Crystallography Open Database

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4126891 CIFC8 H6 N4 O2 ZnI -4 3 m16.938; 16.938; 16.938
90; 90; 90
4859.4Hobday, Claire L.; Bennett, Thomas D.; Fairen-Jimenez, David; Graham, Alexander J.; Morrison, Carole A.; Allan, David R.; Düren, Tina; Moggach, Stephen A.
Tuning the Swing Effect by Chemical Functionalization of Zeolitic Imidazolate Frameworks.
Journal of the American Chemical Society, 2017
4126892 CIFC16 H63 N O16 ZnI -4 3 m17.2663; 17.2663; 17.2663
90; 90; 90
5147.5Hobday, Claire L.; Bennett, Thomas D.; Fairen-Jimenez, David; Graham, Alexander J.; Morrison, Carole A.; Allan, David R.; Düren, Tina; Moggach, Stephen A.
Tuning the Swing Effect by Chemical Functionalization of Zeolitic Imidazolate Frameworks.
Journal of the American Chemical Society, 2017
4126893 CIFC10 H14 N4 O4 ZnI -4 3 m17.2458; 17.2458; 17.2458
90; 90; 90
5129.2Hobday, Claire L.; Bennett, Thomas D.; Fairen-Jimenez, David; Graham, Alexander J.; Morrison, Carole A.; Allan, David R.; Düren, Tina; Moggach, Stephen A.
Tuning the Swing Effect by Chemical Functionalization of Zeolitic Imidazolate Frameworks.
Journal of the American Chemical Society, 2017
4126894 CIFC13 H26 N4 O7 ZnI -4 3 m17.251; 17.251; 17.251
90; 90; 90
5133.8Hobday, Claire L.; Bennett, Thomas D.; Fairen-Jimenez, David; Graham, Alexander J.; Morrison, Carole A.; Allan, David R.; Düren, Tina; Moggach, Stephen A.
Tuning the Swing Effect by Chemical Functionalization of Zeolitic Imidazolate Frameworks.
Journal of the American Chemical Society, 2017
4126895 CIFC13.6 H26.4 N4 O7.6 ZnI -4 3 m17.185; 17.185; 17.185
90; 90; 90
5075.1Hobday, Claire L.; Bennett, Thomas D.; Fairen-Jimenez, David; Graham, Alexander J.; Morrison, Carole A.; Allan, David R.; Düren, Tina; Moggach, Stephen A.
Tuning the Swing Effect by Chemical Functionalization of Zeolitic Imidazolate Frameworks.
Journal of the American Chemical Society, 2017
4128140 CIFC8 H10 Fe N4I -4 3 m17.1656; 17.1656; 17.1656
90; 90; 90
5057.98López-Cabrelles, Javier; Romero, Jorge; Abellán, Gonzalo; Giménez-Marqués, Mónica; Palomino, Miguel; Valencia, Susana; Rey, Fernando; Mínguez Espallargas, Guillermo
Solvent-Free Synthesis of ZIFs: A Route toward the Elusive Fe(II) Analogue of ZIF-8.
Journal of the American Chemical Society, 2019, 141, 7173-7180
4129344 CIFC60 H50 Co4 N40 O8 S12I -4 3 m20.8844; 20.8844; 20.8844
90; 90; 90
9108.9Jing, Xu; He, Cheng; Yang, Yang; Duan, Chunying
A metal-organic tetrahedron as a redox vehicle to encapsulate organic dyes for photocatalytic proton reduction.
Journal of the American Chemical Society, 2015, 137, 3967-3974
4132812 CIFC48 H96 Cl3 K3 O168 Zr36I -4 3 m37.539; 37.539; 37.539
90; 90; 90
52899Choi, Jong In; Chun, Hyungphil; Lah, Myoung Soo
Zirconium-Formate Macrocycles and Supercage: Molecular Packing versus MOF-like Network for Water Vapor Sorption.
Journal of the American Chemical Society, 2018, 140, 10915-10920
4133208 CIFC6 H4 N6 O4 ZnI -4 3 m17.302; 17.302; 17.302
90; 90; 90
5179.5Choi, Yejin; Noh, Kyungkyou; Lee, Jisu; Kim, Jaheon
Porosity Properties of the Conformers of Sodalite-like Zeolitic Imidazolate Frameworks.
Journal of the American Chemical Society, 2018, 140, 14586-14589
4133209 CIFC6 H4 N6 O4 ZnI -4 3 m17.3893; 17.3893; 17.3893
90; 90; 90
5258.31Choi, Yejin; Noh, Kyungkyou; Lee, Jisu; Kim, Jaheon
Porosity Properties of the Conformers of Sodalite-like Zeolitic Imidazolate Frameworks.
Journal of the American Chemical Society, 2018, 140, 14586-14589
4303055 CIFC14 H20 N4 O5 ZnI -4 3 m19.0203; 19.0203; 19.0203
90; 90; 90
6881Xiaoliang Zhao; Haiyan He; Tuoping Hu; Fangna Dai; Daofeng Sun
Interpenetrating Polyhedral MOF with a Primitive Cubic Network Based on Supermolecular Building Blocks Constructed of a Semirigid C3-Symmetric Carboxylate Ligand
Inorganic Chemistry, 2009, 48, 8057-8059
4307124 CIFCu5.59 Zn7.41I -4 3 m8.8565; 8.8565; 8.8565
90; 90; 90
694.68Olivier Gourdon; Delphine Gout; Darrick J. Williams; Thomas Proffen; Sara Hobbs; Gordon J. Miller
Atomic Distributions in the γ-Brass Structure of the Cu-Zn System: A Structural and Theoretical Study
Inorganic Chemistry, 2007, 46, 251-260
4307125 CIFCu5.31 Zn7.69I -4 3 m8.8601; 8.8601; 8.8601
90; 90; 90
695.53Olivier Gourdon; Delphine Gout; Darrick J. Williams; Thomas Proffen; Sara Hobbs; Gordon J. Miller
Atomic Distributions in the γ-Brass Structure of the Cu-Zn System: A Structural and Theoretical Study
Inorganic Chemistry, 2007, 46, 251-260
4307126 CIFCu5 Zn8I -4 3 m8.8664; 8.8664; 8.8664
90; 90; 90
697.01Olivier Gourdon; Delphine Gout; Darrick J. Williams; Thomas Proffen; Sara Hobbs; Gordon J. Miller
Atomic Distributions in the γ-Brass Structure of the Cu-Zn System: A Structural and Theoretical Study
Inorganic Chemistry, 2007, 46, 251-260
4307127 CIFCu4.56 Zn8.44I -4 3 m8.8744; 8.8744; 8.8744
90; 90; 90
698.9Olivier Gourdon; Delphine Gout; Darrick J. Williams; Thomas Proffen; Sara Hobbs; Gordon J. Miller
Atomic Distributions in the γ-Brass Structure of the Cu-Zn System: A Structural and Theoretical Study
Inorganic Chemistry, 2007, 46, 251-260
4307128 CIFCu4.21 Zn8.79I -4 3 m8.8829; 8.8829; 8.8829
90; 90; 90
700.91Olivier Gourdon; Delphine Gout; Darrick J. Williams; Thomas Proffen; Sara Hobbs; Gordon J. Miller
Atomic Distributions in the γ-Brass Structure of the Cu-Zn System: A Structural and Theoretical Study
Inorganic Chemistry, 2007, 46, 251-260
4309224 CIFC108 H144 Cd3 Hg7 P4 Se16I -4 3 m18.6251; 18.6251; 18.6251
90; 90; 90
6460.9Marty W. DeGroot; Nicholas J. Taylor; John F. Corrigan
Controlled Synthesis of Ternary II-II'-VI Nanoclusters and the Effects of Metal Ion Distribution on Their Spectral Properties
Inorganic Chemistry, 2005, 44, 5447-5458
4320349 CIFCa Na10 Sn12I -4 3 m11.1847; 11.1847; 11.1847
90; 90; 90
1399.18Svilen Bobev; Slavi C. Sevov
Synthesis and Characterization of the Largest Isolated Clusters of Tin, [Sn12]12-, in (AE)Na10Sn12 (AE = Ca or Sr)
Inorganic Chemistry, 2001, 40, 5361-5364
4320350 CIFNa10 Sn12 SrI -4 3 m11.2176; 11.2176; 11.2176
90; 90; 90
1411.56Svilen Bobev; Slavi C. Sevov
Synthesis and Characterization of the Largest Isolated Clusters of Tin, [Sn12]12-, in (AE)Na10Sn12 (AE = Ca or Sr)
Inorganic Chemistry, 2001, 40, 5361-5364
4322461 CIFC9 H28 B N3 NaI -4 3 m13.859; 13.859; 13.859
90; 90; 90
2661.9Hans-Hermann Giese; Tassilo Habereder; Heinrich Nöth; Werner Ponikwar; Steffen Thomas; Marcus Warchhold
Metal Tetrahydridoborates and Tetrahydridoborato Metalates. 23.1 Amine Solvates of Lithium and Sodium Tetrahydridoborate
Inorganic Chemistry, 1999, 38, 4188-4196
4331713 CIFF5 H2 N TeI -4 3 m6.404; 6.404; 6.404
90; 90; 90
262.6Fir, Barbara; Whalen, J. Marc; Mercier, Hélène P. A.; Dixon, David A.; Schrobilgen, Gary J.
Syntheses of [F5TeNH3][AsF6], [F5TeN(H)Xe][AsF6], and F5TeNF2and Characterization by Multi-NMR and Raman Spectroscopy and by Electronic Structure Calculations: The X-ray Crystal Structures of α- and β-F5TeNH2, [F5TeNH3][AsF6], and [F5TeN(H)Xe][AsF6]
Inorganic Chemistry, 2006, 45, 1978-1996
4332405 CIFC12 H36 Ge8 N4I -4 3 m11.2872; 11.2872; 11.2872
90; 90; 90
1438Eichler, Jack F.; Just, Oliver; Rees, William S.
Synthesis and Characterization of Imidocubanes with Exocube GeIVand SnIVSubstituents: [M(μ3-NGeMe3)]4(M = Sn, Ge, Pb); [Sn(μ3-NSnMe3)]4
Inorganic Chemistry, 2006, 45, 6706-6712
4332408 CIFC12 H36 N4 Sn8I -4 3 m11.6106; 11.6106; 11.6106
90; 90; 90
1565.2Eichler, Jack F.; Just, Oliver; Rees, William S.
Synthesis and Characterization of Imidocubanes with Exocube GeIVand SnIVSubstituents: [M(μ3-NGeMe3)]4(M = Sn, Ge, Pb); [Sn(μ3-NSnMe3)]4
Inorganic Chemistry, 2006, 45, 6706-6712
4337013 CIFC60 H96 Ga4 N4 Pd4I -4 3 m17.391; 17.391; 17.391
90; 90; 90
5259.85Mariusz Molon; Katharina Dilchert; Christian Gemel; Rüdiger W. Seidel; Julian Schaumann; Roland A. Fischer
Clusters [Ma(GaCp*)b(CNR)c] (M = Ni, Pd, Pt): Synthesis, Structure, and Ga/Zn Exchange Reactions
Inorganic Chemistry, 2013, 52, 14275-14283
4338032 CIFC12 H51 Cu3 N9 O30 SI -4 3 m21.1373; 21.1373; 21.1373
90; 90; 90
9443.8Vasylevs'kyy, Sergiy I.; Senchyk, Ganna A.; Lysenko, Andrey B.; Rusanov, Eduard B.; Chernega, Alexander N.; Jezierska, Julia; Krautscheid, Harald; Domasevitch, Konstantin V.; Ozarowski, Andrew
1,2,4-Triazolyl-Carboxylate-Based MOFs Incorporating Triangular Cu(II)-Hydroxo Clusters: Topological Metamorphosis and Magnetism.
Inorganic chemistry, 2014, 53, 3642
4340346 CIFC24 H27 Dy3 N6 O12I -4 3 m39.5241; 39.5241; 39.5241
90; 90; 90
61743Du, Miao; Chen, Min; Wang, Xi; Wen, Jiong; Yang, Xiao-Gang; Fang, Shao-Ming; Liu, Chun-Sen
Versatile Mesoporous Dy(III) Coordination Framework for Highly Efficient Trapping of Diverse Pollutants.
Inorganic chemistry, 2014, 53, 7074-7076
4342013 CIFC24 H52 Br6 Cu4 N8I -4 3 m13.3863; 13.3863; 13.3863
90; 90; 90
2398.73Zhang, Xian-Ming; Hou, Juan-Juan; Guo, Cai-Hong; Li, Chun-Fang
A new class of cuprous bromide cluster-based hybrid materials: direct observation of the stepwise replacement of hydrogen bonds by coordination bonds.
Inorganic chemistry, 2015, 54, 554-559
4342014 CIFC24 H36 Br6 Cu4.56 N8I -4 3 m13.4124; 13.4124; 13.4124
90; 90; 90
2412.8Zhang, Xian-Ming; Hou, Juan-Juan; Guo, Cai-Hong; Li, Chun-Fang
A new class of cuprous bromide cluster-based hybrid materials: direct observation of the stepwise replacement of hydrogen bonds by coordination bonds.
Inorganic chemistry, 2015, 54, 554-559
4342015 CIFC24 Br6 Cu4.81 N8I -4 3 m13.4488; 13.4488; 13.4488
90; 90; 90
2432.49Zhang, Xian-Ming; Hou, Juan-Juan; Guo, Cai-Hong; Li, Chun-Fang
A new class of cuprous bromide cluster-based hybrid materials: direct observation of the stepwise replacement of hydrogen bonds by coordination bonds.
Inorganic chemistry, 2015, 54, 554-559
4343932 CIFEu Na10 Sn12I -4 3 m11.2189; 11.2189; 11.2189
90; 90; 90
1412.05Todorov, I.; Sevov, S.C.
In search of benzene-like Sn6(6-): synthesis of Na4 Ca Sn6 with interconnected cyclohexane-like Sn6(6-)
Inorganic Chemistry, 2006, 45, 4478-4483
4343933 CIFNa10 Sn12 YbI -4 3 m11.1768; 11.1768; 11.1768
90; 90; 90
1396.21Todorov, I.; Sevov, S.C.
In search of benzene-like Sn6(6-): synthesis of Na4 Ca Sn6 with interconnected cyclohexane-like Sn6(6-)
Inorganic Chemistry, 2006, 45, 4478-4483
4345845 CIFC130 H174 Ag3 F12 N54 O12 S4I -4 3 m20.597; 20.597; 20.597
90; 90; 90
8738Jimenez, Jorge; Chakraborty, Indranil; Del Cid, Anthony M.; Mascharak, Pradip K.
Five- and Six-Coordinated Silver(I) Complexes Derived from 2,6-(Pyridyl)iminodiadamantanes: Sustained Release of Bioactive Silver toward Bacterial Eradication.
Inorganic chemistry, 2017, 56, 4784-4787
4500982 CIFC30 H23 N3 Ni3 O15I -4 3 m21.6735; 21.6735; 21.6735
90; 90; 90
10180.9Jiang, Guiyuan; Wu, Tao; Zheng, Shou-Tian; Zhao, Xiang; Lin, Qipu; Bu, Xianhui; Feng, Pingyun
A Nine-Connected Mixed-Ligand Nickel-Organic Framework and Its Gas Sorption Properties
Crystal Growth & Design, 2011, 11, 3713
4502653 CIFC2 H2 B0.25 Cu0.5 F N1.5 O2.17I -4 3 m21.037; 21.037; 21.037
90; 90; 90
9310Naik, Anil D.; Dîrtu, Marinela M.; Léonard, Alexandre; Tinant, Bernard; Marchand-Brynaert, Jacqueline; Su, Bao-Lian; Garcia, Yann
Engineering Three-Dimensional Chains of Porous Nanoballs from a 1,2,4-Triazole-carboxylate Supramolecular Synthon
Crystal Growth & Design, 2010, 10, 1798
4509636 CIFC36 H36 Ag2 N8 O9I -4 3 m15.9; 15.9; 15.9
90; 90; 90
4019.7Liu, Dong; Li, Hong-Xi; Ren, Zhi-Gang; Chen, Yang; Zhang, Yong; Lang, Jian-Ping
Encapsulation of Unusual Nitrate−Water Cluster [(NO3)4(H2O)6]4−Anions into Cages of a Three-Dimensional Cationic Coordination Polymer
Crystal Growth & Design, 2009, 9, 4562
4511960 CIFAl6 Ca4 O16 SI -4 3 m9.19703; 9.19703; 9.19703
90; 90; 90
777.934Cuesta, Ana; De la Torre, Ángeles G.; Losilla, Enrique R.; Santacruz, Isabel; Aranda, Miguel A. G.
Pseudocubic Crystal Structure and Phase Transition in Doped Ye’elimite
Crystal Growth & Design, 2014, 14, 5158
4517906 CIFB6 O12 S Zn4I -4 3 m7.63471; 7.63471; 7.63471
90; 90; 90
445.018Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517907 CIFB6 O12 S Zn4I -4 3 m7.63463; 7.63463; 7.63463
90; 90; 90
445.004Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517908 CIFB6 O12 S Zn4I -4 3 m7.63471; 7.63471; 7.63471
90; 90; 90
445.018Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517909 CIFB6 O12 S Zn4I -4 3 m7.63536; 7.63536; 7.63536
90; 90; 90
445.132Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517910 CIFB6 O12 S Zn4I -4 3 m7.63664; 7.63664; 7.63664
90; 90; 90
445.356Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517911 CIFB6 O12 S Zn4I -4 3 m7.6351; 7.6351; 7.6351
90; 90; 90
445.086Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517912 CIFB6 O12 S Zn4I -4 3 m7.63496; 7.63496; 7.63496
90; 90; 90
445.062Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517913 CIFB6 O12 S Zn4I -4 3 m7.63603; 7.63603; 7.63603
90; 90; 90
445.249Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517914 CIFB6 O12 S Zn4I -4 3 m7.63458; 7.63458; 7.63458
90; 90; 90
444.995Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517915 CIFB6 O12 S Zn4I -4 3 m7.63706; 7.63706; 7.63706
90; 90; 90
445.429Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517916 CIFB6 O12 S Zn4I -4 3 m7.63467; 7.63467; 7.63467
90; 90; 90
445.011Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517917 CIFB6 O12 S Zn4I -4 3 m7.63563; 7.63563; 7.63563
90; 90; 90
445.179Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517918 CIFB6 O12 S Zn4I -4 3 m7.63757; 7.63757; 7.63757
90; 90; 90
445.518Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517919 CIFB6 O12 S Zn4I -4 3 m7.63863; 7.63863; 7.63863
90; 90; 90
445.704Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517920 CIFB6 O12 S Zn4I -4 3 m7.63456; 7.63456; 7.63456
90; 90; 90
444.992Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517921 CIFB6 O13 Zn4I -4 3 m7.47281; 7.47281; 7.47281
90; 90; 90
417.303Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517922 CIFB6 O13 Zn4I -4 3 m7.47607; 7.47607; 7.47607
90; 90; 90
417.85Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517923 CIFB6 O13 Zn4I -4 3 m7.4745; 7.4745; 7.4745
90; 90; 90
417.586Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517924 CIFB6 O13 Zn4I -4 3 m7.4726; 7.4726; 7.4726
90; 90; 90
417.268Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517925 CIFB6 O13 Zn4I -4 3 m7.47266; 7.47266; 7.47266
90; 90; 90
417.278Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517926 CIFB6 O13 Zn4I -4 3 m7.47268; 7.47268; 7.47268
90; 90; 90
417.282Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517927 CIFB6 O13 Zn4I -4 3 m7.47262; 7.47262; 7.47262
90; 90; 90
417.271Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517928 CIFB6 O13 Zn4I -4 3 m7.47305; 7.47305; 7.47305
90; 90; 90
417.344Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517929 CIFB6 O13 Zn4I -4 3 m7.47296; 7.47296; 7.47296
90; 90; 90
417.328Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517930 CIFB6 O13 Zn4I -4 3 m7.47497; 7.47497; 7.47497
90; 90; 90
417.665Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517931 CIFB6 O13 Zn4I -4 3 m7.47257; 7.47257; 7.47257
90; 90; 90
417.263Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517932 CIFB6 O13 Zn4I -4 3 m7.47552; 7.47552; 7.47552
90; 90; 90
417.757Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517933 CIFB6 O13 Zn4I -4 3 m7.4727; 7.4727; 7.4727
90; 90; 90
417.285Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517934 CIFB6 O13 Zn4I -4 3 m7.47339; 7.47339; 7.47339
90; 90; 90
417.4Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517935 CIFB6 O13 Zn4I -4 3 m7.47412; 7.47412; 7.47412
90; 90; 90
417.523Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517936 CIFB6 O13 Zn4I -4 3 m7.47373; 7.47373; 7.47373
90; 90; 90
417.457Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517937 CIFB6 O12 Se Zn4I -4 3 m7.68474; 7.68474; 7.68474
90; 90; 90
453.824Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517938 CIFB6 O12 Se Zn4I -4 3 m7.68392; 7.68392; 7.68392
90; 90; 90
453.679Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517939 CIFB6 O12 Se Zn4I -4 3 m7.68194; 7.68194; 7.68194
90; 90; 90
453.328Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517940 CIFB6 O12 Se Zn4I -4 3 m7.68083; 7.68083; 7.68083
90; 90; 90
453.132Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517941 CIFB6 O12 Se Zn4I -4 3 m7.68092; 7.68092; 7.68092
90; 90; 90
453.148Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517942 CIFB6 O12 Se Zn4I -4 3 m7.68085; 7.68085; 7.68085
90; 90; 90
453.135Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517943 CIFB6 O12 Se Zn4I -4 3 m7.68132; 7.68132; 7.68132
90; 90; 90
453.218Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517944 CIFB6 O12 Se Zn4I -4 3 m7.68233; 7.68233; 7.68233
90; 90; 90
453.397Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517945 CIFB6 O12 Se Zn4I -4 3 m7.68087; 7.68087; 7.68087
90; 90; 90
453.139Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517946 CIFB6 O12 Se Zn4I -4 3 m7.6812; 7.6812; 7.6812
90; 90; 90
453.197Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517947 CIFB6 O12 Se Zn4I -4 3 m7.68106; 7.68106; 7.68106
90; 90; 90
453.172Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517948 CIFB6 O12 Se Zn4I -4 3 m7.68084; 7.68084; 7.68084
90; 90; 90
453.133Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517949 CIFB6 O12 Se Zn4I -4 3 m7.68336; 7.68336; 7.68336
90; 90; 90
453.58Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517950 CIFB6 O12 Se Zn4I -4 3 m7.68092; 7.68092; 7.68092
90; 90; 90
453.148Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517951 CIFB6 O12 Se Zn4I -4 3 m7.68153; 7.68153; 7.68153
90; 90; 90
453.256Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4517952 CIFB6 O12 Se Zn4I -4 3 m7.68284; 7.68284; 7.68284
90; 90; 90
453.488Liu, Youquan; Mei, Dajiang; Wang, Naizheng; Molokeev, Maxim S.; Jiang, Xingxing; Lin, Zheshuai
Intrinsic Isotropic Near-Zero Thermal Expansion in Zn<sub>4</sub>B<sub>6</sub>O<sub>12</sub>X (X = O, S, Se).
ACS applied materials & interfaces, 2020, 12, 38435-38440
4519035 CIFC60 H39 Fe3 N6 O16I -4 3 m32.5991; 32.5991; 32.5991
90; 90; 90
34643.1Zhang, Zong-Hui; Fang, Han; Xue, Dong-Xu; Bai, Junfeng
Tuning Open Metal Site-Free <b>ncb</b> Type of Metal-Organic Frameworks for Simultaneously High Gravimetric and Volumetric Methane Storage Working Capacities.
ACS applied materials & interfaces, 2021, 13, 44956-44963
4519036 CIFC51 H30 Fe3 N6 O16I -4 3 m29.8619; 29.8619; 29.8619
90; 90; 90
26628.8Zhang, Zong-Hui; Fang, Han; Xue, Dong-Xu; Bai, Junfeng
Tuning Open Metal Site-Free <b>ncb</b> Type of Metal-Organic Frameworks for Simultaneously High Gravimetric and Volumetric Methane Storage Working Capacities.
ACS applied materials & interfaces, 2021, 13, 44956-44963
4519037 CIFC60 H39 Fe3 N9 O16I -4 3 m33.5266; 33.5266; 33.5266
90; 90; 90
37685Zhang, Zong-Hui; Fang, Han; Xue, Dong-Xu; Bai, Junfeng
Tuning Open Metal Site-Free <b>ncb</b> Type of Metal-Organic Frameworks for Simultaneously High Gravimetric and Volumetric Methane Storage Working Capacities.
ACS applied materials & interfaces, 2021, 13, 44956-44963
4519041 CIFBa8 Ga14.89 Sn31.11I -4 3 m11.5887; 11.5887; 11.5887
90; 90; 90
1556.3Dopilka, Andrew; Childs, Amanda; Ovchinnikov, Alexander; Zhao, Ran; Bobev, Svilen; Peng, Xihong; Chan, Candace K.
Structural and Electrochemical Properties of Type VIII Ba<sub>8</sub>Ga<sub>16-δ</sub>Sn<sub>30+δ</sub> Clathrate (δ ≈ 1) during Lithiation.
ACS applied materials & interfaces, 2021, 13, 42564-42578
5910015 CIFAg5 Zn8I -4 3 m9.33; 9.33; 9.33
90; 90; 90
812.166Wyckoff, R. W. G.
Pages 261 from the second edition of Structure of Crystals by Wyckoff R W G. Published by The Chemical Catalog Company, INC, New York in 1931 & http://www.crystallography.net
The second edition of Structure of Crystals, 1931, 261-261
5910022 CIFAu5 Zn8I -4 3 m9.27; 9.27; 9.27
90; 90; 90
796.598Wyckoff, R. W. G.
Pages 261 from the second edition of Structure of Crystals by Wyckoff R W G. Published by The Chemical Catalog Company, INC, New York in 1931 & http://www.crystallography.net
The second edition of Structure of Crystals, 1931, 261-261
5910070 CIFAg5 Cd8I -4 3 m9.96; 9.96; 9.96
90; 90; 90
988.048Wyckoff, R. W. G.
Pages 261 from the second edition of Structure of Crystals by Wyckoff R W G. Published by The Chemical Catalog Company, INC, New York in 1931 & http://www.crystallography.net/
The second edition of Structure of Crystals, 1931, 261-261
6000127 CIFAl12 Ce10 N36 O18 Si18 Sr3I -4 3 m13.382; 13.382; 13.382
90; 90; 90
2396.4Lauterbach, Rainer; Irran, Elisabeth; Henry, Paul F.; Weller, Mark T.; Schnick, Wolfgang
High-temperature synthesis, single-crystal X-ray and neutron powder diffraction, and materials properties of Sr3Ln10Si18Al12O18N36 (Ln = Ce, Pr, Nd)—novel sialons with an ordered distribution of Si, Al, O, and N
Journal of Materials Chemistry, 2000, 10, 1357-1364
6000128 CIFAl12 N36 O18 Pr10 Si18 Sr3I -4 3 m13.3454; 13.3454; 13.3454
90; 90; 90
2376.81Lauterbach, Rainer; Irran, Elisabeth; Henry, Paul F.; Weller, Mark T.; Schnick, Wolfgang
High-temperature synthesis, single-crystal X-ray and neutron powder diffraction, and materials properties of Sr3Ln10Si18Al12O18N36 (Ln = Ce, Pr, Nd)—novel sialons with an ordered distribution of Si, Al, O, and N
Journal of Materials Chemistry, 2000, 10, 1357-1364
6000129 CIFAl12 N36 Nd10 O18 Si18 Sr3I -4 3 m13.3285; 13.3285; 13.3285
90; 90; 90
2367.79Lauterbach, Rainer; Irran, Elisabeth; Henry, Paul F.; Weller, Mark T.; Schnick, Wolfgang
High-temperature synthesis, single-crystal X-ray and neutron powder diffraction, and materials properties of Sr3Ln10Si18Al12O18N36 (Ln = Ce, Pr, Nd)—novel sialons with an ordered distribution of Si, Al, O, and N
Journal of Materials Chemistry, 2000, 10, 1357-1364
6000236 CIFAs4 Cu6.48 Fe5.52 S13I -4 3 m10.2157; 10.2157; 10.2157
90; 90; 90
1066.12Ochando, L. E.; Casanova, J. M.; Esteve, V. J.; Reventós, M. M.; Amigó, J. M.
Rietveld crystal structure refinement of tennantite, Cu~6~(Cu~0.48~Fe~5.52~)As~4~S~13~
Anales de Quimica International Edition, 1998, 94, 359-362
6000562 CIFAl10 O96 Rb10 Si38I -4 3 m14.374; 14.374; 14.374
90; 90; 90
2969.84Parise, J. B.; Corbin, D. R.; Gier, T. E.; Harlow, R. L.; Abrams, L.; Vondreele, R. B.
Flexibility of the rho framework - a comparison of the Rb-exchanged zeolite and the novel composition RB24BE24AS24O96.3.2 D2O
Zeolites, 1992, 12, 360-368
7003213 CIFC22 H198 Fe13 N22 O202 P8 W36I -4 3 m21.1011; 21.1011; 21.1011
90; 90; 90
9395.4Pichon, Céline; Dolbecq, Anne; Mialane, Pierre; Marrot, Jérôme; Rivière, Eric; Sécheresse, Francis
Square versus tetrahedral iron clusters with polyoxometalate ligands
Dalton Transactions, 2008, 71
7009286 CIFC216 H180 Cu11 In15 P4 Se40I -4 3 m25.431; 25.431; 25.431
90; 90; 90
16447Eichhöfer, Andreas; Fenske, Dieter
Syntheses and structures of new copper(I)‒indium(III)‒selenide clusters †
Journal of the Chemical Society, Dalton Transactions, 2000, 941
7013985 CIFC27 H27 Cl11 Cu N8 O8I -4 3 m23.7035; 23.7035; 23.7035
90; 90; 90
13318Solntsev, Pavlo V.; Sieler, Joachim; Chernega, Alexander N.; Howard, Judith A. K.; Gelbrich, Thomas; Domasevitch, Konstantin V.
Self-assembly sodalite-like framework.
Dalton transactions (Cambridge, England : 2003), 2004, 695-696
7013986 CIFC27 H27 Cl9 Cu N10 O6I -4 3 m23.5623; 23.5623; 23.5623
90; 90; 90
13081.4Solntsev, Pavlo V.; Sieler, Joachim; Chernega, Alexander N.; Howard, Judith A. K.; Gelbrich, Thomas; Domasevitch, Konstantin V.
Self-assembly sodalite-like framework.
Dalton transactions (Cambridge, England : 2003), 2004, 695-696
7035744 CIFBe3 Cl2 Na8 O24 Si9I -4 3 m8.6894; 8.6894; 8.6894
90; 90; 90
656.099Armstrong, J.A.; Weller, M.T.
New sodalite frameworks; synthetic tugtupite and a beryllosilicate framework with a 3:1 Si:Be ratio
DALTON TRANSACTIONS (CAMBRIDGE, ENGLAND : 2003), 2006, 2006, 2998-3005

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