Crystallography Open Database

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1572930 CIFC60 H72 N3 O3 Pd3 Se3P -114.0778; 15.5286; 31.7803
79.873; 77.515; 64.584
6099.4Sarkar, Prasenjit; Manamel, Litty Thomas; Saha, Puranjay; Jana, Chinmay; Sarmah, Amrit; Mohanan, Kannan Udaya; Das, Bikas C.; Mukherjee, Chandan
A triradical-containing trinuclear Pd(II) complex: spin-polarized electronic transmission, analog resistive switching and neuromorphic advancements.
Materials horizons, 2025, 12, 246-257
1572973 CIFC20 H21 N O3P -19.2173; 9.4972; 9.5809
88.263; 82.367; 85.479
828.51Fu, Shijie; Jia, Hao; Meng, Xinmiao; Wang, Chengyuan; Li, Qian; Li, Lei; Yang, Jiaxiang; Niu, Helin
Fine-tuning the molecular conformation and packing structures of coumarin-based luminogens to achieve distinct piezochromic properties upon mechanical grinding and under hydrostatic pressures.
Materials horizons, 2025, 12, 293-302
1572974 CIFC20 H18 N2 O2P -16.633; 7.5002; 17.4918
79.488; 81.308; 64.528
769.83Fu, Shijie; Jia, Hao; Meng, Xinmiao; Wang, Chengyuan; Li, Qian; Li, Lei; Yang, Jiaxiang; Niu, Helin
Fine-tuning the molecular conformation and packing structures of coumarin-based luminogens to achieve distinct piezochromic properties upon mechanical grinding and under hydrostatic pressures.
Materials horizons, 2025, 12, 293-302
1572975 CIFC20 H18 N2 O2P 1 21/c 111.443; 13.277; 10.8931
90; 99.297; 90
1633.24Fu, Shijie; Jia, Hao; Meng, Xinmiao; Wang, Chengyuan; Li, Qian; Li, Lei; Yang, Jiaxiang; Niu, Helin
Fine-tuning the molecular conformation and packing structures of coumarin-based luminogens to achieve distinct piezochromic properties upon mechanical grinding and under hydrostatic pressures.
Materials horizons, 2025, 12, 293-302
1572976 CIFC20 H21 N O3P 1 21/n 16.4917; 19.911; 12.759
90; 90.73; 90
1649Fu, Shijie; Jia, Hao; Meng, Xinmiao; Wang, Chengyuan; Li, Qian; Li, Lei; Yang, Jiaxiang; Niu, Helin
Fine-tuning the molecular conformation and packing structures of coumarin-based luminogens to achieve distinct piezochromic properties upon mechanical grinding and under hydrostatic pressures.
Materials horizons, 2025, 12, 293-302
1573306 CIFC36 H31 N2 O0.5P 21 21 221.6586; 12.8689; 9.8744
90; 90; 90
2752.22Wei, Xuyang; Li, Dong; Liu, Xitong; Zhang, Weifeng; Li, Hao; Yang, Shuai; Luo, Hao; Yu, Gui
Magnetoresistance effect of pyridine-capped <i>s</i>-indacene-based conjugated radicals.
Materials horizons, 2025, 12, 1524-1531
1573307 CIFC36 H30 N2P b c a15.9161; 17.8282; 18.1544
90; 90; 90
5151.4Wei, Xuyang; Li, Dong; Liu, Xitong; Zhang, Weifeng; Li, Hao; Yang, Shuai; Luo, Hao; Yu, Gui
Magnetoresistance effect of pyridine-capped <i>s</i>-indacene-based conjugated radicals.
Materials horizons, 2025, 12, 1524-1531
1573377 CIFC24 H56 Cd Cl4 N2C 1 2/c 132.768; 13.9365; 15.0048
90; 109.374; 90
6464.2Xu, Ou; Peng, Hui; Wei, Qilin; Kong, Linghang; Wang, Xiao; Zhang, Heng; Zhao, Jialong; Zou, Bingsuo
Large-scale preparation of Sb<sup>3+</sup>-activated hybrid metal halides with efficient tunable emission from visible to near-infrared regions for advanced photonic applications.
Materials horizons, 2025, 12, 1596-1608
1573378 CIFC24 H56 Br4 Cd N2C 1 2/c 133.373; 14.437; 14.999
90; 111.357; 90
6730Xu, Ou; Peng, Hui; Wei, Qilin; Kong, Linghang; Wang, Xiao; Zhang, Heng; Zhao, Jialong; Zou, Bingsuo
Large-scale preparation of Sb<sup>3+</sup>-activated hybrid metal halides with efficient tunable emission from visible to near-infrared regions for advanced photonic applications.
Materials horizons, 2025, 12, 1596-1608
1573419 CIFC92 H94 Cl4 N5 O12P 114.924; 15.705; 17.535
89.652; 88.476; 78.232
4022.1Gao, Ke; Lee, Sang Hyuk; Zhao, Wenkai; Ahn, Jaeyong; Kim, Tae Woo; Li, Zhenping; Zhuo, Huagui; Wang, Zhiwei; Zheng, Xinglong; Yan, Yang; Chang, Gang; Ma, Wei; Zhang, Mingming; Long, Guankui; Oh, Joon Hak; Shang, Xiaobo
Reversal of chirality in solutions and aggregates of chiral tetrachlorinated diperylene diimides towards efficient circularly polarized light detection.
Materials horizons, 2025, 12, 1903-1912
1573469 CIFC24 H21 Ag2 Cl3 F12 N12 P2P -18.0608; 14.5789; 16.1846
72.495; 82.655; 74.413
1744.9Panda, Subhra Jyoti; Khator, Kanha Ram; Deswal, Priyanka; Nayak, Shashwat; Pandey, Durgesh; Patel, Suraj K.; Agrawalla, Suraj Kumar; Ghosh, Dibyajyoti; Senanayak, Satyaprasad P.; Purohit, Chandra Shekhar
Silver-purine MOFs for high-performance multi-terminal neuromorphic memory.
Materials horizons, 2025, 12, 2208-2222
1573470 CIFC6 H5 Ag Cl F6 N4 SbP 1 21/c 112.0279; 8.6719; 12.8186
90; 108.416; 90
1268.57Panda, Subhra Jyoti; Khator, Kanha Ram; Deswal, Priyanka; Nayak, Shashwat; Pandey, Durgesh; Patel, Suraj K.; Agrawalla, Suraj Kumar; Ghosh, Dibyajyoti; Senanayak, Satyaprasad P.; Purohit, Chandra Shekhar
Silver-purine MOFs for high-performance multi-terminal neuromorphic memory.
Materials horizons, 2025, 12, 2208-2222
1573471 CIFC6 H5 Ag Cl F6 N4 PP 1 21/c 111.9676; 8.4366; 12.5599
90; 108.484; 90
1202.7Panda, Subhra Jyoti; Khator, Kanha Ram; Deswal, Priyanka; Nayak, Shashwat; Pandey, Durgesh; Patel, Suraj K.; Agrawalla, Suraj Kumar; Ghosh, Dibyajyoti; Senanayak, Satyaprasad P.; Purohit, Chandra Shekhar
Silver-purine MOFs for high-performance multi-terminal neuromorphic memory.
Materials horizons, 2025, 12, 2208-2222
1573472 CIFC24 H21 Ag2 Cl3 F12 N12 Sb2P 1 21/c 116.2142; 17.5601; 13.5028
90; 106.381; 90
3688.5Panda, Subhra Jyoti; Khator, Kanha Ram; Deswal, Priyanka; Nayak, Shashwat; Pandey, Durgesh; Patel, Suraj K.; Agrawalla, Suraj Kumar; Ghosh, Dibyajyoti; Senanayak, Satyaprasad P.; Purohit, Chandra Shekhar
Silver-purine MOFs for high-performance multi-terminal neuromorphic memory.
Materials horizons, 2025, 12, 2208-2222
1573609 CIFC28 H58.58 Br5.42 Ce2 Mn O14.58P 21 21 2115.244; 15.3069; 21.3108
90; 90; 90
4972.63Liu, Huanyu; Yu, Gang; Huo, Peihao; Guo, Ruoyao; Li, Yujia; Qi, Hao; Zheng, Jiayin; Jin, Tong; Zhao, Zifeng; Bian, Zuqiang; Liu, Zhiwei
Structural relaxation chirality transfer enhanced circularly polarized luminescence in heteronuclear Ce<sup>III</sup>-Mn<sup>II</sup> complexes.
Materials horizons, 2025, 12, 2650-2655
1573610 CIFC28 H58.39 Br5.61 La2 Mn O14.39P 21 21 2115.5414; 15.5635; 21.415
90; 90; 90
5179.8Liu, Huanyu; Yu, Gang; Huo, Peihao; Guo, Ruoyao; Li, Yujia; Qi, Hao; Zheng, Jiayin; Jin, Tong; Zhao, Zifeng; Bian, Zuqiang; Liu, Zhiwei
Structural relaxation chirality transfer enhanced circularly polarized luminescence in heteronuclear Ce<sup>III</sup>-Mn<sup>II</sup> complexes.
Materials horizons, 2025, 12, 2650-2655
1573611 CIFC28 H58.52 Br5.48 Ce2 Mn O14.52P 21 21 2115.3088; 15.3451; 21.3976
90; 90; 90
5026.62Liu, Huanyu; Yu, Gang; Huo, Peihao; Guo, Ruoyao; Li, Yujia; Qi, Hao; Zheng, Jiayin; Jin, Tong; Zhao, Zifeng; Bian, Zuqiang; Liu, Zhiwei
Structural relaxation chirality transfer enhanced circularly polarized luminescence in heteronuclear Ce<sup>III</sup>-Mn<sup>II</sup> complexes.
Materials horizons, 2025, 12, 2650-2655
1573612 CIFC16 H36 Br5 Ce O8 ZnP 41 21 210.2108; 10.2108; 58.9846
90; 90; 90
6149.8Liu, Huanyu; Yu, Gang; Huo, Peihao; Guo, Ruoyao; Li, Yujia; Qi, Hao; Zheng, Jiayin; Jin, Tong; Zhao, Zifeng; Bian, Zuqiang; Liu, Zhiwei
Structural relaxation chirality transfer enhanced circularly polarized luminescence in heteronuclear Ce<sup>III</sup>-Mn<sup>II</sup> complexes.
Materials horizons, 2025, 12, 2650-2655
1573731 CIFC24 H56 Br4 N2 ZnI 1 2/a 115.0869; 14.2481; 31.3091
90; 96.596; 90
6685.6Yang, Yongqi; Ke, Bao; Yang, Chengzhi; Xue, Yang; Huang, Kaihuang; Lu, Xintong; Zou, Bingsuo
Multifunctional applications enabled by tunable multi-emission and ultra-broadband VIS-NIR luminescence <i>via</i> energy transfer in Sn<sup>2+</sup>/Mn<sup>2+</sup>-doped lead-free Zn-based metal halides.
Materials horizons, 2025, 12, 2564-2576
1573863 CIFC42 H28 Fe N6 S2P c c n14.2537; 14.2713; 17.4543
90; 90; 90
3550.53Valverde-Muñoz, Francisco Javier; Torres Ramírez, Ricardo Guillermo; Trzop, Elzbieta; Bataille, Thierry; Daro, Nathalie; Denux, Dominique; Guionneau, Philippe; Cailleau, Hervé; Chastanet, Guillaume; Le Guennic, Boris; Collet, Eric
Stabilizing low symmetry-based functions of materials at room temperature through isosymmetric electronic bistability.
Materials horizons, 2025, 12, 1463-1472
1573864 CIFC42 H28 Fe N6 S2P 1 21/c 115.6569; 14.5792; 16.8595
90; 93.153; 90
3842.6Valverde-Muñoz, Francisco Javier; Torres Ramírez, Ricardo Guillermo; Trzop, Elzbieta; Bataille, Thierry; Daro, Nathalie; Denux, Dominique; Guionneau, Philippe; Cailleau, Hervé; Chastanet, Guillaume; Le Guennic, Boris; Collet, Eric
Stabilizing low symmetry-based functions of materials at room temperature through isosymmetric electronic bistability.
Materials horizons, 2025, 12, 1463-1472
1573946 CIFC33 H39 Cl6 N6 SbP 1 21 19.736; 26.6108; 14.4804
90; 91.792; 90
3749.8Jiang, Chunyan; Yan, Jing; Qiu, Jianrong; Wu, Mingmei; Xu, Beibei
Regulating intermolecular interactions for stable multifunctional organic-inorganic metal halide hybrid glasses.
Materials horizons, 2025, 12, 3515-3524
1573947 CIFC44 H52 Cl10 N8 Sb2I -417.5697; 17.5697; 8.7813
90; 90; 90
2710.7Jiang, Chunyan; Yan, Jing; Qiu, Jianrong; Wu, Mingmei; Xu, Beibei
Regulating intermolecular interactions for stable multifunctional organic-inorganic metal halide hybrid glasses.
Materials horizons, 2025, 12, 3515-3524
1574003 CIFC4 H8 N3 O4 PP 21 21 214.4906; 8.7661; 19.496
90; 90; 90
767.46Arif, Muhammad; Liu, Xu; Jia, Hangwei; Yang, Zhihua; Hou, Xueling; Pan, Shilie
Optimizing optical anisotropy in low-dimensional structures <i>via</i> intralayer hydrogen bonding modulation and anionic substitution.
Materials horizons, 2025, 12, 3538-3545
1574004 CIFC5 H9 N3 O3 SP 1 21/c 15.1632; 10.2883; 15.253
90; 93.922; 90
808.4Arif, Muhammad; Liu, Xu; Jia, Hangwei; Yang, Zhihua; Hou, Xueling; Pan, Shilie
Optimizing optical anisotropy in low-dimensional structures <i>via</i> intralayer hydrogen bonding modulation and anionic substitution.
Materials horizons, 2025, 12, 3538-3545
1574005 CIFC12 H16 N6 O4P 1 21/c 15.3958; 19.471; 6.9453
90; 104.63; 90
706.03Arif, Muhammad; Liu, Xu; Jia, Hangwei; Yang, Zhihua; Hou, Xueling; Pan, Shilie
Optimizing optical anisotropy in low-dimensional structures <i>via</i> intralayer hydrogen bonding modulation and anionic substitution.
Materials horizons, 2025, 12, 3538-3545
1574006 CIFC4 H8 N4 O3 SC 1 2/c 123.329; 8.9732; 7.4927
90; 101.254; 90
1538.3Arif, Muhammad; Liu, Xu; Jia, Hangwei; Yang, Zhihua; Hou, Xueling; Pan, Shilie
Optimizing optical anisotropy in low-dimensional structures <i>via</i> intralayer hydrogen bonding modulation and anionic substitution.
Materials horizons, 2025, 12, 3538-3545
1574007 CIFC4 H6 B F4 N3P 1 21/n 14.9961; 20.906; 7.0582
90; 102.398; 90
720.03Arif, Muhammad; Liu, Xu; Jia, Hangwei; Yang, Zhihua; Hou, Xueling; Pan, Shilie
Optimizing optical anisotropy in low-dimensional structures <i>via</i> intralayer hydrogen bonding modulation and anionic substitution.
Materials horizons, 2025, 12, 3538-3545
1574008 CIFC4 H11 B2 N3 O6P 1 21/c 110.2656; 3.7235; 13.2934
90; 107.188; 90
485.43Arif, Muhammad; Liu, Xu; Jia, Hangwei; Yang, Zhihua; Hou, Xueling; Pan, Shilie
Optimizing optical anisotropy in low-dimensional structures <i>via</i> intralayer hydrogen bonding modulation and anionic substitution.
Materials horizons, 2025, 12, 3538-3545
1574009 CIFC9 H11 F3 N6 O3 SP -18.658; 8.791; 9.477
71.944; 81.828; 83.043
676.6Arif, Muhammad; Liu, Xu; Jia, Hangwei; Yang, Zhihua; Hou, Xueling; Pan, Shilie
Optimizing optical anisotropy in low-dimensional structures <i>via</i> intralayer hydrogen bonding modulation and anionic substitution.
Materials horizons, 2025, 12, 3538-3545
1574020 CIFBi2 Br3 Cs3 I5.22P -3 m 18.2207; 8.2207; 10.104
90; 90; 120
591.35Singh, Kuntal; Hossain, Mozakkar; Nayak, Pabitra Kumar; Karmakar, Sougata; Tripathi, Akash; Sarkar, Prakash; Rudra, Pratyasha; Ali, A. V. Muhammed; Grandhi, G. Krishnamurthy; Vivo, Paola; Mondal, Swastik; Adarsh, K. V.; Ghosh, Dibyajyoti; Rao, K. D. M.
Benign mid-gap halide vacancy states in 2D-bismuth-based halide perovskite microcrystals for enhanced broadband photodetectors.
Materials horizons, 2025, 12, 3865-3877
1574420 CIFC325 H377 Ag4 Cl32 Cu28 P8 S16I 4/m26.5679; 26.5679; 23.7512
90; 90; 90
16764.9Nag, Abhijit; Butt, Abdul Mannan; Yang, Moon Young; Managutti, Praveen B.; Pirzada, Bilal Masood; H Mohideen, M Infas; Abdelhady, Ahmed L.; Abu Haija, Mohamed; Mohamed, Sharmarke; Merinov, Boris V.; GoddardIII, William A; Qurashi, Ahsanulhaq
An atomically precise alloy AgCu cuboid nanocluster with a cubic core: gram scale synthesis, total structure, electronic structure, and catalytic performance.
Materials horizons, 2025, 12, 5252-5258
1574428 CIFCl In14 K5 Se23P 19.0671; 12.1162; 12.1238
93.193; 94.436; 98.838
1309.06Pei, Shao-Min; Wu, Fan; Zhang, Ming-Shu; Chen, Wen-Fa; Jiang, Xiao-Ming; Liu, Bin-Wen; Guo, Guo-Cong
Non-centrosymmetric structures designed rationally <i>via</i> a "dimensionality addition" strategy toward the promising nonlinear optical family [A-X][In-Se] (A = K/Ba and Rb/Ba; X = Cl and Br).
Materials horizons, 2025, 12, 5204-5210
1574429 CIFBa Cl In18 Rb5 Se30P 63 c m14.0681; 14.0681; 19.7774
90; 90; 120
3389.77Pei, Shao-Min; Wu, Fan; Zhang, Ming-Shu; Chen, Wen-Fa; Jiang, Xiao-Ming; Liu, Bin-Wen; Guo, Guo-Cong
Non-centrosymmetric structures designed rationally <i>via</i> a "dimensionality addition" strategy toward the promising nonlinear optical family [A-X][In-Se] (A = K/Ba and Rb/Ba; X = Cl and Br).
Materials horizons, 2025, 12, 5204-5210
1574430 CIFBa Cl5 In22 K13 Se38C 1 2 125.552; 11.5176; 20.3164
90; 125.12; 90
4890.6Pei, Shao-Min; Wu, Fan; Zhang, Ming-Shu; Chen, Wen-Fa; Jiang, Xiao-Ming; Liu, Bin-Wen; Guo, Guo-Cong
Non-centrosymmetric structures designed rationally <i>via</i> a "dimensionality addition" strategy toward the promising nonlinear optical family [A-X][In-Se] (A = K/Ba and Rb/Ba; X = Cl and Br).
Materials horizons, 2025, 12, 5204-5210
1574431 CIFBa Cl In18 K5 Se30P 63 c m14.0037; 14.0037; 19.6844
90; 90; 120
3343.02Pei, Shao-Min; Wu, Fan; Zhang, Ming-Shu; Chen, Wen-Fa; Jiang, Xiao-Ming; Liu, Bin-Wen; Guo, Guo-Cong
Non-centrosymmetric structures designed rationally <i>via</i> a "dimensionality addition" strategy toward the promising nonlinear optical family [A-X][In-Se] (A = K/Ba and Rb/Ba; X = Cl and Br).
Materials horizons, 2025, 12, 5204-5210
1574432 CIFCl5 In22 K14 Li Se38C 1 2 125.4344; 11.4919; 20.2696
90; 125.124; 90
4845.8Pei, Shao-Min; Wu, Fan; Zhang, Ming-Shu; Chen, Wen-Fa; Jiang, Xiao-Ming; Liu, Bin-Wen; Guo, Guo-Cong
Non-centrosymmetric structures designed rationally <i>via</i> a "dimensionality addition" strategy toward the promising nonlinear optical family [A-X][In-Se] (A = K/Ba and Rb/Ba; X = Cl and Br).
Materials horizons, 2025, 12, 5204-5210
1574433 CIFCl In14 Rb5 Se23P 19.1426; 12.176; 12.2109
93.231; 94.496; 98.854
1335.76Pei, Shao-Min; Wu, Fan; Zhang, Ming-Shu; Chen, Wen-Fa; Jiang, Xiao-Ming; Liu, Bin-Wen; Guo, Guo-Cong
Non-centrosymmetric structures designed rationally <i>via</i> a "dimensionality addition" strategy toward the promising nonlinear optical family [A-X][In-Se] (A = K/Ba and Rb/Ba; X = Cl and Br).
Materials horizons, 2025, 12, 5204-5210
1574551 CIFC47 H54 O10 P2 S2P -110.742; 19.392; 24.568
112.731; 90.393; 102.666
4581Gu, Haoran; Tong, Yao; Xu, Hongli; Wang, Cheng; Xu, Bowei; Geng, Dongling; Bu, Laju; Ye, Long; Deng, Yunfeng; Geng, Yanhou
A cathode interlayer based on an indandione-terminated quinoidal compound enables 19% efficiency in binary organic solar cells.
Materials horizons, 2025, 12, 5380-5387
1574645 CIFC98 H104 In4 O70 Ti12P -4 21 c19.7706; 19.7706; 15.9534
90; 90; 90
6235.81Wu, Jiao; Chen, Jiali; Wang, Liming; Ye, Yuting; Zhan, Xiaozhi; Song, Yihang; Li, Qiao-Hong; Yi, Xiaofeng; Zhang, Jian
Ligand effect on In-Ti-oxo nanoclusters for nanolithography.
Materials horizons, 2025, 12, 6283-6290
1574646 CIFC92 H112 In4 O78 Ti12P -4 21 c19.6806; 19.6806; 15.9007
90; 90; 90
6158.8Wu, Jiao; Chen, Jiali; Wang, Liming; Ye, Yuting; Zhan, Xiaozhi; Song, Yihang; Li, Qiao-Hong; Yi, Xiaofeng; Zhang, Jian
Ligand effect on In-Ti-oxo nanoclusters for nanolithography.
Materials horizons, 2025, 12, 6283-6290
1574647 CIFC92 H68 In4 N12 O88 Ti12P 1 21/n 118.855; 16.9266; 31.0947
90; 103.552; 90
9647.6Wu, Jiao; Chen, Jiali; Wang, Liming; Ye, Yuting; Zhan, Xiaozhi; Song, Yihang; Li, Qiao-Hong; Yi, Xiaofeng; Zhang, Jian
Ligand effect on In-Ti-oxo nanoclusters for nanolithography.
Materials horizons, 2025, 12, 6283-6290
1574648 CIFC106 H114 In4 O66 Ti12P 1 21/n 126.2798; 20.9981; 31.0613
90; 107.447; 90
16351.9Wu, Jiao; Chen, Jiali; Wang, Liming; Ye, Yuting; Zhan, Xiaozhi; Song, Yihang; Li, Qiao-Hong; Yi, Xiaofeng; Zhang, Jian
Ligand effect on In-Ti-oxo nanoclusters for nanolithography.
Materials horizons, 2025, 12, 6283-6290
1574649 CIFC96 H87 F12 In4 O68 Ti12P 1 21/n 119.908; 22.5594; 32.932
90; 104.374; 90
14327.2Wu, Jiao; Chen, Jiali; Wang, Liming; Ye, Yuting; Zhan, Xiaozhi; Song, Yihang; Li, Qiao-Hong; Yi, Xiaofeng; Zhang, Jian
Ligand effect on In-Ti-oxo nanoclusters for nanolithography.
Materials horizons, 2025, 12, 6283-6290
1574694 CIFC33 H25 B N2P 21 21 217.4246; 11.3666; 28.6369
90; 90; 90
2416.7Wu, Hao; Shi, Yi-Zhong; Li, Mo-Yuan; Fan, Xiao-Chun; Wang, Hui; Zhang, Tong-Yuan; Yu, Jia; Wang, Kai; Zhang, Xiao-Hong
Geometric control of multi-resonance backbone DABNA for narrowband deep-blue electroluminescence.
Materials horizons, 2025, 12, 5839-5845
1574696 CIFC14 I3 RbP m -3 m7.3138; 7.3138; 7.3138
90; 90; 90
391.23Li, Kai; Li, Zhi-Gang; Gong, Yong-Ji; Chen, Yong-Qiang; Li, Wei
Luminescent 3D chiral hybrid metal-halide perovskites for piezoelectric energy harvesting and ultrasound detection.
Materials horizons, 2025, 12, 6183-6188
1574697 CIFC14 I3 RbP m -3 m7.3079; 7.3079; 7.3079
90; 90; 90
390.281Li, Kai; Li, Zhi-Gang; Gong, Yong-Ji; Chen, Yong-Qiang; Li, Wei
Luminescent 3D chiral hybrid metal-halide perovskites for piezoelectric energy harvesting and ultrasound detection.
Materials horizons, 2025, 12, 6183-6188
1574698 CIFC7 H16 I3 N2 RbP 31 2 110.0749; 10.0749; 25.0784
90; 90; 120
2204.51Li, Kai; Li, Zhi-Gang; Gong, Yong-Ji; Chen, Yong-Qiang; Li, Wei
Luminescent 3D chiral hybrid metal-halide perovskites for piezoelectric energy harvesting and ultrasound detection.
Materials horizons, 2025, 12, 6183-6188
1574699 CIFC7 H16 I3 N2 RbP 31 2 110.0809; 10.0809; 25.1213
90; 90; 120
2210.91Li, Kai; Li, Zhi-Gang; Gong, Yong-Ji; Chen, Yong-Qiang; Li, Wei
Luminescent 3D chiral hybrid metal-halide perovskites for piezoelectric energy harvesting and ultrasound detection.
Materials horizons, 2025, 12, 6183-6188
1574820 CIFI8 K8P 111.81505482; 12.23692562; 7.10002691
90.0019; 90; 90
1026.52Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574821 CIFI4 Na4P 17.08010283; 7.09791712; 7.290053
90.014; 90.0073; 89.9994
366.354Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574822 CIFBr2 Cl8 K2P 15.52777127; 8.40563451; 9.50743605
89.9266; 92.1043; 90.0854
441.459Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574823 CIFCl3 I6 K9P 18.17554987; 8.17545312; 12.92405996
89.9997; 90.0004; 119.998
748.115Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574824 CIFBr8 Cl8 Li16P 17.5745859; 7.47783339; 10.64749269
90; 90; 89.9999
603.09Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574825 CIFBr4 I4 Li8P 16.89761845; 6.89761779; 9.07397362
89.9998; 89.9997; 89.9993
431.714Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574826 CIFCl10 Li2 Na4P 17.44595166; 6.64557407; 8.11584563
90.219; 90.6102; 89.7363
401.563Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574827 CIFBr3 K3P 14.57088421; 4.57088314; 12.56050046
90; 90; 120
227.268Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574828 CIFBr2 I4 Na6P 14.41377149; 11.42127601; 8.84758514
90.0609; 90; 89.9976
446.014Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574829 CIFBr8 Na12 O2P 111.0085188; 11.00851965; 4.54767139
90.0001; 89.9999; 90
551.121Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574830 CIFCl I3 K4P 17.04072003; 7.04072003; 7.04072017
90; 90; 90
349.021Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574831 CIFI12 Li9 Na3P 19.56782617; 9.56667027; 10.86714246
90.0184; 89.9857; 120.033
861.14Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574832 CIFCl4 Li4P 13.60563605; 6.18271013; 6.06886486
90; 90.5097; 90
135.285Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574833 CIFBr4 Na12 O8P 18.62374043; 6.86641651; 7.53508646
89.6433; 90.1447; 90.0822
446.174Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574834 CIFCl8 Li8P 16.96677839; 6.1954674; 7.80744572
89.9993; 90.0064; 90.0002
336.988Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574835 CIFBr2 I2 Na4P 17.27854968; 4.4636847; 7.52581834
90; 89.9997; 90
244.507Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574836 CIFI4 K4P 110.63927541; 5.88914438; 7.11982419
90; 90; 90
446.101Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574837 CIFBr2 I2 Na4P 14.46487017; 7.6102386; 8.82779691
55.489; 90; 90
247.17Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574838 CIFN4 Na4 O8P 14.53892396; 4.53928693; 10.61694621
89.9943; 90.0079; 89.9951
218.746Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574839 CIFBr8 Cl4 Li12P 16.36230533; 6.6968109; 11.13929413
90; 90; 90
474.614Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574840 CIFBe4 Br12 Li4P 17.36349178; 11.45486469; 6.34158533
89.9953; 89.9228; 90.003
534.898Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574841 CIFI2 Na2 O6P 14.69207514; 5.91256374; 7.44017721
90.295; 90.0371; 106.456
197.949Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574842 CIFBr4 K4P 17.97653216; 4.63198529; 8.22376751
90; 90; 90
303.845Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574843 CIFCl4 I4 Li8P 17.00922312; 8.16071716; 7.52055807
90.0001; 90; 90
430.178Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574844 CIFI6 K6 S20P 110.5550204; 10.54925829; 10.53309387
96.8075; 96.848; 83.1393
1149.64Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574845 CIFC4 Br8 Li12P 17.37088716; 11.27904563; 5.91404848
77.2952; 90.0055; 89.9985
479.636Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574846 CIFCl6 I4 K2P 15.69131825; 7.80534201; 13.60531471
89.8297; 89.9798; 89.9915
604.382Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574847 CIFBr8 Li8P 110.03026185; 10.03027612; 4.23379761
90; 90.0001; 90
425.947Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574848 CIFBr8 Na8P 18.36834834; 7.27874099; 7.22267546
90.0003; 89.9992; 90
439.941Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574849 CIFI6 Na6P 18.9313506; 8.93269682; 7.9621576
90; 90; 120.02
550.016Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574850 CIFI18 Li18P 112.4581865; 12.45766276; 8.72897931
89.9694; 90.0323; 119.998
1173.26Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574851 CIFBr16 Li16P 19.23216381; 11.11977739; 8.92893382
90; 90; 89.9935
916.641Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574852 CIFI8 Li8P 18.59968677; 9.33258631; 7.37288568
90; 90; 90
591.728Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574853 CIFBr18 Li18P 111.54482368; 11.54484693; 7.91932462
90.0074; 89.9921; 120.003
914.072Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574854 CIFBr18 Na18P 112.42857248; 12.42857263; 7.90695563
90.0004; 89.9996; 120.005
1057.7Nguyen, Tri Minh; Tawfik, Sherif Abdulkader; Tran, Truyen; Gupta, Sunil; Rana, Santu; Venkatesh, Svetha
The search for superionic solid-state electrolytes using a physics-informed generative model.
Materials horizons, 2025, 12, 6945-6955
1574953 CIFC28 H24 N4 O8P 1 21/n 115.9306; 6.8372; 22.9367
90; 94.722; 90
2489.8Liu, Zihan; Zhao, Xinyi; Duan, Yuai; Li, Yaping; Wang, Zhijia; Wang, Zixuan; Zhang, Jiarong; Yuan, Jing; Geng, Hua; Han, Tianyu
An intelligent tactile imaging-recognition sensor system enabled <i>via</i> a methoxynitrobenzene-salicylaldehyde fluorescent material.
Materials horizons, 2025, 12, 8095-8109
1575087 CIFC42 H24 B N3C 1 2/c 123.5797; 8.776; 27.269
90; 98.793; 90
5576.6Xu, Yincai; Xue, Yufeng; Mei, Le; Xie, Zongliang; Wu, Zhu; Yin, Zheng; Chen, Xian-Kai; Wang, Yue; Liu, Bin
Organic full-color narrowband afterglow.
Materials horizons, 2025, 12, 8555-8564
1575190 CIFC89 H71.67 Ca4 N9 O29.48C 1 2/c 141.8161; 10.3669; 24.5777
90; 125.549; 90
8668.7Huang, Zhi; Wei, Jianwei; Wang, Xiang-Yu; Xu, Shaojie; Huang, Ling; Zeng, Le
Wavelength-dependent tri-state photoswitching in crystals <i>via</i> synergistic dimer confinement and charge-transfer stacking.
Materials horizons, 2025, 12, 9079-9086
1575191 CIFC56 H48 N6 O16 Sr2I 41/a :228.4224; 28.4224; 13.716
90; 90; 90
11080.2Huang, Zhi; Wei, Jianwei; Wang, Xiang-Yu; Xu, Shaojie; Huang, Ling; Zeng, Le
Wavelength-dependent tri-state photoswitching in crystals <i>via</i> synergistic dimer confinement and charge-transfer stacking.
Materials horizons, 2025, 12, 9079-9086
1575274 CIFC60 H60 B N3P 1 21/c 115.8245; 9.6398; 32.533
90; 101.82; 90
4857.5Chen, Yi-Kuan; Lei, Jian; Chao, Yu-Chieh; Kung, Yu-Cheng; Hung, Wen-Yi; Hsu, Liang-Yan; Wu, Tien-Lin
Strategic azepine engineering realizes highly efficient and stable blue narrowband light-emitting diodes.
Materials horizons, 2025, 12, 9737-9748
1575275 CIFC72 H58 B D10 N3P b c a11.4583; 29.8119; 32.0343
90; 90; 90
10942.7Chen, Yi-Kuan; Lei, Jian; Chao, Yu-Chieh; Kung, Yu-Cheng; Hung, Wen-Yi; Hsu, Liang-Yan; Wu, Tien-Lin
Strategic azepine engineering realizes highly efficient and stable blue narrowband light-emitting diodes.
Materials horizons, 2025, 12, 9737-9748
1575276 CIFC72 H68 B N3P b c a11.46318; 29.88427; 32.1321
90; 90; 90
11007.5Chen, Yi-Kuan; Lei, Jian; Chao, Yu-Chieh; Kung, Yu-Cheng; Hung, Wen-Yi; Hsu, Liang-Yan; Wu, Tien-Lin
Strategic azepine engineering realizes highly efficient and stable blue narrowband light-emitting diodes.
Materials horizons, 2025, 12, 9737-9748
1575317 CIFC12 H28 Br6 N2 SnC 1 2/m 120.8427; 7.5744; 7.1881
90; 97.696; 90
1124.57Wang, Yue; Cheng, Puxin; Han, Wenqing; Guan, Junjie; Li, Quanwen; Wang, Zhihua; Wang, Peihan; Zheng, Yongshen; Xu, Jialiang
Regulation of metal valence states for enhancing second harmonic generation performance of chiral tin halides.
Materials horizons, 2025, 12, 9106-9113
1575318 CIFC6 H14 Br3 N SnP 1 21/n 19.8482; 8.2935; 15.0756
90; 102.233; 90
1203.36Wang, Yue; Cheng, Puxin; Han, Wenqing; Guan, Junjie; Li, Quanwen; Wang, Zhihua; Wang, Peihan; Zheng, Yongshen; Xu, Jialiang
Regulation of metal valence states for enhancing second harmonic generation performance of chiral tin halides.
Materials horizons, 2025, 12, 9106-9113
1575319 CIFC12 H28 Br6 N2 SnC 1 2 120.8576; 7.5452; 7.1743
90; 97.556; 90
1119.25Wang, Yue; Cheng, Puxin; Han, Wenqing; Guan, Junjie; Li, Quanwen; Wang, Zhihua; Wang, Peihan; Zheng, Yongshen; Xu, Jialiang
Regulation of metal valence states for enhancing second harmonic generation performance of chiral tin halides.
Materials horizons, 2025, 12, 9106-9113
1575320 CIFC12 H28 Br4 N2 SnP 21 21 216.3412; 12.0486; 25.9872
90; 90; 90
1985.49Wang, Yue; Cheng, Puxin; Han, Wenqing; Guan, Junjie; Li, Quanwen; Wang, Zhihua; Wang, Peihan; Zheng, Yongshen; Xu, Jialiang
Regulation of metal valence states for enhancing second harmonic generation performance of chiral tin halides.
Materials horizons, 2025, 12, 9106-9113
1575321 CIFC12 H28 Br6 N2 SnC 1 2 120.8205; 7.5406; 7.167
90; 97.444; 90
1115.73Wang, Yue; Cheng, Puxin; Han, Wenqing; Guan, Junjie; Li, Quanwen; Wang, Zhihua; Wang, Peihan; Zheng, Yongshen; Xu, Jialiang
Regulation of metal valence states for enhancing second harmonic generation performance of chiral tin halides.
Materials horizons, 2025, 12, 9106-9113
1575322 CIFC12 H28 Br4 N2 SnP 21 21 216.3457; 12.0368; 25.9787
90; 90; 90
1984.3Wang, Yue; Cheng, Puxin; Han, Wenqing; Guan, Junjie; Li, Quanwen; Wang, Zhihua; Wang, Peihan; Zheng, Yongshen; Xu, Jialiang
Regulation of metal valence states for enhancing second harmonic generation performance of chiral tin halides.
Materials horizons, 2025, 12, 9106-9113
1575549 CIFC28 H19 N3 OP -18.6948; 9.5786; 13.7241
78.616; 87.932; 69.39
1048.1Fan, Liangxin; Zhu, Xinxin; Wu, Wanjin; Wang, Xingxiao; Zhang, Sheng; Wan, Jingwei; Jiang, Song; Lin, Lu; Gao, Haoyu; Wang, Jinjin; Cao, Zhanqi; Pan, Zhenliang; Xu, Zhihong; Liu, Lijie
Overcoming ACQ: DPA-modified TICT-type AIEgens for high-resolution and multilevel latent fingerprint visualization.
Materials horizons, 2025, 12, 10326-10334
1575550 CIFC16 H10 N2 OP b c 214.1747; 22.829; 12.14
90; 90; 90
1157Fan, Liangxin; Zhu, Xinxin; Wu, Wanjin; Wang, Xingxiao; Zhang, Sheng; Wan, Jingwei; Jiang, Song; Lin, Lu; Gao, Haoyu; Wang, Jinjin; Cao, Zhanqi; Pan, Zhenliang; Xu, Zhihong; Liu, Lijie
Overcoming ACQ: DPA-modified TICT-type AIEgens for high-resolution and multilevel latent fingerprint visualization.
Materials horizons, 2025, 12, 10326-10334
1575551 CIFC4 H0 N29 O31P 1 21/c 19.8422; 11.3666; 36.9529
90; 93.641; 90
4125.7Fan, Liangxin; Zhu, Xinxin; Wu, Wanjin; Wang, Xingxiao; Zhang, Sheng; Wan, Jingwei; Jiang, Song; Lin, Lu; Gao, Haoyu; Wang, Jinjin; Cao, Zhanqi; Pan, Zhenliang; Xu, Zhihong; Liu, Lijie
Overcoming ACQ: DPA-modified TICT-type AIEgens for high-resolution and multilevel latent fingerprint visualization.
Materials horizons, 2025, 12, 10326-10334

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