, 9, 2595-2600
1548872 CIFC15 H12 F6 N O PP 1 21 110.17707; 8.43885; 18.8541
90; 101.724; 90
1585.46Sun, Y.; Cramer, N.
Tailored trisubstituted chiral Cp <sup> <i>x</i> </sup> Rh<sup>III</sup> catalysts for kinetic resolutions of phosphinic amides.
Chemical science, 2018, 9, 2981-2985
1548873 CIFC65 H60 Cl6 O4 Rh2P 21 21 219.524; 17.1108; 36.4272
90; 90; 90
5936.3Sun, Y.; Cramer, N.
Tailored trisubstituted chiral Cp <sup> <i>x</i> </sup> Rh<sup>III</sup> catalysts for kinetic resolutions of phosphinic amides.
Chemical science, 2018, 9, 2981-2985
1548874 CIFC32 H72 B20 Cl2 Cu2 O8 P4 Ru2P 1 21/n 110.4786; 16.101; 16.7081
90; 92.821; 90
2815.5Eleazer, Bennett J.; Smith, Mark D.; Popov, Alexey A.; Peryshkov, Dmitry V.
Expansion of the (BB) 〉metallacycle with coinage metal cations: formation of B-M-Ru-B (M = Cu, Ag, Au) dimetalacyclodiboryls.
Chemical science, 2018, 9, 2601-2608
1548875 CIFC18 H39 Ag B10 N2 O7 P2 RuP 1 n 110.6009; 13.8331; 11.0738
90; 103.867; 90
1576.57Eleazer, Bennett J.; Smith, Mark D.; Popov, Alexey A.; Peryshkov, Dmitry V.
Expansion of the (BB) 〉metallacycle with coinage metal cations: formation of B-M-Ru-B (M = Cu, Ag, Au) dimetalacyclodiboryls.
Chemical science, 2018, 9, 2601-2608
1548876 CIFC32 H72 Au2 B20 Cl2 O8 P4 Ru2P 1 21/c 112.421; 12.596; 19.0782
90; 101.457; 90
2925.4Eleazer, Bennett J.; Smith, Mark D.; Popov, Alexey A.; Peryshkov, Dmitry V.
Expansion of the (BB) 〉metallacycle with coinage metal cations: formation of B-M-Ru-B (M = Cu, Ag, Au) dimetalacyclodiboryls.
Chemical science, 2018, 9, 2601-2608
1548877 CIFC60 H36 Fe N14 S2P -17.945; 8.8188; 17.5482
77.665; 82.466; 81.092
1180.51Wang, Jun-Li; Liu, Qiang; Meng, Yin-Shan; Liu, Xin; Zheng, Hui; Shi, Quan; Duan, Chun-Ying; Liu, Tao
Fluorescence modulation <i>via</i> photoinduced spin crossover switched energy transfer from fluorophores to Fe<sup>II</sup> ions.
Chemical science, 2018, 9, 2892-2897
1548878 CIFC60 H36 Fe N14 S2P -18.002; 9.1057; 17.7358
76.787; 82.257; 80.099
1233.2Wang, Jun-Li; Liu, Qiang; Meng, Yin-Shan; Liu, Xin; Zheng, Hui; Shi, Quan; Duan, Chun-Ying; Liu, Tao
Fluorescence modulation <i>via</i> photoinduced spin crossover switched energy transfer from fluorophores to Fe<sup>II</sup> ions.
Chemical science, 2018, 9, 2892-2897
1548879 CIFC20 H36 B2 Co F8 N6 O2P 1 2/n 18.3869; 7.9947; 19.4819
90; 90.1405; 90
1306.27Khosrowabadi Kotyk, Juliet F.; Hanna, Caitlin M.; Combs, Rebecca L.; Ziller, Joseph W.; Yang, Jenny Y.
Intramolecular hydrogen-bonding in a cobalt aqua complex and electrochemical water oxidation activity.
Chemical science, 2018, 9, 2750-2755
1548880 CIFC22 H37 B2 Co F8 N7 OC 1 2/c 128.1807; 13.2001; 20.3454
90; 129.871; 90
5808.5Khosrowabadi Kotyk, Juliet F.; Hanna, Caitlin M.; Combs, Rebecca L.; Ziller, Joseph W.; Yang, Jenny Y.
Intramolecular hydrogen-bonding in a cobalt aqua complex and electrochemical water oxidation activity.
Chemical science, 2018, 9, 2750-2755
1548881 CIFC20 H28 B2 Co F8 N6P 21 21 219.8793; 14.9748; 17.3244
90; 90; 90
2563Khosrowabadi Kotyk, Juliet F.; Hanna, Caitlin M.; Combs, Rebecca L.; Ziller, Joseph W.; Yang, Jenny Y.
Intramolecular hydrogen-bonding in a cobalt aqua complex and electrochemical water oxidation activity.
Chemical science, 2018, 9, 2750-2755
1548882 CIFC24 H38 B2 Co F8 N8C 1 2/c 130.4582; 20.3058; 17.0511
90; 120.178; 90
9116.5Khosrowabadi Kotyk, Juliet F.; Hanna, Caitlin M.; Combs, Rebecca L.; Ziller, Joseph W.; Yang, Jenny Y.
Intramolecular hydrogen-bonding in a cobalt aqua complex and electrochemical water oxidation activity.
Chemical science, 2018, 9, 2750-2755
1548883 CIFC52 H54 Ba2 F12 Fe2 N6 O24 S4P -110.8491; 11.7518; 14.5176
75.9118; 86.5298; 71.8096
1705.3Chantarojsiri, Teera; Ziller, Joseph W.; Yang, Jenny Y.
Incorporation of redox-inactive cations promotes iron catalyzed aerobic C-H oxidation at mild potentials.
Chemical science, 2018, 9, 2567-2574
1548884 CIFC46 H48 F6 Fe2 K2 N4 O19 S2C 1 2/c 132.941; 8.2524; 21.7664
90; 108.302; 90
5617.7Chantarojsiri, Teera; Ziller, Joseph W.; Yang, Jenny Y.
Incorporation of redox-inactive cations promotes iron catalyzed aerobic C-H oxidation at mild potentials.
Chemical science, 2018, 9, 2567-2574
1548885 CIFC26 H27 Ba Cl F6 Fe N3 O12 S2P -19.7023; 12.7853; 15.6368
106.971; 104.413; 98.178
1747.82Chantarojsiri, Teera; Ziller, Joseph W.; Yang, Jenny Y.
Incorporation of redox-inactive cations promotes iron catalyzed aerobic C-H oxidation at mild potentials.
Chemical science, 2018, 9, 2567-2574
1548886 CIFC23 H24 Cl F3 Fe K N2 O9 SP 1 21/n 111.253; 17.652; 13.5982
90; 90.075; 90
2701.1Chantarojsiri, Teera; Ziller, Joseph W.; Yang, Jenny Y.
Incorporation of redox-inactive cations promotes iron catalyzed aerobic C-H oxidation at mild potentials.
Chemical science, 2018, 9, 2567-2574
1548887 CIFC26 H27 Ba F6 Fe N3 O12.5 S2P b c m9.5075; 27.3543; 28.8412
90; 90; 90
7500.8Chantarojsiri, Teera; Ziller, Joseph W.; Yang, Jenny Y.
Incorporation of redox-inactive cations promotes iron catalyzed aerobic C-H oxidation at mild potentials.
Chemical science, 2018, 9, 2567-2574
1548888 CIFC22 H24 O6 S2P -15.5834; 7.362; 12.537
91.1515; 93.4047; 100.667
505.28Kalelkar, Pranav P.; Collard, David M.
Thiol-substituted copolylactide: synthesis, characterization and post-polymerization modification using thiol‒ene chemistry
Polymer Chemistry, 2018, 9, 1022
1548889 CIF
HKL
Paper
C6 Cl3 N9I 1 2/a 122.2914; 14.1339; 23.1869
90; 115.732; 90
6580.9Limbach, Daniel; Detert, Heiner; Schollmeyer, Dieter
2,6,10-Trichlorotris[1,2,4]triazolo[1,5-<i>a</i>:1',5'-<i>c</i>:1'',5''-<i>e</i>][1,3,5]triazine
IUCrData, 2018, 3, x180212
1548890 CIF
HKL
Paper
C24 H23 N3 O2P 1 21/c 19.1066; 19.6406; 11.2901
90; 94.343; 90
2013.54Tamam, Asmaa H. A.; Kaur, Manpreet; Akkurt, Mehmet; Mohamed, Shaaban K.; Jasinski, Jerry P.; Hussain, Faiq H. S.
2-Amino-4-(4-methoxyphenyl)-1-(4-methylphenyl)-5-oxo-1,4,5,6,7,8-hexahydroquinoline-3-carbonitrile
IUCrData, 2018, 3, x180167
1548891 CIF
HKL
Paper
C22 H17 N3 OP 1 21/c 19.1084; 10.8314; 17.2226
90; 94.06; 90
1694.9Mohamed, Shaaban K.; Mague, Joel T.; Akkurt, Mehmet; Said, Awad I.; Hawaiz, Farouq E.; Elgarhy, Sahar M. I.
(<i>Z</i>)-1-(1,3-Diphenyl-1<i>H</i>-pyrazol-4-yl)-<i>N</i>-phenylmethanimine <i>N</i>-oxide
IUCrData, 2018, 3, x180208
1548892 CIF
HKL
Paper
Al4 CrC 1 m 15.1574; 17.413; 5.1107
90; 100.357; 90
451.49Fan, Changzeng; Liu, Cong
Crystal structure of ω-Al~4~Cr
IUCrData, 2018, 3, x180216
1548893 CIFC26 H50 N4 O8 SP 21 21 2110.2919; 15.7509; 20.9127
90; 90; 90
3390.1Raghava, Saripalli V.; Srivastava, Bhartendu K.; Ramshad, Kalluruttimmal; Antharjanam, Sudhadevi; Varghese, Babu; Muraleedharan, Kannoth M.
From helical supramolecular arrays to gel-forming networks: lattice restructuring and aggregation control in peptide-based sulfamides to integrate new functional attributes.
Soft matter, 2018, 14, 2357-2364
1548894 CIFC26 H50 N4 O8 SP 1 21 110.0952; 16.406; 10.2489
90; 90.105; 90
1697.4Raghava, Saripalli V.; Srivastava, Bhartendu K.; Ramshad, Kalluruttimmal; Antharjanam, Sudhadevi; Varghese, Babu; Muraleedharan, Kannoth M.
From helical supramolecular arrays to gel-forming networks: lattice restructuring and aggregation control in peptide-based sulfamides to integrate new functional attributes.
Soft matter, 2018, 14, 2357-2364
1548895 CIFC24 H46 N4 O8 SP 21 21 219.5629; 15.744; 21.1445
90; 90; 90
3183.5Raghava, Saripalli V.; Srivastava, Bhartendu K.; Ramshad, Kalluruttimmal; Antharjanam, Sudhadevi; Varghese, Babu; Muraleedharan, Kannoth M.
From helical supramolecular arrays to gel-forming networks: lattice restructuring and aggregation control in peptide-based sulfamides to integrate new functional attributes.
Soft matter, 2018, 14, 2357-2364
1548896 CIFC24 H46 N4 O8 SP 1 21 19.51; 15.8715; 10.7748
90; 105.503; 90
1567.2Raghava, Saripalli V.; Srivastava, Bhartendu K.; Ramshad, Kalluruttimmal; Antharjanam, Sudhadevi; Varghese, Babu; Muraleedharan, Kannoth M.
From helical supramolecular arrays to gel-forming networks: lattice restructuring and aggregation control in peptide-based sulfamides to integrate new functional attributes.
Soft matter, 2018, 14, 2357-2364
1548897 CIFC16 H23 Cl Co F6 N4 O6 S2P 1 21/n 18.8511; 24.5258; 11.1501
90; 97.066; 90
2402.1Call, Arnau; Franco, Federico; Kandoth, Noufal; Fernández, Sergio; González-Béjar, María; Pérez-Prieto, Julia; Luis, Josep M.; Lloret-Fillol, Julio
Understanding light-driven H<sub>2</sub> evolution through the electronic tuning of aminopyridine cobalt complexes.
Chemical science, 2018, 9, 2609-2619
1548898 CIFC19 H28 Co F6 N4 O8 S2C 1 c 112.8115; 24.0973; 8.7902
90; 96.927; 90
2693.9Call, Arnau; Franco, Federico; Kandoth, Noufal; Fernández, Sergio; González-Béjar, María; Pérez-Prieto, Julia; Luis, Josep M.; Lloret-Fillol, Julio
Understanding light-driven H<sub>2</sub> evolution through the electronic tuning of aminopyridine cobalt complexes.
Chemical science, 2018, 9, 2609-2619
1548899 CIFC21 H29 Co F6 N7 O6 S2P 1 21/n 114.2091; 13.4658; 15.184
90; 93.295; 90
2900.46Call, Arnau; Franco, Federico; Kandoth, Noufal; Fernández, Sergio; González-Béjar, María; Pérez-Prieto, Julia; Luis, Josep M.; Lloret-Fillol, Julio
Understanding light-driven H<sub>2</sub> evolution through the electronic tuning of aminopyridine cobalt complexes.
Chemical science, 2018, 9, 2609-2619
1548900 CIFC16 H24 Co F6 N4 O6 S2P b c a9.312; 16.956; 29.498
90; 90; 90
4657.6Call, Arnau; Franco, Federico; Kandoth, Noufal; Fernández, Sergio; González-Béjar, María; Pérez-Prieto, Julia; Luis, Josep M.; Lloret-Fillol, Julio
Understanding light-driven H<sub>2</sub> evolution through the electronic tuning of aminopyridine cobalt complexes.
Chemical science, 2018, 9, 2609-2619
1548901 CIFC18 H29 Co F6 N5 O6 S2P 1 21/n 18.802; 24.936; 12.694
90; 94.038; 90
2779.2Call, Arnau; Franco, Federico; Kandoth, Noufal; Fernández, Sergio; González-Béjar, María; Pérez-Prieto, Julia; Luis, Josep M.; Lloret-Fillol, Julio
Understanding light-driven H<sub>2</sub> evolution through the electronic tuning of aminopyridine cobalt complexes.
Chemical science, 2018, 9, 2609-2619
1548902 CIFC19 H30 Co F6 N4 O7 S2P 1 21/c 111.9921; 15.4423; 15.8756
90; 108.403; 90
2789.6Call, Arnau; Franco, Federico; Kandoth, Noufal; Fernández, Sergio; González-Béjar, María; Pérez-Prieto, Julia; Luis, Josep M.; Lloret-Fillol, Julio
Understanding light-driven H<sub>2</sub> evolution through the electronic tuning of aminopyridine cobalt complexes.
Chemical science, 2018, 9, 2609-2619
1548903 CIFC26 H44 N4 O4P 1 21 17.5796; 11.3035; 14.7799
90; 92.183; 90
1265.36Cabanillas, Alfredo H.; Tena Pérez, Víctor; Maderuelo Corral, Santiago; Rosero Valencia, Diego Fernando; Martel Quintana, Antera; Ortega Doménech, Montserrat; Rumbero Sánchez, Ángel
Cybastacines A and B: Antibiotic Sesterterpenes from a Nostoc sp. Cyanobacterium
Journal of Natural Products, 2018
1548904 CIFC27 H32 B2 N Na O5P b c m14.245; 17.905; 11.3809
90; 90; 90
2902.8Zhang, Li; Jiao, Lei
Super electron donors derived from diboron.
Chemical science, 2018, 9, 2711-2722
1548905 CIFC32 H38 B K N2 O4P 1 21 112.3892; 40.276; 12.9956
90; 90.798; 90
6484Zhang, Li; Jiao, Lei
Super electron donors derived from diboron.
Chemical science, 2018, 9, 2711-2722
1548906 CIFC52 H57 N O2 P2 S2 TiP 1 21/c 114.314; 12.233; 27.034
90; 102.751; 90
4617Kurogi, Takashi; Won, Joonghee; Park, Bohyun; Trofymchuk, Oleksandra S.; Carroll, Patrick J.; Baik, Mu-Hyun; Mindiola, Daniel J.
Room temperature olefination of methane with titanium-carbon multiple bonds.
Chemical science, 2018, 9, 3376-3385
1548907 CIFC56 H65 N7 P2 TiP 1 21/n 111.835; 19.146; 22.47
90; 102.101; 90
4978.4Kurogi, Takashi; Won, Joonghee; Park, Bohyun; Trofymchuk, Oleksandra S.; Carroll, Patrick J.; Baik, Mu-Hyun; Mindiola, Daniel J.
Room temperature olefination of methane with titanium-carbon multiple bonds.
Chemical science, 2018, 9, 3376-3385
1548908 CIF
Paper
Al O4 PR -3 :R9.609; 9.609; 9.609
94.46; 94.46; 94.46
878.7Tinti, Gemma; Fröjdh, Erik; van Genderen, Eric; Gruene, Tim; Schmitt, Bernd; de Winter, D. A. Matthijs; Weckhuysen, Bert M.; Abrahams, Jan Pieter
Electron crystallography with the EIGER detector
IUCrJ, 2018, 5, 190-199
1548909 CIFC31 H20 N2 OP 1 21/c 119.68; 10.006; 11.85
90; 101.871; 90
2284Ghorai, Anupam; Mondal, Jahangir; Manna, Amit Kumar; Chowdhury, Shubhamoy; Patra, Goutam K.
A novel pyrene based highly selective reversible fluorescent-colorimetric sensor for the rapid detection of Cu2+ ions: application in bio-imaging
Analytical Methods, 2018, 10, 1063
1548910 CIFC20 H28 Cl3 N4 O4 RuP 1 21/c 111.0085; 13.2457; 15.8552
90; 92.636; 90
2309.5Tse, Chun-Wai; Liu, Yungen; Wai-Shan Chow, Toby; Ma, Chaoqun; Yip, Wing-Ping; Chang, Xiao-Yong; Low, Kam-Hung; Huang, Jie-Sheng; Che, Chi-Ming
<i>cis</i>-Oxoruthenium complexes supported by chiral tetradentate amine (N<sub>4</sub>) ligands for hydrocarbon oxidations.
Chemical science, 2018, 9, 2803-2816
1548911 CIFC22 H29 Cl3 N5 O4 RuP 21 21 218.6233; 12.5838; 23.552
90; 90; 90
2555.7Tse, Chun-Wai; Liu, Yungen; Wai-Shan Chow, Toby; Ma, Chaoqun; Yip, Wing-Ping; Chang, Xiao-Yong; Low, Kam-Hung; Huang, Jie-Sheng; Che, Chi-Ming
<i>cis</i>-Oxoruthenium complexes supported by chiral tetradentate amine (N<sub>4</sub>) ligands for hydrocarbon oxidations.
Chemical science, 2018, 9, 2803-2816
1548912 CIFC22 H32 Cl3 N4 O4 RuP 1 2 110.505; 10.579; 11.649
90; 101.09; 90
1270.4Tse, Chun-Wai; Liu, Yungen; Wai-Shan Chow, Toby; Ma, Chaoqun; Yip, Wing-Ping; Chang, Xiao-Yong; Low, Kam-Hung; Huang, Jie-Sheng; Che, Chi-Ming
<i>cis</i>-Oxoruthenium complexes supported by chiral tetradentate amine (N<sub>4</sub>) ligands for hydrocarbon oxidations.
Chemical science, 2018, 9, 2803-2816
1548913 CIFC32 H38 Cl2 N6 O8 RuP 1 21 18.1503; 16.4241; 12.805
90; 99.016; 90
1692.9Tse, Chun-Wai; Liu, Yungen; Wai-Shan Chow, Toby; Ma, Chaoqun; Yip, Wing-Ping; Chang, Xiao-Yong; Low, Kam-Hung; Huang, Jie-Sheng; Che, Chi-Ming
<i>cis</i>-Oxoruthenium complexes supported by chiral tetradentate amine (N<sub>4</sub>) ligands for hydrocarbon oxidations.
Chemical science, 2018, 9, 2803-2816
1548914 CIFC31.65 H36.48 Cl2 N6.83 O8 RuP -19.912; 17.5103; 21.2883
81.245; 80.941; 83.022
3588.2Tse, Chun-Wai; Liu, Yungen; Wai-Shan Chow, Toby; Ma, Chaoqun; Yip, Wing-Ping; Chang, Xiao-Yong; Low, Kam-Hung; Huang, Jie-Sheng; Che, Chi-Ming
<i>cis</i>-Oxoruthenium complexes supported by chiral tetradentate amine (N<sub>4</sub>) ligands for hydrocarbon oxidations.
Chemical science, 2018, 9, 2803-2816
1548915 CIFC78 H58 Mn3.5 N4 O24 S10P -114.38; 15.3958; 21.7726
74.25; 71.751; 82.351
4399.85Yamamoto, S.; Pirillo, J.; Hijikata, Y.; Zhang, Z.; Awaga, K.
Nanopore-induced host-guest charge transfer phenomena in a metal-organic framework.
Chemical science, 2018, 9, 3282-3289
1548916 CIFC100 H17.5 Mn3.5 N10 O24P -114.639; 16.743; 20.551
100.913; 106.78; 100.119
4591.03Yamamoto, S.; Pirillo, J.; Hijikata, Y.; Zhang, Z.; Awaga, K.
Nanopore-induced host-guest charge transfer phenomena in a metal-organic framework.
Chemical science, 2018, 9, 3282-3289
1548917 CIFC32 H68 N8 ThP -110.383; 11.3585; 17.4827
89.777; 89.404; 63.76
1849.26Settineri, Nicholas S.; Arnold, John
Insertion, protonolysis and photolysis reactivity of a thorium monoalkyl amidinate complex.
Chemical science, 2018, 9, 2831-2841
1548918 CIFC35 H69 N9 Si ThP 1 21/c 116.9023; 11.4723; 21.7432
90; 95.127; 90
4199.3Settineri, Nicholas S.; Arnold, John
Insertion, protonolysis and photolysis reactivity of a thorium monoalkyl amidinate complex.
Chemical science, 2018, 9, 2831-2841
1548919 CIFC30 H62 N6 O2 Si ThP -19.4981; 11.95; 16.888
90.32; 99.06; 102.29
1848Settineri, Nicholas S.; Arnold, John
Insertion, protonolysis and photolysis reactivity of a thorium monoalkyl amidinate complex.
Chemical science, 2018, 9, 2831-2841
1548920 CIFC29 H62 N6 O Si ThP -112.986; 16.992; 17.337
103.843; 97.592; 93.871
3662.3Settineri, Nicholas S.; Arnold, John
Insertion, protonolysis and photolysis reactivity of a thorium monoalkyl amidinate complex.
Chemical science, 2018, 9, 2831-2841
1548921 CIFC13.75 H25 N3 Th0.5P -111.5082; 12.3194; 12.8462
61.8432; 79.157; 86.2752
1576.47Settineri, Nicholas S.; Arnold, John
Insertion, protonolysis and photolysis reactivity of a thorium monoalkyl amidinate complex.
Chemical science, 2018, 9, 2831-2841
1548922 CIFC37 H71 N7 Si ThP 1 21/n 110.9839; 20.99; 18.246
90; 93.46; 90
4199Settineri, Nicholas S.; Arnold, John
Insertion, protonolysis and photolysis reactivity of a thorium monoalkyl amidinate complex.
Chemical science, 2018, 9, 2831-2841
1548923 CIFC34 H67 N7 Si ThP 1 21/n 112.6373; 17.8743; 17.1544
90; 90.033; 90
3874.9Settineri, Nicholas S.; Arnold, John
Insertion, protonolysis and photolysis reactivity of a thorium monoalkyl amidinate complex.
Chemical science, 2018, 9, 2831-2841
1548924 CIFC56 H87 B N6 O2 ThP 1 21/c 118.6971; 15.8036; 18.9111
90; 103.688; 90
5429.2Settineri, Nicholas S.; Arnold, John
Insertion, protonolysis and photolysis reactivity of a thorium monoalkyl amidinate complex.
Chemical science, 2018, 9, 2831-2841
1548925 CIFC32 H67 B N6 ThP 1 21/n 112.1573; 18.4711; 16.3766
90; 90.215; 90
3677.5Settineri, Nicholas S.; Arnold, John
Insertion, protonolysis and photolysis reactivity of a thorium monoalkyl amidinate complex.
Chemical science, 2018, 9, 2831-2841
1548926 CIFC33 H58 N6 ThP 1 21/c 119.0249; 10.3942; 19.133
90; 110.105; 90
3553Settineri, Nicholas S.; Arnold, John
Insertion, protonolysis and photolysis reactivity of a thorium monoalkyl amidinate complex.
Chemical science, 2018, 9, 2831-2841
1548927 CIFC33 H63 N6 P ThP 1 21/n 122.5782; 13.2908; 25.4828
90; 100.332; 90
7522.9Settineri, Nicholas S.; Arnold, John
Insertion, protonolysis and photolysis reactivity of a thorium monoalkyl amidinate complex.
Chemical science, 2018, 9, 2831-2841
1548928 CIFC40 H42 Br2 F22 N2 NiP n m a13.1834; 34.0491; 10.3637
90; 90; 90
4652.1Mundil, Robert; Sokolohorskyj, Anatolij; Hošek, Jan; Cvačka, Josef; Císařová, Ivana; Kvíčala, Jaroslav; Merna, Jan
Nickel and palladium complexes with fluorinated alkyl substituted α-diimine ligands for living/controlled olefin polymerization
Polymer Chemistry, 2018, 9, 1234
1548929 CIFC49 H44 Br2 Cl2 F22 N2 NiI b a m20.5269; 21.5497; 34.938
90; 90; 90
15455Mundil, Robert; Sokolohorskyj, Anatolij; Hošek, Jan; Cvačka, Josef; Císařová, Ivana; Kvíčala, Jaroslav; Merna, Jan
Nickel and palladium complexes with fluorinated alkyl substituted α-diimine ligands for living/controlled olefin polymerization
Polymer Chemistry, 2018, 9, 1234
1548930 CIF
HKL
Paper
C26 H19 Br N4 O2 SC 1 2/c 125.289; 10.076; 19.05
90; 98.89; 90
4795.9Muthuselvi, C.; Muthu, M.; Athimoolam, S.; Ravikumar, B.; Pandiarajan, S.; Krishnakumar, R. V.
6'-(3-Bromophenyl)-7'-nitro-1',6',7',7a'-tetrahydro-3'<i>H</i>-spiro[indeno[1,2-<i>b</i>]quinoxaline-11,5'-pyrrolo[1,2-<i>c</i>]thiazole]
IUCrData, 2018, 3, x180238
1548931 CIF
HKL
Paper
Al10 Fe0.83 Ni3P 63/m m c7.6981; 7.6981; 7.6231
90; 90; 120
391.227Wang, Sai; Liu, Cong; Fan, Changzeng
Al~10~Ni~3~Fe~0.83~, an Fe-depleted phase in the Al‒Ni‒Fe system
IUCrData, 2018, 3, x180237
1548932 CIF
HKL
Paper
C19 H17 Cl2 N S SiP -110.073; 10.37; 10.547
105.029; 115.48; 90.3532
951.7Umezono, Satoru; Okuno, Tsunehisa
10-[1,1-Dichloro-4-(trimethylsilyl)but-1-en-3-yn-2-yl]-10<i>H</i>-phenothiazine
IUCrData, 2018, 3, x180232
1548933 CIFC18 H30 Fe3 N30 O3 S6P 21 21 2110.8419; 11.7415; 31.5503
90; 90; 90
4016.4Chen, Wen-Bin; Chen, Yan-Cong; Yang, Meng; Tong, Ming-Liang; Dong, Wen
Water molecule induced reversible single-crystal-to-single-crystal transformation between two trinuclear Fe(ii) complexes with different spin crossover behaviour.
Dalton transactions (Cambridge, England : 2003), 2018, 47, 4307-4314
1548934 CIFC18 H30 Fe3 N30 O3 S6P 21 21 2111.025; 11.863; 32.15
90; 90; 90
4205Chen, Wen-Bin; Chen, Yan-Cong; Yang, Meng; Tong, Ming-Liang; Dong, Wen
Water molecule induced reversible single-crystal-to-single-crystal transformation between two trinuclear Fe(ii) complexes with different spin crossover behaviour.
Dalton transactions (Cambridge, England : 2003), 2018, 47, 4307-4314
1548935 CIFC18 H26 Fe3 N30 O S6P 21 21 2110.972; 11.475; 31.878
90; 90; 90
4014Chen, Wen-Bin; Chen, Yan-Cong; Yang, Meng; Tong, Ming-Liang; Dong, Wen
Water molecule induced reversible single-crystal-to-single-crystal transformation between two trinuclear Fe(ii) complexes with different spin crossover behaviour.
Dalton transactions (Cambridge, England : 2003), 2018, 47, 4307-4314
1548936 CIFC18 H30 Fe3 N30 O3 S6P 21 21 2110.8323; 11.6921; 31.5984
90; 90; 90
4002Chen, Wen-Bin; Chen, Yan-Cong; Yang, Meng; Tong, Ming-Liang; Dong, Wen
Water molecule induced reversible single-crystal-to-single-crystal transformation between two trinuclear Fe(ii) complexes with different spin crossover behaviour.
Dalton transactions (Cambridge, England : 2003), 2018, 47, 4307-4314
1548937 CIFC18 H26 Fe3 N30 O S6P 21 21 2111.131; 11.508; 32.09
90; 90; 90
4111Chen, Wen-Bin; Chen, Yan-Cong; Yang, Meng; Tong, Ming-Liang; Dong, Wen
Water molecule induced reversible single-crystal-to-single-crystal transformation between two trinuclear Fe(ii) complexes with different spin crossover behaviour.
Dalton transactions (Cambridge, England : 2003), 2018, 47, 4307-4314
1548938 CIFC18 H26 Fe3 N30 O S6P 21 21 2110.799; 11.407; 31.847
90; 90; 90
3923Chen, Wen-Bin; Chen, Yan-Cong; Yang, Meng; Tong, Ming-Liang; Dong, Wen
Water molecule induced reversible single-crystal-to-single-crystal transformation between two trinuclear Fe(ii) complexes with different spin crossover behaviour.
Dalton transactions (Cambridge, England : 2003), 2018, 47, 4307-4314
1548939 CIFC22 H23 N O2 SiP 1 21 110.4794; 7.0464; 13.4791
90; 100.094; 90
979.92Rodriguez, Kevin X.; Pilato, Tara C.; Ashfeld, Brandon L.
An unusual stereoretentive 1,3-quaternary carbon shift resulting in an enantioselective Rh<sup>II</sup>-catalyzed formal [4+1]-cycloaddition between diazo compounds and vinyl ketenes.
Chemical science, 2018, 9, 3221-3226
1548940 CIFC22 H23 N O2 SiP 21 21 219.4164; 11.6775; 17.207
90; 90; 90
1892.08Rodriguez, Kevin X.; Pilato, Tara C.; Ashfeld, Brandon L.
An unusual stereoretentive 1,3-quaternary carbon shift resulting in an enantioselective Rh<sup>II</sup>-catalyzed formal [4+1]-cycloaddition between diazo compounds and vinyl ketenes.
Chemical science, 2018, 9, 3221-3226
1548941 CIFC69.17 H38.35 B Cl2.35 F28 I N Na0 O P2 RhP -112.9788; 15.9249; 18.4205
77.6077; 73.186; 88.345
3557.34Carreras, Lucas; Serrano-Torné, Marta; van Leeuwen, Piet W. N. M.; Vidal-Ferran, Anton
<b>XBphos-Rh</b>: a halogen-bond assembled supramolecular catalyst.
Chemical science, 2018, 9, 3644-3648
1548942 CIFC70.5 H46 B F24 I N O P2 RhP -112.9235; 15.961; 18.3296
79.049; 71.52; 88.475
3518.3Carreras, Lucas; Serrano-Torné, Marta; van Leeuwen, Piet W. N. M.; Vidal-Ferran, Anton
<b>XBphos-Rh</b>: a halogen-bond assembled supramolecular catalyst.
Chemical science, 2018, 9, 3644-3648
1548943 CIFC18 H22 N2 O3 SP 1 21/c 117.417; 7.3299; 13.5997
90; 95.37; 90
1728.58Giri, Sovan Sundar; Liu, Rai-Shung
Gold-catalyzed [4+3]- and [4+2]-annulations of 3-en-1-ynamides with isoxazoles <i>via</i> novel 6π-electrocyclizations of 3-azahepta trienyl cations.
Chemical science, 2018, 9, 2991-2995
1548944 CIFC28 H26 N2 O3 SP 1 21/c 113.9904; 8.4064; 21.36
90; 104.491; 90
2432.21Giri, Sovan Sundar; Liu, Rai-Shung
Gold-catalyzed [4+3]- and [4+2]-annulations of 3-en-1-ynamides with isoxazoles <i>via</i> novel 6π-electrocyclizations of 3-azahepta trienyl cations.
Chemical science, 2018, 9, 2991-2995
1548945 CIFC18 H22 N2 O3 SP 1 21/c 112.3308; 16.1714; 8.8646
90; 94.241; 90
1762.8Giri, Sovan Sundar; Liu, Rai-Shung
Gold-catalyzed [4+3]- and [4+2]-annulations of 3-en-1-ynamides with isoxazoles <i>via</i> novel 6π-electrocyclizations of 3-azahepta trienyl cations.
Chemical science, 2018, 9, 2991-2995
1548946 CIFC21 H26 N2 O3 SP 1 21/n 19.0836; 21.4854; 9.9912
90; 92.112; 90
1948.61Giri, Sovan Sundar; Liu, Rai-Shung
Gold-catalyzed [4+3]- and [4+2]-annulations of 3-en-1-ynamides with isoxazoles <i>via</i> novel 6π-electrocyclizations of 3-azahepta trienyl cations.
Chemical science, 2018, 9, 2991-2995
1548947 CIFC24 H26 N2 O3 SP 1 21/c 19.8261; 13.6201; 16.2063
90; 96.868; 90
2153.37Giri, Sovan Sundar; Liu, Rai-Shung
Gold-catalyzed [4+3]- and [4+2]-annulations of 3-en-1-ynamides with isoxazoles <i>via</i> novel 6π-electrocyclizations of 3-azahepta trienyl cations.
Chemical science, 2018, 9, 2991-2995
1548948 CIFC16 H18 N2 O3 SC 1 2/c 110.99; 9.6096; 29.66
90; 94.047; 90
3124.6Giri, Sovan Sundar; Liu, Rai-Shung
Gold-catalyzed [4+3]- and [4+2]-annulations of 3-en-1-ynamides with isoxazoles <i>via</i> novel 6π-electrocyclizations of 3-azahepta trienyl cations.
Chemical science, 2018, 9, 2991-2995
1548949 CIFC12 H12 F4 OP 21 21 216.0422; 11.778; 15.448
90; 90; 90
1099.4Rodil, Andrea; Bosisio, Stefano; Ayoup, Mohammed Salah; Quinn, Laura; Cordes, David B.; Slawin, Alexandra M. Z.; Murphy, Cormac D.; Michel, Julien; O'Hagan, David
Metabolism and hydrophilicity of the polarised 'Janus face' all-<i>cis</i> tetrafluorocyclohexyl ring, a candidate motif for drug discovery.
Chemical science, 2018, 9, 3023-3028
1548950 CIFC12 H14 F2 OP 21 21 215.25889; 9.75241; 20.4698
90; 90; 90
1049.83Rodil, Andrea; Bosisio, Stefano; Ayoup, Mohammed Salah; Quinn, Laura; Cordes, David B.; Slawin, Alexandra M. Z.; Murphy, Cormac D.; Michel, Julien; O'Hagan, David
Metabolism and hydrophilicity of the polarised 'Janus face' all-<i>cis</i> tetrafluorocyclohexyl ring, a candidate motif for drug discovery.
Chemical science, 2018, 9, 3023-3028
1548951 CIFC12 H14 F2 OP 1 21/a 113.5173; 5.57303; 27.4909
90; 90.469; 90
2070.88Rodil, Andrea; Bosisio, Stefano; Ayoup, Mohammed Salah; Quinn, Laura; Cordes, David B.; Slawin, Alexandra M. Z.; Murphy, Cormac D.; Michel, Julien; O'Hagan, David
Metabolism and hydrophilicity of the polarised 'Janus face' all-<i>cis</i> tetrafluorocyclohexyl ring, a candidate motif for drug discovery.
Chemical science, 2018, 9, 3023-3028
1548952 CIFC12 H14 F2 OP 1 21/c 110.536; 19.983; 10.272
90; 107.972; 90
2057.2Rodil, Andrea; Bosisio, Stefano; Ayoup, Mohammed Salah; Quinn, Laura; Cordes, David B.; Slawin, Alexandra M. Z.; Murphy, Cormac D.; Michel, Julien; O'Hagan, David
Metabolism and hydrophilicity of the polarised 'Janus face' all-<i>cis</i> tetrafluorocyclohexyl ring, a candidate motif for drug discovery.
Chemical science, 2018, 9, 3023-3028
1548953 CIFC12 H15 F OP 21 21 215.33024; 9.6528; 20.0332
90; 90; 90
1030.74Rodil, Andrea; Bosisio, Stefano; Ayoup, Mohammed Salah; Quinn, Laura; Cordes, David B.; Slawin, Alexandra M. Z.; Murphy, Cormac D.; Michel, Julien; O'Hagan, David
Metabolism and hydrophilicity of the polarised 'Janus face' all-<i>cis</i> tetrafluorocyclohexyl ring, a candidate motif for drug discovery.
Chemical science, 2018, 9, 3023-3028
1548954 CIFC31 H34 O4 SP 6121.247; 21.247; 11.2694
90; 90; 120
4405.8Zhao, Jian; Jonker, Sybrand J. T.; Meyer, Denise N.; Schulz, Göran; Tran, C. Duc; Eriksson, Lars; Szabó, Kálmán J
Copper-catalyzed synthesis of allenylboronic acids. Access to sterically encumbered homopropargylic alcohols and amines by propargylboration.
Chemical science, 2018, 9, 3305-3312
1548955 CIFC41 H56 Cu F6 N2 O P3P 1 21/c 112.2247; 15.0283; 22.5879
90; 98.452; 90
4104.7Keller, Sarah; Prescimone, Alessandro; Constable, Edwin C.; Housecroft, Catherine E.
Copper(i) and silver(i) complexes of 9,9-dimethyl-4,5-bis(di-tert-butylphosphino)xanthene: photophysical properties and structural rigidity under pressure.
Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology, 2018, 17, 375-385
1548956 CIFC41 H56 Ag F6 N2 O P3P -112.3873; 12.5363; 15.3282
104.142; 109.108; 103.339
2051.8Keller, Sarah; Prescimone, Alessandro; Constable, Edwin C.; Housecroft, Catherine E.
Copper(i) and silver(i) complexes of 9,9-dimethyl-4,5-bis(di-tert-butylphosphino)xanthene: photophysical properties and structural rigidity under pressure.
Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology, 2018, 17, 375-385
1548957 CIFC31 H52 Cu F6 O3 P3I 2 m m10.6543; 11.1834; 15.7615
90; 90; 90
1878Keller, Sarah; Prescimone, Alessandro; Constable, Edwin C.; Housecroft, Catherine E.
Copper(i) and silver(i) complexes of 9,9-dimethyl-4,5-bis(di-tert-butylphosphino)xanthene: photophysical properties and structural rigidity under pressure.
Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology, 2018, 17, 375-385
1548958 CIFC41 H56 Ag F6 N2 O P3P -111.9737; 12.2317; 14.4143
103.77; 108.026; 104.548
1825.2Keller, Sarah; Prescimone, Alessandro; Constable, Edwin C.; Housecroft, Catherine E.
Copper(i) and silver(i) complexes of 9,9-dimethyl-4,5-bis(di-tert-butylphosphino)xanthene: photophysical properties and structural rigidity under pressure.
Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology, 2018, 17, 375-385
1548959 CIFC41 H56 Cu F6 N2 O P3P 1 21/c 111.962; 14.7798; 22.07
90; 98.83; 90
3856Keller, Sarah; Prescimone, Alessandro; Constable, Edwin C.; Housecroft, Catherine E.
Copper(i) and silver(i) complexes of 9,9-dimethyl-4,5-bis(di-tert-butylphosphino)xanthene: photophysical properties and structural rigidity under pressure.
Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology, 2018, 17, 375-385
1548960 CIFC41 H56 Ag F6 N2 O P3P -111.704; 12.033; 14.1045
103.362; 108.356; 104.447
1719Keller, Sarah; Prescimone, Alessandro; Constable, Edwin C.; Housecroft, Catherine E.
Copper(i) and silver(i) complexes of 9,9-dimethyl-4,5-bis(di-tert-butylphosphino)xanthene: photophysical properties and structural rigidity under pressure.
Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology, 2018, 17, 375-385
1548961 CIFC41 H56 Ag F6 N2 O P3P -111.8753; 12.1267; 14.271
103.601; 108.062; 104.62
1777.5Keller, Sarah; Prescimone, Alessandro; Constable, Edwin C.; Housecroft, Catherine E.
Copper(i) and silver(i) complexes of 9,9-dimethyl-4,5-bis(di-tert-butylphosphino)xanthene: photophysical properties and structural rigidity under pressure.
Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology, 2018, 17, 375-385
1548962 CIFC41 H56 Cu F6 N2 O P3P 1 21/c 111.787; 14.4808; 21.5025
90; 99.22; 90
3623Keller, Sarah; Prescimone, Alessandro; Constable, Edwin C.; Housecroft, Catherine E.
Copper(i) and silver(i) complexes of 9,9-dimethyl-4,5-bis(di-tert-butylphosphino)xanthene: photophysical properties and structural rigidity under pressure.
Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology, 2018, 17, 375-385
1548963 CIFC41 H56 Cu F6 N2 O P3P 1 21/c 111.892; 14.682; 21.9164
90; 98.94; 90
3780Keller, Sarah; Prescimone, Alessandro; Constable, Edwin C.; Housecroft, Catherine E.
Copper(i) and silver(i) complexes of 9,9-dimethyl-4,5-bis(di-tert-butylphosphino)xanthene: photophysical properties and structural rigidity under pressure.
Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology, 2018, 17, 375-385
1548964 CIFC41 H56 Ag F6 N2 O P3P -111.7672; 12.0577; 14.1541
103.49; 108.215; 104.502
1737.6Keller, Sarah; Prescimone, Alessandro; Constable, Edwin C.; Housecroft, Catherine E.
Copper(i) and silver(i) complexes of 9,9-dimethyl-4,5-bis(di-tert-butylphosphino)xanthene: photophysical properties and structural rigidity under pressure.
Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology, 2018, 17, 375-385
1548965 CIFC41 H56 Cu F6 N2 O P3P 1 21/c 123.191; 14.335; 21.247
90; 99.44; 90
6968Keller, Sarah; Prescimone, Alessandro; Constable, Edwin C.; Housecroft, Catherine E.
Copper(i) and silver(i) complexes of 9,9-dimethyl-4,5-bis(di-tert-butylphosphino)xanthene: photophysical properties and structural rigidity under pressure.
Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology, 2018, 17, 375-385
1548966 CIFC41 H56 Cu F6 N2 O P3P 1 21/c 112.187; 15.0361; 22.427
90; 98.56; 90
4064Keller, Sarah; Prescimone, Alessandro; Constable, Edwin C.; Housecroft, Catherine E.
Copper(i) and silver(i) complexes of 9,9-dimethyl-4,5-bis(di-tert-butylphosphino)xanthene: photophysical properties and structural rigidity under pressure.
Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology, 2018, 17, 375-385
1548967 CIFC57 H76 Cl3 P2 PtP 1 21/n 118.7426; 13.6265; 22.2266
90; 92.9084; 90
5669.3Miyagi, Yu; Sotani, Taichi; Yajima, Tatsuo; Sano, Natsuhiro; Sanda, Fumio
Effect of phosphine ligand on the optical absorption/emission properties of platinum-containing conjugated polymers
Polymer Chemistry, 2018, 9, 1772
1548968 CIFC62 H54 N2 O2 P2 PtP -19.5747; 10.0025; 14.5919
75.3868; 73.7957; 81.3096
1293.65Miyagi, Yu; Sotani, Taichi; Yajima, Tatsuo; Sano, Natsuhiro; Sanda, Fumio
Effect of phosphine ligand on the optical absorption/emission properties of platinum-containing conjugated polymers
Polymer Chemistry, 2018, 9, 1772
1548969 CIFC31 H27 N3 O3P -17.6914; 8.8535; 18.0798
91.235; 97.803; 92.431
1218.2Xiong, Yaoyao; Vargas Jentzsch, Andreas; Osterrieth, Johannes W. M.; Sezgin, Erdinc; Sazanovich, Igor V.; Reglinski, Katharina; Galiani, Silvia; Parker, Anthony W.; Eggeling, Christian; Anderson, Harry L.
Spironaphthoxazine switchable dyes for biological imaging.
Chemical science, 2018, 9, 3029-3040
1548970 CIFC308 H374 N23 O12 P3P -121.138; 21.616; 21.948
118.123; 106.659; 99.169
7942Fatila, Elisabeth M.; Pink, Maren; Twum, Eric B.; Karty, Jonathan A.; Flood, Amar H.
Phosphate-phosphate oligomerization drives higher order co-assemblies with stacks of cyanostar macrocycles.
Chemical science, 2018, 9, 2863-2872
1548971 CIFC365.84 H508.52 Cl14.16 N26 O29.28 P7P -119.692; 22.3708; 25.201
97.908; 108.437; 113.456
9208.2Fatila, Elisabeth M.; Pink, Maren; Twum, Eric B.; Karty, Jonathan A.; Flood, Amar H.
Phosphate-phosphate oligomerization drives higher order co-assemblies with stacks of cyanostar macrocycles.
Chemical science, 2018, 9, 2863-2872
1548972 CIF
HKL
Paper
C8 H13 Br N O0.5C 1 2/c 130.7456; 5.0266; 12.0636
90; 98.43; 90
1844.24Aarthi, R.; Thiruvalluvar, A.; Ramachandra Raja, C.
(4-Methylphenyl)methanaminium bromide hemihydrate
IUCrData, 2018, 3, x180270
1548973 CIF
HKL
Paper
C9 H5 I3 O2P 1 21/n 14.7121; 18.752; 13.856
90; 92.379; 90
1223.3Szell, Patrick M.J.; Gabidullin, Bulat; Bryce, David L.
3-(1,2,2-Triiodoethenyl)benzoic acid
IUCrData, 2018, 3, x180258
1548975 CIFC26 H15 N6 O11 Zn2I 427.458; 27.458; 18.225
90; 90; 90
13741Zhao, He; Ni, Jun; Zhang, Jian-Jun; Liu, Shu-Qin; Sun, Ying-Ji; Zhou, Huajun; Li, Yan-Qin; Duan, Chun-Ying
A trichromatic MOF composite for multidimensional ratiometric luminescent sensing.
Chemical science, 2018, 9, 2918-2926
1548976 CIFC58.5 H43.5 F6 N6.5 O2.5 ZnP 1 21/n 110.7604; 51.619; 18.6745
90; 98.394; 90
10261.5Nichols, Eva M.; Derrick, Jeffrey S.; Nistanaki, Sepand K.; Smith, Peter T.; Chang, Christopher J.
Positional effects of second-sphere amide pendants on electrochemical CO<sub>2</sub> reduction catalyzed by iron porphyrins.
Chemical science, 2018, 9, 2952-2960
1548977 CIFC9.4 H4 D5.61 O5 VI 41 2 215.1723; 15.1723; 12.0747
90; 90; 90
2779.58Lu, Zhenzhong; Godfrey, Harry G. W.; da Silva, Ivan; Cheng, Yongqiang; Savage, Mathew; Manuel, Pascal; Rudić, Svemir; Ramirez-Cuesta, Anibal J; Yang, Sihai; Schröder, Martin
Direct observation of supramolecular binding of light hydrocarbons in vanadium(iii) and (iv) metal-organic framework materials.
Chemical science, 2018, 9, 3401-3408
1548978 CIFC10.63 H4 D8.95 O5 VI 41 2 215.1668; 15.1668; 12.0716
90; 90; 90
2776.85Lu, Zhenzhong; Godfrey, Harry G. W.; da Silva, Ivan; Cheng, Yongqiang; Savage, Mathew; Manuel, Pascal; Rudić, Svemir; Ramirez-Cuesta, Anibal J; Yang, Sihai; Schröder, Martin
Direct observation of supramolecular binding of light hydrocarbons in vanadium(iii) and (iv) metal-organic framework materials.
Chemical science, 2018, 9, 3401-3408
1548979 CIFC9.01 H4 D4.06 O5 VI 41 2 215.16316; 15.16316; 12.0746
90; 90; 90
2776.21Lu, Zhenzhong; Godfrey, Harry G. W.; da Silva, Ivan; Cheng, Yongqiang; Savage, Mathew; Manuel, Pascal; Rudić, Svemir; Ramirez-Cuesta, Anibal J; Yang, Sihai; Schröder, Martin
Direct observation of supramolecular binding of light hydrocarbons in vanadium(iii) and (iv) metal-organic framework materials.
Chemical science, 2018, 9, 3401-3408
1548980 CIFC10 H4 D2 O5 VI 41 2 215.1613; 15.1613; 12.0687
90; 90; 90
2774.17Lu, Zhenzhong; Godfrey, Harry G. W.; da Silva, Ivan; Cheng, Yongqiang; Savage, Mathew; Manuel, Pascal; Rudić, Svemir; Ramirez-Cuesta, Anibal J; Yang, Sihai; Schröder, Martin
Direct observation of supramolecular binding of light hydrocarbons in vanadium(iii) and (iv) metal-organic framework materials.
Chemical science, 2018, 9, 3401-3408
1548981 CIFC10.14 H4 D4.28 O5 VI 41 2 215.1594; 15.1594; 12.071
90; 90; 90
2774.01Lu, Zhenzhong; Godfrey, Harry G. W.; da Silva, Ivan; Cheng, Yongqiang; Savage, Mathew; Manuel, Pascal; Rudić, Svemir; Ramirez-Cuesta, Anibal J; Yang, Sihai; Schröder, Martin
Direct observation of supramolecular binding of light hydrocarbons in vanadium(iii) and (iv) metal-organic framework materials.
Chemical science, 2018, 9, 3401-3408
1548982 CIFC10.07 H4 D6.2 O5 VI 41 2 215.1661; 15.1661; 12.0725
90; 90; 90
2776.8Lu, Zhenzhong; Godfrey, Harry G. W.; da Silva, Ivan; Cheng, Yongqiang; Savage, Mathew; Manuel, Pascal; Rudić, Svemir; Ramirez-Cuesta, Anibal J; Yang, Sihai; Schröder, Martin
Direct observation of supramolecular binding of light hydrocarbons in vanadium(iii) and (iv) metal-organic framework materials.
Chemical science, 2018, 9, 3401-3408
1548983 CIFC11.56 H4 D3.56 O5 VI 41 2 215.1457; 15.1457; 12.0519
90; 90; 90
2764.61Lu, Zhenzhong; Godfrey, Harry G. W.; da Silva, Ivan; Cheng, Yongqiang; Savage, Mathew; Manuel, Pascal; Rudić, Svemir; Ramirez-Cuesta, Anibal J; Yang, Sihai; Schröder, Martin
Direct observation of supramolecular binding of light hydrocarbons in vanadium(iii) and (iv) metal-organic framework materials.
Chemical science, 2018, 9, 3401-3408
1548984 CIFC15 H10 B5 F30 K5P -110.9621; 12.9672; 13.9252
111.325; 99.442; 105.532
1699.54Phelan, James P.; Wiles, Rebecca J.; Lang, Simon B.; Kelly, Christopher B.; Molander, Gary A.
Rapid access to diverse, trifluoromethyl-substituted alkenes using complementary strategies.
Chemical science, 2018, 9, 3215-3220
1548985 CIF
HKL
Paper
C22 H16 Br N3 O3C 1 2/c 134.0146; 4.9522; 23.4539
90; 111.578; 90
3673.9Filali Baba, Yassir; Kandri Rodi, Youssef; Mague, Joel T.; Ouzidan, Younes; Ouazzani Chahdi, Fouad; Essassi, El Mokhtar
(Pyridin-2-yl)methyl 6-bromo-2-oxo-1-[(pyridin-2-yl)methyl]-1,2-dihydroquinoline-4-carboxylate
IUCrData, 2018, 3, x180288
1548986 CIF
HKL
Paper
C22 H14 O6P -18.1833; 15.4412; 15.525
110.657; 104.919; 90.516
1762.9Mohamed, Shaaban K.; Mague, Joel T.; Akkurt, Mehmet; Hawaiz, Farouq E.; Ayoob, Mzgin M.; Hussein, Awaz J.
Bis(2-formylphenyl) benzene-1,2-dicarboxylate
IUCrData, 2018, 3, x180251
1548987 CIF
HKL
Paper
C13 H8 Br N3 O2P 1 21/c 110.1922; 17.347; 7.0216
90; 92.382; 90
1240.37Sikine, Meriem; Kandri Rodi, Youssef; Ouzidan, Younes; Jasinski, Jerry P.; Kaur, Manpreet; Essassi, El Mokhtar
7-Bromo-1,4-bis(prop-2-ynyl)pyrido[2,3-<i>b</i>]pyrazine-2,3(1<i>H</i>,4<i>H</i>)-dione
IUCrData, 2018, 3, x180266
1548988 CIF
HKL
C15 H17 N O2C 1 2/c 129.001; 4.8412; 20.474
90; 113.16; 90
2642.9Dakir, Mohamed; Benharref, Ahmed; El Ammari, Lahcen; Saadi, Mohamed; Oukhrib, Abdelouahd; Berraho, Moha
6-Methyl-1-(nitromethyl)-4-(propan-2-yl)naphthalene
IUCrData, 2018, 3, x180274
1548989 CIFC21 H15 F6 N2 O PC 1 2/c 16.861; 10.695; 23.818
90; 96.101; 90
1737.8Rosenberg, M.; Rostgaard, K. R.; Liao, Z.; Madsen, A Ø; Martinez, K. L.; Vosch, T.; Laursen, B. W.
Design, synthesis, and time-gated cell imaging of carbon-bridged triangulenium dyes with long fluorescence lifetime and red emission.
Chemical science, 2018, 9, 3122-3130
1548990 CIFC22 H15 F6 O2 PP -18.4805; 8.5013; 14.7698
74.017; 89.013; 64.503
917.65Rosenberg, M.; Rostgaard, K. R.; Liao, Z.; Madsen, A Ø; Martinez, K. L.; Vosch, T.; Laursen, B. W.
Design, synthesis, and time-gated cell imaging of carbon-bridged triangulenium dyes with long fluorescence lifetime and red emission.
Chemical science, 2018, 9, 3122-3130
1548991 CIFC23 H18 F6 N O PP -114.162; 15.264; 20.039
87.939; 85.555; 62.365
3826.1Rosenberg, M.; Rostgaard, K. R.; Liao, Z.; Madsen, A Ø; Martinez, K. L.; Vosch, T.; Laursen, B. W.
Design, synthesis, and time-gated cell imaging of carbon-bridged triangulenium dyes with long fluorescence lifetime and red emission.
Chemical science, 2018, 9, 3122-3130
1548992 CIFC24 H21 F6 N2 PP c c n14.5591; 21.6499; 13.0273
90; 90; 90
4106.2Rosenberg, M.; Rostgaard, K. R.; Liao, Z.; Madsen, A Ø; Martinez, K. L.; Vosch, T.; Laursen, B. W.
Design, synthesis, and time-gated cell imaging of carbon-bridged triangulenium dyes with long fluorescence lifetime and red emission.
Chemical science, 2018, 9, 3122-3130
1548993 CIFC35 H35 Cl2 F3 N8 Ni O3 SP -110.0222; 12.1506; 16.0254
69.063; 75.075; 81.389
1757.6Grübel, Michael; Bosque, Irene; Altmann, Philipp J.; Bach, Thorsten; Hess, Corinna R.
Redox and photocatalytic properties of a Ni<sup>II</sup> complex with a macrocyclic biquinazoline (Mabiq) ligand.
Chemical science, 2018, 9, 3313-3317
1548994 CIFC22 H35 NP 1 21/c 117.6983; 6.2954; 17.442
90; 102.677; 90
1896Grübel, Michael; Bosque, Irene; Altmann, Philipp J.; Bach, Thorsten; Hess, Corinna R.
Redox and photocatalytic properties of a Ni<sup>II</sup> complex with a macrocyclic biquinazoline (Mabiq) ligand.
Chemical science, 2018, 9, 3313-3317
1548995 CIFC33 H33 N8 NiP 21 21 2110.1802; 20.4136; 26.689
90; 90; 90
5546.4Grübel, Michael; Bosque, Irene; Altmann, Philipp J.; Bach, Thorsten; Hess, Corinna R.
Redox and photocatalytic properties of a Ni<sup>II</sup> complex with a macrocyclic biquinazoline (Mabiq) ligand.
Chemical science, 2018, 9, 3313-3317
1548996 CIFC16 H12 F3 N O4 SP -18.4561; 8.5762; 12.4229
110.047; 111.941; 90.1156
776.24Das, Pulakesh; Gondo, Satoshi; Nagender, Punna; Uno, Hiroto; Tokunaga, Etsuko; Shibata, Norio
Access to benzo-fused nine-membered heterocyclic alkenes with a trifluoromethyl carbinol moiety <i>via</i> a double decarboxylative formal ring-expansion process under palladium catalysis.
Chemical science, 2018, 9, 3276-3281
1548997 CIFC25 H22 F3 N O3 SP b c a16.8152; 15.0512; 17.5637
90; 90; 90
4445.18Das, Pulakesh; Gondo, Satoshi; Nagender, Punna; Uno, Hiroto; Tokunaga, Etsuko; Shibata, Norio
Access to benzo-fused nine-membered heterocyclic alkenes with a trifluoromethyl carbinol moiety <i>via</i> a double decarboxylative formal ring-expansion process under palladium catalysis.
Chemical science, 2018, 9, 3276-3281
1548998 CIFC25 H22 F3 N O4 SP 1 21/c 116.8716; 7.8975; 16.7075
90; 90.3044; 90
2226.13Das, Pulakesh; Gondo, Satoshi; Nagender, Punna; Uno, Hiroto; Tokunaga, Etsuko; Shibata, Norio
Access to benzo-fused nine-membered heterocyclic alkenes with a trifluoromethyl carbinol moiety <i>via</i> a double decarboxylative formal ring-expansion process under palladium catalysis.
Chemical science, 2018, 9, 3276-3281
1548999 CIFC23 H20 F3 N O4 SP 1 21/n 114.6966; 9.1174; 17.3812
90; 116.062; 90
2092.17Das, Pulakesh; Gondo, Satoshi; Nagender, Punna; Uno, Hiroto; Tokunaga, Etsuko; Shibata, Norio
Access to benzo-fused nine-membered heterocyclic alkenes with a trifluoromethyl carbinol moiety <i>via</i> a double decarboxylative formal ring-expansion process under palladium catalysis.
Chemical science, 2018, 9, 3276-3281
1549000 CIFC9 H12 O4 S2P 1 21 17.5406; 7.8875; 8.9868
90; 95.198; 90
532.31López-Vidal, Eva M.; Gregory, Georgina L.; Kociok-Köhn, Gabriele; Buchard, Antoine
Polymers from sugars and CS2: synthesis and ring-opening polymerisation of sulfur-containing monomers derived from 2-deoxy-d-ribose and d-xylose
Polymer Chemistry, 2018, 9, 1577
1549001 CIFC7 H10 O3 S2P 21 21 217.5535; 12.2965; 19.9749
90; 90; 90
1855.3López-Vidal, Eva M.; Gregory, Georgina L.; Kociok-Köhn, Gabriele; Buchard, Antoine
Polymers from sugars and CS2: synthesis and ring-opening polymerisation of sulfur-containing monomers derived from 2-deoxy-d-ribose and d-xylose
Polymer Chemistry, 2018, 9, 1577
1549002 CIFC9 H12 O5 SP 21 21 216.0784; 9.833; 17.9994
90; 90; 90
1075.8López-Vidal, Eva M.; Gregory, Georgina L.; Kociok-Köhn, Gabriele; Buchard, Antoine
Polymers from sugars and CS2: synthesis and ring-opening polymerisation of sulfur-containing monomers derived from 2-deoxy-d-ribose and d-xylose
Polymer Chemistry, 2018, 9, 1577
1549003 CIFC28 H44 Li2 N6P 1 21/n 19.746; 25.413; 11.319
90; 105.55; 90
2700.8Engelhardt, Felix; Maaß, Christian; Andrada, Diego M.; Herbst-Irmer, Regine; Stalke, Dietmar
Benchmarking lithium amide <i>versus</i> amine bonding by charge density and energy decomposition analysis arguments.
Chemical science, 2018, 9, 3111-3121
1549004 CIFC20 H36 Li2 N6P 1 21/c 112.7937; 9.7101; 18.6728
90; 94.3121; 90
2313.12Engelhardt, Felix; Maaß, Christian; Andrada, Diego M.; Herbst-Irmer, Regine; Stalke, Dietmar
Benchmarking lithium amide <i>versus</i> amine bonding by charge density and energy decomposition analysis arguments.
Chemical science, 2018, 9, 3111-3121
1549005 CIFC40 H68 Li2 N6P 1 21/c 113.864; 30.46; 9.851
90; 105.18; 90
4014.9Engelhardt, Felix; Maaß, Christian; Andrada, Diego M.; Herbst-Irmer, Regine; Stalke, Dietmar
Benchmarking lithium amide <i>versus</i> amine bonding by charge density and energy decomposition analysis arguments.
Chemical science, 2018, 9, 3111-3121
1549006 CIF
HKL
Paper
C19 H18 N2 O2P 1 21/n 18.9229; 18.8922; 9.7147
90; 104.879; 90
1582.73Samba, Mohamed; Minnih, Mohamed Said; El Bakri, Youness; Essassi, El Mokhtar; Mague, Joel T.
A monoclinic modification of (4<i>Z</i>)-1-benzyl-4-(2-oxopropylidene)-2,3,4,5-tetrahydro-1<i>H</i>-1,5-benzodiazepin-2-one
IUCrData, 2018, 3, x180326
1549007 CIF
HKL
Paper
C10 H13 N OP n m a10.4838; 6.8965; 12.8538
90; 90; 90
929.35Bosch, Eric; Jeffries, Laura
1-(2-Amino-4,5-dimethylphenyl)ethanone
IUCrData, 2018, 3, x180313
1549008 CIFC20 H28 O4P 1 21 18.7269; 8.1173; 13.0392
90; 94.329; 90
921.05Remy, Simon; Olivon, Florent; Desrat, Sandy; Blanchard, Florent; Eparvier, Véronique; Leyssen, Pieter; Neyts, Johan; Roussi, Fanny; Touboul, David; Litaudon, Marc
Structurally Diverse Diterpenoids from Sandwithia guyanensis
Journal of Natural Products, 2018
1549009 CIFC20 H30 O4P 1 21 113.2449; 10.3812; 14.78
90; 93.224; 90
2029Remy, Simon; Olivon, Florent; Desrat, Sandy; Blanchard, Florent; Eparvier, Véronique; Leyssen, Pieter; Neyts, Johan; Roussi, Fanny; Touboul, David; Litaudon, Marc
Structurally Diverse Diterpenoids from Sandwithia guyanensis
Journal of Natural Products, 2018
1549010 CIFC41 H64 O9C 2 2 217.8136; 22.8068; 65.613
90; 90; 90
11692.4Remy, Simon; Olivon, Florent; Desrat, Sandy; Blanchard, Florent; Eparvier, Véronique; Leyssen, Pieter; Neyts, Johan; Roussi, Fanny; Touboul, David; Litaudon, Marc
Structurally Diverse Diterpenoids from Sandwithia guyanensis
Journal of Natural Products, 2018
1549011 CIFC27 H29 Cl F6 N2 P RhP 1 21/n 115.9555; 11.5878; 17.1391
90; 116.061; 90
2846.6Banerjee, Samya; Soldevila-Barreda, Joan J; Wolny, Juliusz A.; Wootton, Christopher A.; Habtemariam, Abraha; Romero-Canelón, Isolda; Chen, Feng; Clarkson, Guy J.; Prokes, Ivan; Song, Lijiang; O'Connor, Peter B; Schünemann, Volker; Sadler, Peter J.
New activation mechanism for half-sandwich organometallic anticancer complexes.
Chemical science, 2018, 9, 3177-3185
1549012 CIFC20 H23 Cl F6 N2 P RhP m n 2112.9507; 8.31; 10.5094
90; 90; 90
1131.02Banerjee, Samya; Soldevila-Barreda, Joan J; Wolny, Juliusz A.; Wootton, Christopher A.; Habtemariam, Abraha; Romero-Canelón, Isolda; Chen, Feng; Clarkson, Guy J.; Prokes, Ivan; Song, Lijiang; O'Connor, Peter B; Schünemann, Volker; Sadler, Peter J.
New activation mechanism for half-sandwich organometallic anticancer complexes.
Chemical science, 2018, 9, 3177-3185
1549013 CIFC31 H37 Cl F6 N2 O2 P RhP -18.51582; 13.5384; 14.2569
94.5969; 92.9146; 92.6758
1634.15Banerjee, Samya; Soldevila-Barreda, Joan J; Wolny, Juliusz A.; Wootton, Christopher A.; Habtemariam, Abraha; Romero-Canelón, Isolda; Chen, Feng; Clarkson, Guy J.; Prokes, Ivan; Song, Lijiang; O'Connor, Peter B; Schünemann, Volker; Sadler, Peter J.
New activation mechanism for half-sandwich organometallic anticancer complexes.
Chemical science, 2018, 9, 3177-3185
1549014 CIFC36 H35 Cl F6 N2 O P RhP -18.7508; 14.4955; 14.5101
84.91; 74.415; 82.382
1754.53Banerjee, Samya; Soldevila-Barreda, Joan J; Wolny, Juliusz A.; Wootton, Christopher A.; Habtemariam, Abraha; Romero-Canelón, Isolda; Chen, Feng; Clarkson, Guy J.; Prokes, Ivan; Song, Lijiang; O'Connor, Peter B; Schünemann, Volker; Sadler, Peter J.
New activation mechanism for half-sandwich organometallic anticancer complexes.
Chemical science, 2018, 9, 3177-3185
1549015 CIFC25 H28 F12 N3 O0.5 P2 RhP -19.84864; 10.1712; 16.1627
101.363; 90.9323; 109.801
1487.41Banerjee, Samya; Soldevila-Barreda, Joan J; Wolny, Juliusz A.; Wootton, Christopher A.; Habtemariam, Abraha; Romero-Canelón, Isolda; Chen, Feng; Clarkson, Guy J.; Prokes, Ivan; Song, Lijiang; O'Connor, Peter B; Schünemann, Volker; Sadler, Peter J.
New activation mechanism for half-sandwich organometallic anticancer complexes.
Chemical science, 2018, 9, 3177-3185
1549016 CIFC36 H39 Cl F6 N2 O P RhP 1 21/n 18.0233; 28.1842; 16.1096
90; 94.393; 90
3632.2Banerjee, Samya; Soldevila-Barreda, Joan J; Wolny, Juliusz A.; Wootton, Christopher A.; Habtemariam, Abraha; Romero-Canelón, Isolda; Chen, Feng; Clarkson, Guy J.; Prokes, Ivan; Song, Lijiang; O'Connor, Peter B; Schünemann, Volker; Sadler, Peter J.
New activation mechanism for half-sandwich organometallic anticancer complexes.
Chemical science, 2018, 9, 3177-3185
1549017 CIFC34 H35 Cl F6 N2 O P RhP -18.40215; 12.9603; 15.392
80; 86.442; 86.175
1644.79Banerjee, Samya; Soldevila-Barreda, Joan J; Wolny, Juliusz A.; Wootton, Christopher A.; Habtemariam, Abraha; Romero-Canelón, Isolda; Chen, Feng; Clarkson, Guy J.; Prokes, Ivan; Song, Lijiang; O'Connor, Peter B; Schünemann, Volker; Sadler, Peter J.
New activation mechanism for half-sandwich organometallic anticancer complexes.
Chemical science, 2018, 9, 3177-3185
1549018 CIFC28 H29 Cl F6 N2 O P RhP -18.20707; 10.08952; 17.2032
82.3397; 81.4575; 84.0175
1390.95Banerjee, Samya; Soldevila-Barreda, Joan J; Wolny, Juliusz A.; Wootton, Christopher A.; Habtemariam, Abraha; Romero-Canelón, Isolda; Chen, Feng; Clarkson, Guy J.; Prokes, Ivan; Song, Lijiang; O'Connor, Peter B; Schünemann, Volker; Sadler, Peter J.
New activation mechanism for half-sandwich organometallic anticancer complexes.
Chemical science, 2018, 9, 3177-3185
1549019 CIF
HKL
Paper
C10 H10 N2 O4 S2P 21 21 211.232; 12.283; 4.401
90; 90; 90
607.2Lynch, Will; Padgett, Clifford W.
2,2′-Disulfanediylbis(pyridine N-oxide)‒hydrogen peroxide (1/1)
IUCrData, 2018, 3
1549020 CIFC27 H20 N2 O3 SP 1 21/c 112.6727; 15.398; 11.9061
90; 110.633; 90
2174.3Roy, Bibhisan; Reddy, Mallu Chenna; Hazra, Partha
Developing the structure-property relationship to design solid state multi-stimuli responsive materials and their potential applications in different fields.
Chemical science, 2018, 9, 3592-3606
1549021 CIFC15 H11 N O3 SP -17.089; 7.256; 13.569
85.46; 77.9; 70.37
642.8Roy, Bibhisan; Reddy, Mallu Chenna; Hazra, Partha
Developing the structure-property relationship to design solid state multi-stimuli responsive materials and their potential applications in different fields.
Chemical science, 2018, 9, 3592-3606
1549022 CIFC27 H18 N2 O3 SC 1 2 125.719; 7.5368; 11.759
90; 116.39; 90
2041.8Roy, Bibhisan; Reddy, Mallu Chenna; Hazra, Partha
Developing the structure-property relationship to design solid state multi-stimuli responsive materials and their potential applications in different fields.
Chemical science, 2018, 9, 3592-3606
1549023 CIFC17 H16 N2 O3 SP 1 21/n 18.172; 9.666; 20.305
90; 99.512; 90
1581.9Roy, Bibhisan; Reddy, Mallu Chenna; Hazra, Partha
Developing the structure-property relationship to design solid state multi-stimuli responsive materials and their potential applications in different fields.
Chemical science, 2018, 9, 3592-3606
1549024 CIFC27 H22 N2 OP -19.904; 9.9455; 11.4559
107.381; 98.533; 111.288
960.64Shivraj, ?; Siddlingeshwar, B.; Kirilova, Elena M.; Belyakov, Sergey V.; Divakar, Darshan Devang; Alkheraif, Abdulaziz Abdullah
Photophysical properties of benzanthrone derivatives: effect of substituent, solvent polarity and hydrogen bonding.
Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology, 2018, 17, 453-464
1549025 CIFC32 H40 N4 O3P -110.3648; 11.5481; 12.5472
81.87; 77.716; 87.248
1452.4Molla, Habib Ali; Bhowmick, Rahul; Islam, Abu Saleh Musha; Show, Bibhutibhushan; Mukherjee, Nillohit; Mondal, Anup; Ali, Mahammad
A turn-on fluorogenic chemosensor for Fe<sup>3+</sup> and a Schottky barrier diode with frequency-switching device applications.
Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology, 2018, 17, 465-473
1549026 CIFC159 H132 N23 O29 Zn6P 1 21/n 116.255; 18.811; 23.568
90; 93.435; 90
7194Kim, Hyun-Chul; Huh, Seong; Lee, Do Nam; Kim, Youngmee
Selective carbon dioxide sorption by a new breathing three-dimensional Zn-MOF with Lewis basic nitrogen-rich channels.
Dalton transactions (Cambridge, England : 2003), 2018, 47, 4820-4826
1549027 CIFC48 H30 N6 O8 Zn2P -110.7074; 14.8797; 15.0461
112.453; 94.452; 108.095
2052.7Kim, Hyun-Chul; Huh, Seong; Lee, Do Nam; Kim, Youngmee
Selective carbon dioxide sorption by a new breathing three-dimensional Zn-MOF with Lewis basic nitrogen-rich channels.
Dalton transactions (Cambridge, England : 2003), 2018, 47, 4820-4826
1549028 CIFC23 H26 Br2 O2P 21 21 217.5979; 14.0001; 19.629
90; 90; 90
2088Chang, Shirui; Wang, Lei; Lin, Xufeng
Synthesis and application of a new hexamethyl-1,1'-spirobiindane-based chiral bisphosphine (HMSI-PHOS) ligand in asymmetric allylic alkylation.
Organic & biomolecular chemistry, 2018, 16, 2239-2247
1549029 CIFC86 H162 Co Cr7 F8 N O33I 419.9066; 19.9066; 16.1991
90; 90; 90
6419.3Garlatti, Elena; Guidi, Tatiana; Chiesa, Alessandro; Ansbro, Simon; Baker, Michael L.; Ollivier, Jacques; Mutka, Hannu; Timco, Grigore A.; Vitorica-Yrezabal, Inigo; Pavarini, Eva; Santini, Paolo; Amoretti, Giuseppe; Winpenny, Richard E. P.; Carretta, Stefano
Anisotropy of Co<sup>II</sup> transferred to the Cr<sub>7</sub>Co polymetallic cluster <i>via</i> strong exchange interactions.
Chemical science, 2018, 9, 3555-3562
1549030 CIFC15 H20 O3P 21 21 26.83018; 26.1293; 7.49108
90; 90; 90
1336.92Zhang, Chen; Wen, Ran; Ma, Xiao-Li; Zeng, Ke-Wu; Xue, Yang; Zhang, Pu-Ming; Zhao, Ming-Bo; Jiang, Yong; Liu, Guo-Qing; Tu, Peng-Fei
Nitric Oxide Inhibitory Sesquiterpenoids and Its Dimers from Artemisia freyniana.
Journal of natural products, 2018
1549031 CIFC16 H16 N4 OP 1 21/n 16.812; 22.167; 9.4317
90; 91.2974; 90
1423.8Meisner, Quinton J.; Accardo, Joseph V.; Hu, Guoxiang; Clark, Ronald J.; Jiang, De-En; Zhu, Lei
Fluorescence of Hydroxyphenyl-Substituted "Click" Triazoles.
The journal of physical chemistry. A, 2018, 122, 2956-2973
1549032 CIFC16 H16 N4 OP b c a7.6447; 13.1287; 29.1836
90; 90; 90
2929.01Meisner, Quinton J.; Accardo, Joseph V.; Hu, Guoxiang; Clark, Ronald J.; Jiang, De-En; Zhu, Lei
Fluorescence of Hydroxyphenyl-Substituted "Click" Triazoles.
The journal of physical chemistry. A, 2018, 122, 2956-2973
1549033 CIFC H5 Br3 N2 PbR -3 :H8.347; 8.347; 10.218
90; 90; 120
616.53Govinda, Sharada; Kore, Bhushan P.; Swain, Diptikanta; Hossain, Akmal; De, Chandan; Guru Row, Tayur N.; Sarma, D. D.
Critical Comparison of FAPbX3 and MAPbX3 (X = Br and Cl): How Do They Differ?
The Journal of Physical Chemistry C, 2018
1549034 CIFC H5 Cl3 N2 PbP m -3 m5.7379; 5.7379; 5.7379
90; 90; 90
188.912Govinda, Sharada; Kore, Bhushan P.; Swain, Diptikanta; Hossain, Akmal; De, Chandan; Guru Row, Tayur N.; Sarma, D. D.
Critical Comparison of FAPbX3 and MAPbX3 (X = Br and Cl): How Do They Differ?
The Journal of Physical Chemistry C, 2018
1549035 CIFC3 H6 N3 O10 PP 1 21/c 112.37; 8.1257; 9.943
90; 97.638; 90
990.6Manner, Virginia W.; Cawkwell, Marc J.; Kober, Edward M.; Myers, Thomas W.; Brown, Geoff W.; Tian, Hongzhao; Snyder, Christopher J.; Perriot, Romain; Preston, Daniel N.
Examining the chemical and structural properties that influence the sensitivity of energetic nitrate esters.
Chemical science, 2018, 9, 3649-3663
1549036 CIFC4 H7 N3 O9P -17.6451; 7.8238; 8.9723
100.557; 96.753; 114.76
467.59Manner, Virginia W.; Cawkwell, Marc J.; Kober, Edward M.; Myers, Thomas W.; Brown, Geoff W.; Tian, Hongzhao; Snyder, Christopher J.; Perriot, Romain; Preston, Daniel N.
Examining the chemical and structural properties that influence the sensitivity of energetic nitrate esters.
Chemical science, 2018, 9, 3649-3663
1549037 CIF
HKL
Paper
C16 H14 N2 OP -17.3502; 17.3508; 17.9449
118.226; 100.042; 92.294
1965.63Ramli, Youssef; El Bakri, Youness; El Ghayati, L'houssaine; Essassi, El Mokhtar; Mague, Joel T.
1-Benzyl-3-methylquinoxalin-2(1<i>H</i>)-one
IUCrData, 2018, 3, x180390
1549038 CIF
HKL
Paper
C13 H18 F N O5P 1 21 110.561; 5.156; 12.504
90; 90.606; 90
680.8Mossine, Valeri V.; Barnes, Charles L.; Mawhinney, Thomas P.
1-Deoxy-1-(<i>N</i>-methyl-4-fluorophenylamino)-<small>D</small>-<i>arabino</i>-hexulose
IUCrData, 2018, 3, x180369
1549039 CIFO4 Si Zn2I m m a5.73982; 11.50723; 8.39608
90; 90; 90
554.556Kanzaki, M.
Crystal structures of Zn2GeO4 cubic/tetragonal spinel and Zn2SiO4 modified spinel phases
Journal of Mineralogical and Petrological Sciences, 2018, 113, 41-46
1549040 CIFGe O4 Zn2F d -3 m :18.35436; 8.35436; 8.35436
90; 90; 90
583.095Kanzaki, M.
Crystal structures of Zn2GeO4 cubic/tetragonal spinel and Zn2SiO4 modified spinel phases
Journal of Mineralogical and Petrological Sciences, 2018, 113, 41-46
1549041 CIFGe O4 Zn2P 43 2 25.93787; 5.93787; 8.25629
90; 90; 90
291.103Kanzaki, M.
Crystal structures of Zn2GeO4 cubic/tetragonal spinel and Zn2SiO4 modified spinel phases
Journal of Mineralogical and Petrological Sciences, 2018, 113, 41-46
1549042 CIFC17 H19 B F4 N2 OP 1 21/c 119.5805; 9.7595; 8.9644
90; 103.158; 90
1668.08Nievergelt, Philipp P.; Babor, Martin; Čejka, Jan; Spingler, Bernhard
A high throughput screening method for the nano-crystallization of salts of organic cations.
Chemical science, 2018, 9, 3716-3722
1549043 CIFC31 H35 B N2 OP 21 21 219.49835; 11.89113; 22.8675
90; 90; 90
2582.8Nievergelt, Philipp P.; Babor, Martin; Čejka, Jan; Spingler, Bernhard
A high throughput screening method for the nano-crystallization of salts of organic cations.
Chemical science, 2018, 9, 3716-3722
1549044 CIFC10 H16 I N OP 1 21 15.40542; 6.94898; 16.0701
90; 95.864; 90
600.47Nievergelt, Philipp P.; Babor, Martin; Čejka, Jan; Spingler, Bernhard
A high throughput screening method for the nano-crystallization of salts of organic cations.
Chemical science, 2018, 9, 3716-3722
1549045 CIFC40 H66 Cl2 N10 O16I 1 2/a 115.1489; 13.2904; 24.594
90; 97.293; 90
4911.6Nievergelt, Philipp P.; Babor, Martin; Čejka, Jan; Spingler, Bernhard
A high throughput screening method for the nano-crystallization of salts of organic cations.
Chemical science, 2018, 9, 3716-3722
1549046 CIFC17 H19 Cl N2 OP 1 21/c 118.7661; 8.8339; 9.6084
90; 100.318; 90
1567.1Nievergelt, Philipp P.; Babor, Martin; Čejka, Jan; Spingler, Bernhard
A high throughput screening method for the nano-crystallization of salts of organic cations.
Chemical science, 2018, 9, 3716-3722
1549047 CIFC19 H26 Cl N5 O3P 1 21/c 17.10113; 13.625; 20.6821
90; 91.5054; 90
2000.36Nievergelt, Philipp P.; Babor, Martin; Čejka, Jan; Spingler, Bernhard
A high throughput screening method for the nano-crystallization of salts of organic cations.
Chemical science, 2018, 9, 3716-3722
1549048 CIFC22 H32 N2 O6C 1 2 113.5545; 5.84781; 14.1657
90; 110.071; 90
1054.64Nievergelt, Philipp P.; Babor, Martin; Čejka, Jan; Spingler, Bernhard
A high throughput screening method for the nano-crystallization of salts of organic cations.
Chemical science, 2018, 9, 3716-3722
1549049 CIFC14 H18 F18 K N3 P2 SP 1 21/c 124.3732; 10.4084; 9.9932
90; 93.1701; 90
2531.26Nievergelt, Philipp P.; Babor, Martin; Čejka, Jan; Spingler, Bernhard
A high throughput screening method for the nano-crystallization of salts of organic cations.
Chemical science, 2018, 9, 3716-3722
1549050 CIFC34 H42 N4 O8 SP 1 21 18.6454; 9.463; 20.0392
90; 96.753; 90
1628.06Nievergelt, Philipp P.; Babor, Martin; Čejka, Jan; Spingler, Bernhard
A high throughput screening method for the nano-crystallization of salts of organic cations.
Chemical science, 2018, 9, 3716-3722
1549051 CIFC17 H21 N2 O5 PP 1 21/c 120.7561; 9.5134; 8.5352
90; 96.5078; 90
1674.51Nievergelt, Philipp P.; Babor, Martin; Čejka, Jan; Spingler, Bernhard
A high throughput screening method for the nano-crystallization of salts of organic cations.
Chemical science, 2018, 9, 3716-3722
1549052 CIFC14 H18 Br F6 N3 SP 1 21/c 110.9874; 14.2737; 23.2106
90; 90.2783; 90
3640.1Nievergelt, Philipp P.; Babor, Martin; Čejka, Jan; Spingler, Bernhard
A high throughput screening method for the nano-crystallization of salts of organic cations.
Chemical science, 2018, 9, 3716-3722
1549053 CIFC38 H48.7 N4 O11.35P 1 21 18.81; 9.7133; 21.7147
90; 100.169; 90
1829.03Nievergelt, Philipp P.; Babor, Martin; Čejka, Jan; Spingler, Bernhard
A high throughput screening method for the nano-crystallization of salts of organic cations.
Chemical science, 2018, 9, 3716-3722
1549054 CIFC18 H19 N3 O SP 1 21/c 119.8981; 8.0213; 10.8806
90; 100.435; 90
1707.92Nievergelt, Philipp P.; Babor, Martin; Čejka, Jan; Spingler, Bernhard
A high throughput screening method for the nano-crystallization of salts of organic cations.
Chemical science, 2018, 9, 3716-3722
1549055 CIFC17 H19 I N2 OP 1 21/c 119.6674; 8.1224; 10.8447
90; 105.289; 90
1671.09Nievergelt, Philipp P.; Babor, Martin; Čejka, Jan; Spingler, Bernhard
A high throughput screening method for the nano-crystallization of salts of organic cations.
Chemical science, 2018, 9, 3716-3722
1549056 CIFC10 H16 I N OP 21 21 217.32726; 18.9411; 25.6662
90; 90; 90
3562.12Nievergelt, Philipp P.; Babor, Martin; Čejka, Jan; Spingler, Bernhard
A high throughput screening method for the nano-crystallization of salts of organic cations.
Chemical science, 2018, 9, 3716-3722
1549057 CIFC10 H16 Cl N OP 1 21 17.2565; 6.1232; 12.557
90; 102.256; 90
545.23Nievergelt, Philipp P.; Babor, Martin; Čejka, Jan; Spingler, Bernhard
A high throughput screening method for the nano-crystallization of salts of organic cations.
Chemical science, 2018, 9, 3716-3722
1549058 CIFC11 H16 N2 O SP 21 21 216.09862; 7.52704; 27.3811
90; 90; 90
1256.92Nievergelt, Philipp P.; Babor, Martin; Čejka, Jan; Spingler, Bernhard
A high throughput screening method for the nano-crystallization of salts of organic cations.
Chemical science, 2018, 9, 3716-3722
1549059 CIFC42 H46 N4 O16 Sb2C 1 2 122.3684; 8.4156; 15.6852
90; 130.585; 90
2242.36Nievergelt, Philipp P.; Babor, Martin; Čejka, Jan; Spingler, Bernhard
A high throughput screening method for the nano-crystallization of salts of organic cations.
Chemical science, 2018, 9, 3716-3722
1549060 CIFC31 H35 B N2 OP 1 21/n 110.1433; 18.6189; 14.0467
90; 99.569; 90
2615.91Nievergelt, Philipp P.; Babor, Martin; Čejka, Jan; Spingler, Bernhard
A high throughput screening method for the nano-crystallization of salts of organic cations.
Chemical science, 2018, 9, 3716-3722
1549061 CIFC10 H16 Br N OP 1 21 17.4467; 6.20961; 12.5863
90; 101.176; 90
570.97Nievergelt, Philipp P.; Babor, Martin; Čejka, Jan; Spingler, Bernhard
A high throughput screening method for the nano-crystallization of salts of organic cations.
Chemical science, 2018, 9, 3716-3722
1549062 CIFC36 H38 N4 O8P 1 21 19.0081; 9.3218; 19.4957
90; 95.351; 90
1629.95Nievergelt, Philipp P.; Babor, Martin; Čejka, Jan; Spingler, Bernhard
A high throughput screening method for the nano-crystallization of salts of organic cations.
Chemical science, 2018, 9, 3716-3722
1549063 CIFC19 H23 Cl I N5 OP 1 21/c 112.9279; 12.5457; 13.139
90; 109.843; 90
2004.48Nievergelt, Philipp P.; Babor, Martin; Čejka, Jan; Spingler, Bernhard
A high throughput screening method for the nano-crystallization of salts of organic cations.
Chemical science, 2018, 9, 3716-3722
1549064 CIFC35 H35 N4 O2P 1 21/c 119.675; 16.984; 8.859
90; 95.45; 90
2947Andrews, M. Crawford; Peng, Ping; Rajput, Amit; Cozzolino, Anthony F.
Modulation of the carboxamidine redox potential through photoinduced spiropyran or fulgimide isomerisation.
Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology, 2018, 17, 432-441
1549065 CIF
HKL
Paper
C14 H11 Br2 N O2P 1 21/n 116.7219; 6.90389; 23.0811
90; 99.502; 90
2628.07Pal, Tarun Kumar; Hossain, Md Dulal; Sheikh, Md Chanmiya; Miyatake, Ryuta; Alam, Md Ashraful
2,4-Dibromo-6-[(2-hydroxy-5-methylanilino)methylidene]cyclohexa-2,4-dienone
IUCrData, 2018, 3, x180388
1549066 CIF
HKL
Paper
C15 H21 N3 O2 SP c c n29.5823; 15.1971; 7.4303
90; 90; 90
3340.4Chaurasia, Rahul; Bharti, Akhilesh; Butcher, Ray J.; Wikaira, Jan L.; Bharty, Manoj K.
4-Cyclohexyl-1-(2-methoxybenzoyl)thiosemicarbazide with an unknown solvent
IUCrData, 2018, 3, x180383
1549067 CIFC18 H18.5 N4P 1 21/n 16.1903; 35.9841; 14.2498
90; 98.3233; 90
3140.7Bazley, Isabel J.; Erie, Ellen A.; Feiereisel, Garrett M.; LeWarne, Christopher J.; Peterson, Jack M.; Sandquist, Katherine L.; Oshin, Kayode D.; Zeller, Matthias
X-ray Crystallography Analysis of Complexes Synthesized with Tris(2-pyridylmethyl)amine: A Laboratory Experiment for Undergraduate Students Integrating Interdisciplinary Concepts and Techniques
Journal of Chemical Education, 2018
1549068 CIFC140.5 H113.5 Cl5.5 O1.5P -115.3025; 16.0955; 22.2445
94.998; 108.991; 92.221
5147.8Cruz, Carlos M.; Márquez, Irene R; Mariz, Inês F A; Blanco, Victor; Sánchez-Sánchez, Carlos; Sobrado, Jesús M; Martín-Gago, José A; Cuerva, Juan M.; Maçôas, Ermelinda; Campaña, Araceli G
Enantiopure distorted ribbon-shaped nanographene combining two-photon absorption-based upconversion and circularly polarized luminescence.
Chemical science, 2018, 9, 3917-3924
1549069 CIFC116 H103 F3 O4 SP -114.3675; 17.3718; 18.9206
67.525; 86.143; 89.598
4352.9Cruz, Carlos M.; Márquez, Irene R; Mariz, Inês F A; Blanco, Victor; Sánchez-Sánchez, Carlos; Sobrado, Jesús M; Martín-Gago, José A; Cuerva, Juan M.; Maçôas, Ermelinda; Campaña, Araceli G
Enantiopure distorted ribbon-shaped nanographene combining two-photon absorption-based upconversion and circularly polarized luminescence.
Chemical science, 2018, 9, 3917-3924
1549070 CIFC30 H38 O5P 21 21 216.2081; 19.8715; 20.2149
90; 90; 90
2493.8Chen, He-Ping; Zhao, Zhen-Zhu; Li, Zheng-Hui; Huang, Ying; Zhang, Shuai-Bing; Tang, Yang; Yao, Jian-Neng; Chen, Lin; Isaka, Masahiko; Feng, Tao; Liu, Ji-Kai
Antiproliferative and Anti-inflammatory Lanostane Triterpenoids from the Polish Edible Mushroom Macrolepiota procera.
Journal of agricultural and food chemistry, 2018
1549071 CIFC75 H175 Ag19 Au O24 P12 S24P 1 21/c 129.6903; 17.3784; 30.3868
90; 110.373; 90
14697.9Lin, Yan-Ru; Kishore, Pilli V. V. N.; Liao, Jian-Hong; Kahlal, Samia; Liu, Yu-Chiao; Chiang, Ming-Hsi; Saillard, Jean-Yves; Liu, C. W.
Synthesis, structural characterization and transformation of an eight-electron superatomic alloy, [Au@Ag<sub>19</sub>{S<sub>2</sub>P(OPr)<sub>2</sub>}<sub>12</sub>].
Nanoscale, 2018, 10, 6855-6860
1549072 CIFC75 H61 B Cl5 F4 O3 Os P3 S2P 1 21/c 124.7978; 14.1129; 20.1547
90; 96.645; 90
7006.1Lu, Zhengyu; Cai, Yuanting; Wei, Yuanqing; Lin, Qin; Chen, Jiangxi; He, Xumin; Li, Shunhua; Wu, Weitai; Xia, Haiping
Photothermal Möbius aromatic metallapentalenofuran and its NIR-responsive copolymer
Polymer Chemistry, 2018, 9, 2092
1549073 CIFC77 H59 B Cl F4 O3 Os P3 S3P -111.1803; 14.1709; 23.4379
76.653; 84.029; 69.337
3379.62Lu, Zhengyu; Cai, Yuanting; Wei, Yuanqing; Lin, Qin; Chen, Jiangxi; He, Xumin; Li, Shunhua; Wu, Weitai; Xia, Haiping
Photothermal Möbius aromatic metallapentalenofuran and its NIR-responsive copolymer
Polymer Chemistry, 2018, 9, 2092
1549074 CIF
HKL
Paper
C14 H7 Br2 N O2P n m a15.116; 6.8728; 12.7492
90; 90; 90
1324.5El-Hiti, Gamal A.; Smith, Keith; Alamri, Mesfer; Morris, Ceri A.; Kille, Peter; Kariuki, Benson M.
5-Bromo-1-(4-bromophenyl)isatin
IUCrData, 2018, 3, x180426
1549075 CIF
HKL
Paper
C24 H22 N4 O2 SP 1 21/c 16.2938; 10.9254; 31.229
90; 90.221; 90
2147.4El-Hiti, Gamal A.; Abdel-Wahab, Bakr F.; Khidre, Rizk E.; Mostafa, Mohamed S.; Hegazy, Amany S.; Kariuki, Benson M.
1-{2-Anilino-4-methyl-5-[5-methyl-1-(4-methylphenyl)-1<i>H</i>-1,2,3-triazole-4-carbonyl]thiophen-3-yl}ethanone
IUCrData, 2018, 3, x180402
1549076 CIF
HKL
Paper
C20 H18 N8 O2C 1 2/c 161.5399; 11.8988; 8.2661
90; 93.301; 90
6042.8El-Hiti, Gamal A.; Abdel-Wahab, Bakr F.; Mostafa, Mohamed S.; Khidre, Rizk E.; Hegazy, Amany S.; Kariuki, Benson M.
5-Methyl-<i>N</i>'-(5-methyl-1-phenyl-1<i>H</i>-1,2,3-triazole-4-carbonyl)-1-phenyl-1<i>H</i>-1,2,3-triazole-4-carbohydrazide
IUCrData, 2018, 3, x180424
1549077 CIFC21 H18 Cl N3P 21 313.484; 13.484; 13.484
90; 90; 90
2451.6Xu, Jiaxi; Liu, Jingjing; Li, Zhenjiang; Xu, Songquan; Wang, Haixin; Guo, Tianfo; Gao, Yu; Zhang, Lei; Zhang, Chan; Guo, Kai
Opposite-charge repulsive cation and anion pair cooperative organocatalysis in ring-opening polymerization
Polymer Chemistry, 2018, 9, 2183
1549078 CIFC36 H26 N2 O2P 1 21/c 129.8205; 8.8627; 25.1375
90; 110.05; 90
6241Zhang, Chang-Wei; Ou, Bo; Jiang, Shu-Ting; Yin, Guang-Qiang; Chen, Li-Jun; Xu, Lin; Li, Xiaopeng; Yang, Hai-Bo
Cross-linked AIE supramolecular polymer gels with multiple stimuli-responsive behaviours constructed by hierarchical self-assembly
Polymer Chemistry, 2018, 9, 2021
1549079 CIFC43 H29 N6 O4 RuP 1 21/c 112.139; 15.53; 24.301
90; 98.77; 90
4528Xiang, Wenjing; Li, Lin; Dai, Zengjin; Meng, Xianggao; Li, Renjie; Zhang, Jing; Peng, Tianyou
TiO2 modified with a Ru(ii)‒N′NN′ 8-hydroxyquinolyl complex for efficient gaseous photoreduction of CO2
Catalysis Science & Technology, 2018, 8, 2098
1549080 CIFC25 H15 N O2P 1 21/n 115.4892; 7.8471; 15.5804
90; 114.831; 90
1718.65Mu, Yingxiao; Yang, Zhiyong; Chen, Junru; Yang, Zhan; Li, Wenlang; Tan, Xianbao; Mao, Zhu; Yu, Tao; Zhao, Juan; Zheng, Shizhao; Liu, Siwei; Zhang, Yi; Chi, Zhenguo; Xu, Jiarui; Aldred, Matthew P.
Mechano-induced persistent room-temperature phosphorescence from purely organic molecules.
Chemical science, 2018, 9, 3782-3787
1549081 CIFC57 H83 B2 Li O4P c c n21.5605; 26.1802; 19.2608
90; 90; 90
10871.9Kaese, Thomas; Trageser, Timo; Budy, Hendrik; Bolte, Michael; Lerner, Hans-Wolfram; Wagner, Matthias
A redox-active diborane platform performs C(sp<sup>3</sup>)-H activation and nucleophilic substitution reactions.
Chemical science, 2018, 9, 3881-3891
1549082 CIFC56 H85 B2 Li O4P 1 21/n 110.7242; 21.4641; 24.027
90; 97.208; 90
5487Kaese, Thomas; Trageser, Timo; Budy, Hendrik; Bolte, Michael; Lerner, Hans-Wolfram; Wagner, Matthias
A redox-active diborane platform performs C(sp<sup>3</sup>)-H activation and nucleophilic substitution reactions.
Chemical science, 2018, 9, 3881-3891
1549083 CIFC44 H56 B2P -15.974; 14.639; 21.461
82.273; 89.91; 86.79
1856.8Kaese, Thomas; Trageser, Timo; Budy, Hendrik; Bolte, Michael; Lerner, Hans-Wolfram; Wagner, Matthias
A redox-active diborane platform performs C(sp<sup>3</sup>)-H activation and nucleophilic substitution reactions.
Chemical science, 2018, 9, 3881-3891
1549084 CIFC66 H98 B2 Li2 O7P 1 21/c 112.9451; 18.3459; 27.0962
90; 101.393; 90
6308.3Kaese, Thomas; Trageser, Timo; Budy, Hendrik; Bolte, Michael; Lerner, Hans-Wolfram; Wagner, Matthias
A redox-active diborane platform performs C(sp<sup>3</sup>)-H activation and nucleophilic substitution reactions.
Chemical science, 2018, 9, 3881-3891
1549085 CIFC53 H75 B2 Li O3P 1 21 114.775; 19.9973; 17.9098
90; 109.105; 90
5000.2Kaese, Thomas; Trageser, Timo; Budy, Hendrik; Bolte, Michael; Lerner, Hans-Wolfram; Wagner, Matthias
A redox-active diborane platform performs C(sp<sup>3</sup>)-H activation and nucleophilic substitution reactions.
Chemical science, 2018, 9, 3881-3891
1549086 CIFC61 H90 B2 Cl Li O8F d d 212.2698; 43.946; 21.961
90; 90; 90
11841.6Kaese, Thomas; Trageser, Timo; Budy, Hendrik; Bolte, Michael; Lerner, Hans-Wolfram; Wagner, Matthias
A redox-active diborane platform performs C(sp<sup>3</sup>)-H activation and nucleophilic substitution reactions.
Chemical science, 2018, 9, 3881-3891
1549087 CIFC63 H87 B2 Li O4P 1 21/c 119.497; 24.7864; 23.972
90; 92.463; 90
11574Kaese, Thomas; Trageser, Timo; Budy, Hendrik; Bolte, Michael; Lerner, Hans-Wolfram; Wagner, Matthias
A redox-active diborane platform performs C(sp<sup>3</sup>)-H activation and nucleophilic substitution reactions.
Chemical science, 2018, 9, 3881-3891
1549088 CIFC43 H54 B2P c a 2141.344; 14.272; 6.1349
90; 90; 90
3620Kaese, Thomas; Trageser, Timo; Budy, Hendrik; Bolte, Michael; Lerner, Hans-Wolfram; Wagner, Matthias
A redox-active diborane platform performs C(sp<sup>3</sup>)-H activation and nucleophilic substitution reactions.
Chemical science, 2018, 9, 3881-3891
1549089 CIFC70 H84 B2 OP -110.4041; 11.5484; 25.736
79.323; 85.313; 81.22
2998.51Kaese, Thomas; Trageser, Timo; Budy, Hendrik; Bolte, Michael; Lerner, Hans-Wolfram; Wagner, Matthias
A redox-active diborane platform performs C(sp<sup>3</sup>)-H activation and nucleophilic substitution reactions.
Chemical science, 2018, 9, 3881-3891
1549092 CIFC28 H34 N2 O4 SP -110.0007; 10.5374; 12.7404
102.821; 90.215; 102.549
1275.9Al Mousawi, Assi; Arar, Ahmad; Ibrahim-Ouali, Malika; Duval, Sylvain; Dumur, Frédéric; Garra, Patxi; Toufaily, Joumana; Hamieh, Tayssir; Graff, Bernadette; Gigmes, Didier; Fouassier, Jean-Pierre; Lalevée, Jacques
Carbazole-based compounds as photoinitiators for free radical and cationic polymerization upon near visible light illumination.
Photochemical & photobiological sciences : Official journal of the European Photochemistry Association and the European Society for Photobiology, 2018, 17, 578-585
1549093 CIFC30 H38 O7P 1 21/c 114.317; 8.341; 22.569
90; 98.276; 90
2667.1Niu, Sheng-Li; Li, Da-Hong; Li, Xin-Yu; Wang, Yue-Tong; Li, Sheng-Ge; Bai, Jiao; Pei, Yue-Hu; Jing, Yong-Kui; Li, Zhan-Lin; Hua, Hui-Ming
Bioassay- and Chemistry-Guided Isolation of Scalemic Caged Prenylxanthones from the Leaves of Garcinia bracteata
Journal of Natural Products, 2018
1549094 CIFC26 H32 O2 S2I 1 2/a 17.7604; 5.9132; 49.45
90; 95.879; 90
2257.3van der Lee, Arie; Roche, Gilles H.; Wantz, Guillaume; Moreau, Joël J E; Dautel, Olivier J.; Filhol, Jean-Sébastien
Experimental and theoretical evidence of a supercritical-like transition in an organic semiconductor presenting colossal uniaxial negative thermal expansion.
Chemical science, 2018, 9, 3948-3956
1549095 CIFC26 H32 O2 S2I 1 2/a 17.856; 5.8413; 49.561
90; 95.46; 90
2264van der Lee, Arie; Roche, Gilles H.; Wantz, Guillaume; Moreau, Joël J E; Dautel, Olivier J.; Filhol, Jean-Sébastien
Experimental and theoretical evidence of a supercritical-like transition in an organic semiconductor presenting colossal uniaxial negative thermal expansion.
Chemical science, 2018, 9, 3948-3956
1549096 CIFC26 H32 O2 S2I 1 2/a 18.0891; 5.7282; 49.849
90; 94.255; 90
2303.4van der Lee, Arie; Roche, Gilles H.; Wantz, Guillaume; Moreau, Joël J E; Dautel, Olivier J.; Filhol, Jean-Sébastien
Experimental and theoretical evidence of a supercritical-like transition in an organic semiconductor presenting colossal uniaxial negative thermal expansion.
Chemical science, 2018, 9, 3948-3956
1549097 CIFC26 H32 O2 S2I 1 2/a 17.9306; 5.8288; 49.645
90; 95.171; 90
2285.5van der Lee, Arie; Roche, Gilles H.; Wantz, Guillaume; Moreau, Joël J E; Dautel, Olivier J.; Filhol, Jean-Sébastien
Experimental and theoretical evidence of a supercritical-like transition in an organic semiconductor presenting colossal uniaxial negative thermal expansion.
Chemical science, 2018, 9, 3948-3956
1549098 CIFC26 H32 O2 S2I 1 2/a 17.9631; 5.8073; 49.723
90; 94.85; 90
2291.2van der Lee, Arie; Roche, Gilles H.; Wantz, Guillaume; Moreau, Joël J E; Dautel, Olivier J.; Filhol, Jean-Sébastien
Experimental and theoretical evidence of a supercritical-like transition in an organic semiconductor presenting colossal uniaxial negative thermal expansion.
Chemical science, 2018, 9, 3948-3956
1549099 CIFC26 H32 O2 S2I 1 2/a 18.3546; 5.6236; 50.168
90; 93.146; 90
2353.5van der Lee, Arie; Roche, Gilles H.; Wantz, Guillaume; Moreau, Joël J E; Dautel, Olivier J.; Filhol, Jean-Sébastien
Experimental and theoretical evidence of a supercritical-like transition in an organic semiconductor presenting colossal uniaxial negative thermal expansion.
Chemical science, 2018, 9, 3948-3956
1549100 CIFC26 H32 O2 S2I 1 2/a 18.0248; 5.7688; 49.827
90; 94.591; 90
2299.3van der Lee, Arie; Roche, Gilles H.; Wantz, Guillaume; Moreau, Joël J E; Dautel, Olivier J.; Filhol, Jean-Sébastien
Experimental and theoretical evidence of a supercritical-like transition in an organic semiconductor presenting colossal uniaxial negative thermal expansion.
Chemical science, 2018, 9, 3948-3956
1549101 CIFC26 H32 O2 S2I 1 2/a 18.446; 5.58942; 50.2534
90; 92.829; 90
2369.48van der Lee, Arie; Roche, Gilles H.; Wantz, Guillaume; Moreau, Joël J E; Dautel, Olivier J.; Filhol, Jean-Sébastien
Experimental and theoretical evidence of a supercritical-like transition in an organic semiconductor presenting colossal uniaxial negative thermal expansion.
Chemical science, 2018, 9, 3948-3956
1549102 CIFC26 H32 O2 S2I 1 2/a 17.8186; 5.8811; 49.458
90; 95.762; 90
2262.7van der Lee, Arie; Roche, Gilles H.; Wantz, Guillaume; Moreau, Joël J E; Dautel, Olivier J.; Filhol, Jean-Sébastien
Experimental and theoretical evidence of a supercritical-like transition in an organic semiconductor presenting colossal uniaxial negative thermal expansion.
Chemical science, 2018, 9, 3948-3956
1549103 CIFC26 H32 O2 S2I 1 2/a 18.1615; 5.6918; 49.87
90; 93.819; 90
2311.5van der Lee, Arie; Roche, Gilles H.; Wantz, Guillaume; Moreau, Joël J E; Dautel, Olivier J.; Filhol, Jean-Sébastien
Experimental and theoretical evidence of a supercritical-like transition in an organic semiconductor presenting colossal uniaxial negative thermal expansion.
Chemical science, 2018, 9, 3948-3956
1549104 CIFC26 H32 O2 S2I 1 2/a 18.2606; 5.6541; 49.944
90; 93.621; 90
2328van der Lee, Arie; Roche, Gilles H.; Wantz, Guillaume; Moreau, Joël J E; Dautel, Olivier J.; Filhol, Jean-Sébastien
Experimental and theoretical evidence of a supercritical-like transition in an organic semiconductor presenting colossal uniaxial negative thermal expansion.
Chemical science, 2018, 9, 3948-3956
1549105 CIFC40 H53 O2 S4P 1 21/c 18.8413; 22.709; 27.979
90; 94.615; 90
5599.3McDearmon, Brenden; Lim, Eunhee; Lee, In-Hwan; Kozycz, Lisa M.; O’Hara, Kathryn; Robledo, P. Isaac; Venkatesan, Naveen R.; Chabinyc, Michael L.; Hawker, Craig J.
Effects of Side-Chain Topology on Aggregation of Conjugated Polymers
Macromolecules, 2018, 51, 2580
1549106 CIFC20 H24 O2 S2P -19.3989; 17.981; 27.49
103.638; 92.242; 96.035
4480McDearmon, Brenden; Lim, Eunhee; Lee, In-Hwan; Kozycz, Lisa M.; O’Hara, Kathryn; Robledo, P. Isaac; Venkatesan, Naveen R.; Chabinyc, Michael L.; Hawker, Craig J.
Effects of Side-Chain Topology on Aggregation of Conjugated Polymers
Macromolecules, 2018, 51, 2580
1549107 CIFC30 H60 Br2 F4 Ni2 P4P -111.059; 12.1681; 15.1847
75.96; 89.526; 89.997
1982.25Thangavadivale, Vargini; Aguiar, Pedro M.; Jasim, Naseralla A.; Pike, Sarah J.; Smith, Dan A.; Whitwood, Adrian C.; Brammer, Lee; Perutz, Robin N.
Self-complementary nickel halides enable multifaceted comparisons of intermolecular halogen bonds: fluoride ligands <i>vs.</i> other halides.
Chemical science, 2018, 9, 3767-3781
1549108 CIFC18 H30 F5 I Ni P2I 1 2 18.0074; 11.3665; 12.9665
90; 94.616; 90
1176.33Thangavadivale, Vargini; Aguiar, Pedro M.; Jasim, Naseralla A.; Pike, Sarah J.; Smith, Dan A.; Whitwood, Adrian C.; Brammer, Lee; Perutz, Robin N.
Self-complementary nickel halides enable multifaceted comparisons of intermolecular halogen bonds: fluoride ligands <i>vs.</i> other halides.
Chemical science, 2018, 9, 3767-3781
1549109 CIFC18 H30 F5 I Ni P2I 1 2 17.8675; 11.3291; 12.9347
90; 94.392; 90
1149.51Thangavadivale, Vargini; Aguiar, Pedro M.; Jasim, Naseralla A.; Pike, Sarah J.; Smith, Dan A.; Whitwood, Adrian C.; Brammer, Lee; Perutz, Robin N.
Self-complementary nickel halides enable multifaceted comparisons of intermolecular halogen bonds: fluoride ligands <i>vs.</i> other halides.
Chemical science, 2018, 9, 3767-3781
1549110 CIFC18 H30 F4 Ni P2P 43 21 28.13398; 8.13398; 31.6136
90; 90; 90
2091.61Thangavadivale, Vargini; Aguiar, Pedro M.; Jasim, Naseralla A.; Pike, Sarah J.; Smith, Dan A.; Whitwood, Adrian C.; Brammer, Lee; Perutz, Robin N.
Self-complementary nickel halides enable multifaceted comparisons of intermolecular halogen bonds: fluoride ligands <i>vs.</i> other halides.
Chemical science, 2018, 9, 3767-3781
1549111 CIFC18 H30 F4 I2 Ni P2C m c 2112.6196; 14.8011; 13.2994
90; 90; 90
2484.11Thangavadivale, Vargini; Aguiar, Pedro M.; Jasim, Naseralla A.; Pike, Sarah J.; Smith, Dan A.; Whitwood, Adrian C.; Brammer, Lee; Perutz, Robin N.
Self-complementary nickel halides enable multifaceted comparisons of intermolecular halogen bonds: fluoride ligands <i>vs.</i> other halides.
Chemical science, 2018, 9, 3767-3781

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