Crystallography Open Database

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1568698 CIFC7 H5 F N4P 1 21/n 18.0914; 5.9622; 14.789
90; 92.037; 90
713Horiuchi, Sachio; Minemawari, Hiromi; Ishibashi, Shoji
Competition of polar and antipolar states hidden behind a variety of polarization switching modes in hydrogen-bonded molecular chains.
Materials horizons, 2023, 10, 2149-2159
1568699 CIFC7 H5 Cl N4P 1 2/c 19.457; 11.427; 7.298
90; 107.987; 90
750.1Horiuchi, Sachio; Minemawari, Hiromi; Ishibashi, Shoji
Competition of polar and antipolar states hidden behind a variety of polarization switching modes in hydrogen-bonded molecular chains.
Materials horizons, 2023, 10, 2149-2159
1568700 CIFC8 H8 N4P b c a9.7712; 9.0593; 17.7198
90; 90; 90
1568.56Horiuchi, Sachio; Minemawari, Hiromi; Ishibashi, Shoji
Competition of polar and antipolar states hidden behind a variety of polarization switching modes in hydrogen-bonded molecular chains.
Materials horizons, 2023, 10, 2149-2159
1568701 CIFC5 H7 Br N2P b c m4.0674; 16.0311; 10.1239
90; 90; 90
660.13Horiuchi, Sachio; Minemawari, Hiromi; Ishibashi, Shoji
Competition of polar and antipolar states hidden behind a variety of polarization switching modes in hydrogen-bonded molecular chains.
Materials horizons, 2023, 10, 2149-2159
1568702 CIFC8 H5 F3 N4P 1 21/c 110.3316; 9.7732; 9.7411
90; 116.898; 90
877.2Horiuchi, Sachio; Minemawari, Hiromi; Ishibashi, Shoji
Competition of polar and antipolar states hidden behind a variety of polarization switching modes in hydrogen-bonded molecular chains.
Materials horizons, 2023, 10, 2149-2159
1568703 CIFC7 H6 N4A m a 29.8121; 15.2562; 4.5459
90; 90; 90
680.5Horiuchi, Sachio; Minemawari, Hiromi; Ishibashi, Shoji
Competition of polar and antipolar states hidden behind a variety of polarization switching modes in hydrogen-bonded molecular chains.
Materials horizons, 2023, 10, 2149-2159
1568858 CIFC57 H48 Cl D3 O1.5 P2 RhP -111.4014; 16.6771; 22.4823
99.153; 96.453; 91.012
4190.9Bush, Nancy G.; Assefa, Mikiyas K.; Bac, Selin; Mallikarjun Sharada, Shaama; Fieser, Megan E.
Controlling selectivity for dechlorination of poly(vinyl chloride) with (xantphos)RhCl.
Materials horizons, 2023, 10, 2047-2052
1568976 CIFCl Ga12 K6 Li2 Mn4 Rb3 S27P 63 m c22.0822; 22.0822; 6.1544
90; 90; 120
2598.97Pei, Shao-Min; Liu, Bin-Wen; Chen, Wen-Fa; Jiang, Xiao-Ming; Guo, Guo-Cong
Breaking the bottleneck of simultaneously wide band gap and large nonlinear optical coefficient by a "pore reconstruction" strategy in a salt-inclusion chalcogenide.
Materials horizons, 2023, 10, 2921-2926
1569103 CIFC162 H324 K9 Mo3 N18 O54 Sb24I 1 2 125.8992; 25.3671; 38.125
90; 92.409; 90
25025.5Wang, Hui; Chen, Jia-Xiong; Zhou, Lu; Zhang, Xi; Yu, Jia; Wang, Kai; Zhang, Xiao-Hong
A dual-locked triarylamine donor enables high-performance deep-red/NIR thermally activated delayed fluorescence organic light-emitting diodes.
Materials horizons, 2023, 10, 2997-3004
1569216 CIFC6 H16 B F4 NP 4215.808; 15.808; 7.9627
90; 90; 90
1989.8Sahoo, Supriya; Kothavade, Premkumar Anil; Naphade, Dipti R.; Torris, Arun; Praveenkumar, Balu; Zaręba, Jan K; Anthopoulos, Thomas D.; Shanmuganathan, Kadhiravan; Boomishankar, Ramamoorthy
3D-printed polymer composite devices based on a ferroelectric chiral ammonium salt for high-performance piezoelectric energy harvesting.
Materials horizons, 2023, 10, 3153-3161
1569217 CIFC6 H16 B F4 NP 4215.93; 15.93; 8.241
90; 90; 90
2091Sahoo, Supriya; Kothavade, Premkumar Anil; Naphade, Dipti R.; Torris, Arun; Praveenkumar, Balu; Zaręba, Jan K; Anthopoulos, Thomas D.; Shanmuganathan, Kadhiravan; Boomishankar, Ramamoorthy
3D-printed polymer composite devices based on a ferroelectric chiral ammonium salt for high-performance piezoelectric energy harvesting.
Materials horizons, 2023, 10, 3153-3161
1569367 CIFC20 H11 N O2C 1 2/c 19.1959; 13.4702; 10.7519
90; 91.216; 90
1331.54Wu, Yimin; Liu, Xiaoyu; Liu, Junjie; Yang, Ge; Han, Songyan; Yang, Dezhi; Cao, Xiaosong; Ma, Dongge; Bin, Zhengyang; You, Jingsong
Geometry engineering of a multiple resonance core <i>via</i> a phenyl-embedded strategy toward highly efficient narrowband blue OLEDs.
Materials horizons, 2023, 10, 3785-3790
1569368 CIFC24 H13 N O2P -18.0822; 11.034; 11.143
61.646; 69.236; 83.968
815.3Wu, Yimin; Liu, Xiaoyu; Liu, Junjie; Yang, Ge; Han, Songyan; Yang, Dezhi; Cao, Xiaosong; Ma, Dongge; Bin, Zhengyang; You, Jingsong
Geometry engineering of a multiple resonance core <i>via</i> a phenyl-embedded strategy toward highly efficient narrowband blue OLEDs.
Materials horizons, 2023, 10, 3785-3790
1569369 CIFC28 H15 N O2I 1 2/a 115.167; 10.9238; 11.5354
90; 94.397; 90
1905.57Wu, Yimin; Liu, Xiaoyu; Liu, Junjie; Yang, Ge; Han, Songyan; Yang, Dezhi; Cao, Xiaosong; Ma, Dongge; Bin, Zhengyang; You, Jingsong
Geometry engineering of a multiple resonance core <i>via</i> a phenyl-embedded strategy toward highly efficient narrowband blue OLEDs.
Materials horizons, 2023, 10, 3785-3790
1569370 CIFC30 H23 N O4C 1 2/c 114.7721; 14.0494; 12.9393
90; 120.406; 90
2316.1Wu, Yimin; Liu, Xiaoyu; Liu, Junjie; Yang, Ge; Han, Songyan; Yang, Dezhi; Cao, Xiaosong; Ma, Dongge; Bin, Zhengyang; You, Jingsong
Geometry engineering of a multiple resonance core <i>via</i> a phenyl-embedded strategy toward highly efficient narrowband blue OLEDs.
Materials horizons, 2023, 10, 3785-3790
1569371 CIFC20 H9 N O2P 21 21 213.7973; 17.7163; 19.1364
90; 90; 90
1287.38Wu, Yimin; Liu, Xiaoyu; Liu, Junjie; Yang, Ge; Han, Songyan; Yang, Dezhi; Cao, Xiaosong; Ma, Dongge; Bin, Zhengyang; You, Jingsong
Geometry engineering of a multiple resonance core <i>via</i> a phenyl-embedded strategy toward highly efficient narrowband blue OLEDs.
Materials horizons, 2023, 10, 3785-3790
1569372 CIFC26 H13 N O2P m n 2116.208; 4.087; 12.278
90; 90; 90
813.3Wu, Yimin; Liu, Xiaoyu; Liu, Junjie; Yang, Ge; Han, Songyan; Yang, Dezhi; Cao, Xiaosong; Ma, Dongge; Bin, Zhengyang; You, Jingsong
Geometry engineering of a multiple resonance core <i>via</i> a phenyl-embedded strategy toward highly efficient narrowband blue OLEDs.
Materials horizons, 2023, 10, 3785-3790
1569373 CIFC52 H33 B2 N3 OP 1 21/c 114.4911; 17.4128; 32.32
90; 99.617; 90
8040.7Zou, Yang; He, Jiawei; Li, Nengquan; Hu, Yuxuan; Luo, Sai; Cao, Xiaosong; Yang, Chuluo
Precisely regulating the double-boron-based multi-resonance framework towards pure-red emitters: high-performance OLEDs with CIE coordinates fully satisfying the BT. 2020 standard.
Materials horizons, 2023, 10, 3712-3718
1569436 CIFC38 H51 N O9P -19.7279; 12.109; 16.102
87.019; 89.242; 70.646
1787.1Xu, 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
1569527 CIFC52 H48 N2 O4P -110.119; 13.7179; 15.1622
80.631; 77.512; 74.361
1966.56Leng, Mingwan; Koripally, Nandu; Huang, Junjie; Vriza, Aikaterini; Lee, Kyeong Yeon; Ji, Xiaozhou; Li, Chenxuan; Hays, Megan; Tu, Qing; Dunbar, Kim; Xu, Jie; Ng, Tse Nga; Fang, Lei
Synthesis and exceptional operational durability of polyaniline-inspired conductive ladder polymers.
Materials horizons, 2023, 10, 4354-4364
1569528 CIFC55.8 H55.6 Br Cl7.6 N2 O4P -113.0055; 13.0942; 18.4103
91.925; 92.264; 116.058
2809.78Leng, Mingwan; Koripally, Nandu; Huang, Junjie; Vriza, Aikaterini; Lee, Kyeong Yeon; Ji, Xiaozhou; Li, Chenxuan; Hays, Megan; Tu, Qing; Dunbar, Kim; Xu, Jie; Ng, Tse Nga; Fang, Lei
Synthesis and exceptional operational durability of polyaniline-inspired conductive ladder polymers.
Materials horizons, 2023, 10, 4354-4364
1569529 CIFC48 H70 N2C 1 2/c 124.6382; 10.7607; 18.6232
90; 124.745; 90
4057.1Leng, Mingwan; Koripally, Nandu; Huang, Junjie; Vriza, Aikaterini; Lee, Kyeong Yeon; Ji, Xiaozhou; Li, Chenxuan; Hays, Megan; Tu, Qing; Dunbar, Kim; Xu, Jie; Ng, Tse Nga; Fang, Lei
Synthesis and exceptional operational durability of polyaniline-inspired conductive ladder polymers.
Materials horizons, 2023, 10, 4354-4364
1569622 CIFC40 H23 N5P -16.8738; 14.2252; 16.4821
65.736; 85.602; 81.263
1452.04Wang, Hui; Chen, Jia-Xiong; Zhou, Lu; Zhang, Xi; Yu, Jia; Wang, Kai; Zhang, Xiao-Hong
A dual-locked triarylamine donor enables high-performance deep-red/NIR thermally activated delayed fluorescence organic light-emitting diodes.
Materials horizons, 2023, 10, 2997-3004
1569658 CIFC6 H22 Cl6 In N3 OP -17.5475; 10.6805; 11.8682
94.694; 107.997; 109.497
839.27Li, Dong-Yang; Shang, Yan-Bing; Liu, Qi; Zhang, Hua-Wu; Zhang, Xin-Yue; Yue, Cheng-Yang; Lei, Xiao-Wu
0D hybrid indium halide as a highly efficient X-ray scintillation and ultra-sensitive fluorescent probe.
Materials horizons, 2023, 10, 5004-5015
1569659 CIFC6 H22 Br6 In N3 OP -17.8936; 11.084; 12.1633
94.554; 108.689; 109.006
932.85Li, Dong-Yang; Shang, Yan-Bing; Liu, Qi; Zhang, Hua-Wu; Zhang, Xin-Yue; Yue, Cheng-Yang; Lei, Xiao-Wu
0D hybrid indium halide as a highly efficient X-ray scintillation and ultra-sensitive fluorescent probe.
Materials horizons, 2023, 10, 5004-5015
1569862 CIFC10 H28 Br4 N2 PbP 1 21/c 114.4011; 8.239; 8.3208
90; 94.932; 90
983.61You, Shihai; Yu, Panpan; Zhu, Tingting; Guan, Qianwen; Wu, Jianbo; Dai, Hongliang; Zhong, Haiqing; Zhu, Zeng-Kui; Luo, Junhua
Alternating chiral and achiral spacers for constructing two-dimensional chiral hybrid perovskites toward circular-polarization-sensitive photodetection.
Materials horizons, 2023, 10, 5307-5312
1569863 CIFC14 H28 Br4 N2 PbP 21 21 218.016; 8.4161; 34.5711
90; 90; 90
2332.29You, Shihai; Yu, Panpan; Zhu, Tingting; Guan, Qianwen; Wu, Jianbo; Dai, Hongliang; Zhong, Haiqing; Zhu, Zeng-Kui; Luo, Junhua
Alternating chiral and achiral spacers for constructing two-dimensional chiral hybrid perovskites toward circular-polarization-sensitive photodetection.
Materials horizons, 2023, 10, 5307-5312
1569864 CIFC14 H28 Br4 N2 PbP 21 21 218.0152; 8.4073; 34.575
90; 90; 90
2329.88You, Shihai; Yu, Panpan; Zhu, Tingting; Guan, Qianwen; Wu, Jianbo; Dai, Hongliang; Zhong, Haiqing; Zhu, Zeng-Kui; Luo, Junhua
Alternating chiral and achiral spacers for constructing two-dimensional chiral hybrid perovskites toward circular-polarization-sensitive photodetection.
Materials horizons, 2023, 10, 5307-5312
1570008 CIFC7 H2 N10 O12P 1 21/c 115.4453; 8.5038; 12.4151
90; 113.671; 90
1493.5Dong, Yaqun; Li, Miao; Liu, Jing; Liu, Yuji; Huang, Wei; Shreeve, Jean'ne M.; Tang, Yongxing
Pushing the limits of the heat of detonation <i>via</i> the construction of polynitro bipyrazole.
Materials horizons, 2023, 10, 5729-5733
1570009 CIFC8 H4 N6 O4P -15.0954; 8.4208; 11.6907
79.354; 78.91; 72.855
465.97Dong, Yaqun; Li, Miao; Liu, Jing; Liu, Yuji; Huang, Wei; Shreeve, Jean'ne M.; Tang, Yongxing
Pushing the limits of the heat of detonation <i>via</i> the construction of polynitro bipyrazole.
Materials horizons, 2023, 10, 5729-5733
1570010 CIFC7 H3 N9 O10P 1 21/c 19.144; 12.629; 12.031
90; 99.17; 90
1371.58Dong, Yaqun; Li, Miao; Liu, Jing; Liu, Yuji; Huang, Wei; Shreeve, Jean'ne M.; Tang, Yongxing
Pushing the limits of the heat of detonation <i>via</i> the construction of polynitro bipyrazole.
Materials horizons, 2023, 10, 5729-5733
1570214 CIFC45 H50 Au Cl2 N3P -113.6447; 16.79; 18.809
111.312; 99.798; 90.068
3946.5Au-Yeung, Cathay Chai; Leung, Ming-Yi; Lai, Shiu-Lun; Cheng, Shun-Cheung; Li, Lok-Kwan; Tang, Man-Chung; Kwok, Wing-Kei; Ko, Chi-Chiu; Chan, Mei-Yee; Yam, Vivian Wing-Wah
Thermally activated delayed fluorescence tetradentate ligand-containing gold(III) complexes with preferential molecular orientation and their application in organic light-emitting devices.
Materials horizons, 2024, 11, 151-162
1570243 CIFC10 H9 S2P -16.4862; 7.9267; 8.8787
80.588; 72.781; 82.059
428.21Bulgarevich, Kirill; Takimiya, Kazuo
Crystal-structure simulation of molecular semiconductors: brickwork-related crystal structures of methylthiolated <i>peri</i>-condensed polycyclic aromatic hydrocarbons.
Materials horizons, 2023, 10, 5492-5499
1570244 CIFC10 H9 S2P -16.5057; 7.9795; 8.8895
80.578; 72.733; 81.783
432.55Bulgarevich, Kirill; Takimiya, Kazuo
Crystal-structure simulation of molecular semiconductors: brickwork-related crystal structures of methylthiolated <i>peri</i>-condensed polycyclic aromatic hydrocarbons.
Materials horizons, 2023, 10, 5492-5499
1570245 CIFC30 H22 S4P -15.325; 13.4178; 16.3151
108.191; 91.312; 99.886
1087.36Bulgarevich, Kirill; Takimiya, Kazuo
Crystal-structure simulation of molecular semiconductors: brickwork-related crystal structures of methylthiolated <i>peri</i>-condensed polycyclic aromatic hydrocarbons.
Materials horizons, 2023, 10, 5492-5499
1570246 CIFC10 H9 S2P -16.527; 8.0689; 8.9496
79.553; 72.238; 81.345
439.14Bulgarevich, Kirill; Takimiya, Kazuo
Crystal-structure simulation of molecular semiconductors: brickwork-related crystal structures of methylthiolated <i>peri</i>-condensed polycyclic aromatic hydrocarbons.
Materials horizons, 2023, 10, 5492-5499
1570270 CIFC38 H42 Cl2 Cu2 N6 O15P 1 21 19.4947; 15.7979; 14.4936
90; 93.65; 90
2169.58Haldar, Rajashi; Kumar, Ajay; Mandal, Dipankar; Shanmugam, Maheswaran
Deciphering the anisotropic energy harvesting responses of an above room temperature molecular ferroelectric copper(II) complex single crystal.
Materials horizons, 2024, 11, 454-459
1570271 CIFC38 H42 Cl2 Cu2 N6 O15P 1 21 19.3868; 15.5499; 14.4461
90; 93.944; 90
2103.61Haldar, Rajashi; Kumar, Ajay; Mandal, Dipankar; Shanmugam, Maheswaran
Deciphering the anisotropic energy harvesting responses of an above room temperature molecular ferroelectric copper(II) complex single crystal.
Materials horizons, 2024, 11, 454-459
1570516 CIFC4 H4 Br2 Cu N8 O6P 1 21/c 19.3556; 6.8168; 9.3773
90; 93.497; 90
596.93Lei, Guorong; Cheng, Wenchuan; Lu, Zujia; Zhang, Tonglai; Li, Zhimin; Zhang, Jianguo
A three-dimensional energetic coordination compound (BLG-1) with excellent initiating ability for lead-free primary explosives.
Materials horizons, 2023, 10, 5775-5781
1570792 CIFLu Na O6 Se2P n a 2112.718; 8.3994; 5.375
90; 90; 90
574.18Li, Peng-Fei; Hu, Chun-Li; Mao, Jiang-Gao; Kong, Fang
A UV non-hydrogen pure selenite nonlinear optical material for achieving balanced properties through framework-optimized structural transformation.
Materials horizons, 2024, 11, 1704-1709
1571018 CIFC40 H40 Cl4 P2 ZnC 1 c 112.18; 20.741; 16.353
90; 110.644; 90
3865.9Yu, Shuiyue; Peng, Hui; Wei, Qilin; Li, Tongzhou; Huang, Weiguo; He, Xuefei; Du, Zhentao; Zhao, Jialong; Zou, Bingsuo
Realizing efficient broadband near-infrared emission and multimode photoluminescence switching <i>via</i> coordination structure modulation in Sb<sup>3+</sup>-doped 0D organic metal chlorides.
Materials horizons, 2024, 11, 2230-2241
1571019 CIFC40 H40 Cd Cl4 P2C 1 c 112.2339; 21.044; 16.5713
90; 112.272; 90
3948Yu, Shuiyue; Peng, Hui; Wei, Qilin; Li, Tongzhou; Huang, Weiguo; He, Xuefei; Du, Zhentao; Zhao, Jialong; Zou, Bingsuo
Realizing efficient broadband near-infrared emission and multimode photoluminescence switching <i>via</i> coordination structure modulation in Sb<sup>3+</sup>-doped 0D organic metal chlorides.
Materials horizons, 2024, 11, 2230-2241
1571163 CIFC129.23 H188.77 Cl4.69 Cu29 O3 P4 S14.31P -120.052; 20.1859; 24.629
94.177; 107.105; 103.932
9136.2Ghosh, Atanu; Sagadevan, Arunachalam; Murugesan, Kathiravan; Nastase, Stefan Adrian F.; Maity, Bholanath; Bodiuzzaman, Mohammad; Shkurenko, Aleksander; Hedhili, Mohamed Nejib; Yin, Jun; Mohammed, Omar F.; Eddaoudi, Mohamed; Cavallo, Luigi; Rueping, Magnus; Bakr, Osman M.
Multiple neighboring active sites of an atomically precise copper nanocluster catalyst for efficient bond-forming reactions.
Materials horizons, 2024, 11, 2494-2505
1571437 CIFC46 H36 Cl2 N4 ZnP 1 21/c 121.9901; 11.7699; 15.3428
90; 106.646; 90
3804.63Shonde, Tunde Blessed; Liu, He; Olasupo, Oluwadara Joshua; Bouchard, Alexander; Bouchard, Sara; Franklin, Annaliese; Lin, Xinsong; Stand, Luis M.; Ma, Biwu
Aggregation-induced emission organic metal halide complex for X-ray scintillation.
Materials horizons, 2024, 11, 3076-3081
1571464 CIFC8 H3 In O5I 41 2 215.4846; 15.4846; 12.3372
90; 90; 90
2958.13Liu, Zhanning; Xing, Chengyong; Wu, Shaowen; Ma, Min; Tian, Jian
Biphenyl tetracarboxylic acid-based metal-organic frameworks: a case of topology-dependent thermal expansion.
Materials horizons, 2024, 11, 3345-3351
1571465 CIFC8 H3 In O5I 41 2 215.4791; 15.4791; 12.3348
90; 90; 90
2955.45Liu, Zhanning; Xing, Chengyong; Wu, Shaowen; Ma, Min; Tian, Jian
Biphenyl tetracarboxylic acid-based metal-organic frameworks: a case of topology-dependent thermal expansion.
Materials horizons, 2024, 11, 3345-3351
1571466 CIFC8 H3 In O5I 41 2 215.4819; 15.4819; 12.3361
90; 90; 90
2956.83Liu, Zhanning; Xing, Chengyong; Wu, Shaowen; Ma, Min; Tian, Jian
Biphenyl tetracarboxylic acid-based metal-organic frameworks: a case of topology-dependent thermal expansion.
Materials horizons, 2024, 11, 3345-3351
1571467 CIFC8 H3 In O5I 41 2 215.4763; 15.4763; 12.3336
90; 90; 90
2954.09Liu, Zhanning; Xing, Chengyong; Wu, Shaowen; Ma, Min; Tian, Jian
Biphenyl tetracarboxylic acid-based metal-organic frameworks: a case of topology-dependent thermal expansion.
Materials horizons, 2024, 11, 3345-3351
1571468 CIFC8 H3 In O5I 41 2 215.4711; 15.4711; 12.331
90; 90; 90
2951.49Liu, Zhanning; Xing, Chengyong; Wu, Shaowen; Ma, Min; Tian, Jian
Biphenyl tetracarboxylic acid-based metal-organic frameworks: a case of topology-dependent thermal expansion.
Materials horizons, 2024, 11, 3345-3351
1571469 CIFC8 H3 In O5I 41 2 215.4732; 15.4732; 12.3324
90; 90; 90
2952.62Liu, Zhanning; Xing, Chengyong; Wu, Shaowen; Ma, Min; Tian, Jian
Biphenyl tetracarboxylic acid-based metal-organic frameworks: a case of topology-dependent thermal expansion.
Materials horizons, 2024, 11, 3345-3351

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