Crystallography Open Database
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COD ID | Links | Formula | Space group | Cell parameters | Cell volume | Bibliography |
---|---|---|---|---|---|---|
7103195 | CIF | Ag Br H3 N | P 1 21/m 1 | 4.1931; 5.873; 6.757 90; 97.553; 90 | 164.955 | Chippindale, Ann M; Head, Laura E; Hibble, Simon J Simple linear asymmetrical complexes of silver(I): NC-Ag-NH3 and Br-Ag-NH3. Chemical communications (Cambridge, England), 2008, 3010-3012 |
7107332 | CIF | Ag Cl4 Ga P4 | P n m a | 12.0275; 7.0253; 12.6877 90; 90; 90 | 1072.07 | Laura C. Forfar; Timothy J. Clark; Michael Green; Stephen M. Mansell; Christopher A. Russell; Rajashekharayya A. Sanguramath; John M. Slattery White phosphorus as a ligand for the coinage metals Chem.Commun., 2012, 48, 1970 |
7128106 | CIF | Ag Cs Ga6 S10 | C 1 c 1 | 16.8381; 6.4655; 16.2525 90; 111.281; 90 | 1648.71 | Li, Jia-Nuo; Li, Xiao-Hui; Yao, Wen-Dong; Liu, Wenlong; Guo, Sheng-Ping New nonlinear optical-active AAgGa<sub>6</sub>S<sub>10</sub> (A = K, Rb, Cs) featuring {[AgGa<sub>6</sub>S<sub>10</sub>]<sup>-</sup>}<sub>\ιnfty </sub> framework and high laser damage threshold. Chemical communications (Cambridge, England), 2021, 57, 5175-5178 |
7128105 | CIF | Ag Ga6 K S10 | C 1 c 1 | 16.8278; 6.4318; 16.1146 90; 111.293; 90 | 1625.07 | Li, Jia-Nuo; Li, Xiao-Hui; Yao, Wen-Dong; Liu, Wenlong; Guo, Sheng-Ping New nonlinear optical-active AAgGa<sub>6</sub>S<sub>10</sub> (A = K, Rb, Cs) featuring {[AgGa<sub>6</sub>S<sub>10</sub>]<sup>-</sup>}<sub>\ιnfty </sub> framework and high laser damage threshold. Chemical communications (Cambridge, England), 2021, 57, 5175-5178 |
7128104 | CIF | Ag Ga6 Rb S10 | C 1 c 1 | 16.823; 6.4449; 16.163 90; 111.306; 90 | 1632.7 | Li, Jia-Nuo; Li, Xiao-Hui; Yao, Wen-Dong; Liu, Wenlong; Guo, Sheng-Ping New nonlinear optical-active AAgGa<sub>6</sub>S<sub>10</sub> (A = K, Rb, Cs) featuring {[AgGa<sub>6</sub>S<sub>10</sub>]<sup>-</sup>}<sub>\ιnfty </sub> framework and high laser damage threshold. Chemical communications (Cambridge, England), 2021, 57, 5175-5178 |
7107366 | CIF | Ag H24 K6 O51 P W11 | P n a 21 | 17.9021; 20.6963; 13.241 90; 90; 90 | 4905.9 | Alevtina Neyman; Yifeng Wang; Shelly Sharet; Neta Varsano; Bogdan Botar; Paul Koegerler; Louisa Meshi; Ira A. Weinstock Polyoxometalate-directed assembly of water-soluble AgCl nanocubes Chem.Commun., 2012, 48, 2207 |
7100874 | CIF | Ag1.5 Bi7.5 Rb2 Se13 | P n n m | 12.386; 27.642; 4.1107 90; 90; 90 | 1407.4 | Mercouri Kanatzidis; Duck-Young Chung; Jun-Ho Kim A New Homologous Series A2[M5+nSe9+n] (A = Rb, Cs; M = Bi, Ag, Cd) and its members ?-CsBi3Se5, Rb2CdBi6Se11, CsAg0.5Bi3.5Se6, CsCdBi3Se6, Rb2Ag1.5Bi7.5Se13, and Cs2Ag1.5Bi7.5Se13 Chemical Communications, 2006 |
7128019 | CIF | Ag2 Bi2 I4 O20 S2 | P 1 | 5.5189; 6.9129; 11.8527 90.598; 92.151; 109.895 | 424.78 | Liu, Hongming; Wu, Qingchen; Liu, Lili; Lin, Zheshuai; Halasyamani, P. Shiv; Chen, Xingguo; Qin, Jingui AgBi(SO<sub>4</sub>)(IO<sub>3</sub>)<sub>2</sub>: aliovalent substitution induces structure dimensional upgrade and second harmonic generation enhancement. Chemical communications (Cambridge, England), 2021, 57, 3712-3715 |
7127638 | CIF | Ag3 Ga8 K Se14 | C 1 m 1 | 12.8805; 11.6857; 9.66 90; 115.998; 90 | 1306.87 | Li, Jia-Nuo; Yao, Wen-Dong; Li, Xiao-Hui; Liu, Wenlong; Xue, Huai-Guo; Guo, Sheng-Ping A novel promising infrared nonlinear optical selenide KAg<sub>3</sub>Ga<sub>8</sub>Se<sub>14</sub> designed from benchmark AgGaQ<sub>2</sub> (Q = S, Se). Chemical communications (Cambridge, England), 2021, 57, 1109-1112 |
7128629 | CIF | Ag5 Cl2 P S4 | A m m 2 | 7.44; 11.17; 6.3 90; 90; 90 | 524 | Gao, Lihua; Chu, Yu; Wu, Xiaowen; Zhang, Bingbing; Wu, Kui From thiophosphate to chalcohalide: mixed-anion AgS<sub>x</sub>Cl<sub>y</sub> ligands concurrently enhancing nonlinear optical effects and laser-damage threshold. Chemical communications (Cambridge, England), 2021, 57, 8218-8221 |
7108289 | CIF | Ag67.63 Al96 O474.72 Si96 | F m -3 c | 24.57701; 24.57701; 24.57701 90; 90; 90 | 14845.2 | Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology Chem.Commun., 2012, 48, 5829 |
7108291 | CIF | Ag67.88 Al96 O474.92 Si96 | F m -3 c | 24.56457; 24.56457; 24.56457 90; 90; 90 | 14822.7 | Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology Chem.Commun., 2012, 48, 5829 |
7108288 | CIF | Ag67.94 Al96 O477.46 Si96 | F m -3 c | 24.58547; 24.58547; 24.58547 90; 90; 90 | 14860.6 | Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology Chem.Commun., 2012, 48, 5829 |
7108292 | CIF | Ag68.03 Al96 O472.88 Si96 | F m -3 c | 24.5592; 24.5592; 24.5592 90; 90; 90 | 14813 | Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology Chem.Commun., 2012, 48, 5829 |
7108287 | CIF | Ag68.05 Al96 O476.24 Si96 | F m -3 c | 24.59619; 24.59619; 24.59619 90; 90; 90 | 14880 | Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology Chem.Commun., 2012, 48, 5829 |
7108290 | CIF | Ag68.26 Al96 O476.17 Si96 | F m -3 c | 24.57044; 24.57044; 24.57044 90; 90; 90 | 14833.3 | Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology Chem.Commun., 2012, 48, 5829 |
7108286 | CIF | Ag69.45 Al96 O473.69 Si96 | F m -3 c | 24.59947; 24.59947; 24.59947 90; 90; 90 | 14886 | Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology Chem.Commun., 2012, 48, 5829 |
7108285 | CIF | Ag69.76 Al96 O471.42 Si96 | F m -3 c | 24.59343; 24.59343; 24.59343 90; 90; 90 | 14875 | Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology Chem.Commun., 2012, 48, 5829 |
7108284 | CIF | Ag71.14 Al96 O464.45 Si96 | F m -3 c | 24.59018; 24.59018; 24.59018 90; 90; 90 | 14869.1 | Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology Chem.Commun., 2012, 48, 5829 |
7108283 | CIF | Ag71.568 Al96 O469.91 Si96 | F m -3 c | 24.59162; 24.59162; 24.59162 90; 90; 90 | 14871.7 | Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology Chem.Commun., 2012, 48, 5829 |
7108282 | CIF | Ag71.89 Al96 O466.81 Si96 | F m -3 c | 24.597; 24.597; 24.597 90; 90; 90 | 14881.5 | Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology Chem.Commun., 2012, 48, 5829 |
7108298 | CIF | Ag86.99 Al96 O384 Si96 | F m -3 c | 24.67687; 24.67687; 24.67687 90; 90; 90 | 15026.9 | Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology Chem.Commun., 2012, 48, 5829 |
7108303 | CIF | Ag87.048 Al96 O384 Si96 | F m -3 c | 24.68011; 24.68011; 24.68011 90; 90; 90 | 15032.8 | Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology Chem.Commun., 2012, 48, 5829 |
7108299 | CIF | Ag87.11 Al96 O384 Si96 | F m -3 c | 24.67781; 24.67781; 24.67781 90; 90; 90 | 15028.7 | Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology Chem.Commun., 2012, 48, 5829 |
7108300 | CIF | Ag87.11 Al96 O384 Si96 | F m -3 c | 24.67885; 24.67885; 24.67885 90; 90; 90 | 15030.5 | Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology Chem.Commun., 2012, 48, 5829 |
7108302 | CIF | Ag87.498 Al96 O384 Si96 | F m -3 c | 24.67992; 24.67992; 24.67992 90; 90; 90 | 15032.5 | Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology Chem.Commun., 2012, 48, 5829 |
7108301 | CIF | Ag87.674 Al96 O384 Si96 | F m -3 c | 24.67956; 24.67956; 24.67956 90; 90; 90 | 15031.8 | Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology Chem.Commun., 2012, 48, 5829 |
7108296 | CIF | Ag87.704 Al96 O384 Si96 | F m -3 c | 24.67524; 24.67524; 24.67524 90; 90; 90 | 15024 | Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology Chem.Commun., 2012, 48, 5829 |
7108295 | CIF | Ag87.934 Al96 O384 Si96 | F m -3 c | 24.67394; 24.67394; 24.67394 90; 90; 90 | 15021.6 | Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology Chem.Commun., 2012, 48, 5829 |
7108297 | CIF | Ag88.174 Al96 O384 Si96 | F m -3 c | 24.67623; 24.67623; 24.67623 90; 90; 90 | 15025.8 | Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology Chem.Commun., 2012, 48, 5829 |
7108294 | CIF | Ag88.445 Al96 O384 Si96 | F m -3 c | 24.67046; 24.67046; 24.67046 90; 90; 90 | 15015.2 | Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology Chem.Commun., 2012, 48, 5829 |
7108293 | CIF | Ag88.734 Al96 O384 Si96 | F m -3 c | 24.66358; 24.66358; 24.66358 90; 90; 90 | 15002.7 | Thomas Carey; Avelino Corma; Fernando Rey; Chiu C. Tang; Joseph A. Hriljac; Paul A. Anderson The effect of extra framework species on the intrinsic negative thermal expansion property of zeolites with the LTA topology Chem.Commun., 2012, 48, 5829 |
7130882 | CIF | Al Ca Dy O4 | I 4/m m m | 3.6501; 3.6501; 11.909 90; 90; 90 | 158.666 | Kazin, Pavel E.; Zykin, Mikhail; Dyakonov, Andrey K.; Vasiliev, Alexander V.; Karpov, Maxim A.; Gorbachev, Evgeny A.; Sleptsova, Anastasia E.; Jansen, Martin Dy3+ single ion magnet in the extended inorganic solid Ca(Y,Dy)AlO4 Chemical Communications, 2022 |
7100837 | CIF | Al Cl Na O Si | P -4 3 n | 8.88461; 8.88461; 8.88461 90; 90; 90 | 701.318 | M. Weller; J. A. Armstrong Structural Observation of Photochromism Chemical Communications, 2006 |
7119629 | CIF | Al H2 N11 O P6 | P 1 21/m 1 | 4.7566; 8.3266; 10.6298 90; 101.601; 90 | 412.41 | Neudert, Lukas; Heinke, Frank; Bräuniger, Thomas; Pucher, Florian J.; Vaughan, Gavin B.; Oeckler, Oliver; Schnick, Wolfgang An unusual nitride network of aluminum-centered octahedra and phosphorus-centered tetrahedra and structure determination from microcrystalline samples. Chemical communications (Cambridge, England), 2017, 53, 2709-2712 |
7116227 | CIF | Al H5 Mg O10 P2 | P 1 21 1 | 5.0119; 7.769; 9.995 90; 102.595; 90 | 379.81 | Mu, Ying; Wang, Yanyan; Li, Yi; Li, Jiyang; Yu, Jihong Organotemplate-free synthesis of an open-framework magnesium aluminophosphate with proton conduction properties. Chemical communications (Cambridge, England), 2015, 51, 2149-2151 |
7100707 | CIF | Al H6 O12 P3 | P 1 2/c 1 | 7.9659; 4.918; 11.6355 90; 95.851; 90 | 453.46 | Adrian Wright; Neal J. Checker; John Godber; Benson M. Kariuki; Steven Rishi Synthesis and crystal structure of AlH2P3O10 2H2O; a new structure-type for layered acid phosphates. Chemical Communications, 2006 |
7122996 | CIF | Al H6 O6 P3 | C 1 2/c 1 | 11.953; 7.809; 7.868 90; 109.77; 90 | 691.1 | Evans, Hayden; Deng, Zeyu; Collings, Ines; Wu, Yue; Andrews, Jessica L.; Pilar, Kartik; Tuffnell, Joshua Mark; Wu, Guang; Wang, John; Dutton, S. E. E.; Bristowe, Paul; Seshadri, Ram; Cheetham, Anthony K. Polymorphism in M(H2PO2)3 (M = V, Al, Ga) compounds with the perovskite-related ReO3 structure. Chemical Communications, 2019 |
7107818 | CIF | Al H63 K14 Nb18 O85 | P 21 21 21 | 18.582; 18.646; 24.646 90; 90; 90 | 8539 | Yu Hou; Todd Alam; Mark A. Rodriguez; May Nyman Aqueous compatibility of group IIIA monomers and Nb-polyoxoanions Chem.Commun., 2012, 48, 6004 |
7111019 | CIF | Al1.5 H7.5 O13.5 P3 | P -1 | 7.1177; 8.6729; 9.22 65.108; 70.521; 68.504 | 469.4 | Yan, Wenfu; Yu, Jihong; Shi, Zhan; Xu, Ruren A novel open-framework aluminophosphate [AlP2O6(OH)2][H3O] containing propeller-like chiral motifs Chemical Communications, 2000, 1431 |
7117433 | CIF | Al12 O50.7 Si12 Zn8.9 | P m -3 m | 11.9061; 11.9061; 11.9061 90; 90; 90 | 1687.75 | Readman, J.E.; Gameson, I.; Hriljac, J.A.; Anderson, P.A.; Edwards, P.P. Synthesis and structure of zinc oxide clusters encapsulated in zeolite LTA Chemical Communications, 2000, 2000, 595-596 |
7127451 | CIF | Al12 O67.44 P12 | P 21 21 2 | 15.0698; 17.9944; 5.03671 90; 90; 90 | 1365.81 | Komura, Kenichi; Aoki, Hisakazu; Tanaka, Kentaro; Ikeda, Takuji GAM-3: a zeolite formed from AlPO<sub>4</sub>-5 <i>via</i> multistep structural changes. Chemical communications (Cambridge, England), 2020, 56, 14901-14904 |
7132114 | CIF | Al12 O67.44 P12 | P 21 21 2 | 15.0698; 17.9944; 5.03671 90; 90; 90 | 1365.81 | Komura, Kenichi; Ikeda, Takuji; imai, edo; oka, kazuma Two-dimensional microporous GAM-6 formed by the interzeolite conversion of CoAPO-5 Chemical Communications, 2023 |
7130870 | CIF | Al13 H48 O104 P V3 W9 | P n m a | 27.8523; 13.8253; 25.2206 90; 90; 90 | 9711.6 | Zhou, Wei; Ogiwara, Naoki; Weng, Zhewei; Zhao, Congcong; Yan, Likai; Kikukawa, Yuji; Uchida, Sayaka Vanadium-substituted polycationic Al-oxo cluster in a porous ionic crystal exhibiting Lewis acidity Chemical Communications, 2022 |
7110083 | CIF | Al13 H75 O66 S3 | P -1 | 14.2981; 14.3361; 14.7145 81.191; 71.31; 68.434 | 2655 | Scott E. Smart; John Vaughn; Iraklis Pappas; Long Pan Controlled step-wise isomerization of the Keggin-type Al13 and determination of the gamma-Al13 structure Chem.Commun., 2013, 49, 11352 |
7113136 | CIF | Al19 H932 Mo132 N15 O928 S30 | C 1 2/c 1 | 45.511; 46.365; 45.951 90; 90.014; 90 | 96962 | Merca, Alice; Bögge, Hartmut; Schmidtmann, Marc; Zhou, Yunshan; Haupt, Erhard T. K.; Sarker, M. Khaled; Hill, Craig L.; Müller, Achim Cation behavior at an artificial cell interface: binding distinguished by ion hydration energetics and size. Chemical communications (Cambridge, England), 2008, 948-950 |
7129139 | CIF | Al2 Br8 Sm | P b c a | 12.0436; 11.959; 20.842 90; 90; 90 | 3001.9 | Schäfer, Thomas C.; Sorg, Jens; Sedykh, Alexander E.; Müller-Buschbaum, Klaus Red emitting Sm(II) phosphors: Thermally switchable Luminescence in Sm(AlX4)2 (X = Cl, Br) by 5d-4f and intra-4f transitions Chemical Communications, 2021 |
7103013 | CIF | Al2 Ca H10 O21 Si6 | P 1 21 1 | 7.43605; 17.3988; 7.29555 90; 105.594; 90 | 909.14 | Henry, Paul F; Weller, Mark T; Wilson, Chick C Hydrogenous materials using powder neutron diffraction: full structural determination of adsorbed water molecules in a zeolite. Chemical communications (Cambridge, England), 2008, 1557-1559 |
7110706 | CIF | Al2 Cs2 O9 P2 | P -1 | 4.925; 7.121; 8.066 96.51; 107.12; 108.68 | 249.28 | Huang, Qun; Hwu, Shiou-Jyh Cs2Al2P2O9: an exception to Löwenstein’s rule. Synthesis and characterization of a novel layered aluminophosphate containing linear Al‒O‒Al linkages Chemical Communications, 1999, 2343 |
7122994 | CIF | Al2 H12 O12 P6 | P 1 21/n 1 | 11.2333; 11.5158; 11.367 90; 98.32; 90 | 1454.96 | Evans, Hayden; Deng, Zeyu; Collings, Ines; Wu, Yue; Andrews, Jessica L.; Pilar, Kartik; Tuffnell, Joshua Mark; Wu, Guang; Wang, John; Dutton, S. E. E.; Bristowe, Paul; Seshadri, Ram; Cheetham, Anthony K. Polymorphism in M(H2PO2)3 (M = V, Al, Ga) compounds with the perovskite-related ReO3 structure. Chemical Communications, 2019 |
7117500 | CIF | Al2.6 O24 Rb2.69 Si9.4 | P m m a | 9.9653; 7.5717; 9.3031 90; 90; 90 | 701.959 | Ikeda, T.; Itabashi, K. RMA-3: Synthesis and structure of a novel Rb-C zeolite Chemical Communications, 2005, 2005, 2753-2755 |
7130871 | CIF | Al28.75 O174 P2 V9.11 W18.14 | C m c e | 29.9847; 27.7701; 23.4604 90; 90; 90 | 19535 | Zhou, Wei; Ogiwara, Naoki; Weng, Zhewei; Zhao, Congcong; Yan, Likai; Kikukawa, Yuji; Uchida, Sayaka Vanadium-substituted polycationic Al-oxo cluster in a porous ionic crystal exhibiting Lewis acidity Chemical Communications, 2022 |
7113331 | CIF | Al3 Cl Na4 O12 Si3 | P -4 3 n | 8.88461; 8.88461; 8.88461 90; 90; 90 | 701.318 | Armstrong, Jennifer A.; Weller, Mark T. Structural observation of photochromism. Chemical communications (Cambridge, England), 2006, 1094-1096 |
7102741 | CIF | Al3.39 Ca1.54 K0.32 Kr0.53 Na0.1 O24.52 Si8.61 | R -3 m :R | 9.3086; 9.3086; 9.3086 91.638; 91.638; 91.638 | 805.58 | Cork, S P; Cressey, G; Jones, R H; Teat, S J; Zholobenko, V L The dynamic desorption of krypton from the zeolite chabazite. Chemical communications (Cambridge, England), 2004, 2796-2797 |
7102744 | CIF | Al3.39 Ca1.54 K0.32 Kr0.87 Na0.1 O24.52 Si8.61 | R -3 m :R | 9.2943; 9.2943; 9.2943 91.625; 91.625; 91.625 | 801.89 | Cork, S P; Cressey, G; Jones, R H; Teat, S J; Zholobenko, V L The dynamic desorption of krypton from the zeolite chabazite. Chemical communications (Cambridge, England), 2004, 2796-2797 |
7102743 | CIF | Al3.39 Ca1.54 K0.32 Kr1.05 Na0.1 O24.52 Si8.61 | R -3 m :R | 9.2833; 9.2833; 9.2833 91.617; 91.617; 91.617 | 799.06 | Cork, S P; Cressey, G; Jones, R H; Teat, S J; Zholobenko, V L The dynamic desorption of krypton from the zeolite chabazite. Chemical communications (Cambridge, England), 2004, 2796-2797 |
7102742 | CIF | Al3.39 Ca1.54 K0.32 Kr1.06 Na0.1 O24.52 Si8.61 | R -3 m :R | 9.2935; 9.2935; 9.2935 91.604; 91.604; 91.604 | 801.71 | Cork, S P; Cressey, G; Jones, R H; Teat, S J; Zholobenko, V L The dynamic desorption of krypton from the zeolite chabazite. Chemical communications (Cambridge, England), 2004, 2796-2797 |
7102745 | CIF | Al3.39 Ca1.54 K0.32 Kr1.15 Na0.1 O24.52 Si8.61 | R -3 m :R | 9.2743; 9.2743; 9.2743 91.597; 91.597; 91.597 | 796.76 | Cork, S P; Cressey, G; Jones, R H; Teat, S J; Zholobenko, V L The dynamic desorption of krypton from the zeolite chabazite. Chemical communications (Cambridge, England), 2004, 2796-2797 |
7117213 | CIF | Al4 H3 Na3 O19 P4 | P 1 21/m 1 | 7.537; 12.525; 9.7 90; 98.51; 90 | 905.6 | Yanjun Sun; Yan Yan; Yanyan Wang; Yi Li; Jiyang Li; Jihong Yu High proton conduction in a new alkali metal-templated open-framework aluminophosphate Chem.Commun., 2015, 51, 9317 |
7105575 | CIF | Al4.8 O9.6 Si1.2 | P b a m | 7.588; 7.688; 2.8895 90; 90; 90 | 168.56 | Zhang, Pengyu; Liu, Jiachen; Du, Haiyan; Li, Sha; Xu, Rui A facile preparation of mullite [Al(2)(Al(2.8)Si(1.2))O(9.6)] nanowires by B(2)O(3)-doped molten salts synthesis. Chemical communications (Cambridge, England), 2010, 46, 3988-3990 |
7102714 | CIF | Al5 Ge5 V2 | C m c m | 5.4072; 12.978; 11.362 90; 90; 90 | 797.4 | Wu, Xiuni; Bilc, Daniel; Mahanti, Subhendra D; Kanatzidis, Mercouri G V2Al5Ge5: first ternary intermetallic in the V-Al-Ge system accessible in liquid aluminium. Chemical communications (Cambridge, England), 2004, 1506-1507 |
7116045 | CIF | Al6 H10 Na2 O30 P6 | P c a 21 | 17.495; 10.321; 13.577 90; 90; 90 | 2451.5 | Yanyan Wang; Yanjun Sun; Ying Mu; Chuanqi Zhang; Jiyang Li; Jihong Yu Organotemplate-free hydrothermal synthesis of an aluminophosphate molecular sieve with AEN zeotype topology and properties of its derivatives Chem.Commun., 2014, 50, 15400 |
7103819 | CIF | Am3 H I13 K3 O39 | R 3 c :H | 22.096; 22.096; 13.436 90; 90; 120 | 5681 | Wolfgang H. Runde; Amanda C. Bean; Brian L. Scott Synthesis and characterization of a channel framework in K3Am3(I03)12.HIO3 Chemical communications (Cambridge, England), 2003 |
7132132 | CIF | As Cd Cs2 Se5 | P 42/n :2 | 17.9368; 17.9368; 7.5125 90; 90; 90 | 2416.99 | Chen , Xin; Zhou, Shenghua; Zhang, Chao; Lin, Hua; Liu, Yi A novel bifunctional thioarsenate based on unprecedented molecular [Cd4As8S16(S2)2]8− cluster anions Chemical Communications, 2023 |
7118238 | CIF | As H18 O35 V10 | I -4 3 m | 16.708; 16.708; 16.708 90; 90; 90 | 4664.16 | Bu, W.-M.; Ye, L.; Yang, G.-Y.; Xu, J.-Q.; Shao, M.-C.; Fan, Y.-G. A three-dimensional neutral framework of a novel decavanadium cluster bridged by an As O4 tetrahedron: (As V(IV)8 V(V) O26 (mue-H2 O)) * 8(H2 O) Chemical Communications, 2000, 2000, 1279-1280 |
7106417 | CIF | As12 F27 O99.69 V36 | P 63/m | 32.3426; 32.3426; 10.6928 90; 90; 120 | 9686.6 | Eleni Kotsapa; Mark T. Weller Vanadium fluoroarsenates-folding sheets into highly corrugated layers and crystalline arrays of large inorganic tubes Chem.Commun., 2011, 47, 6132-6134 |
7127691 | CIF | As14 Ba Ge8 | I -4 3 m | 10.3145; 10.3145; 10.3145 90; 90; 90 | 1097.35 | Weippert, Valentin; Chau, Thanh; Witthaut, Kristian; Eisenburger, Lucien; Johrendt, Dirk BaGe<sub>8</sub>As<sub>14</sub>: a semiconducting sodalite-type compound. Chemical communications (Cambridge, England), 2021, 57, 1332-1335 |
7127692 | CIF | As14 Ba Ge8 | I -4 3 m | 10.306; 10.306; 10.306 90; 90; 90 | 1094.64 | Weippert, Valentin; Chau, Thanh; Witthaut, Kristian; Eisenburger, Lucien; Johrendt, Dirk BaGe<sub>8</sub>As<sub>14</sub>: a semiconducting sodalite-type compound. Chemical communications (Cambridge, England), 2021, 57, 1332-1335 |
7127693 | CIF | As14 Ba Ge8 | I -4 3 m | 10.3052; 10.3052; 10.3052 90; 90; 90 | 1094.38 | Weippert, Valentin; Chau, Thanh; Witthaut, Kristian; Eisenburger, Lucien; Johrendt, Dirk BaGe<sub>8</sub>As<sub>14</sub>: a semiconducting sodalite-type compound. Chemical communications (Cambridge, England), 2021, 57, 1332-1335 |
7127694 | CIF | As14 Ba Ge8 | I -4 3 m | 10.2967; 10.2967; 10.2967 90; 90; 90 | 1091.68 | Weippert, Valentin; Chau, Thanh; Witthaut, Kristian; Eisenburger, Lucien; Johrendt, Dirk BaGe<sub>8</sub>As<sub>14</sub>: a semiconducting sodalite-type compound. Chemical communications (Cambridge, England), 2021, 57, 1332-1335 |
7127695 | CIF | As14 Ba Ge8 | I -4 3 m | 10.3018; 10.3018; 10.3018 90; 90; 90 | 1093.3 | Weippert, Valentin; Chau, Thanh; Witthaut, Kristian; Eisenburger, Lucien; Johrendt, Dirk BaGe<sub>8</sub>As<sub>14</sub>: a semiconducting sodalite-type compound. Chemical communications (Cambridge, England), 2021, 57, 1332-1335 |
7104681 | CIF | As2 Ba0.34 Fe2 K0.66 | I 4/m m m | 3.8822; 3.8822; 13.5396 90; 90; 90 | 204.06 | Mathieu, Josiah L; Latturner, Susan E Zintl phase as dopant source in the flux synthesis of Ba(1-x)K(x)Fe(2)As(2) type superconductors. Chemical communications (Cambridge, England), 2009, 34, 4965-4967 |
7104682 | CIF | As2 Ba0.5 Fe2 K0.4 Sn0.1 | I 4/m m m | 3.9021; 3.9021; 13.3538 90; 90; 90 | 203.33 | Mathieu, Josiah L; Latturner, Susan E Zintl phase as dopant source in the flux synthesis of Ba(1-x)K(x)Fe(2)As(2) type superconductors. Chemical communications (Cambridge, England), 2009, 34, 4965-4967 |
7104683 | CIF | As2 Ba0.61 Fe2 K0.35 Sn0.04 | I 4/m m m | 3.9063; 3.9063; 13.352 90; 90; 90 | 203.75 | Mathieu, Josiah L; Latturner, Susan E Zintl phase as dopant source in the flux synthesis of Ba(1-x)K(x)Fe(2)As(2) type superconductors. Chemical communications (Cambridge, England), 2009, 34, 4965-4967 |
7104684 | CIF | As2 Ba0.68 Fe2 K0.24 Sn0.07 | I 4/m m m | 3.946; 3.946; 13.431 90; 90; 90 | 209.1 | Mathieu, Josiah L; Latturner, Susan E Zintl phase as dopant source in the flux synthesis of Ba(1-x)K(x)Fe(2)As(2) type superconductors. Chemical communications (Cambridge, England), 2009, 34, 4965-4967 |
7104685 | CIF | As2 Ba0.78 Fe2 K0.12 Sn0.1 | I 4/m m m | 3.922; 3.922; 13.285 90; 90; 90 | 204.38 | Mathieu, Josiah L; Latturner, Susan E Zintl phase as dopant source in the flux synthesis of Ba(1-x)K(x)Fe(2)As(2) type superconductors. Chemical communications (Cambridge, England), 2009, 34, 4965-4967 |
7104686 | CIF | As2 Ba0.9 Fe2 Sn0.1 | I 4/m m m | 3.9297; 3.9297; 13.158 90; 90; 90 | 203.2 | Mathieu, Josiah L; Latturner, Susan E Zintl phase as dopant source in the flux synthesis of Ba(1-x)K(x)Fe(2)As(2) type superconductors. Chemical communications (Cambridge, England), 2009, 34, 4965-4967 |
7107297 | CIF | As2 Cl Cs5 O42.6 V14 | P 31 2 1 | 13.115; 13.115; 25.527 90; 90; 120 | 3802.5 | Wendy L. Queen; J. Palmer West; Shiou-Jyh Hwu; Thanh Thao Tran; P. Shiv Halasyamani; Don VanDerveer Symmetry preservation in a new noncentrosymmetric lattice comprised of acentric POM clusters residing in bowls of Cs+ -based half SOD B-cage Chem.Commun., 2012, 48, 1665 |
7117906 | CIF | As2 Co F28 N8 O6 S9 | P 1 21/c 1 | 17.126; 11.424; 18.441 90; 116.54; 90 | 3227.74 | Hoppenheit, R.; Lork, E.; Petersen, J.; Mews, R. A sulfur nitrogen triple, double and single bond in one ligand: synthesis and structure of (Co (N S F2 N S (O) F2)4) (As F6)2 S O2 Chemical Communications, 1997, 1997, 1659-1660 |
7115156 | CIF | As2 H18 O35 V10 | I -4 3 m | 16.708; 16.708; 16.708 90; 90; 90 | 4664.2 | Bu, Wei-Ming; Ye, Ling; Fan, Yu-Guo; Xu, Ji-Qing; Yang, Guo-Yu; Shao, Mei-Cheng A three-dimensional neutral framework of a novel decavanadium cluster bridged by an AsO4 tetrahedron: [AsVIV8VV2O26(μ-H2O)]·8H2O Chemical Communications, 2000, 1279 |
7100821 | CIF | As3 Cs H8 O15 Zn3 | P 1 21/c 1 | 16.1047; 6.5829; 12.9291 90; 99.263; 90 | 1352.81 | Chemical Communications, 2006 |
7100820 | CIF | As3 Cs2 H3 O13 Zn3 | P 1 21 1 | 10.768; 5.2056; 13.747 90; 110.24; 90 | 723 | S.B. Wiggin; M.T. Weller A chiral, 16-ring channel framework and a layered caesium zincoarsenate Chemical Communications, 2006 |
7129268 | CIF | As30 Au16 Ba8 | P 1 21/c 1 | 15.1473; 15.2189; 10.9542 90; 90.502; 90 | 2525.1 | Yox, Philip; Lebedev, Oleg I.; Donadio, Davide; Kovnir, Kirill Unprecedented superstructure in the type I family of clathrates Chemical Communications, 2021 |
7114544 | CIF | As4 H39 N13 Na2 | I 1 2/a 1 | 12.042; 12.287; 16.122 90; 98.59; 90 | 2358.7 | Korber, Nikolaus; Reil, Markus An isolated cyclo-tetraarsendiide: low temperature synthesis and crystal structure of bis-pentaamminesodium tetraarsendiide‒ammonia (1/3) [Na(NH3)5]2As4·3NH3 Chemical Communications, 2002, 84 |
7107295 | CIF | As8 Br Cs5 O43.5 V14 | C 1 2/c 1 | 13.454; 19.222; 22.564 90; 98.98; 90 | 5764 | Wendy L. Queen; J. Palmer West; Shiou-Jyh Hwu; Thanh Thao Tran; P. Shiv Halasyamani; Don VanDerveer Symmetry preservation in a new noncentrosymmetric lattice comprised of acentric POM clusters residing in bowls of Cs+ -based half SOD B-cage Chem.Commun., 2012, 48, 1665 |
7107293 | CIF | As8 Cl Cs5 O42 V14 | P n a 21 | 26.487; 13.766; 13.53 90; 90; 90 | 4933.3 | Wendy L. Queen; J. Palmer West; Shiou-Jyh Hwu; Thanh Thao Tran; P. Shiv Halasyamani; Don VanDerveer Symmetry preservation in a new noncentrosymmetric lattice comprised of acentric POM clusters residing in bowls of Cs+ -based half SOD B-cage Chem.Commun., 2012, 48, 1665 |
7107294 | CIF | As8 Cl Cs5 O44 V14 | C 1 2/c 1 | 13.488; 19.277; 22.595 90; 98.85; 90 | 5805 | Wendy L. Queen; J. Palmer West; Shiou-Jyh Hwu; Thanh Thao Tran; P. Shiv Halasyamani; Don VanDerveer Symmetry preservation in a new noncentrosymmetric lattice comprised of acentric POM clusters residing in bowls of Cs+ -based half SOD B-cage Chem.Commun., 2012, 48, 1665 |
7107296 | CIF | As8 Cs5 I O43.5 V14 | C 1 2/c 1 | 13.483; 19.296; 22.542 90; 98.71; 90 | 5797 | Wendy L. Queen; J. Palmer West; Shiou-Jyh Hwu; Thanh Thao Tran; P. Shiv Halasyamani; Don VanDerveer Symmetry preservation in a new noncentrosymmetric lattice comprised of acentric POM clusters residing in bowls of Cs+ -based half SOD B-cage Chem.Commun., 2012, 48, 1665 |
7100519 | CIF | As9 Bi6 F65 O20 S10 Se4 | P -1 | 10.3635; 13.5024; 15.0589 69.303; 72.326; 69.716 | 1809.19 | Johannes Beck; Folker Steden [Bi6F11]7+ - an unusual, highly charged bismuth fluoro complex in (Se4)[Bi6F11][AsF6]9 10 SO2 Chemical Communications, 2005 |
7101366 | CIF | Au Cl H6 N2 O4 | C 1 2/m 1 | 14.769; 5.9797; 7.7564 90; 115.824; 90 | 616.6 | Philip Coppens; Marc Messerschmidt; Cara L. Nygren; Shao-Liang Zheng. Ligand-unsupported Au(I) Chains with Short Au(I)...Au(I) Contacts Chemical Communications, 2006 |
7107333 | CIF | Au Cl4 Ga P8 | P n m a | 16.6593; 14.3369; 6.0051 90; 90; 90 | 1434.27 | Laura C. Forfar; Timothy J. Clark; Michael Green; Stephen M. Mansell; Christopher A. Russell; Rajashekharayya A. Sanguramath; John M. Slattery White phosphorus as a ligand for the coinage metals Chem.Commun., 2012, 48, 1970 |
7101367 | CIF | Au H6 N3 O3 | I m m m | 6.1828; 10.976; 7.5983 90; 90; 90 | 515.6 | Philip Coppens; Marc Messerschmidt; Cara L. Nygren; Shao-Liang Zheng. Ligand-unsupported Au(I) Chains with Short Au(I)...Au(I) Contacts Chemical Communications, 2006 |
7101368 | CIF | Au2 Cl2 H12 N4 O8 | P -1 | 7.6791; 7.9129; 11.569 72.624; 73.946; 66.513 | 605.27 | Philip Coppens; Marc Messerschmidt; Cara L. Nygren; Shao-Liang Zheng. Ligand-unsupported Au(I) Chains with Short Au(I)...Au(I) Contacts Chemical Communications, 2006 |
7109281 | CIF | Au6 Rb2 S10 Sb4 | P n n m | 12.4402; 26.07899; 6.9614 90; 90; 90 | 2258.47 | Hanko, J.A.; Kanatzidis, M.G. Rb2 Au6 Sb4 S10: a novel sulfosalt with two different interpenetrating anionic frameworks: (Au3 Sb4 S8)(-) and (Au3 S2)(-) Chemical Communications, 1998, 1998, 725-726 |
7128389 | CIF | B Ba2 Cl S3 | P b c m | 8.617; 8.999; 9.323 90; 90; 90 | 722.9 | Zhou, Jiazheng; Chu, Yu; Li, Junjie; Pan, Shilie Ba<sub>2</sub>BS<sub>3</sub>Cl and Ba<sub>5</sub>B<sub>2</sub>S<sub>8</sub>Cl<sub>2</sub>: first alkaline-earth metal thioborate halides with [BS<sub>3</sub>] units. Chemical communications (Cambridge, England), 2021, 57, 6440-6443 |
7126431 | CIF | B Ba6 Cl9 O3 | P 1 21/n 1 | 8.229; 12.2589; 19.08 90; 90.203; 90 | 1924.7 | Li, Wei; Wu, Hongping; Yu, Hongwei; Hu, Zhanggui; Wang, Jiyang; Wu, Yicheng Ba<sub>6</sub>BO<sub>3</sub>Cl<sub>9</sub> and Pb<sub>6</sub>BO<sub>4</sub>Cl<sub>7</sub>: structural insights into ortho-borates with uncondensed BO<sub>4</sub> tetrahedra. Chemical communications (Cambridge, England), 2020, 56, 6086-6089 |
7130258 | CIF | B Ce S3 | P n a 21 | 7.6059; 6.0181; 8.9311 90; 90; 90 | 408.804 | Breton, Logan S.; Morrison, Gregory; Lacroix, Matthew; Halasyamani, P. Shiv; Zur Loye, Hans-Conrad Lanthanide Thioborates, an Emerging Class of Nonlinear Optical Materials, Efficiently Synthesized Using the Boron-Chalcogen Mixture Method Chemical Communications, 2022 |
7126432 | CIF | B Cl7 O4 Pb6 | P -1 | 8.001; 8.054; 13.116 89.522; 89.663; 69.942 | 793.9 | Li, Wei; Wu, Hongping; Yu, Hongwei; Hu, Zhanggui; Wang, Jiyang; Wu, Yicheng Ba<sub>6</sub>BO<sub>3</sub>Cl<sub>9</sub> and Pb<sub>6</sub>BO<sub>4</sub>Cl<sub>7</sub>: structural insights into ortho-borates with uncondensed BO<sub>4</sub> tetrahedra. Chemical communications (Cambridge, England), 2020, 56, 6086-6089 |
7130388 | CIF | B F H3 K O3 | P b c m | 5.4454; 10.6284; 7.0024 90; 90; 90 | 405.27 | Li, Yang; Chen, Xinglong; Ok, Kang Min KF·B(OH)3: a KBBF-type material with large birefringence and remarkable deep-ultraviolet transparency Chemical Communications, 2022 |
7101189 | CIF | B H10 Li4 N3 | I 21 3 | 10.66445; 10.66445; 10.66445 90; 90; 90 | 1212.88 | P.A.Chater; W.I.F.David; S.R.Johnson; P.P.Edwards; P.A.Anderson Synthesis and Crystal Structure of Li4BH4(NH2)3 Chemical Communications, 2006 |
7101190 | CIF | B H10 Li4 N3 | I 21 3 | 10.6738; 10.6738; 10.6738 90; 90; 90 | 1216.05 | P.A.Chater; W.I.F.David; S.R.Johnson; P.P.Edwards; P.A.Anderson Synthesis and Crystal Structure of Li4BH4(NH2)3 Chemical Communications, 2006 |
7106968 | CIF | B H2 K O17 P4 Ti2 | I 41/a m d :2 | 6.315; 6.315; 16.375 90; 90; 90 | 653.02 | Yan Zhou; Stefan Hoffmann; Prashanth W. Menezes; Wilder Carrillo-Cabrera; Ya-Xi Huang; Leonid Vasylechko; Marcus Schmidt; Yurii Prots; Jin-Feng Deng; Jin-Xiao Mi; Rudiger Kniep Nanoporous titanium borophosphates with rigid gainesite-type framework structure Chem.Commun., 2011, 47, 11695 |
7124031 | CIF | B H4 I O7 Sr | P -1 | 6.595; 6.868; 7.12 96.73; 108.18; 92.37 | 303.2 | Peng, Guang; Lin, Chensheng; Zhao, Dan; Cao, Liling; Fan, Huixin; Chen, Kaichuang; Ye, Ning Sr[B(OH)4](IO3) and Li4Sr5[B12O22(OH)4](IO3)2: Two Unprecedented Metal Borate-Iodates Showing Subtle Balance of Enlarged Band Gap and Birefringence Chemical Communications, 2019 |
7106967 | CIF | B H5 O18 P4 Ti2 | I 41/a m d :2 | 6.3213; 6.3213; 16.461 90; 90; 90 | 657.76 | Yan Zhou; Stefan Hoffmann; Prashanth W. Menezes; Wilder Carrillo-Cabrera; Ya-Xi Huang; Leonid Vasylechko; Marcus Schmidt; Yurii Prots; Jin-Feng Deng; Jin-Xiao Mi; Rudiger Kniep Nanoporous titanium borophosphates with rigid gainesite-type framework structure Chem.Commun., 2011, 47, 11695 |
7102291 | CIF | B H6 Li2 N | R -3 :H | 14.48037; 14.48037; 9.24483 90; 90; 120 | 1678.76 | Chater, Philip A; David, William I F; Anderson, Paul A Synthesis and structure of the new complex hydride Li2BH4NH2. Chemical communications (Cambridge, England), 2007, 4770-4772 |
7130256 | CIF | B La S3 | P n a 21 | 7.6766; 6.0445; 8.994 90; 90; 90 | 417.332 | Breton, Logan S.; Morrison, Gregory; Lacroix, Matthew; Halasyamani, P. Shiv; Zur Loye, Hans-Conrad Lanthanide Thioborates, an Emerging Class of Nonlinear Optical Materials, Efficiently Synthesized Using the Boron-Chalcogen Mixture Method Chemical Communications, 2022 |
7130259 | CIF | B Nd S3 | P n a 21 | 7.4818; 6.0037; 8.853 90; 90; 90 | 397.663 | Breton, Logan S.; Morrison, Gregory; Lacroix, Matthew; Halasyamani, P. Shiv; Zur Loye, Hans-Conrad Lanthanide Thioborates, an Emerging Class of Nonlinear Optical Materials, Efficiently Synthesized Using the Boron-Chalcogen Mixture Method Chemical Communications, 2022 |
7130257 | CIF | B Pr S3 | P n a 21 | 7.5432; 6.0072; 8.8897 90; 90; 90 | 402.824 | Breton, Logan S.; Morrison, Gregory; Lacroix, Matthew; Halasyamani, P. Shiv; Zur Loye, Hans-Conrad Lanthanide Thioborates, an Emerging Class of Nonlinear Optical Materials, Efficiently Synthesized Using the Boron-Chalcogen Mixture Method Chemical Communications, 2022 |
7123776 | CIF | B10 Ba3 F2.09 K0.09 O17 | P -1 | 6.6187; 11.2123; 11.3236 108.909; 94.499; 90.543 | 791.99 | Li, Yahui; Yu, Hongwei; Han, Guopeng; Li, Hao; Yang, Zhihua; Pan, Shilie Ba3B10O17F2·0.1KF: The First Mixed Alkali/Alkaline-Earth Metal Fluorooxoborate with Unprecedented Double-layered B-O/F Anionic Arrangement Chemical Communications, 2019 |
7105600 | CIF | B10 K2 N2 Np3 O30 | P 1 21/n 1 | 6.599; 16.026; 11.053 90; 90.922; 90 | 1168.8 | Wang, Shuao; Alekseev, Evgeny V.; Depmeier, Wulf; Albrecht-Schmitt, Thomas E Further insights into intermediate- and mixed-valency in neptunium oxoanion compounds: structure and absorption spectroscopy of K(2)[(NpO(2))(3)B(10)O(16)(OH)(2)(NO(3))(2)]. Chemical communications (Cambridge, England), 2010, 46, 3955-3957 |
7104677 | CIF | B12 Cl12 Li2 O16 S8 | P -1 | 9.964; 10.285; 10.325 116.41; 94.82; 101.32 | 911.4 | Knapp, Carsten; Schulz, Christoph How to overcome Coulomb explosions in labile dications by using the [B(12)Cl(12)](2-) dianion. Chemical communications (Cambridge, England), 2009, 34, 4991-4993 |
7104623 | CIF | B12 Ga3 I K3 S12 Sm | P 63 2 2 | 12.9213; 12.9213; 9.3181 90; 90; 120 | 1347.3 | Guo, Sheng-Ping; Guo, Guo-Cong; Wang, Ming-Sheng; Zou, Jian-Ping; Zeng, Hui-Yi; Cai, Li-Zhen; Huang, Jin-Shun A facile approach to hexanary chalcogenoborate featuring a 3-D chiral honeycomb-like open-framework constructed from rare-earth consolidating thiogallate-closo-dodecaborate. Chemical communications (Cambridge, England), 2009, 34, 4366-4368 |
7124030 | CIF | B12 H4 I2 Li4 O32 Sr5 | C 1 2/m 1 | 14.245; 11.239; 9.215 90; 123.625; 90 | 1228.5 | Peng, Guang; Lin, Chensheng; Zhao, Dan; Cao, Liling; Fan, Huixin; Chen, Kaichuang; Ye, Ning Sr[B(OH)4](IO3) and Li4Sr5[B12O22(OH)4](IO3)2: Two Unprecedented Metal Borate-Iodates Showing Subtle Balance of Enlarged Band Gap and Birefringence Chemical Communications, 2019 |
7122669 | CIF | B12 H44 Li4 N4 | C 1 c 1 | 8.812993; 8.862578; 8.207642 90; 110.105; 90 | 602.003 | Zheng, Xiongfei; Yang, Yanjing; Li, Mengxuan; Zhao, Fengqi; Gu, Qinfen; Ma, Xiaohua; Guo, Yanhui Li(NH3)B3H8: A new ionic liquid octahydrotriborate Chemical Communications, 2018 |
7122816 | CIF | B14 Cs2 Li8 Na4 O28 | P -1 | 6.9395; 8.842; 10.522 95.774; 105.704; 97.395 | 610.1 | Mutailipu, Miriding; Zhang, Min; Li, Hao; Fan, Xiao; Yang, Zhihua; Jin, Shifeng; Wang, Gang; Pan, Shilie Li<sub>4</sub>Na<sub>2</sub>CsB<sub>7</sub>O<sub>14</sub>: a new edge-sharing [BO<sub>4</sub>]<sup>5-</sup> tetrahedra containing borate with high anisotropic thermal expansion. Chemical communications (Cambridge, England), 2019 |
7124498 | CIF | B2 Ba4 S12 | P 1 21/n 1 | 9.191; 13.066; 15.321 90; 97.757; 90 | 1823.1 | Li, Guangmao; Li, Junjie; Wu, Kui; Yang, Zhihua; Pan, Shilie Ba4(BS3S)2S4: A New Thioborate with Unprecedented [BS3-S] and [S4] Fundamental Building Blocks Chemical Communications, 2019 |
7128388 | CIF | B2 Ba5 Cl2 S8 | C 1 2/c 1 | 23.318; 8.609; 8.942 90; 94.033; 90 | 1790.6 | Zhou, Jiazheng; Chu, Yu; Li, Junjie; Pan, Shilie Ba<sub>2</sub>BS<sub>3</sub>Cl and Ba<sub>5</sub>B<sub>2</sub>S<sub>8</sub>Cl<sub>2</sub>: first alkaline-earth metal thioborate halides with [BS<sub>3</sub>] units. Chemical communications (Cambridge, England), 2021, 57, 6440-6443 |
7130869 | CIF | B2 Be2 O6 Pb | P m n 21 | 10.737; 4.7501; 4.5368 90; 90; 90 | 231.39 | Chen, Yi-Gang; Jiang, Xingxing; Yang, Yuanyu; Dai, Zhe; Lin, Zheshuai; Zhang, Xian-Ming PbBe2B2O6: An Excellent Ultraviolet Nonlinear-Optical Crystal with Unprecedented π-π Interacting BeBO5 Group Chemical Communications, 2022 |
7132371 | CIF | B2 Br Rb S6 Sr3 | C m c 21 | 15.044; 10.978; 7.8706 90; 90; 90 | 1299.9 | Yun, Yihan; Hou, Xueling; Yang, Zhihua; Li, Guangmao; Pan, Shilie [RbSr<sub>3</sub>X][(BS<sub>3</sub>)<sub>2</sub>] (X = Cl, Br): two salt-inclusion thioborates with large birefringence and structure transformation from centrosymmetric to asymmetric. Chemical communications (Cambridge, England), 2023, 60, 118-121 |
7132370 | CIF | B2 Cl Rb S6 Sr3 | P b c a | 11.082; 7.9064; 29.1239 90; 90; 90 | 2551.8 | Yun, Yihan; Hou, Xueling; Yang, Zhihua; Li, Guangmao; Pan, Shilie [RbSr<sub>3</sub>X][(BS<sub>3</sub>)<sub>2</sub>] (X = Cl, Br): two salt-inclusion thioborates with large birefringence and structure transformation from centrosymmetric to asymmetric. Chemical communications (Cambridge, England), 2023, 60, 118-121 |
7132674 | CIF | B2 F O4 Sb | P -1 | 4.3436; 6.3169; 7.0009 92.888; 95.126; 104.803 | 184.44 | Hu, Chenhui; Wu, Mengfan; Han, Jian; Yang, Zhihua; Han, Shujuan; Pan, Shilie New antimony fluorooxoborates with strong birefringence and unprecedented structural characterisation. Chemical communications (Cambridge, England), 2024, 60, 2653-2656 |
7102657 | CIF | B2 F2 H8 N2 O8 P2 | P 21 3 | 7.5913; 7.5913; 7.5913 90; 90; 90 | 437.47 | Li, Man-Rong; Liu, Wei; Ge, Ming-Hui; Chen, Hao-Hong; Yang, Xin-Xin; Zhao, Jing-Tai NH4[BPO4F]: a novel open-framework ammonium fluorinated borophosphate with a zeolite-like structure related to gismondine topology. Chemical communications (Cambridge, England), 2004, 1272-1273 |
7101499 | CIF | B2 Os1.42 Ru Ti1.58 | P -6 2 m | 8.8554; 8.8554; 3.0336 90; 90; 120 | 206.02 | B.P.Fokwa T.; J.von Appen; R.Dronskowski Synthesis of a missing structural link: The first trigonal planar B4 units in the novel complex boride Ti1+xOs2_xRuB2 (x = 0.6) Chemical Communications, 2006 |
7131273 | CIF | B3 Cs F2 H2 O5 | P 1 21/c 1 | 7.4498; 5.9711; 15.5448 90; 100.466; 90 | 679.98 | Chen, Ziqi; Li, Fuming; Han, Jian; Yang, Zhihua; Pan, Shilie; Mutailipu, Miriding Cs[B<sub>3</sub>O<sub>3</sub>F<sub>2</sub>(OH)<sub>2</sub>]: discovery of a hydroxyfluorooxoborate guided by selective organic-inorganic transformation. Chemical communications (Cambridge, England), 2023, 59, 2114-2117 |
7127602 | CIF | B3 F2 O4 Rb | P 1 21/c 1 | 4.698; 17.77; 7.328 90; 118.95; 90 | 535.3 | Lu, Zixiu; Zhang, Fangfang; Tudi, Abudukadi; Yang, Zhihua; Pan, Shilie RbB<sub>3</sub>O<sub>4</sub>F<sub>2</sub>: a rubidium fluorooxoborate with an unprecedented [B<sub>3</sub>O<sub>5</sub>F<sub>2</sub>]<sup>3-</sup> functionalized unit and a large birefringence. Chemical communications (Cambridge, England), 2020, 56, 15333-15336 |
7128039 | CIF | B4 Ba F4 O5 | P 1 21/c 1 | 4.835; 18.9867; 8.4861 90; 122.835; 90 | 654.57 | Zhang, Wenbin; Guo, Siru; Han, Shujuan; Wang, Liying; Zhou, Xin; Yang, Zhihua; Pan, Shilie BaB<sub>4</sub>O<sub>5</sub>F<sub>4</sub> with reversible phase transition featuring unprecedented fundamental building blocks of [B<sub>16</sub>O<sub>21</sub>F<sub>16</sub>] in the <i>α</i>-phase and [B<sub>4</sub>O<sub>6</sub>F<sub>4</sub>] in the <i>β</i>-phase. Chemical communications (Cambridge, England), 2021, 57, 4182-4185 |
7128040 | CIF | B4 Ba F4 O5 | P 1 21 1 | 4.8464; 18.6556; 14.1231 90; 91.934; 90 | 1276.18 | Zhang, Wenbin; Guo, Siru; Han, Shujuan; Wang, Liying; Zhou, Xin; Yang, Zhihua; Pan, Shilie BaB<sub>4</sub>O<sub>5</sub>F<sub>4</sub> with reversible phase transition featuring unprecedented fundamental building blocks of [B<sub>16</sub>O<sub>21</sub>F<sub>16</sub>] in the <i>α</i>-phase and [B<sub>4</sub>O<sub>6</sub>F<sub>4</sub>] in the <i>β</i>-phase. Chemical communications (Cambridge, England), 2021, 57, 4182-4185 |
7125980 | CIF | B4 Ba F6 H4 O6 | C 1 2/m 1 | 6.803; 7.008; 9.588 90; 92.96; 90 | 456.5 | Gai, Minqiang; Wang, Ying; Tong, Tinghao; Wang, Liying; Yang, Zhihua; Zhou, Xin; Pan, Shilie Ba(B<sub>2</sub>OF<sub>3</sub>(OH)<sub>2</sub>)<sub>2</sub> with well-ordered OH/F anions and a unique B<sub>2</sub>OF<sub>3</sub>(OH)<sub>2</sub> dimer. Chemical communications (Cambridge, England), 2020, 56, 3301-3304 |
7106210 | CIF | B4 H20 Mg N4 Na2 | I 41/a :2 | 9.4114; 9.4114; 12.7128 90; 90; 90 | 1126.03 | Hui Wu; Wei Zhou; Frederick E.Pinkerton; Martin S.Meyer; Qingrong Yao; Srinivas Gadipelli; Terrence J.Udovic; Taner Yildirim; John J. Rush Sodium magnesium amidoborane: the first mixed-metal amidoborane Chem.Commun., 2011, 47, 4102 |
7132415 | CIF | B4 O9 Pb Te | P -1 | 6.574; 6.7445; 9.8903 70.105; 78.877; 61.726 | 362.88 | Zhang, Ruonan; Tudi, Abudukadi; Yang, Xia; Wang, Xuping; Yang, Zhihua; Han, Shujuan; Pan, Shilie PbTeB<sub>4</sub>O<sub>9</sub>: a lead tellurium borate with unprecedented fundamental building block [B<sub>4</sub>O<sub>10</sub>] and large birefringence. Chemical communications (Cambridge, England), 2024, 60, 340-343 |
7112557 | CIF | B5 Ba5 H0.25 O23.125 P3 U | P 42/n :2 | 24.934; 24.934; 6.7732 90; 90; 90 | 4210.9 | Wu, Shijun; Wang, Shuao; Diwu, Juan; Depmeier, Wulf; Malcherek, Thomas; Alekseev, Evgeny V.; Albrecht-Schmitt, Thomas E Complex clover cross-sectioned nanotubules exist in the structure of the first uranium borate phosphate. Chemical communications (Cambridge, England), 2012, 48, 3479-3481 |
7121798 | CIF | B5 F O8 Pb | P b c a | 10.885; 9.108; 13.576 90; 90; 90 | 1345.9 | Mutailipu, Miriding; Zhang, Min; Zhang, Bingbing; Yang, Zhihua; Pan, Shilie The first lead fluorooxoborate PbB<sub>5</sub>O<sub>8</sub>F: achieving the coexistence of large birefringence and deep-ultraviolet cut-off edge. Chemical communications (Cambridge, England), 2018, 54, 6308-6311 |
7123714 | CIF | B5 H8 N O10 | P 1 21/c 1 | 9.2922; 17.3394; 16.3648 90; 91.234; 90 | 2636.1 | Ploszajski, Anna Rebecca; Billing, Matthew; Skipper, Neal; Cockcroft, Jeremy Karl A Novel Ammonium Pentaborate ‒ Poly(ethylene-glycol) Templated Polymer-Inclusion Compound Chemical Communications, 2019 |
7130544 | CIF | B6 Ba2 O13 Zn2 | P -1 | 6.9742; 7.0347; 13.2993 93.645; 99.323; 119.262 | 553.93 | Zhang, Rui; Su, Xin; Zhang, Jie; Wen, Dulin; Huang, Yi-Neng Ba2Zn2B6O13: Coplanar [B2O5] in Unnoted U-Shaped [B6O13] Groups Achieving Large Birefringence Chemical Communications, 2022 |
7130840 | CIF | B6 F2 H8 N2 O9 | P 1 21/c 1 | 6.1553; 12.1758; 14.5192 90; 113.443; 90 | 998.3 | Chen, Zilong; Li, Zijian; Chu, Dongdong; Zhang, Fangfang; Li, Xiaojing; Yang, Zhihua; Long, Xifa; Pan, Shilie A2B6O9F2 (A = NH4, K): New members of A2B6O9F2 family with deep-UV cutoff edge and moderate birefringence Chemical Communications, 2022 |
7130839 | CIF | B6 F2 K2 O9 | P b c a | 11.7129; 10.303; 15.414 90; 90; 90 | 1860.1 | Chen, Zilong; Li, Zijian; Chu, Dongdong; Zhang, Fangfang; Li, Xiaojing; Yang, Zhihua; Long, Xifa; Pan, Shilie A2B6O9F2 (A = NH4, K): New members of A2B6O9F2 family with deep-UV cutoff edge and moderate birefringence Chemical Communications, 2022 |
7129629 | CIF | B6 H10 N O15 P | P -1 | 8.012; 9.267; 10.018 71.03; 73.98; 67.4 | 639.6 | Yu, Hongwei; Yu, Su-Juan; Wu, Hongping; Hu, Zhanggui; Wang, Jiyang; Wu, Yicheng NH4(B6PO10(OH)4)·H2O: Exhibiting the Largest Birefringence in Borophosphates Chemical Communications, 2022 |
7100192 | CIF | B7 Cu H2 K O13 | P n n m | 12.6406; 4.75296; 15.38502 90; 90; 90 | 924.336 | Tao Yang; Guobao Li; Liping You; Jing Ju; Fuhui Liao; Jianhua Lin MCuB7O12 nH2O (M=Na, K ): A new copper borate with 14-ring channel Chemical Communications, 2005 |
7100191 | CIF | B7 Cu H2 Na O13 | P n n m | 12.7372; 4.69546; 15.17928 90; 90; 90 | 907.827 | Tao Yang; Guobao Li; Liping You; Jing Ju; Fuhui Liao; Jianhua Lin MCuB7O12 nH2O (M=Na, K ): A new copper borate with 14-ring channel Chemical Communications, 2005 |
7129135 | CIF | Ba F4 Fe I O3 | P 1 21/c 1 | 10.7066; 7.5896; 7.8261 90; 110.158; 90 | 596.99 | Huang, Qian-Ming; Hu, Chun-Li; Yang, Bing-Ping; Fang, Zhi; Huang, Yu; Mao, Jiang-Gao Ba<sub>2</sub>[FeF<sub>4</sub>(IO<sub>3</sub>)<sub>2</sub>]IO<sub>3</sub>: a promising nonlinear optical material achieved by chemical-tailoring-induced structure evolution. Chemical communications (Cambridge, England), 2021, 57, 11525-11528 |
7131968 | CIF | Ba La5 N7 O3 V2 | I 4/m c m | 6.8833; 6.8833; 11.34 90; 90; 90 | 537.287 | Zhang, Shirui; Wang, Xiaoming; Fang, Leiming; Li, Jiachen; Xu, Yingying; Ren, Zihan; Yang, Zupei; Kuang, Xiaojun; Jiao, Huan BaLa5V2O3N7: A Novel Anti-Perovskite Oxynitride for Electrode Applications Chemical Communications, 2023 |
7123276 | CIF | Ba Li Sb Se3 | P b a m | 12.117; 12.644; 9.102 90; 90; 90 | 1394.5 | Abudurusuli, Ailijiang; Wu, Kui; Tudi, Abudukadi; Yang, Zhihua; Pan, Shilie ABaSbQ3 (A = Li, Na; Q = S, Se): diverse arrangement modes of isolated SbQ3 ligands regulating the magnitudes of birefringences Chemical Communications, 2019 |
7123273 | CIF | Ba Na S3 Sb | P 1 21/c 1 | 6.0668; 14.232; 7.778 90; 105.578; 90 | 646.9 | Abudurusuli, Ailijiang; Wu, Kui; Tudi, Abudukadi; Yang, Zhihua; Pan, Shilie ABaSbQ3 (A = Li, Na; Q = S, Se): diverse arrangement modes of isolated SbQ3 ligands regulating the magnitudes of birefringences Chemical Communications, 2019 |
7123275 | CIF | Ba Na Sb Se3 | P 1 21/c 1 | 6.291; 14.8; 8.072 90; 105.484; 90 | 724 | Abudurusuli, Ailijiang; Wu, Kui; Tudi, Abudukadi; Yang, Zhihua; Pan, Shilie ABaSbQ3 (A = Li, Na; Q = S, Se): diverse arrangement modes of isolated SbQ3 ligands regulating the magnitudes of birefringences Chemical Communications, 2019 |
7117866 | CIF | Ba0.5 F2 O2 Pd Sr1.5 | I 4/m m m | 4.0701; 4.0701; 13.1072 90; 90; 90 | 217.13 | Baikie, T.; Dixon, E.L.; Rooms, J.F.; Francesconi, M.G.; Young, N.A. Ba2-x Srx Pd O2 F2 (0 <= x <= 1.5): the first palladium - oxide - fluorides Chemical Communications, 2003, 2003, 1580-1581 |
7124344 | CIF | Ba0.81 Ga2 K0.38 Se4 | I 4 c m | 8.0211; 8.0211; 6.2888 90; 90; 90 | 404.61 | Li, Ya-Nan; Chi, Yang; Sun, Zong-Dong; Xue, Huaiguo; Suen, Nian-Tzu; Guo, Sheng-Ping Partial substitution induced centrosymmetric to noncentrosymmetric structure transformation and promising second-order nonlinear optical properties of (K0.38Ba0.81)Ga2Se4 Chemical Communications, 2019 |
7123216 | CIF | Ba1.25 Bi0.5 Co0.5 S2.5 | P 1 21/m 1 | 8.9913; 12.5989; 9.1253 90; 104.664; 90 | 1000.05 | Bu, Kejun; Zhang, Xian; Huang, Jian; Luo, Mengjia; Chong, Zheng; Wang, Ruiqi; Wang, Dong; He, Jianqiao; Zhao, Wei; Che, Xiangli; Huang, Fu Qiang Crystal Structure Design and Multiband Physical Properties of Quaternary Sulfide Ba5Bi2Co2S10 for Optoelectronic Conversion Chemical Communications, 2019 |
7129064 | CIF | Ba10 Fe7.755 O12 S18 Si3 Zn5.245 | I -4 3 m | 13.338; 13.338; 13.338 90; 90; 90 | 2372.86 | Almoussawi, Batoul; Arevalo-Lopez, Angel M.; Simon, Pardis; Kabbour, Houria A High Dimensional Oxysulfide Built from Large Iron-based Clusters with Partial Charge-Ordering Chemical Communications, 2021 |
7117865 | CIF | Ba2 F2 O2 Pd | I 4/m m m | 4.1398; 4.1398; 14.0459 90; 90; 90 | 240.718 | Baikie, T.; Rooms, J.F.; Dixon, E.L.; Young, N.A.; Francesconi, M.G. Ba2-x Srx Pd O2 F2 (0 <= x <= 1.5): the first palladium - oxide - fluorides Chemical Communications, 2003, 2003, 1580-1581 |
7129136 | CIF | Ba2 F4 Fe I3 O9 | P n a 21 | 13.7239; 11.4384; 7.4518 90; 90; 90 | 1169.78 | Huang, Qian-Ming; Hu, Chun-Li; Yang, Bing-Ping; Fang, Zhi; Huang, Yu; Mao, Jiang-Gao Ba<sub>2</sub>[FeF<sub>4</sub>(IO<sub>3</sub>)<sub>2</sub>]IO<sub>3</sub>: a promising nonlinear optical material achieved by chemical-tailoring-induced structure evolution. Chemical communications (Cambridge, England), 2021, 57, 11525-11528 |
7100607 | CIF | Ba2 Ge H18 O9 Se4 | P b c a | 13.916; 15.097; 16.116 90; 90; 90 | 3385.9 | Stefanie Dehnen; Rodolphe Clerac; Maike Melullis Ternary Mn/Ge/Se Anions from Reactions of [Ba2(H2O)9][GeSe4]: Synthesis and Characterization of Compounds Containing Discrete or Polymeric [Mn6Ge4Se17]6 Units Chemical Communications, 2005 |
7121699 | CIF | Ba2 H3 N O6 | P -6 2 m | 6.9069; 6.9069; 3.8028 90; 90; 120 | 157.109 | Dong, Xuehua; Huang, Ling; Liu, Qingyu; Zeng, Hongmei; Lin, Zhien; Xu, Dingguo; Zou, Guohong Perfect balance harmony in Ba<sub>2</sub>NO<sub>3</sub>(OH)<sub>3</sub>: a beryllium-free nitrate as a UV nonlinear optical material. Chemical communications (Cambridge, England), 2018, 54, 5792-5795 |
7107111 | CIF | Ba2 H4 Ni6 O20 V4 | C 1 2/m 1 | 10.213; 5.816; 7.888 90; 117.01; 90 | 417.4 | Danna E. Freedman; Robin Chisnell; Tyrel M. McQueen; Young S. Lee; Christophe Payen; Daniel G. Nocera Frustrated magnetism in the S=1 kagome lattice BaNi3(OH)2(VO4)2 Chem.Commun., 2012, 48, 64 |
7123274 | CIF | Ba2 Li2 S6 Sb2 | P b a m | 11.673; 12.166; 8.78 90; 90; 90 | 1246.9 | Abudurusuli, Ailijiang; Wu, Kui; Tudi, Abudukadi; Yang, Zhihua; Pan, Shilie ABaSbQ3 (A = Li, Na; Q = S, Se): diverse arrangement modes of isolated SbQ3 ligands regulating the magnitudes of birefringences Chemical Communications, 2019 |
7117503 | CIF | Ba2 O6 Ta Y | F m -3 m | 8.42811; 8.42811; 8.42811 90; 90; 90 | 598.674 | Lufaso, M.W.; Macquart, R.B.; Lee, Y.; Vogt, T.; zur Loye, H.C. Pressure induced octahedral tilting distortion in Ba2 Y Ta O6 Chemical Communications, 2006, 2006, 168-170 |
7117504 | CIF | Ba2 O6 Ta Y | I 4/m | 5.8851; 5.8851; 8.3474 90; 90; 90 | 289.107 | Lufaso, M.W.; Vogt, T.; Lee, Y.; Macquart, R.B.; zur Loye, H.C. Pressure induced octahedral tilting distortion in Ba2 Y Ta O6 Chemical Communications, 2006, 2006, 168-170 |
7127991 | CIF | Ba3 Bi6 F11 Li O21 Se7 | P 3 1 m | 9.34; 9.34; 9.71 90; 90; 120 | 733.6 | Shi, Shuangshuang; Lin, Chensheng; Zhao, Dan; Luo, Min; Cao, Liling; Peng, Guang; Ye, Ning Unexpected aliovalent cation substitution between two NLO materials LiBa<sub>3</sub>Bi<sub>6</sub>(SeO<sub>3</sub>)<sub>7</sub>F<sub>11</sub> and Ba<sub>3</sub>Bi<sub>6.5</sub>(SeO<sub>3</sub>)<sub>7</sub>F<sub>10.5</sub>O<sub>0.5</sub>. Chemical communications (Cambridge, England), 2021, 57, 2982-2985 |
7127992 | CIF | Ba3 Bi6.5 F10.5 O21.5 Se7 | P 3 1 m | 9.479; 9.479; 9.566 90; 90; 120 | 744.4 | Shi, Shuangshuang; Lin, Chensheng; Zhao, Dan; Luo, Min; Cao, Liling; Peng, Guang; Ye, Ning Unexpected aliovalent cation substitution between two NLO materials LiBa<sub>3</sub>Bi<sub>6</sub>(SeO<sub>3</sub>)<sub>7</sub>F<sub>11</sub> and Ba<sub>3</sub>Bi<sub>6.5</sub>(SeO<sub>3</sub>)<sub>7</sub>F<sub>10.5</sub>O<sub>0.5</sub>. Chemical communications (Cambridge, England), 2021, 57, 2982-2985 |
7126051 | CIF | Ba3 Cl3 F6 In | P 63/m | 10.131; 10.131; 5.9315 90; 90; 120 | 527.23 | Jiang, Xiaoqing; Wu, Hongping; Yu, Hongwei; Hu, Zhanggui; Wang, Jiyang; Wu, Yicheng In[Ba<sub>3</sub>Cl<sub>3</sub>F<sub>6</sub>]: a novel infrared-transparent molecular sieve constructed by halides. Chemical communications (Cambridge, England), 2020, 56, 3297-3300 |
7100606 | CIF | Ba3 Ge4 H38 Mn6 O19 Se17 | P -1 | 12.184; 15.089; 15.868 88.73; 73.68; 71.06 | 2640.4 | Stefanie Dehnen; Rodolphe Clerac; Maike Melullis Ternary Mn/Ge/Se Anions from Reactions of [Ba2(H2O)9][GeSe4]: Synthesis and Characterization of Compounds Containing Discrete or Polymeric [Mn6Ge4Se17]6 Units Chemical Communications, 2005 |
7100608 | CIF | Ba3 Ge4 H60 Mn6 O30 Se17 | R 3 c :H | 20.463; 20.463; 25.119 90; 90; 120 | 9109 | Stefanie Dehnen; Rodolphe Clerac; Maike Melullis Ternary Mn/Ge/Se Anions from Reactions of [Ba2(H2O)9][GeSe4]: Synthesis and Characterization of Compounds Containing Discrete or Polymeric [Mn6Ge4Se17]6 Units Chemical Communications, 2005 |
7131386 | CIF | Ba4 F14 H2 Ni3 O | P n m a | 13.9284; 12.5175; 7.65 90; 90; 90 | 1333.77 | Wang, Yanqi; Zhao, Zhiying; Cui, Meiyan; He, Zhangzhen Ba<sub>4</sub>Ni<sub>3</sub>F<sub>14</sub>·H<sub>2</sub>O: a ferrimagnetic compound with a staircase kagomé lattice. Chemical communications (Cambridge, England), 2023, 59, 3870-3873 |
7119576 | CIF | Ba5 Cu8 In2 S12 | C 1 2/c 1 | 14.584; 16.369; 10.509 90; 100.14; 90 | 2470 | Lin, Hua; Chen, Hong; Zheng, Yu-Jun; Chen, Yu-Kun; Yu, Ju-Song; Wu, Li-Ming Ba5Cu8In2S12: a quaternary semiconductor with a unique 3D copper-rich framework and ultralow thermal conductivity. Chemical communications (Cambridge, England), 2017, 53, 2590-2593 |
7130236 | CIF | Ba5.94 Cs1.06 I0.94 P20 Si12 | F m -3 m | 15.8615; 15.8615; 15.8615 90; 90; 90 | 3990.6 | Yox, Philip; Porter, Andrew P.; Dorn, Rick W.; Kyveryga, Victoria; Rossini, Aaron J.; Kovnir, Kirill Semiconducting silicon–phosphorus frameworks for caging exotic polycations Chemical Communications, 2022 |
7130243 | CIF | Ba6 Br Cs P20 Si12 | F m -3 m | 15.8173; 15.8173; 15.8173 90; 90; 90 | 3957.28 | Yox, Philip; Porter, Andrew P.; Dorn, Rick W.; Kyveryga, Victoria; Rossini, Aaron J.; Kovnir, Kirill Semiconducting silicon–phosphorus frameworks for caging exotic polycations Chemical Communications, 2022 |
7130241 | CIF | Ba6 Br P20 Rb Si12 | F m -3 m | 15.8031; 15.8031; 15.8031 90; 90; 90 | 3946.6 | Yox, Philip; Porter, Andrew P.; Dorn, Rick W.; Kyveryga, Victoria; Rossini, Aaron J.; Kovnir, Kirill Semiconducting silicon–phosphorus frameworks for caging exotic polycations Chemical Communications, 2022 |
7130246 | CIF | Ba6 Cl Cs P20 Si12 | F m -3 m | 15.7803; 15.7803; 15.7803 90; 90; 90 | 3929.6 | Yox, Philip; Porter, Andrew P.; Dorn, Rick W.; Kyveryga, Victoria; Rossini, Aaron J.; Kovnir, Kirill Semiconducting silicon–phosphorus frameworks for caging exotic polycations Chemical Communications, 2022 |
7130245 | CIF | Ba6 Cl K P20 Si12 | F m -3 m | 15.7315; 15.7315; 15.7315 90; 90; 90 | 3893.2 | Yox, Philip; Porter, Andrew P.; Dorn, Rick W.; Kyveryga, Victoria; Rossini, Aaron J.; Kovnir, Kirill Semiconducting silicon–phosphorus frameworks for caging exotic polycations Chemical Communications, 2022 |
7130240 | CIF | Ba6 Cl Na P20 Si12 | F m -3 m | 15.6717; 15.6717; 15.6717 90; 90; 90 | 3849 | Yox, Philip; Porter, Andrew P.; Dorn, Rick W.; Kyveryga, Victoria; Rossini, Aaron J.; Kovnir, Kirill Semiconducting silicon–phosphorus frameworks for caging exotic polycations Chemical Communications, 2022 |
7130244 | CIF | Ba6 Cl P20 Rb Si12 | F m -3 m | 15.757; 15.757; 15.757 90; 90; 90 | 3912.2 | Yox, Philip; Porter, Andrew P.; Dorn, Rick W.; Kyveryga, Victoria; Rossini, Aaron J.; Kovnir, Kirill Semiconducting silicon–phosphorus frameworks for caging exotic polycations Chemical Communications, 2022 |
7124453 | CIF | Ba6 Cu2 Fe Ge4 S16 | I -4 3 d | 14.2342; 14.2342; 14.2342 90; 90; 90 | 2884 | Cao, Wangzhu; Mei, Dajiang; Yang, Yi; Wu, YuanWang; Zhang, Lingyun; Wu, Yuandong; He, Xiao; Lin, Zheshuai; Huang, Fu Qiang From CuFeS2 to Ba6Cu2FeGe4S16: Rational Band Gap Engineering Achieves Large Second-Harmonic-Generation Together with High Laser Damage Threshold Chemical Communications, 2019 |
7130239 | CIF | Ba6 I0.88 P20 Rb1.12 Si12 | F m -3 m | 15.8551; 15.8551; 15.8551 90; 90; 90 | 3985.7 | Yox, Philip; Porter, Andrew P.; Dorn, Rick W.; Kyveryga, Victoria; Rossini, Aaron J.; Kovnir, Kirill Semiconducting silicon–phosphorus frameworks for caging exotic polycations Chemical Communications, 2022 |
7111682 | CIF | Ba8 Cl Co2 Mn6 O22 | P -6 m 2 | 5.7207; 5.7207; 19.4099 90; 90; 120 | 550.11 | Iorgulescu, Mihaela; Kabbour, Houria; Tancret, Nathalie; Mentré, Olivier; Roussel, Pascal Ba8Co2Mn6ClO22, a quasi-1D hexagonal perovskite polytype containing new 8H-blocks Chemical Communications, 2010, 46, 5271-5273 |
7123647 | CIF | Ba8 Ga2 S15 Zn4 | P 1 21/n 1 | 13.3276; 9.0097; 13.3315 90; 109.52; 90 | 1508.8 | Li, Yan-Yan; Liu, Peng-Fei; Lin, Hua; Wu, Li-Ming; WU, XIN-TAO; Zhu, Qi-Long Quaternary Semiconductor Ba8Zn4Ga2S15 Featuring Unique One-dimensional Chains and Exhibiting Desirable Yellow Emission Chemical Communications, 2019 |
7118239 | CIF | Ba9 O24 Rh8 | R -3 c :H | 10.0899; 10.0899; 41.462 90; 90; 120 | 3655.57 | Stitzer, K.E.; Smith, M.D.; zur Loye, H.C.; Darriet, J. Crystal growth, structure determination, and magnetism of a new hexagonal rhodate: Ba9 Rh8 O24 Chemical Communications, 2001, 2001, 1680-1681 |
7124316 | CIF | Be Br2 H12 N4 | P n m a | 9.5332; 6.9355; 12.2289 90; 90; 90 | 808.54 | Müller, Matthias; Buchner, Magnus Richard Preparation and Crystal Structures of the Beryllium Ammines [Be(NH3)4]X2 (X = Br, I, CN, SCN, N3) and Be(NH3)2X’2 (X’ = Cl, Br, I). Chemical Communications, 2019 |
7124314 | CIF | Be Br2 H36 N12 | P 1 21/c 1 | 10.445; 11.5311; 16.3117 90; 101.353; 90 | 1926.18 | Müller, Matthias; Buchner, Magnus Richard Preparation and Crystal Structures of the Beryllium Ammines [Be(NH3)4]X2 (X = Br, I, CN, SCN, N3) and Be(NH3)2X’2 (X’ = Cl, Br, I). Chemical Communications, 2019 |
7124312 | CIF | Be Br2 H6 N2 | P 1 21/n 1 | 6.8278; 12.2863; 6.9291 90; 101.446; 90 | 569.71 | Müller, Matthias; Buchner, Magnus Richard Preparation and Crystal Structures of the Beryllium Ammines [Be(NH3)4]X2 (X = Br, I, CN, SCN, N3) and Be(NH3)2X’2 (X’ = Cl, Br, I). Chemical Communications, 2019 |
7124317 | CIF | Be Cl2 H6 N2 | P 1 21/n 1 | 6.5519; 11.8065; 6.6589 90; 100.321; 90 | 506.76 | Müller, Matthias; Buchner, Magnus Richard Preparation and Crystal Structures of the Beryllium Ammines [Be(NH3)4]X2 (X = Br, I, CN, SCN, N3) and Be(NH3)2X’2 (X’ = Cl, Br, I). Chemical Communications, 2019 |
7124313 | CIF | Be H12 I2 N4 | P n m a | 9.9007; 7.3274; 12.7965 90; 90; 90 | 928.34 | Müller, Matthias; Buchner, Magnus Richard Preparation and Crystal Structures of the Beryllium Ammines [Be(NH3)4]X2 (X = Br, I, CN, SCN, N3) and Be(NH3)2X’2 (X’ = Cl, Br, I). Chemical Communications, 2019 |
7124311 | CIF | Be H12 N10 | I -4 2 m | 8.014; 8.014; 6.4519 90; 90; 90 | 414.37 | Müller, Matthias; Buchner, Magnus Richard Preparation and Crystal Structures of the Beryllium Ammines [Be(NH3)4]X2 (X = Br, I, CN, SCN, N3) and Be(NH3)2X’2 (X’ = Cl, Br, I). Chemical Communications, 2019 |
7124315 | CIF | Be H6 I2 N2 | P 1 21/n 1 | 7.2739; 13.1326; 7.3586 90; 102.674; 90 | 685.8 | Müller, Matthias; Buchner, Magnus Richard Preparation and Crystal Structures of the Beryllium Ammines [Be(NH3)4]X2 (X = Br, I, CN, SCN, N3) and Be(NH3)2X’2 (X’ = Cl, Br, I). Chemical Communications, 2019 |
7126739 | CIF | Be4 Cs4 Li O24 P7 | P 2 2 21 | 13.0892; 13.0889; 13.2528 90; 90; 90 | 2270.51 | Chen, Yi-Gang; Yang, Chunyu; Wang, Fang; Guo, Yao; Jiang, Xingxing; Zhang, Xian-Ming M<sub>4</sub>LiBe<sub>4</sub>P<sub>7</sub>O<sub>24</sub> and M<sub>4</sub>Li(Li<sub>3</sub>P)P<sub>7</sub>O<sub>24</sub> (M = Cs, Rb): deep-ultraviolet nonlinear-optical phosphates with a tetrahedra-substituted paracelsian-like framework. Chemical communications (Cambridge, England), 2020, 56, 8639-8642 |
7126740 | CIF | Be4 Li O24 P7 Rb4 | P 2 2 21 | 12.8805; 12.9118; 12.9447 90; 90; 90 | 2152.84 | Chen, Yi-Gang; Yang, Chunyu; Wang, Fang; Guo, Yao; Jiang, Xingxing; Zhang, Xian-Ming M<sub>4</sub>LiBe<sub>4</sub>P<sub>7</sub>O<sub>24</sub> and M<sub>4</sub>Li(Li<sub>3</sub>P)P<sub>7</sub>O<sub>24</sub> (M = Cs, Rb): deep-ultraviolet nonlinear-optical phosphates with a tetrahedra-substituted paracelsian-like framework. Chemical communications (Cambridge, England), 2020, 56, 8639-8642 |
7123351 | CIF | Bi | R -3 m | 4.5392; 4.5392; 11.8347 90; 90; 120 | 211.18 | Wei, Zheng; Dubceac, Cristina; Petrukhina, Marina A.; Dikarev, Evgeny V. From a volatile molecular precursor to twin-free single crystals of bismuth Chemical Communications, 2019 |
7123352 | CIF | Bi | R -3 m | 4.5481; 4.5481; 11.86 90; 90; 120 | 212.46 | Wei, Zheng; Dubceac, Cristina; Petrukhina, Marina A.; Dikarev, Evgeny V. From a volatile molecular precursor to twin-free single crystals of bismuth Chemical Communications, 2019 |
7126155 | CIF | Bi Cu O Se2 Sr | P 1 21/m 1 | 7.6529; 4.0559; 9.1405 90; 113.758; 90 | 259.67 | Luo, Mengjia; Bu, Kejun; Zhang, Xian; Huang, Jian; Wang, Ruiqi; Huang, Fuqiang Intrinsically low thermal conductivity in a p-type semiconductor SrOCuBiSe<sub>2</sub> with a [SrO]-intercalated CuBiSe<sub>2</sub> structure. Chemical communications (Cambridge, England), 2020, 56, 4356-4359 |
7120700 | CIF | Bi Ni | C m c m | 3.3873; 9.4079; 3.7587 90; 90; 90 | 119.78 | Powderly, Kelly M.; Clarke, Samantha M.; Amsler, Maximilian; Wolverton, Chris M.; Malliakas, Christos D.; Meng, Yue; Jacobsen, Steven D.; Freedman, Danna High-pressure discovery of β-NiBi Chem. Commun., 2017 |
7118237 | CIF | Bi O6 Pb2 V | P 1 n 1 | 7.7219; 5.8443; 29.0762 90; 94.278; 90 | 1308.53 | Radosavljevic Evans, I.; Howard, J.A.K.; Withers, R.L.; Evans, J.S.O. Ab initio structure determination of Bi Pb2 V O6 from powder diffraction data Chemical Communications, 2001, 2001, 1984-1985 |
7123214 | CIF | Bi16 Fe11.2 O48 Sc4.8 | P n m a | 5.6605; 15.7832; 11.3751 90; 90; 90 | 1016.26 | Khalyavin, Dmitry; Salak, Andrei; Frtman, Elena; Kotlyar, Oleksandr; Eardley, Edwin; Olekhnovich, N. M.; Pushkarev, Anatoli; Radyush, Yury; Fedorchenko, Alexey; Desnenko, Vladimir; Manuel, Pascal; Ding, Lei; Cizmar, Erik; Feher, Alexander Phenomenon of Conversion Polymorphism in Bi-Containing Metastable Perovskites Chemical Communications, 2019 |
7117792 | CIF | Bi2 Cu2 O4 Se2 Y | I 4/m m m | 3.86463; 3.86463; 24.428 90; 90; 90 | 364.841 | Evans, J.S.O.; Brogden, E.R.; Cordiner, R.L.; Thompson, A.L. Synthesis and characterisation of the new oxyselenide Bi2 Y O4 Cu2 Se2 Chemical Communications, 2002, 2002, 912-913 |
7123213 | CIF | Bi2 O6 Sc2 | P n m a | 11.677; 16.163; 5.82445 90; 90; 90 | 1099.28 | Khalyavin, Dmitry; Salak, Andrei; Frtman, Elena; Kotlyar, Oleksandr; Eardley, Edwin; Olekhnovich, N. M.; Pushkarev, Anatoli; Radyush, Yury; Fedorchenko, Alexey; Desnenko, Vladimir; Manuel, Pascal; Ding, Lei; Cizmar, Erik; Feher, Alexander Phenomenon of Conversion Polymorphism in Bi-Containing Metastable Perovskites Chemical Communications, 2019 |
7128637 | CIF | Bi2 Pt3 S2 | I 21 3 | 8.4111; 8.4111; 8.4111 90; 90; 90 | 595.1 | Fang, Yuqiang; Wang, Sishun; Lin, Gaoxin; Wang, Xin; Huang, Fuqiang A new compound Pt<sub>3</sub>Bi<sub>2</sub>S<sub>2</sub> with superior performance for the hydrogen evolution reaction. Chemical communications (Cambridge, England), 2021, 57, 7946-7949 |
7100876 | CIF | Bi3 Cd Cs Se6 | P n m a | 26.512; 4.1192; 12.396 90; 90; 90 | 1353.7 | Mercouri Kanatzidis; Duck-Young Chung; Jun-Ho Kim A New Homologous Series A2[M5+nSe9+n] (A = Rb, Cs; M = Bi, Ag, Cd) and its members ?-CsBi3Se5, Rb2CdBi6Se11, CsAg0.5Bi3.5Se6, CsCdBi3Se6, Rb2Ag1.5Bi7.5Se13, and Cs2Ag1.5Bi7.5Se13 Chemical Communications, 2006 |
7100873 | CIF | Bi3 Cs Se5 | P n m a | 22.74; 4.171; 12.472 90; 90; 90 | 1183 | Mercouri Kanatzidis; Duck-Young Chung; Jun-Ho Kim A New Homologous Series A2[M5+nSe9+n] (A = Rb, Cs; M = Bi, Ag, Cd) and its members ?-CsBi3Se5, Rb2CdBi6Se11, CsAg0.5Bi3.5Se6, CsCdBi3Se6, Rb2Ag1.5Bi7.5Se13, and Cs2Ag1.5Bi7.5Se13 Chemical Communications, 2006 |
7123820 | CIF | Bi4 O24 Pb8 V4 | P 1 n 1 | 7.7219; 5.8443; 29.0762 90; 94.278; 90 | 1308.53 | Evans, John; Evans, Ivana R.; Howard, Judith A. K.; Withers, Ray L. Ab initio structure determination of BiPb2VO6 from powder diffraction data Chemical Communications, 2001, 19, 1984-1985 |
7100875 | CIF | Bi6 Cd Rb2 Se11 | P n n m | 12.385; 23.839; 4.1124 90; 90; 90 | 1214.1 | Mercouri Kanatzidis; Duck-Young Chung; Jun-Ho Kim A New Homologous Series A2[M5+nSe9+n] (A = Rb, Cs; M = Bi, Ag, Cd) and its members ?-CsBi3Se5, Rb2CdBi6Se11, CsAg0.5Bi3.5Se6, CsCdBi3Se6, Rb2Ag1.5Bi7.5Se13, and Cs2Ag1.5Bi7.5Se13 Chemical Communications, 2006 |
7123215 | CIF | Bi6 Fe4.2 O18 Sc1.8 | R 3 c :H | 5.62949; 5.62949; 14.0273 90; 90; 120 | 384.984 | Khalyavin, Dmitry; Salak, Andrei; Frtman, Elena; Kotlyar, Oleksandr; Eardley, Edwin; Olekhnovich, N. M.; Pushkarev, Anatoli; Radyush, Yury; Fedorchenko, Alexey; Desnenko, Vladimir; Manuel, Pascal; Ding, Lei; Cizmar, Erik; Feher, Alexander Phenomenon of Conversion Polymorphism in Bi-Containing Metastable Perovskites Chemical Communications, 2019 |
7108061 | CIF | Bi6 H18 N6 O27 S6 | R -3 :H | 14.7996; 14.7996; 11.1737 90; 90; 120 | 2119.47 | Philip C. Andrews; Madleen Busse; Peter C. Junk; Craig M. Forsyth; Roshani Peiris Sulfonato-encapsulated bismuth(III) oxido-clusters from Bi2O3 in water under mild conditions Chem.Commun., 2012, 48, 7583 |
7121799 | CIF | Bi7 Nd3 | I m m m | 4.2996; 15.2; 19.121 90; 90; 90 | 1249.6 | Ovchinnikov, Alexander; Makongo, Julien P. A.; Bobev, Svilen Yet again, new compounds found in systems with known binary phase diagrams. Synthesis, crystal and electronic structure of Nd<sub>3</sub>Bi<sub>7</sub> and Sm<sub>3</sub>Bi<sub>7</sub>. Chemical communications (Cambridge, England), 2018, 54, 7089-7092 |
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