Crystallography Open Database

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Searching year of publication is 2023

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1568219 CIFC27 H22 N2 OP 1 21/c 117.933; 5.7655; 20.387
90; 93.694; 90
2103.5Shukla, Rahul K.; Nair, Akshay M.; Volla, Chandra M. R.
Pd(ii)-catalyzed β- and γ-C-(sp<sup>3</sup>)-H dienylation with allenyl acetates.
Chemical science, 2023, 14, 955-962
1568220 CIFC H N O PdC 1 c 118.5183; 9.4082; 20.3888
90; 102.717; 90
3465.08Shukla, Rahul K.; Nair, Akshay M.; Volla, Chandra M. R.
Pd(ii)-catalyzed β- and γ-C-(sp<sup>3</sup>)-H dienylation with allenyl acetates.
Chemical science, 2023, 14, 955-962
1568221 CIFC18 H20 N4 O4P 15.189; 7.915; 10.643
80.745; 82.34; 88.94
427.6De, Soumi; Asthana, Deepak; Thirmal, Chinthakuntla; Keshri, Sudhir K.; Ghosh, Ram Krishna; Hundal, Geeta; Kumar, Raju; Singh, Satyendra; Chatterjee, Ratnamala; Mukhopadhyay, Pritam
A folded π-system with supramolecularly oriented dipoles: single-component piezoelectric relaxor with NLO activity.
Chemical science, 2023, 14, 2547-2552
1568222 CIFC320 H480 Cu75 S32P -123.6279; 23.6779; 23.8819
112.131; 119.538; 92.924
10292.9Tang, Jie; Liu, Chong; Zhu, Chenyu; Sun, Keju; Wang, He; Yin, Wen; Xu, Chuting; Li, Yang; Wang, Weiguo; Wang, Li; Wu, Renan; Liu, Chao; Huang, Jiahui
High-nuclearity and thiol protected core-shell [Cu<sub>75</sub>(S-Adm)<sub>32</sub>]<sup>2+</sup>: distorted octahedra fixed to Cu<sub>15</sub> core <i>via</i> strong cuprophilic interactions.
Nanoscale, 2023, 15, 2843-2848
1568224 CIFC18 H10 F4 S2P 1 21/n 115.5542; 5.6674; 18.576
90; 106.95; 90
1566.38Shen, Shen; Baryshnikov, Glib V.; Xie, Qishan; Wu, Bin; Lv, Meng; Sun, Hao; Li, Zhongyu; Ågren, Hans; Chen, Jinquan; Zhu, Liangliang
Making multi-twisted luminophores produce persistent room-temperature phosphorescence.
Chemical science, 2023, 14, 970-978
1568225 CIFC24 H18 F4 O4 S2P 1 21/n 14.812; 20.6876; 11.0963
90; 96.357; 90
1097.83Shen, Shen; Baryshnikov, Glib V.; Xie, Qishan; Wu, Bin; Lv, Meng; Sun, Hao; Li, Zhongyu; Ågren, Hans; Chen, Jinquan; Zhu, Liangliang
Making multi-twisted luminophores produce persistent room-temperature phosphorescence.
Chemical science, 2023, 14, 970-978
1568226 CIFC24 H18 F4 O4 S2P 1 21/n 14.8071; 20.699; 11.0964
90; 96.329; 90
1097.39Shen, Shen; Baryshnikov, Glib V.; Xie, Qishan; Wu, Bin; Lv, Meng; Sun, Hao; Li, Zhongyu; Ågren, Hans; Chen, Jinquan; Zhu, Liangliang
Making multi-twisted luminophores produce persistent room-temperature phosphorescence.
Chemical science, 2023, 14, 970-978
1568227 CIFC42 H30 S6P -19.6077; 10.2863; 10.6653
68.438; 76.888; 65.477
888.39Shen, Shen; Baryshnikov, Glib V.; Xie, Qishan; Wu, Bin; Lv, Meng; Sun, Hao; Li, Zhongyu; Ågren, Hans; Chen, Jinquan; Zhu, Liangliang
Making multi-twisted luminophores produce persistent room-temperature phosphorescence.
Chemical science, 2023, 14, 970-978
1568228 CIFC30 H20 F2 S4P -19.6203; 14.1325; 14.9666
76.293; 88.135; 88.84
1975.68Shen, Shen; Baryshnikov, Glib V.; Xie, Qishan; Wu, Bin; Lv, Meng; Sun, Hao; Li, Zhongyu; Ågren, Hans; Chen, Jinquan; Zhu, Liangliang
Making multi-twisted luminophores produce persistent room-temperature phosphorescence.
Chemical science, 2023, 14, 970-978
1568229 CIFC20 H14 F4 S2P 1 21/c 115.1661; 4.8806; 11.4983
90; 93.913; 90
849.12Shen, Shen; Baryshnikov, Glib V.; Xie, Qishan; Wu, Bin; Lv, Meng; Sun, Hao; Li, Zhongyu; Ågren, Hans; Chen, Jinquan; Zhu, Liangliang
Making multi-twisted luminophores produce persistent room-temperature phosphorescence.
Chemical science, 2023, 14, 970-978
1568230 CIFC18 H10 F4 S2P 1 21/n 115.5305; 5.6743; 18.5471
90; 106.918; 90
1563.72Shen, Shen; Baryshnikov, Glib V.; Xie, Qishan; Wu, Bin; Lv, Meng; Sun, Hao; Li, Zhongyu; Ågren, Hans; Chen, Jinquan; Zhu, Liangliang
Making multi-twisted luminophores produce persistent room-temperature phosphorescence.
Chemical science, 2023, 14, 970-978
1568231 CIFC24 H18 F4 O4 S2P 1 21/n 14.8077; 20.6905; 11.0959
90; 96.412; 90
1096.85Shen, Shen; Baryshnikov, Glib V.; Xie, Qishan; Wu, Bin; Lv, Meng; Sun, Hao; Li, Zhongyu; Ågren, Hans; Chen, Jinquan; Zhu, Liangliang
Making multi-twisted luminophores produce persistent room-temperature phosphorescence.
Chemical science, 2023, 14, 970-978
1568232 CIFC48 H42 S6R -3 :H21.0773; 21.0773; 7.9829
90; 90; 120
3071.29Shen, Shen; Baryshnikov, Glib V.; Xie, Qishan; Wu, Bin; Lv, Meng; Sun, Hao; Li, Zhongyu; Ågren, Hans; Chen, Jinquan; Zhu, Liangliang
Making multi-twisted luminophores produce persistent room-temperature phosphorescence.
Chemical science, 2023, 14, 970-978
1568233 CIFC60 H54 O12 S6P 1 21/c 120.7715; 6.2243; 22.3727
90; 94.032; 90
2885.4Shen, Shen; Baryshnikov, Glib V.; Xie, Qishan; Wu, Bin; Lv, Meng; Sun, Hao; Li, Zhongyu; Ågren, Hans; Chen, Jinquan; Zhu, Liangliang
Making multi-twisted luminophores produce persistent room-temperature phosphorescence.
Chemical science, 2023, 14, 970-978
1568234 CIFC42 H36 F2 O8 S4P -15.6192; 8.2941; 21.138
79.178; 84.757; 89.326
963.58Shen, Shen; Baryshnikov, Glib V.; Xie, Qishan; Wu, Bin; Lv, Meng; Sun, Hao; Li, Zhongyu; Ågren, Hans; Chen, Jinquan; Zhu, Liangliang
Making multi-twisted luminophores produce persistent room-temperature phosphorescence.
Chemical science, 2023, 14, 970-978
1568235 CIFC48 H42 S6P -112.4505; 14.978; 21.6769
92.868; 98.081; 91.753
3994.3Shen, Shen; Baryshnikov, Glib V.; Xie, Qishan; Wu, Bin; Lv, Meng; Sun, Hao; Li, Zhongyu; Ågren, Hans; Chen, Jinquan; Zhu, Liangliang
Making multi-twisted luminophores produce persistent room-temperature phosphorescence.
Chemical science, 2023, 14, 970-978
1568236 CIFC216 H72 Au18 Cu32 F66 S36F m -3 c42.573; 42.573; 42.573
90; 90; 90
77162Tang, Li; Wang, Bin; Wang, Ru; Wang, Shuxin
Alloying and dealloying of Au<sub>18</sub>Cu<sub>32</sub> nanoclusters at precise locations <i>via</i> controlling the electronegativity of substituent groups on thiol ligands.
Nanoscale, 2023, 15, 1602-1608
1568237 CIFC252 H252 Au20.31 Cu29.69 O36 S36P -121.3034; 21.5883; 21.9884
111.776; 118.542; 96.201
7728.8Tang, Li; Wang, Bin; Wang, Ru; Wang, Shuxin
Alloying and dealloying of Au<sub>18</sub>Cu<sub>32</sub> nanoclusters at precise locations <i>via</i> controlling the electronegativity of substituent groups on thiol ligands.
Nanoscale, 2023, 15, 1602-1608
1568238 CIFC35 H34 Cl3 N2 Si2C 1 2/c 125.255; 9.038; 16.9105
90; 120.591; 90
3322.7Zhang, Sutao; Han, Yuxi; He, Jianghua; Zhang, Yuetao
Synthesis of fluorescent poly(silyl indole)s via borane-catalyzed C–H silylation of indoles
Polymer Chemistry, 2023, 14, 492-499
1568239 CIFC34 H36 N2 Si2P -18.4884; 11.5493; 15.4564
89.802; 82.731; 77.808
1468.77Zhang, Sutao; Han, Yuxi; He, Jianghua; Zhang, Yuetao
Synthesis of fluorescent poly(silyl indole)s via borane-catalyzed C–H silylation of indoles
Polymer Chemistry, 2023, 14, 492-499
1568240 CIFC7 H8 N4 O3 SeP c a 2121.779; 3.8696; 24.33
90; 90; 90
2050.4Aliyeva, Vusala A.; Gurbanov, Atash V.; Mahmoud, Abdallah G.; Gomila, Rosa M.; Frontera, Antonio; Mahmudov, Kamran T.; Pombeiro, Armando J. L.
Chalcogen bonding in copper(II)-mediated synthesis.
Faraday discussions, 2023, 244, 77-95
1568241 CIFC10 H8 Br2 Cu N8 O2 Se2P -15.4742; 7.767; 11.921
73.52; 79.658; 70.146
455.2Aliyeva, Vusala A.; Gurbanov, Atash V.; Mahmoud, Abdallah G.; Gomila, Rosa M.; Frontera, Antonio; Mahmudov, Kamran T.; Pombeiro, Armando J. L.
Chalcogen bonding in copper(II)-mediated synthesis.
Faraday discussions, 2023, 244, 77-95
1568242 CIFC24 H22 Br4 Cu2 N2 O2 Se2P 1 21/n 18.127; 13.0444; 14.448
90; 99.666; 90
1509.9Aliyeva, Vusala A.; Gurbanov, Atash V.; Mahmoud, Abdallah G.; Gomila, Rosa M.; Frontera, Antonio; Mahmudov, Kamran T.; Pombeiro, Armando J. L.
Chalcogen bonding in copper(II)-mediated synthesis.
Faraday discussions, 2023, 244, 77-95
1568243 CIFC44 H46 Br2 Cu2 N4 O6 Se2P -18.2849; 11.2981; 12.3104
83.249; 81.394; 81.805
1122.23Aliyeva, Vusala A.; Gurbanov, Atash V.; Mahmoud, Abdallah G.; Gomila, Rosa M.; Frontera, Antonio; Mahmudov, Kamran T.; Pombeiro, Armando J. L.
Chalcogen bonding in copper(II)-mediated synthesis.
Faraday discussions, 2023, 244, 77-95
1568244 CIFC16 H22 Cl8 N2 SnP 1 21 112.2556; 7.1074; 14.0867
90; 98.156; 90
1214.62Han, Xiao; Cheng, Puxin; Shi, Rongchao; Zheng, Yongshen; Qi, Siming; Xu, Jialiang; Bu, Xian-He
Linear optical afterglow and nonlinear optical harmonic generation from chiral tin(IV) halides: the role of lattice distortions.
Materials horizons, 2023, 10, 1005-1011
1568245 CIFC16 H22 Cl6 F2 N2 SnP 1 21/c 113.9427; 7.1499; 12.4112
90; 109.933; 90
1163.14Han, Xiao; Cheng, Puxin; Shi, Rongchao; Zheng, Yongshen; Qi, Siming; Xu, Jialiang; Bu, Xian-He
Linear optical afterglow and nonlinear optical harmonic generation from chiral tin(IV) halides: the role of lattice distortions.
Materials horizons, 2023, 10, 1005-1011
1568246 CIFC16 H22 Cl8 N2 SnP 1 21 112.242; 7.1142; 14.0909
90; 98.195; 90
1214.67Han, Xiao; Cheng, Puxin; Shi, Rongchao; Zheng, Yongshen; Qi, Siming; Xu, Jialiang; Bu, Xian-He
Linear optical afterglow and nonlinear optical harmonic generation from chiral tin(IV) halides: the role of lattice distortions.
Materials horizons, 2023, 10, 1005-1011
1568247 CIFC16 H22 Cl6 F2 N2 SnP 1 21 112.2505; 7.1627; 14.0193
90; 110.504; 90
1152.21Han, Xiao; Cheng, Puxin; Shi, Rongchao; Zheng, Yongshen; Qi, Siming; Xu, Jialiang; Bu, Xian-He
Linear optical afterglow and nonlinear optical harmonic generation from chiral tin(IV) halides: the role of lattice distortions.
Materials horizons, 2023, 10, 1005-1011
1568248 CIFC16 H22 Cl6 F2 N2 SnP 1 21 112.2157; 7.1438; 13.9697
90; 110.521; 90
1141.7Han, Xiao; Cheng, Puxin; Shi, Rongchao; Zheng, Yongshen; Qi, Siming; Xu, Jialiang; Bu, Xian-He
Linear optical afterglow and nonlinear optical harmonic generation from chiral tin(IV) halides: the role of lattice distortions.
Materials horizons, 2023, 10, 1005-1011
1568249 CIFC16 H22 Cl8 N2 SnP 1 21/c 114.1247; 7.1094; 12.3083
90; 97.523; 90
1225.34Han, Xiao; Cheng, Puxin; Shi, Rongchao; Zheng, Yongshen; Qi, Siming; Xu, Jialiang; Bu, Xian-He
Linear optical afterglow and nonlinear optical harmonic generation from chiral tin(IV) halides: the role of lattice distortions.
Materials horizons, 2023, 10, 1005-1011
1568250 CIFC132.65 H133.3 Ag2 B2 Cl1.3 N12 O6C 1 2/c 139.4123; 31.761; 41.134
90; 116.515; 90
46075Ayme, Jean-François; Bruchmann, Bernd; Karmazin, Lydia; Kyritsakas, Nathalie
Transient self-assembly of metal-organic complexes.
Chemical science, 2023, 14, 1244-1251
1568251 CIFC96 H88 Ag2 B2 N8 O4C 1 2/c 117.5943; 21.9079; 21.0813
90; 104.382; 90
7871.2Ayme, Jean-François; Bruchmann, Bernd; Karmazin, Lydia; Kyritsakas, Nathalie
Transient self-assembly of metal-organic complexes.
Chemical science, 2023, 14, 1244-1251
1568252 CIFC25 H18 Cl2 N3 ZnC c c a :213.8231; 20.1276; 16.7673
90; 90; 90
4665.1Ngue, Chin May; Ho, Kuan Fu; Sainbileg, Batjargal; Batsaikhan, Erdembayalag; Hayashi, Michitoshi; Lee, Kuei Yi; Chen, Ruei San; Leung, Man Kit
Conductivity and photoconductivity in a two-dimensional zinc bis(triarylamine) coordination polymer.
Chemical science, 2023, 14, 1320-1328
1568253 CIFC34 H50 N2 ZnP b c a15.0449; 16.2449; 26.5593
90; 90; 90
6491.17Parr, Joseph M.; Phanopoulos, Andreas; Vickneswaran, Aaranjah; Crimmin, Mark R.
Understanding the role of ring strain in β-alkyl migration at Mg and Zn centres.
Chemical science, 2023, 14, 1590-1597
1568254 CIFC33 H48 N2 ZnP 1 21/n 110.7471; 21.2654; 13.8275
90; 93.143; 90
3155.4Parr, Joseph M.; Phanopoulos, Andreas; Vickneswaran, Aaranjah; Crimmin, Mark R.
Understanding the role of ring strain in β-alkyl migration at Mg and Zn centres.
Chemical science, 2023, 14, 1590-1597
1568255 CIFC62 H90 N4 Zn2P -112.4022; 15.979; 31.6956
83.997; 83.924; 68.783
5807.7Parr, Joseph M.; Phanopoulos, Andreas; Vickneswaran, Aaranjah; Crimmin, Mark R.
Understanding the role of ring strain in β-alkyl migration at Mg and Zn centres.
Chemical science, 2023, 14, 1590-1597
1568256 CIFC35 H52 N2 ZnP 1 21/n 111.2164; 20.8079; 14.1171
90; 96.264; 90
3275.12Parr, Joseph M.; Phanopoulos, Andreas; Vickneswaran, Aaranjah; Crimmin, Mark R.
Understanding the role of ring strain in β-alkyl migration at Mg and Zn centres.
Chemical science, 2023, 14, 1590-1597
1568257 CIFC14 H9 B F2 N2 OP 1 21/c 17.7662; 20.908; 7.2899
90; 90.463; 90
1183.7Gai, Lizhi; Zhang, Ruijing; Shi, Xiuguang; Ni, Zhigang; Wang, Sisi; Zhang, Jun-Long; Lu, Hua; Guo, Zijian
BOINPYs: facile synthesis and photothermal properties triggered by photoinduced nonadiabatic decay.
Chemical science, 2023, 14, 1434-1442
1568258 CIFC16 H9 B F2 N2 O SP 1 21/c 17.763; 24.877; 7.273
90; 90.525; 90
1404.5Gai, Lizhi; Zhang, Ruijing; Shi, Xiuguang; Ni, Zhigang; Wang, Sisi; Zhang, Jun-Long; Lu, Hua; Guo, Zijian
BOINPYs: facile synthesis and photothermal properties triggered by photoinduced nonadiabatic decay.
Chemical science, 2023, 14, 1434-1442
1568259 CIFC30 H21 B N2 OI 41/a :217.675; 17.675; 29.023
90; 90; 90
9067Gai, Lizhi; Zhang, Ruijing; Shi, Xiuguang; Ni, Zhigang; Wang, Sisi; Zhang, Jun-Long; Lu, Hua; Guo, Zijian
BOINPYs: facile synthesis and photothermal properties triggered by photoinduced nonadiabatic decay.
Chemical science, 2023, 14, 1434-1442
1568260 CIFC21 H41 Br N2P -16.715; 7.437; 24.396
86.48; 82.188; 68.301
1121.4Bellia, Sophia A.; Metzler, Matthew; Huynh, Marissa; Zeller, Matthias; Mirjafari, Arsalan; Cohn, Pamela; Hillesheim, Patrick C.
Bridging the crystal and solution structure of a series of lipid-inspired ionic liquids.
Soft matter, 2023, 19, 749-765
1568261 CIFC21 H41 I N2P 1 21/c 127.66; 9.968; 8.286
90; 91.613; 90
2283.7Bellia, Sophia A.; Metzler, Matthew; Huynh, Marissa; Zeller, Matthias; Mirjafari, Arsalan; Cohn, Pamela; Hillesheim, Patrick C.
Bridging the crystal and solution structure of a series of lipid-inspired ionic liquids.
Soft matter, 2023, 19, 749-765
1568262 CIFC23 H41 F6 N3 O4 S2P -17.0531; 15.7762; 27.107
96.4858; 95.9509; 98.1327
2944.75Bellia, Sophia A.; Metzler, Matthew; Huynh, Marissa; Zeller, Matthias; Mirjafari, Arsalan; Cohn, Pamela; Hillesheim, Patrick C.
Bridging the crystal and solution structure of a series of lipid-inspired ionic liquids.
Soft matter, 2023, 19, 749-765
1568263 CIFC23 H22 O3P 1 21/c 110.6143; 31.7341; 5.4746
90; 96.25; 90
1833.08Zhao, Hongping; Yuan, Weiming
Three-component reductive conjugate addition/aldol tandem reaction enabled by nickel/photoredox dual catalysis.
Chemical science, 2023, 14, 1485-1490
1568264 CIFC29 H33 N O2P -19.5665; 10.3386; 12.4055
93.312; 101.472; 98.72
1183.64Zhao, Hongping; Yuan, Weiming
Three-component reductive conjugate addition/aldol tandem reaction enabled by nickel/photoredox dual catalysis.
Chemical science, 2023, 14, 1485-1490
1568265 CIFC29 H33 N O2P -18.0904; 12.0393; 12.8065
79.36; 75.595; 79.481
1175.11Zhao, Hongping; Yuan, Weiming
Three-component reductive conjugate addition/aldol tandem reaction enabled by nickel/photoredox dual catalysis.
Chemical science, 2023, 14, 1485-1490
1568266 CIFC17 H18 O2P 1 21/c 19.7199; 17.3733; 8.5275
90; 106.832; 90
1378.32Wang, Siyuan; Zhou, Yuqiao; Xiao, Wanlong; Li, Zegong; Liu, Xiaohua; Feng, Xiaoming
Asymmetric synthesis of complex tricyclo[3.2.2.0]nonenes from racemic norcaradienes: kinetic resolution <i>via</i> Diels-Alder reaction.
Chemical science, 2023, 14, 1844-1851
1568267 CIFC26 H23 F O3P 21 21 218.7024; 13.0704; 18.7294
90; 90; 90
2130.35Wang, Siyuan; Zhou, Yuqiao; Xiao, Wanlong; Li, Zegong; Liu, Xiaohua; Feng, Xiaoming
Asymmetric synthesis of complex tricyclo[3.2.2.0]nonenes from racemic norcaradienes: kinetic resolution <i>via</i> Diels-Alder reaction.
Chemical science, 2023, 14, 1844-1851
1568268 CIFC29 H30 O5P 43 21 29.9702; 9.9702; 48.7176
90; 90; 90
4842.77Wang, Siyuan; Zhou, Yuqiao; Xiao, Wanlong; Li, Zegong; Liu, Xiaohua; Feng, Xiaoming
Asymmetric synthesis of complex tricyclo[3.2.2.0]nonenes from racemic norcaradienes: kinetic resolution <i>via</i> Diels-Alder reaction.
Chemical science, 2023, 14, 1844-1851
1568269 CIFC57 H92 Cl2 Co N4 O15P 21 21 2111.4334; 13.0191; 41.707
90; 90; 90
6208.2Wang, Siyuan; Zhou, Yuqiao; Xiao, Wanlong; Li, Zegong; Liu, Xiaohua; Feng, Xiaoming
Asymmetric synthesis of complex tricyclo[3.2.2.0]nonenes from racemic norcaradienes: kinetic resolution <i>via</i> Diels-Alder reaction.
Chemical science, 2023, 14, 1844-1851

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