Crystallography Open Database

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1547705 CIFC39 H23 Cl8 Dy N5 Na O5P 1 21/c 19.9819; 19.8256; 20.6783
90; 91.212; 90
4091.26Miralles, Sara G.; Bedoya-Pinto, Amilcar; Baldoví, José J; Cañon-Mancisidor, Walter; Prado, Yoann; Prima-Garcia, Helena; Gaita-Ariño, Alejandro; Mínguez Espallargas, Guillermo; Hueso, Luis E.; Coronado, Eugenio
Sublimable chloroquinolinate lanthanoid single-ion magnets deposited on ferromagnetic electrodes.
Chemical science, 2018, 9, 199-208
1547706 CIFC84 H58 Cl16 Dy2 K N11 O8P -115.8989; 16.0286; 19.542
98.384; 91.201; 118.115
4322.5Miralles, Sara G.; Bedoya-Pinto, Amilcar; Baldoví, José J; Cañon-Mancisidor, Walter; Prado, Yoann; Prima-Garcia, Helena; Gaita-Ariño, Alejandro; Mínguez Espallargas, Guillermo; Hueso, Luis E.; Coronado, Eugenio
Sublimable chloroquinolinate lanthanoid single-ion magnets deposited on ferromagnetic electrodes.
Chemical science, 2018, 9, 199-208
1547707 CIFC44 H36 Cl8 Dy N5 O4C 1 2/c 136.1061; 11.5705; 22.7831
90; 109.429; 90
8976Miralles, Sara G.; Bedoya-Pinto, Amilcar; Baldoví, José J; Cañon-Mancisidor, Walter; Prado, Yoann; Prima-Garcia, Helena; Gaita-Ariño, Alejandro; Mínguez Espallargas, Guillermo; Hueso, Luis E.; Coronado, Eugenio
Sublimable chloroquinolinate lanthanoid single-ion magnets deposited on ferromagnetic electrodes.
Chemical science, 2018, 9, 199-208
1547767 CIFC36 Al F30 N3P -110.86; 12.7006; 14.3671
73.501; 72.779; 89.315
1809.2Kögel, J F; Sorokin, D. A.; Khvorost, A.; Scott, M.; Harms, K.; Himmel, D.; Krossing, I.; Sundermeyer, J.
The Lewis superacid Al[N(C<sub>6</sub>F<sub>5</sub>)<sub>2</sub>]<sub>3</sub> and its higher homolog Ga[N(C<sub>6</sub>F<sub>5</sub>)<sub>2</sub>]<sub>3</sub> - structural features, theoretical investigation and reactions of a metal amide with higher fluoride ion affinity than SbF<sub>5</sub>.
Chemical science, 2018, 9, 245-253
1547768 CIFC105 H31 Al2 F62 Li N6P -114.4989; 18.051; 21.909
84.427; 73.249; 67.033
5054.7Kögel, J F; Sorokin, D. A.; Khvorost, A.; Scott, M.; Harms, K.; Himmel, D.; Krossing, I.; Sundermeyer, J.
The Lewis superacid Al[N(C<sub>6</sub>F<sub>5</sub>)<sub>2</sub>]<sub>3</sub> and its higher homolog Ga[N(C<sub>6</sub>F<sub>5</sub>)<sub>2</sub>]<sub>3</sub> - structural features, theoretical investigation and reactions of a metal amide with higher fluoride ion affinity than SbF<sub>5</sub>.
Chemical science, 2018, 9, 245-253
1547769 CIFC36 F30 Ga N3P 1 21/c 17.9908; 20.611; 22.8236
90; 108.292; 90
3569.1Kögel, J F; Sorokin, D. A.; Khvorost, A.; Scott, M.; Harms, K.; Himmel, D.; Krossing, I.; Sundermeyer, J.
The Lewis superacid Al[N(C<sub>6</sub>F<sub>5</sub>)<sub>2</sub>]<sub>3</sub> and its higher homolog Ga[N(C<sub>6</sub>F<sub>5</sub>)<sub>2</sub>]<sub>3</sub> - structural features, theoretical investigation and reactions of a metal amide with higher fluoride ion affinity than SbF<sub>5</sub>.
Chemical science, 2018, 9, 245-253
1547770 CIFC57 H24 Al Cs F31 N3P 1 21/c 113.0294; 26.0373; 16.8481
90; 92.421; 90
5710.6Kögel, J F; Sorokin, D. A.; Khvorost, A.; Scott, M.; Harms, K.; Himmel, D.; Krossing, I.; Sundermeyer, J.
The Lewis superacid Al[N(C<sub>6</sub>F<sub>5</sub>)<sub>2</sub>]<sub>3</sub> and its higher homolog Ga[N(C<sub>6</sub>F<sub>5</sub>)<sub>2</sub>]<sub>3</sub> - structural features, theoretical investigation and reactions of a metal amide with higher fluoride ion affinity than SbF<sub>5</sub>.
Chemical science, 2018, 9, 245-253
1547771 CIFC125 H52 As2 Cl2 F60 Ga2 N6P -111.2887; 13.9044; 20.9274
98.126; 103.279; 111.821
2873Kögel, J F; Sorokin, D. A.; Khvorost, A.; Scott, M.; Harms, K.; Himmel, D.; Krossing, I.; Sundermeyer, J.
The Lewis superacid Al[N(C<sub>6</sub>F<sub>5</sub>)<sub>2</sub>]<sub>3</sub> and its higher homolog Ga[N(C<sub>6</sub>F<sub>5</sub>)<sub>2</sub>]<sub>3</sub> - structural features, theoretical investigation and reactions of a metal amide with higher fluoride ion affinity than SbF<sub>5</sub>.
Chemical science, 2018, 9, 245-253
1547772 CIFC13 H19 N OP 1 21/c 119.555; 6.165; 10.117
90; 98.628; 90
1205.9Gao, Bao; Zhang, Guoying; Zhou, Xibing; Huang, Hanmin
Palladium-catalyzed regiodivergent hydroaminocarbonylation of alkenes to primary amides with ammonium chloride.
Chemical science, 2018, 9, 380-386
1547773 CIFC9 H10 Cl N OC 1 2/c 127.159; 7.49; 9.539
90; 106.51; 90
1860.4Gao, Bao; Zhang, Guoying; Zhou, Xibing; Huang, Hanmin
Palladium-catalyzed regiodivergent hydroaminocarbonylation of alkenes to primary amides with ammonium chloride.
Chemical science, 2018, 9, 380-386
1547774 CIFC21 H36 Cl O P PdP -18.6745; 9.6624; 13.8499
86.795; 81.245; 81.324
1133.55Gao, Bao; Zhang, Guoying; Zhou, Xibing; Huang, Hanmin
Palladium-catalyzed regiodivergent hydroaminocarbonylation of alkenes to primary amides with ammonium chloride.
Chemical science, 2018, 9, 380-386
1547775 CIFC15 H15 N OP 1 21/c 112.295; 5.569; 18.014
90; 101.033; 90
1210.6Gao, Bao; Zhang, Guoying; Zhou, Xibing; Huang, Hanmin
Palladium-catalyzed regiodivergent hydroaminocarbonylation of alkenes to primary amides with ammonium chloride.
Chemical science, 2018, 9, 380-386
1547805 CIFC21 H19.5 N3 O0.5C 1 2/c 135.5176; 4.6594; 23.3989
90; 116.089; 90
3477.76Li, Wanfang; Boon, Jie Kang; Zhao, Yu
Nickel-catalyzed difunctionalization of allyl moieties using organoboronic acids and halides with divergent regioselectivities.
Chemical science, 2018, 9, 600-607
1547835 CIFC19 H20 O3P 21 21 218.3146; 11.1767; 16.4216
90; 90; 90
1526.06Joyce, Leo A.; Nawrat, Christopher C.; Sherer, Edward C.; Biba, Mirlinda; Brunskill, Andrew; Martin, Gary E.; Cohen, Ryan D.; Davies, Ian W.
Beyond optical rotation: what's left is not always right in total synthesis.
Chemical science, 2018, 9, 415-424
1547836 CIFC50 H34 Co Fe2 N14 O2C 1 2/c 127.352; 15.144; 13.336
90; 116.222; 90
4956Jiang, Wenjing; Jiao, Chengqi; Meng, Yinshan; Zhao, Liang; Liu, Qiang; Liu, Tao
Switching single chain magnet behavior <i>via</i> photoinduced bidirectional metal-to-metal charge transfer.
Chemical science, 2018, 9, 617-622
1547843 CIFC26 H22 F2 N2 O2P 1 21/c 18.3521; 12.418; 20.681
90; 97.923; 90
2124.5Lv, Zhuang; Wei, Huanjie; Li, Qing; Su, Xianlong; Liu, Shujuan; Zhang, Kenneth Yin; Lv, Wen; Zhao, Qiang; Li, Xianghong; Huang, Wei
Achieving efficient photodynamic therapy under both normoxia and hypoxia using cyclometalated Ru(ii) photosensitizer through type I photochemical process.
Chemical science, 2018, 9, 502-512
1547871 CIFC19 H24 N4 O SP 1 21/n 15.9414; 15.879; 19.207
90; 94.096; 90
1807.4Wei, Peng; Yuan, Wei; Xue, Fengfeng; Zhou, Wei; Li, Ruohan; Zhang, Datong; Yi, Tao
Deformylation reaction-based probe for <i>in vivo</i> imaging of HOCl.
Chemical science, 2018, 9, 495-501
1547872 CIFC17 H19 N3 O SP 1 21/c 116.166; 8.073; 12.176
90; 99.741; 90
1566.2Wei, Peng; Yuan, Wei; Xue, Fengfeng; Zhou, Wei; Li, Ruohan; Zhang, Datong; Yi, Tao
Deformylation reaction-based probe for <i>in vivo</i> imaging of HOCl.
Chemical science, 2018, 9, 495-501
1547877 CIFC30 H26 Eu F9 O9 S3P 1 21/c 111.81; 16.5659; 18.388
90; 92.9627; 90
3592.68Babel, Lucille; Guénée, Laure; Besnard, Céline; Eliseeva, Svetlana V.; Petoud, Stéphane; Piguet, Claude
Cooperative loading of multisite receptors with lanthanide containers: an approach for organized luminescent metallopolymers.
Chemical science, 2018, 9, 325-335
1547878 CIFC30 H26 F9 O9 S3 YP 1 21/c 110.5124; 18.3614; 18.9788
90; 98.264; 90
3625.29Babel, Lucille; Guénée, Laure; Besnard, Céline; Eliseeva, Svetlana V.; Petoud, Stéphane; Piguet, Claude
Cooperative loading of multisite receptors with lanthanide containers: an approach for organized luminescent metallopolymers.
Chemical science, 2018, 9, 325-335
1547879 CIFC72 H46 Cl2 Eu F24 N5 O6P 1 21/n 113.7492; 20.1925; 25.829
90; 90.402; 90
7170.7Babel, Lucille; Guénée, Laure; Besnard, Céline; Eliseeva, Svetlana V.; Petoud, Stéphane; Piguet, Claude
Cooperative loading of multisite receptors with lanthanide containers: an approach for organized luminescent metallopolymers.
Chemical science, 2018, 9, 325-335
1547880 CIFC36 H17 Eu F24 O9P 1 21/c 18.38538; 27.3868; 18.8875
90; 102.271; 90
4238.4Babel, Lucille; Guénée, Laure; Besnard, Céline; Eliseeva, Svetlana V.; Petoud, Stéphane; Piguet, Claude
Cooperative loading of multisite receptors with lanthanide containers: an approach for organized luminescent metallopolymers.
Chemical science, 2018, 9, 325-335
1547881 CIFC19 H19 Br N2 NiP 1 21/c 18.4028; 11.9498; 17.1489
90; 94.163; 90
1717.4Jia, Xue-Gong; Guo, Peng; Duan, Jicheng; Shu, Xing-Zhong
Dual nickel and Lewis acid catalysis for cross-electrophile coupling: the allylation of aryl halides with allylic alcohols.
Chemical science, 2018, 9, 640-645
1547882 CIFC22 H23 N O4P -18.7005; 10.2416; 11.4433
76.304; 83.414; 75.816
958.74Liu, Kai; Xu, Guangyang; Sun, Jiangtao
Gold-catalyzed stereoselective dearomatization/metal-free aerobic oxidation: access to 3-substituted indolines/oxindoles.
Chemical science, 2018, 9, 634-639
1547883 CIFC20 H23 N O6P 1 21/c 15.9171; 24.525; 13.126
90; 95.432; 90
1896.3Liu, Kai; Xu, Guangyang; Sun, Jiangtao
Gold-catalyzed stereoselective dearomatization/metal-free aerobic oxidation: access to 3-substituted indolines/oxindoles.
Chemical science, 2018, 9, 634-639
1547884 CIFC25 H23 N O4P 1 21/c 110.5469; 20.177; 10.7298
90; 114.01; 90
2085.8Liu, Kai; Xu, Guangyang; Sun, Jiangtao
Gold-catalyzed stereoselective dearomatization/metal-free aerobic oxidation: access to 3-substituted indolines/oxindoles.
Chemical science, 2018, 9, 634-639
1547885 CIFC24 H21 N O4C 1 2/c 123.476; 10.1603; 18.561
90; 118.836; 90
3878.3Liu, Kai; Xu, Guangyang; Sun, Jiangtao
Gold-catalyzed stereoselective dearomatization/metal-free aerobic oxidation: access to 3-substituted indolines/oxindoles.
Chemical science, 2018, 9, 634-639
1547942 CIFC24 H23 N O6P 1 21 110.5132; 9.6837; 10.8056
90; 93.347; 90
1098.21Kuang, Yulong; Shen, Bin; Dai, Li; Yao, Qian; Liu, Xiaohua; Lin, Lili; Feng, Xiaoming
Diastereodivergent asymmetric Michael-alkylation reactions using chiral <i>N</i>,<i>N</i>'-dioxide/metal complexes.
Chemical science, 2018, 9, 688-692
1547943 CIFC24 H23 N O6P 1 21 16.6941; 8.926; 18.2322
90; 92.895; 90
1088.01Kuang, Yulong; Shen, Bin; Dai, Li; Yao, Qian; Liu, Xiaohua; Lin, Lili; Feng, Xiaoming
Diastereodivergent asymmetric Michael-alkylation reactions using chiral <i>N</i>,<i>N</i>'-dioxide/metal complexes.
Chemical science, 2018, 9, 688-692
1547944 CIFC19 H16 Cl N O4P 1 21/n 112.3416; 17.221; 16.8272
90; 95.88; 90
3557.55Kuang, Yulong; Shen, Bin; Dai, Li; Yao, Qian; Liu, Xiaohua; Lin, Lili; Feng, Xiaoming
Diastereodivergent asymmetric Michael-alkylation reactions using chiral <i>N</i>,<i>N</i>'-dioxide/metal complexes.
Chemical science, 2018, 9, 688-692
1548021 CIFC60 H76 Co3 N36 O8 W2P -111.91; 12.221; 15.587
69.947; 81.802; 66.513
1954.6Zhang, Yuan-Zhu; Dolinar, Brian S.; Liu, Shihao; Brown, Andrew J.; Zhang, Xuan; Wang, Zhao-Xi; Dunbar, Kim R.
Enforcing Ising-like magnetic anisotropy <i>via</i> trigonal distortion in the design of a W(v)-Co(ii) cyanide single-chain magnet.
Chemical science, 2018, 9, 119-124
1548053 CIFC26 H17 NP b c a8.2997; 33.2041; 12.4646
90; 90; 90
3435Suzuki, Tsuyoshi; Okada, Hiroshi; Nakagawa, Takafumi; Komatsu, Kazuki; Fujimoto, Chikako; Kagi, Hiroyuki; Matsuo, Yutaka
A fluorenylidene-acridane that becomes dark in color upon grinding - ground state mechanochromism by conformational change.
Chemical science, 2018, 9, 475-482
1548054 CIFC27 H19 NP 1 21/a 17.379; 22.716; 9.381
90; 111.14; 90
1466.6Suzuki, Tsuyoshi; Okada, Hiroshi; Nakagawa, Takafumi; Komatsu, Kazuki; Fujimoto, Chikako; Kagi, Hiroyuki; Matsuo, Yutaka
A fluorenylidene-acridane that becomes dark in color upon grinding - ground state mechanochromism by conformational change.
Chemical science, 2018, 9, 475-482
1548055 CIFC27 H19 NP 1 21/a 18.5137; 21.963; 9.8776
90; 104.406; 90
1788.9Suzuki, Tsuyoshi; Okada, Hiroshi; Nakagawa, Takafumi; Komatsu, Kazuki; Fujimoto, Chikako; Kagi, Hiroyuki; Matsuo, Yutaka
A fluorenylidene-acridane that becomes dark in color upon grinding - ground state mechanochromism by conformational change.
Chemical science, 2018, 9, 475-482
1548056 CIFC27 H19 NP 1 21 17.3384; 18.5774; 13.3299
90; 90.1024; 90
1817.24Suzuki, Tsuyoshi; Okada, Hiroshi; Nakagawa, Takafumi; Komatsu, Kazuki; Fujimoto, Chikako; Kagi, Hiroyuki; Matsuo, Yutaka
A fluorenylidene-acridane that becomes dark in color upon grinding - ground state mechanochromism by conformational change.
Chemical science, 2018, 9, 475-482
1548057 CIFC8 H F15 O2P -19.9639; 10.7932; 23.575
96.641; 90.839; 90.018
2518Omorodion, Harrison; Palenzuela, Miguel; Ruether, Manuel; Twamley, Brendan; Platts, James A.; Baker, Robert J.
A rationally designed perfluorinated host for the extraction of PFOA from water utilising non-covalent interactions
New Journal of Chemistry, 2018, 42, 7956
1548064 CIFC27 H24 Fe O3P 1 21/n 111.0994; 8.5265; 21.7146
90; 97.392; 90
2037.97Wang, Yong; Dansette, Patrick M.; Pigeon, Pascal; Top, Siden; McGlinchey, Michael J.; Mansuy, Daniel; Jaouen, Gérard
A new generation of ferrociphenols leads to a great diversity of reactive metabolites, and exhibits remarkable antiproliferative properties.
Chemical science, 2018, 9, 70-78
1548108 CIFB2 Ba3 O6P b a m13.5923; 13.6702; 14.8894
90; 90; 90
2766.59Bekker, Tatyana B.; Rashchenko, Sergey V.; Seryotkin, Yurii V.; Kokh, Alexander E.; Davydov, Aleksey V.; Fedorov, Pavel P.
BaO-B2O3 system and its mysterious member Ba3B2O6
Journal of the American Ceramic Society, 2018, 101, 450
1548110 CIFC14 H15 N O SP 1 21/c 117.7719; 8.1203; 19.0328
90; 110.633; 90
2570.5Šiaučiulis, Mindaugas; Sapmaz, Selma; Pulis, Alexander P.; Procter, David J.
Dual vicinal functionalisation of heterocycles <i>via</i> an interrupted Pummerer coupling/[3,3]-sigmatropic rearrangement cascade.
Chemical science, 2018, 9, 754-759
1548111 CIFC15 H17 N O SP -18.2973; 9.132; 9.7066
104.937; 100.291; 100.461
678.86Šiaučiulis, Mindaugas; Sapmaz, Selma; Pulis, Alexander P.; Procter, David J.
Dual vicinal functionalisation of heterocycles <i>via</i> an interrupted Pummerer coupling/[3,3]-sigmatropic rearrangement cascade.
Chemical science, 2018, 9, 754-759
1548112 CIF
Paper
C8 H8 Cd Cl2 N4 O2P 1 21/c 13.7833; 7.6139; 20.1473
90; 92.131; 90
579.96Daković, Marijana; Soldin, Željka; Kukovec, Boris-Marko; Kodrin, Ivan; Aakeröy, Christer B.; Baus, Nea; Rinkovec, Tamara
Building inorganic supramolecular architectures using principles adopted from the organic solid state
IUCrJ, 2018, 5
1548113 CIFC8 H8 Br2 Cd N4 O2P 1 21/c 13.9043; 7.718; 20.6142
90; 92.442; 90
620.61Daković, Marijana; Soldin, Željka; Kukovec, Boris-Marko; Kodrin, Ivan; Aakeröy, Christer B.; Baus, Nea; Rinkovec, Tamara
Building inorganic supramolecular architectures using principles adopted from the organic solid state
IUCrJ, 2018, 5
1548114 CIFC8 H8 Cd I2 N4 O2P 1 21/c 14.1497; 7.8783; 21.0091
90; 92.551; 90
686.16Daković, Marijana; Soldin, Željka; Kukovec, Boris-Marko; Kodrin, Ivan; Aakeröy, Christer B.; Baus, Nea; Rinkovec, Tamara
Building inorganic supramolecular architectures using principles adopted from the organic solid state
IUCrJ, 2018, 5
1548115 CIFC8 H8 Br2 Cd N4 O2P 1 21/n 13.884; 23.164; 7.0359
90; 93.712; 90
631.68Daković, Marijana; Soldin, Željka; Kukovec, Boris-Marko; Kodrin, Ivan; Aakeröy, Christer B.; Baus, Nea; Rinkovec, Tamara
Building inorganic supramolecular architectures using principles adopted from the organic solid state
IUCrJ, 2018, 5
1548116 CIFC8 H8 Cd I2 N4 O2P 1 21/c 14.0953; 7.8089; 21.7078
90; 92.307; 90
693.65Daković, Marijana; Soldin, Željka; Kukovec, Boris-Marko; Kodrin, Ivan; Aakeröy, Christer B.; Baus, Nea; Rinkovec, Tamara
Building inorganic supramolecular architectures using principles adopted from the organic solid state
IUCrJ, 2018, 5
1548117 CIFC16 H12 Br2 Cd N4 O2I 1 2/a 118.259; 3.867; 24.2737
90; 95.491; 90
1706.04Daković, Marijana; Soldin, Željka; Kukovec, Boris-Marko; Kodrin, Ivan; Aakeröy, Christer B.; Baus, Nea; Rinkovec, Tamara
Building inorganic supramolecular architectures using principles adopted from the organic solid state
IUCrJ, 2018, 5
1548118 CIFC16 H12 Cd I2 N4 O2I 1 2/a 119.7099; 6.8535; 13.631
90; 98.052; 90
1823.15Daković, Marijana; Soldin, Željka; Kukovec, Boris-Marko; Kodrin, Ivan; Aakeröy, Christer B.; Baus, Nea; Rinkovec, Tamara
Building inorganic supramolecular architectures using principles adopted from the organic solid state
IUCrJ, 2018, 5
1548131 CIFC44 H66 Ir2 N2 O4 P4P 1 21/n 114.6367; 11.0939; 14.9574
90; 93.785; 90
2423.5Cano, Israel; Martínez-Prieto, Luis M.; Vendier, Laure; van Leeuwen, Piet W. N. M.
An iridium‒SPO complex as bifunctional catalyst for the highly selective hydrogenation of aldehydes
Catalysis Science & Technology, 2018, 8, 221
1548132 CIFC44 H42 MnP 4310.52378; 10.52378; 30.7376
90; 90; 90
3404.19Sharpe, Helen R.; Geer, Ana M.; Blundell, Toby J.; Hastings, Fiona R.; Fay, Michael W.; Rance, Graham A.; Lewis, William; Blake, Alexander J.; Kays, Deborah L.
Dehydrocoupling of dimethylamine‒borane promoted by manganese(ii) m-terphenyl complexes
Catalysis Science & Technology, 2018, 8, 229
1548133 CIFC24 H27 Cl2 Co N7 O8C 1 2/c 127.9963; 10.5409; 19.1609
90; 100.453; 90
5560.7Leung, C.-F.; Cheng, S.-C.; Yang, Y.; Xiang, J.; Yiu, S.-M.; Ko, C.-C.; Lau, T.-C.
Efficient photocatalytic water reduction by a cobalt(ii) tripodal iminopyridine complex
Catalysis Science & Technology, 2018, 8, 307

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