Crystallography Open Database

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7103195 CIFAg Br H3 NP 1 21/m 14.1931; 5.873; 6.757
90; 97.553; 90
164.955Chippindale, 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 CIFAg Cl4 Ga P4P n m a12.0275; 7.0253; 12.6877
90; 90; 90
1072.07Laura 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 CIFAg Cs Ga6 S10C 1 c 116.8381; 6.4655; 16.2525
90; 111.281; 90
1648.71Li, 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 CIFAg Ga6 K S10C 1 c 116.8278; 6.4318; 16.1146
90; 111.293; 90
1625.07Li, 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 CIFAg Ga6 Rb S10C 1 c 116.823; 6.4449; 16.163
90; 111.306; 90
1632.7Li, 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 CIFAg H24 K6 O51 P W11P n a 2117.9021; 20.6963; 13.241
90; 90; 90
4905.9Alevtina 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 CIFAg1.5 Bi7.5 Rb2 Se13P n n m12.386; 27.642; 4.1107
90; 90; 90
1407.4Mercouri 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 CIFAg2 Bi2 I4 O20 S2P 15.5189; 6.9129; 11.8527
90.598; 92.151; 109.895
424.78Liu, 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 CIFAg3 Ga8 K Se14C 1 m 112.8805; 11.6857; 9.66
90; 115.998; 90
1306.87Li, 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 CIFAg5 Cl2 P S4A m m 27.44; 11.17; 6.3
90; 90; 90
524Gao, 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 CIFAg67.63 Al96 O474.72 Si96F m -3 c24.57701; 24.57701; 24.57701
90; 90; 90
14845.2Thomas 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 CIFAg67.88 Al96 O474.92 Si96F m -3 c24.56457; 24.56457; 24.56457
90; 90; 90
14822.7Thomas 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 CIFAg67.94 Al96 O477.46 Si96F m -3 c24.58547; 24.58547; 24.58547
90; 90; 90
14860.6Thomas 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 CIFAg68.03 Al96 O472.88 Si96F m -3 c24.5592; 24.5592; 24.5592
90; 90; 90
14813Thomas 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 CIFAg68.05 Al96 O476.24 Si96F m -3 c24.59619; 24.59619; 24.59619
90; 90; 90
14880Thomas 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 CIFAg68.26 Al96 O476.17 Si96F m -3 c24.57044; 24.57044; 24.57044
90; 90; 90
14833.3Thomas 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 CIFAg69.45 Al96 O473.69 Si96F m -3 c24.59947; 24.59947; 24.59947
90; 90; 90
14886Thomas 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 CIFAg69.76 Al96 O471.42 Si96F m -3 c24.59343; 24.59343; 24.59343
90; 90; 90
14875Thomas 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 CIFAg71.14 Al96 O464.45 Si96F m -3 c24.59018; 24.59018; 24.59018
90; 90; 90
14869.1Thomas 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 CIFAg71.568 Al96 O469.91 Si96F m -3 c24.59162; 24.59162; 24.59162
90; 90; 90
14871.7Thomas 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 CIFAg71.89 Al96 O466.81 Si96F m -3 c24.597; 24.597; 24.597
90; 90; 90
14881.5Thomas 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 CIFAg86.99 Al96 O384 Si96F m -3 c24.67687; 24.67687; 24.67687
90; 90; 90
15026.9Thomas 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 CIFAg87.048 Al96 O384 Si96F m -3 c24.68011; 24.68011; 24.68011
90; 90; 90
15032.8Thomas 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 CIFAg87.11 Al96 O384 Si96F m -3 c24.67781; 24.67781; 24.67781
90; 90; 90
15028.7Thomas 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 CIFAg87.11 Al96 O384 Si96F m -3 c24.67885; 24.67885; 24.67885
90; 90; 90
15030.5Thomas 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 CIFAg87.498 Al96 O384 Si96F m -3 c24.67992; 24.67992; 24.67992
90; 90; 90
15032.5Thomas 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 CIFAg87.674 Al96 O384 Si96F m -3 c24.67956; 24.67956; 24.67956
90; 90; 90
15031.8Thomas 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 CIFAg87.704 Al96 O384 Si96F m -3 c24.67524; 24.67524; 24.67524
90; 90; 90
15024Thomas 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 CIFAg87.934 Al96 O384 Si96F m -3 c24.67394; 24.67394; 24.67394
90; 90; 90
15021.6Thomas 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 CIFAg88.174 Al96 O384 Si96F m -3 c24.67623; 24.67623; 24.67623
90; 90; 90
15025.8Thomas 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 CIFAg88.445 Al96 O384 Si96F m -3 c24.67046; 24.67046; 24.67046
90; 90; 90
15015.2Thomas 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 CIFAg88.734 Al96 O384 Si96F m -3 c24.66358; 24.66358; 24.66358
90; 90; 90
15002.7Thomas 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 CIFAl Ca Dy O4I 4/m m m3.6501; 3.6501; 11.909
90; 90; 90
158.666Kazin, 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 CIFAl Cl Na O SiP -4 3 n8.88461; 8.88461; 8.88461
90; 90; 90
701.318M. Weller; J. A. Armstrong
Structural Observation of Photochromism
Chemical Communications, 2006
7119629 CIFAl H2 N11 O P6P 1 21/m 14.7566; 8.3266; 10.6298
90; 101.601; 90
412.41Neudert, 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 CIFAl H5 Mg O10 P2P 1 21 15.0119; 7.769; 9.995
90; 102.595; 90
379.81Mu, 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 CIFAl H6 O12 P3P 1 2/c 17.9659; 4.918; 11.6355
90; 95.851; 90
453.46Adrian 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 CIFAl H6 O6 P3C 1 2/c 111.953; 7.809; 7.868
90; 109.77; 90
691.1Evans, 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 CIFAl H63 K14 Nb18 O85P 21 21 2118.582; 18.646; 24.646
90; 90; 90
8539Yu Hou; Todd Alam; Mark A. Rodriguez; May Nyman
Aqueous compatibility of group IIIA monomers and Nb-polyoxoanions
Chem.Commun., 2012, 48, 6004
7111019 CIFAl1.5 H7.5 O13.5 P3P -17.1177; 8.6729; 9.22
65.108; 70.521; 68.504
469.4Yan, 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 CIFAl12 O50.7 Si12 Zn8.9P m -3 m11.9061; 11.9061; 11.9061
90; 90; 90
1687.75Readman, 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 CIFAl12 O67.44 P12P 21 21 215.0698; 17.9944; 5.03671
90; 90; 90
1365.81Komura, 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 CIFAl12 O67.44 P12P 21 21 215.0698; 17.9944; 5.03671
90; 90; 90
1365.81Komura, Kenichi; Ikeda, Takuji; imai, edo; oka, kazuma
Two-dimensional microporous GAM-6 formed by the interzeolite conversion of CoAPO-5
Chemical Communications, 2023
7130870 CIFAl13 H48 O104 P V3 W9P n m a27.8523; 13.8253; 25.2206
90; 90; 90
9711.6Zhou, 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 CIFAl13 H75 O66 S3P -114.2981; 14.3361; 14.7145
81.191; 71.31; 68.434
2655Scott 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 CIFAl19 H932 Mo132 N15 O928 S30C 1 2/c 145.511; 46.365; 45.951
90; 90.014; 90
96962Merca, 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 CIFAl2 Br8 SmP b c a12.0436; 11.959; 20.842
90; 90; 90
3001.9Schäfer, 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 CIFAl2 Ca H10 O21 Si6P 1 21 17.43605; 17.3988; 7.29555
90; 105.594; 90
909.14Henry, 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 CIFAl2 Cs2 O9 P2P -14.925; 7.121; 8.066
96.51; 107.12; 108.68
249.28Huang, 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 CIFAl2 H12 O12 P6P 1 21/n 111.2333; 11.5158; 11.367
90; 98.32; 90
1454.96Evans, 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 CIFAl2.6 O24 Rb2.69 Si9.4P m m a9.9653; 7.5717; 9.3031
90; 90; 90
701.959Ikeda, T.; Itabashi, K.
RMA-3: Synthesis and structure of a novel Rb-C zeolite
Chemical Communications, 2005, 2005, 2753-2755
7130871 CIFAl28.75 O174 P2 V9.11 W18.14C m c e29.9847; 27.7701; 23.4604
90; 90; 90
19535Zhou, 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 CIFAl3 Cl Na4 O12 Si3P -4 3 n8.88461; 8.88461; 8.88461
90; 90; 90
701.318Armstrong, Jennifer A.; Weller, Mark T.
Structural observation of photochromism.
Chemical communications (Cambridge, England), 2006, 1094-1096
7102741 CIFAl3.39 Ca1.54 K0.32 Kr0.53 Na0.1 O24.52 Si8.61R -3 m :R9.3086; 9.3086; 9.3086
91.638; 91.638; 91.638
805.58Cork, 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 CIFAl3.39 Ca1.54 K0.32 Kr0.87 Na0.1 O24.52 Si8.61R -3 m :R9.2943; 9.2943; 9.2943
91.625; 91.625; 91.625
801.89Cork, 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 CIFAl3.39 Ca1.54 K0.32 Kr1.05 Na0.1 O24.52 Si8.61R -3 m :R9.2833; 9.2833; 9.2833
91.617; 91.617; 91.617
799.06Cork, 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 CIFAl3.39 Ca1.54 K0.32 Kr1.06 Na0.1 O24.52 Si8.61R -3 m :R9.2935; 9.2935; 9.2935
91.604; 91.604; 91.604
801.71Cork, 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 CIFAl3.39 Ca1.54 K0.32 Kr1.15 Na0.1 O24.52 Si8.61R -3 m :R9.2743; 9.2743; 9.2743
91.597; 91.597; 91.597
796.76Cork, 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 CIFAl4 H3 Na3 O19 P4P 1 21/m 17.537; 12.525; 9.7
90; 98.51; 90
905.6Yanjun 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 CIFAl4.8 O9.6 Si1.2P b a m7.588; 7.688; 2.8895
90; 90; 90
168.56Zhang, 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 CIFAl5 Ge5 V2C m c m5.4072; 12.978; 11.362
90; 90; 90
797.4Wu, 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 CIFAl6 H10 Na2 O30 P6P c a 2117.495; 10.321; 13.577
90; 90; 90
2451.5Yanyan 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 CIFAm3 H I13 K3 O39R 3 c :H22.096; 22.096; 13.436
90; 90; 120
5681Wolfgang 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 CIFAs Cd Cs2 Se5P 42/n :217.9368; 17.9368; 7.5125
90; 90; 90
2416.99Chen , 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 CIFAs H18 O35 V10I -4 3 m16.708; 16.708; 16.708
90; 90; 90
4664.16Bu, 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 CIFAs12 F27 O99.69 V36P 63/m32.3426; 32.3426; 10.6928
90; 90; 120
9686.6Eleni 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 CIFAs14 Ba Ge8I -4 3 m10.3145; 10.3145; 10.3145
90; 90; 90
1097.35Weippert, 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 CIFAs14 Ba Ge8I -4 3 m10.306; 10.306; 10.306
90; 90; 90
1094.64Weippert, 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 CIFAs14 Ba Ge8I -4 3 m10.3052; 10.3052; 10.3052
90; 90; 90
1094.38Weippert, 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 CIFAs14 Ba Ge8I -4 3 m10.2967; 10.2967; 10.2967
90; 90; 90
1091.68Weippert, 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 CIFAs14 Ba Ge8I -4 3 m10.3018; 10.3018; 10.3018
90; 90; 90
1093.3Weippert, 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 CIFAs2 Ba0.34 Fe2 K0.66I 4/m m m3.8822; 3.8822; 13.5396
90; 90; 90
204.06Mathieu, 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 CIFAs2 Ba0.5 Fe2 K0.4 Sn0.1I 4/m m m3.9021; 3.9021; 13.3538
90; 90; 90
203.33Mathieu, 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 CIFAs2 Ba0.61 Fe2 K0.35 Sn0.04I 4/m m m3.9063; 3.9063; 13.352
90; 90; 90
203.75Mathieu, 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 CIFAs2 Ba0.68 Fe2 K0.24 Sn0.07I 4/m m m3.946; 3.946; 13.431
90; 90; 90
209.1Mathieu, 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 CIFAs2 Ba0.78 Fe2 K0.12 Sn0.1I 4/m m m3.922; 3.922; 13.285
90; 90; 90
204.38Mathieu, 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 CIFAs2 Ba0.9 Fe2 Sn0.1I 4/m m m3.9297; 3.9297; 13.158
90; 90; 90
203.2Mathieu, 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 CIFAs2 Cl Cs5 O42.6 V14P 31 2 113.115; 13.115; 25.527
90; 90; 120
3802.5Wendy 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 CIFAs2 Co F28 N8 O6 S9P 1 21/c 117.126; 11.424; 18.441
90; 116.54; 90
3227.74Hoppenheit, 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 CIFAs2 H18 O35 V10I -4 3 m16.708; 16.708; 16.708
90; 90; 90
4664.2Bu, 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 CIFAs3 Cs H8 O15 Zn3P 1 21/c 116.1047; 6.5829; 12.9291
90; 99.263; 90
1352.81Chemical Communications, 2006
7100820 CIFAs3 Cs2 H3 O13 Zn3P 1 21 110.768; 5.2056; 13.747
90; 110.24; 90
723S.B. Wiggin; M.T. Weller
A chiral, 16-ring channel framework and a layered caesium zincoarsenate
Chemical Communications, 2006
7129268 CIFAs30 Au16 Ba8P 1 21/c 115.1473; 15.2189; 10.9542
90; 90.502; 90
2525.1Yox, Philip; Lebedev, Oleg I.; Donadio, Davide; Kovnir, Kirill
Unprecedented superstructure in the type I family of clathrates
Chemical Communications, 2021
7114544 CIFAs4 H39 N13 Na2I 1 2/a 112.042; 12.287; 16.122
90; 98.59; 90
2358.7Korber, 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 CIFAs8 Br Cs5 O43.5 V14C 1 2/c 113.454; 19.222; 22.564
90; 98.98; 90
5764Wendy 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 CIFAs8 Cl Cs5 O42 V14P n a 2126.487; 13.766; 13.53
90; 90; 90
4933.3Wendy 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 CIFAs8 Cl Cs5 O44 V14C 1 2/c 113.488; 19.277; 22.595
90; 98.85; 90
5805Wendy 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 CIFAs8 Cs5 I O43.5 V14C 1 2/c 113.483; 19.296; 22.542
90; 98.71; 90
5797Wendy 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 CIFAs9 Bi6 F65 O20 S10 Se4P -110.3635; 13.5024; 15.0589
69.303; 72.326; 69.716
1809.19Johannes Beck; Folker Steden
[Bi6F11]7+ - an unusual, highly charged bismuth fluoro complex in (Se4)[Bi6F11][AsF6]9 10 SO2
Chemical Communications, 2005
7101366 CIFAu Cl H6 N2 O4C 1 2/m 114.769; 5.9797; 7.7564
90; 115.824; 90
616.6Philip 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 CIFAu Cl4 Ga P8P n m a16.6593; 14.3369; 6.0051
90; 90; 90
1434.27Laura 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 CIFAu H6 N3 O3I m m m6.1828; 10.976; 7.5983
90; 90; 90
515.6Philip 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 CIFAu2 Cl2 H12 N4 O8P -17.6791; 7.9129; 11.569
72.624; 73.946; 66.513
605.27Philip 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 CIFAu6 Rb2 S10 Sb4P n n m12.4402; 26.07899; 6.9614
90; 90; 90
2258.47Hanko, 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 CIFB Ba2 Cl S3P b c m8.617; 8.999; 9.323
90; 90; 90
722.9Zhou, 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 CIFB Ba6 Cl9 O3P 1 21/n 18.229; 12.2589; 19.08
90; 90.203; 90
1924.7Li, 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 CIFB Ce S3P n a 217.6059; 6.0181; 8.9311
90; 90; 90
408.804Breton, 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 CIFB Cl7 O4 Pb6P -18.001; 8.054; 13.116
89.522; 89.663; 69.942
793.9Li, 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 CIFB F H3 K O3P b c m5.4454; 10.6284; 7.0024
90; 90; 90
405.27Li, 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 CIFB H10 Li4 N3I 21 310.66445; 10.66445; 10.66445
90; 90; 90
1212.88P.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 CIFB H10 Li4 N3I 21 310.6738; 10.6738; 10.6738
90; 90; 90
1216.05P.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 CIFB H2 K O17 P4 Ti2I 41/a m d :26.315; 6.315; 16.375
90; 90; 90
653.02Yan 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 CIFB H4 I O7 SrP -16.595; 6.868; 7.12
96.73; 108.18; 92.37
303.2Peng, 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 CIFB H5 O18 P4 Ti2I 41/a m d :26.3213; 6.3213; 16.461
90; 90; 90
657.76Yan 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 CIFB H6 Li2 NR -3 :H14.48037; 14.48037; 9.24483
90; 90; 120
1678.76Chater, 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 CIFB La S3P n a 217.6766; 6.0445; 8.994
90; 90; 90
417.332Breton, 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 CIFB Nd S3P n a 217.4818; 6.0037; 8.853
90; 90; 90
397.663Breton, 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 CIFB Pr S3P n a 217.5432; 6.0072; 8.8897
90; 90; 90
402.824Breton, 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 CIFB10 Ba3 F2.09 K0.09 O17P -16.6187; 11.2123; 11.3236
108.909; 94.499; 90.543
791.99Li, 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 CIFB10 K2 N2 Np3 O30P 1 21/n 16.599; 16.026; 11.053
90; 90.922; 90
1168.8Wang, 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 CIFB12 Cl12 Li2 O16 S8P -19.964; 10.285; 10.325
116.41; 94.82; 101.32
911.4Knapp, 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 CIFB12 Ga3 I K3 S12 SmP 63 2 212.9213; 12.9213; 9.3181
90; 90; 120
1347.3Guo, 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 CIFB12 H4 I2 Li4 O32 Sr5C 1 2/m 114.245; 11.239; 9.215
90; 123.625; 90
1228.5Peng, 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 CIFB12 H44 Li4 N4C 1 c 18.812993; 8.862578; 8.207642
90; 110.105; 90
602.003Zheng, 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 CIFB14 Cs2 Li8 Na4 O28P -16.9395; 8.842; 10.522
95.774; 105.704; 97.395
610.1Mutailipu, 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 CIFB2 Ba4 S12P 1 21/n 19.191; 13.066; 15.321
90; 97.757; 90
1823.1Li, 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 CIFB2 Ba5 Cl2 S8C 1 2/c 123.318; 8.609; 8.942
90; 94.033; 90
1790.6Zhou, 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 CIFB2 Be2 O6 PbP m n 2110.737; 4.7501; 4.5368
90; 90; 90
231.39Chen, 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 CIFB2 Br Rb S6 Sr3C m c 2115.044; 10.978; 7.8706
90; 90; 90
1299.9Yun, 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 CIFB2 Cl Rb S6 Sr3P b c a11.082; 7.9064; 29.1239
90; 90; 90
2551.8Yun, 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 CIFB2 F O4 SbP -14.3436; 6.3169; 7.0009
92.888; 95.126; 104.803
184.44Hu, 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 CIFB2 F2 H8 N2 O8 P2P 21 37.5913; 7.5913; 7.5913
90; 90; 90
437.47Li, 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 CIFB2 Os1.42 Ru Ti1.58P -6 2 m8.8554; 8.8554; 3.0336
90; 90; 120
206.02B.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 CIFB3 Cs F2 H2 O5P 1 21/c 17.4498; 5.9711; 15.5448
90; 100.466; 90
679.98Chen, 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 CIFB3 F2 O4 RbP 1 21/c 14.698; 17.77; 7.328
90; 118.95; 90
535.3Lu, 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 CIFB4 Ba F4 O5P 1 21/c 14.835; 18.9867; 8.4861
90; 122.835; 90
654.57Zhang, 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 CIFB4 Ba F4 O5P 1 21 14.8464; 18.6556; 14.1231
90; 91.934; 90
1276.18Zhang, 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 CIFB4 Ba F6 H4 O6C 1 2/m 16.803; 7.008; 9.588
90; 92.96; 90
456.5Gai, 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 CIFB4 H20 Mg N4 Na2I 41/a :29.4114; 9.4114; 12.7128
90; 90; 90
1126.03Hui 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 CIFB4 O9 Pb TeP -16.574; 6.7445; 9.8903
70.105; 78.877; 61.726
362.88Zhang, 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 CIFB5 Ba5 H0.25 O23.125 P3 UP 42/n :224.934; 24.934; 6.7732
90; 90; 90
4210.9Wu, 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 CIFB5 F O8 PbP b c a10.885; 9.108; 13.576
90; 90; 90
1345.9Mutailipu, 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 CIFB5 H8 N O10P 1 21/c 19.2922; 17.3394; 16.3648
90; 91.234; 90
2636.1Ploszajski, Anna Rebecca; Billing, Matthew; Skipper, Neal; Cockcroft, Jeremy Karl
A Novel Ammonium Pentaborate ‒ Poly(ethylene-glycol) Templated Polymer-Inclusion Compound
Chemical Communications, 2019
7130544 CIFB6 Ba2 O13 Zn2P -16.9742; 7.0347; 13.2993
93.645; 99.323; 119.262
553.93Zhang, 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 CIFB6 F2 H8 N2 O9P 1 21/c 16.1553; 12.1758; 14.5192
90; 113.443; 90
998.3Chen, 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 CIFB6 F2 K2 O9P b c a11.7129; 10.303; 15.414
90; 90; 90
1860.1Chen, 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 CIFB6 H10 N O15 PP -18.012; 9.267; 10.018
71.03; 73.98; 67.4
639.6Yu, 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 CIFB7 Cu H2 K O13P n n m12.6406; 4.75296; 15.38502
90; 90; 90
924.336Tao 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 CIFB7 Cu H2 Na O13P n n m12.7372; 4.69546; 15.17928
90; 90; 90
907.827Tao 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 CIFBa F4 Fe I O3P 1 21/c 110.7066; 7.5896; 7.8261
90; 110.158; 90
596.99Huang, 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 CIFBa La5 N7 O3 V2I 4/m c m6.8833; 6.8833; 11.34
90; 90; 90
537.287Zhang, 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 CIFBa Li Sb Se3P b a m12.117; 12.644; 9.102
90; 90; 90
1394.5Abudurusuli, 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 CIFBa Na S3 SbP 1 21/c 16.0668; 14.232; 7.778
90; 105.578; 90
646.9Abudurusuli, 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 CIFBa Na Sb Se3P 1 21/c 16.291; 14.8; 8.072
90; 105.484; 90
724Abudurusuli, 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 CIFBa0.5 F2 O2 Pd Sr1.5I 4/m m m4.0701; 4.0701; 13.1072
90; 90; 90
217.13Baikie, 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 CIFBa0.81 Ga2 K0.38 Se4I 4 c m8.0211; 8.0211; 6.2888
90; 90; 90
404.61Li, 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 CIFBa1.25 Bi0.5 Co0.5 S2.5P 1 21/m 18.9913; 12.5989; 9.1253
90; 104.664; 90
1000.05Bu, 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 CIFBa10 Fe7.755 O12 S18 Si3 Zn5.245I -4 3 m13.338; 13.338; 13.338
90; 90; 90
2372.86Almoussawi, 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 CIFBa2 F2 O2 PdI 4/m m m4.1398; 4.1398; 14.0459
90; 90; 90
240.718Baikie, 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 CIFBa2 F4 Fe I3 O9P n a 2113.7239; 11.4384; 7.4518
90; 90; 90
1169.78Huang, 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 CIFBa2 Ge H18 O9 Se4P b c a13.916; 15.097; 16.116
90; 90; 90
3385.9Stefanie 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 CIFBa2 H3 N O6P -6 2 m6.9069; 6.9069; 3.8028
90; 90; 120
157.109Dong, 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 CIFBa2 H4 Ni6 O20 V4C 1 2/m 110.213; 5.816; 7.888
90; 117.01; 90
417.4Danna 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 CIFBa2 Li2 S6 Sb2P b a m11.673; 12.166; 8.78
90; 90; 90
1246.9Abudurusuli, 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 CIFBa2 O6 Ta YF m -3 m8.42811; 8.42811; 8.42811
90; 90; 90
598.674Lufaso, 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 CIFBa2 O6 Ta YI 4/m5.8851; 5.8851; 8.3474
90; 90; 90
289.107Lufaso, 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 CIFBa3 Bi6 F11 Li O21 Se7P 3 1 m9.34; 9.34; 9.71
90; 90; 120
733.6Shi, 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 CIFBa3 Bi6.5 F10.5 O21.5 Se7P 3 1 m9.479; 9.479; 9.566
90; 90; 120
744.4Shi, 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 CIFBa3 Cl3 F6 InP 63/m10.131; 10.131; 5.9315
90; 90; 120
527.23Jiang, 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 CIFBa3 Ge4 H38 Mn6 O19 Se17P -112.184; 15.089; 15.868
88.73; 73.68; 71.06
2640.4Stefanie 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 CIFBa3 Ge4 H60 Mn6 O30 Se17R 3 c :H20.463; 20.463; 25.119
90; 90; 120
9109Stefanie 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 CIFBa4 F14 H2 Ni3 OP n m a13.9284; 12.5175; 7.65
90; 90; 90
1333.77Wang, 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 CIFBa5 Cu8 In2 S12C 1 2/c 114.584; 16.369; 10.509
90; 100.14; 90
2470Lin, 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 CIFBa5.94 Cs1.06 I0.94 P20 Si12F m -3 m15.8615; 15.8615; 15.8615
90; 90; 90
3990.6Yox, 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 CIFBa6 Br Cs P20 Si12F m -3 m15.8173; 15.8173; 15.8173
90; 90; 90
3957.28Yox, 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 CIFBa6 Br P20 Rb Si12F m -3 m15.8031; 15.8031; 15.8031
90; 90; 90
3946.6Yox, 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 CIFBa6 Cl Cs P20 Si12F m -3 m15.7803; 15.7803; 15.7803
90; 90; 90
3929.6Yox, 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 CIFBa6 Cl K P20 Si12F m -3 m15.7315; 15.7315; 15.7315
90; 90; 90
3893.2Yox, 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 CIFBa6 Cl Na P20 Si12F m -3 m15.6717; 15.6717; 15.6717
90; 90; 90
3849Yox, 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 CIFBa6 Cl P20 Rb Si12F m -3 m15.757; 15.757; 15.757
90; 90; 90
3912.2Yox, 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 CIFBa6 Cu2 Fe Ge4 S16I -4 3 d14.2342; 14.2342; 14.2342
90; 90; 90
2884Cao, 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 CIFBa6 I0.88 P20 Rb1.12 Si12F m -3 m15.8551; 15.8551; 15.8551
90; 90; 90
3985.7Yox, 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 CIFBa8 Cl Co2 Mn6 O22P -6 m 25.7207; 5.7207; 19.4099
90; 90; 120
550.11Iorgulescu, 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 CIFBa8 Ga2 S15 Zn4P 1 21/n 113.3276; 9.0097; 13.3315
90; 109.52; 90
1508.8Li, 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 CIFBa9 O24 Rh8R -3 c :H10.0899; 10.0899; 41.462
90; 90; 120
3655.57Stitzer, 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 CIFBe Br2 H12 N4P n m a9.5332; 6.9355; 12.2289
90; 90; 90
808.54Müller, 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 CIFBe Br2 H36 N12P 1 21/c 110.445; 11.5311; 16.3117
90; 101.353; 90
1926.18Müller, 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 CIFBe Br2 H6 N2P 1 21/n 16.8278; 12.2863; 6.9291
90; 101.446; 90
569.71Müller, 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 CIFBe Cl2 H6 N2P 1 21/n 16.5519; 11.8065; 6.6589
90; 100.321; 90
506.76Müller, 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 CIFBe H12 I2 N4P n m a9.9007; 7.3274; 12.7965
90; 90; 90
928.34Müller, 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 CIFBe H12 N10I -4 2 m8.014; 8.014; 6.4519
90; 90; 90
414.37Müller, 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 CIFBe H6 I2 N2P 1 21/n 17.2739; 13.1326; 7.3586
90; 102.674; 90
685.8Müller, 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 CIFBe4 Cs4 Li O24 P7P 2 2 2113.0892; 13.0889; 13.2528
90; 90; 90
2270.51Chen, 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 CIFBe4 Li O24 P7 Rb4P 2 2 2112.8805; 12.9118; 12.9447
90; 90; 90
2152.84Chen, 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 CIFBiR -3 m4.5392; 4.5392; 11.8347
90; 90; 120
211.18Wei, 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 CIFBiR -3 m4.5481; 4.5481; 11.86
90; 90; 120
212.46Wei, 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 CIFBi Cu O Se2 SrP 1 21/m 17.6529; 4.0559; 9.1405
90; 113.758; 90
259.67Luo, 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 CIFBi NiC m c m3.3873; 9.4079; 3.7587
90; 90; 90
119.78Powderly, 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 CIFBi O6 Pb2 VP 1 n 17.7219; 5.8443; 29.0762
90; 94.278; 90
1308.53Radosavljevic 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 CIFBi16 Fe11.2 O48 Sc4.8P n m a5.6605; 15.7832; 11.3751
90; 90; 90
1016.26Khalyavin, 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 CIFBi2 Cu2 O4 Se2 YI 4/m m m3.86463; 3.86463; 24.428
90; 90; 90
364.841Evans, 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 CIFBi2 O6 Sc2P n m a11.677; 16.163; 5.82445
90; 90; 90
1099.28Khalyavin, 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 CIFBi2 Pt3 S2I 21 38.4111; 8.4111; 8.4111
90; 90; 90
595.1Fang, 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 CIFBi3 Cd Cs Se6P n m a26.512; 4.1192; 12.396
90; 90; 90
1353.7Mercouri 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 CIFBi3 Cs Se5P n m a22.74; 4.171; 12.472
90; 90; 90
1183Mercouri 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 CIFBi4 O24 Pb8 V4P 1 n 17.7219; 5.8443; 29.0762
90; 94.278; 90
1308.53Evans, 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 CIFBi6 Cd Rb2 Se11P n n m12.385; 23.839; 4.1124
90; 90; 90
1214.1Mercouri 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 CIFBi6 Fe4.2 O18 Sc1.8R 3 c :H5.62949; 5.62949; 14.0273
90; 90; 120
384.984Khalyavin, 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 CIFBi6 H18 N6 O27 S6R -3 :H14.7996; 14.7996; 11.1737
90; 90; 120
2119.47Philip 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 CIFBi7 Nd3I m m m4.2996; 15.2; 19.121
90; 90; 90
1249.6Ovchinnikov, 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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