Crystallography Open Database

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Searching journal of publication like 'Materials horizons' volume of publication is 10

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1567831 CIFC27 H18P 1 21/c 14.8045; 15.5425; 23.249
90; 92.476; 90
1734.5Zheng, Xiaoxin; Han, Quanxiang; Lin, Qinglian; Li, Cuicui; Jiang, Jinke; Guo, Qing; Ye, Xin; Yuan, Wang Zhang; Liu, Yang; Tao, Xutang
A processable, scalable, and stable full-color ultralong afterglow system based on heteroatom-free hydrocarbon doped polymers.
Materials horizons, 2023, 10, 197-208
1567888 CIFC32 H45 I8 N4 Pb2C 1 c 112.3353; 12.2206; 32.2371
90; 94.296; 90
4845.92Febriansyah, Benny; Li, Yongxin; Giovanni, David; Salim, Teddy; Hooper, Thomas J. N.; Sim, Ying; Ma, Daphne; Laxmi, Shoba; Lekina, Yulia; Koh, Teck Ming; Shen, Ze Xiang; Pullarkat, Sumod A.; Sum, Tze Chien; Mhaisalkar, Subodh G.; Ager, Joel W.; Mathews, Nripan
Inorganic frameworks of low-dimensional perovskites dictate the performance and stability of mixed-dimensional perovskite solar cells.
Materials horizons, 2023, 10, 536-546
1567889 CIFC16 H28 I6 N4 PbI 4/m10.9954; 10.9954; 25.0526
90; 90; 90
3028.8Febriansyah, Benny; Li, Yongxin; Giovanni, David; Salim, Teddy; Hooper, Thomas J. N.; Sim, Ying; Ma, Daphne; Laxmi, Shoba; Lekina, Yulia; Koh, Teck Ming; Shen, Ze Xiang; Pullarkat, Sumod A.; Sum, Tze Chien; Mhaisalkar, Subodh G.; Ager, Joel W.; Mathews, Nripan
Inorganic frameworks of low-dimensional perovskites dictate the performance and stability of mixed-dimensional perovskite solar cells.
Materials horizons, 2023, 10, 536-546
1567890 CIFC7 H12 I4 N2 PbP 1 21/n 16.3676; 12.592; 20.5523
90; 96.257; 90
1638.08Febriansyah, Benny; Li, Yongxin; Giovanni, David; Salim, Teddy; Hooper, Thomas J. N.; Sim, Ying; Ma, Daphne; Laxmi, Shoba; Lekina, Yulia; Koh, Teck Ming; Shen, Ze Xiang; Pullarkat, Sumod A.; Sum, Tze Chien; Mhaisalkar, Subodh G.; Ager, Joel W.; Mathews, Nripan
Inorganic frameworks of low-dimensional perovskites dictate the performance and stability of mixed-dimensional perovskite solar cells.
Materials horizons, 2023, 10, 536-546
1567891 CIFC8 H12 I3 N PbP n m a8.1205; 9.2677; 19.9344
90; 90; 90
1500.23Febriansyah, Benny; Li, Yongxin; Giovanni, David; Salim, Teddy; Hooper, Thomas J. N.; Sim, Ying; Ma, Daphne; Laxmi, Shoba; Lekina, Yulia; Koh, Teck Ming; Shen, Ze Xiang; Pullarkat, Sumod A.; Sum, Tze Chien; Mhaisalkar, Subodh G.; Ager, Joel W.; Mathews, Nripan
Inorganic frameworks of low-dimensional perovskites dictate the performance and stability of mixed-dimensional perovskite solar cells.
Materials horizons, 2023, 10, 536-546
1567892 CIFC16 H24 I4 N2 O2 PbP -18.703; 8.698; 17.123
92.942; 101.643; 90.504
1267.6Febriansyah, Benny; Li, Yongxin; Giovanni, David; Salim, Teddy; Hooper, Thomas J. N.; Sim, Ying; Ma, Daphne; Laxmi, Shoba; Lekina, Yulia; Koh, Teck Ming; Shen, Ze Xiang; Pullarkat, Sumod A.; Sum, Tze Chien; Mhaisalkar, Subodh G.; Ager, Joel W.; Mathews, Nripan
Inorganic frameworks of low-dimensional perovskites dictate the performance and stability of mixed-dimensional perovskite solar cells.
Materials horizons, 2023, 10, 536-546
1568018 CIFC31 H53 N2 O3P 1 21/n 17.4068; 44.744; 8.8243
90; 94.435; 90
2915.7Houard, Felix; Cucinotta, Guiseppe; Guizouarn, Thierry; Suffren, Yan; Calvez, Guillaume; Daiguebonne, Carole; Guillou, Olivier; Artzner, Franck; Mannini, Matteo; Bernot, Kevin
Metallogels: a novel approach for the nanostructuration of single-chain magnets.
Materials horizons, 2023, 10, 547-555
1568124 CIFC18 H36 Br2 Eu N2 O6P 21 21 213.6795; 17.7174; 9.9143
90; 90; 90
2402.88Yu, Gang; Liu, Huanyu; Yan, Wenchao; Guo, Ruoyao; Wu, Aoben; Zhao, Zifeng; Liu, Zhiwei; Bian, Zuqiang
4f → 3d sensitization: a luminescent Eu<sup>II</sup>-Mn<sup>II</sup> heteronuclear complex with a near-unity quantum yield.
Materials horizons, 2023, 10, 625-631
1568125 CIFC20.65 H45.3 Br4 Eu Mn N2 O8P 1 21/n 116.7005; 11.9358; 16.9034
90; 108.602; 90
3193.4Yu, Gang; Liu, Huanyu; Yan, Wenchao; Guo, Ruoyao; Wu, Aoben; Zhao, Zifeng; Liu, Zhiwei; Bian, Zuqiang
4f → 3d sensitization: a luminescent Eu<sup>II</sup>-Mn<sup>II</sup> heteronuclear complex with a near-unity quantum yield.
Materials horizons, 2023, 10, 625-631
1568126 CIFC20 H45.11 Br2.89 Mn N2 O9.11 SrP 1 21/n 111.5435; 20.2186; 13.5459
90; 91.42; 90
3160.55Yu, Gang; Liu, Huanyu; Yan, Wenchao; Guo, Ruoyao; Wu, Aoben; Zhao, Zifeng; Liu, Zhiwei; Bian, Zuqiang
4f → 3d sensitization: a luminescent Eu<sup>II</sup>-Mn<sup>II</sup> heteronuclear complex with a near-unity quantum yield.
Materials horizons, 2023, 10, 625-631
1568127 CIFC20 H44 Br4 Eu N2 O8 ZnP 1 21/c 114.04743; 14.65564; 31.3669
90; 102.744; 90
6298.56Yu, Gang; Liu, Huanyu; Yan, Wenchao; Guo, Ruoyao; Wu, Aoben; Zhao, Zifeng; Liu, Zhiwei; Bian, Zuqiang
4f → 3d sensitization: a luminescent Eu<sup>II</sup>-Mn<sup>II</sup> heteronuclear complex with a near-unity quantum yield.
Materials horizons, 2023, 10, 625-631
1568128 CIFCd Rb2 S10 Si4P n a 2118.6378; 9.1309; 10.6136
90; 90; 90
1806.22Zhou, Jiazheng; Fan, Zhongxu; Zhang, Kewang; Yang, Zhihua; Pan, Shilie; Li, Junjie
Rb<sub>2</sub>CdSi<sub>4</sub>S<sub>10</sub>: novel [Si<sub>4</sub>S<sub>10</sub>] T2-supertetrahedra-contained infrared nonlinear optical material with large band gap.
Materials horizons, 2023, 10, 619-624
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
1568537 CIFC4 H10 N2 O10 ZnC 1 c 113.678; 7.1156; 9.883
90; 91.07; 90
961.7Xu, Xin; Yan, Bing
Bioinspired HOF-based luminescent skin sensor with triple mechanochromism responses for the recognition and collection of human biophysical signals.
Materials horizons, 2023, 10, 2062-2074
1568576 CIFC10 H10 N2 S6 ZnC 1 2/c 113.6639; 9.0204; 14.8989
90; 115.024; 90
1664Zhou, Pan-Ke; Lin, Xiao-Li; Chee, Mun Yin; Lew, Wen Siang; Zeng, Tao; Li, Hao-Hong; Chen, Xiong; Chen, Zhi-Rong; Zheng, Hui-Dong
Switching the memory behaviour from binary to ternary by triggering S<sub>6</sub><sup>2-</sup> relaxation in polysulfide-bearing zinc-organic complex molecular memories.
Materials horizons, 2023, 10, 2535-2541

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