Crystallography Open Database

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4113928 CIFFeI m -3 m2.86048; 2.86048; 2.86048
90; 90; 90
23.4054Patrick M. Woodward; Emmanuelle Suard; Pavel Karen
Structural Tuning of Charge, Orbital, and Spin Ordering in Double-Cell Perovskite Series between NdBaFe2O5 and HoBaFe2O5
Journal of the American Chemical Society, 2003, 125, 8889-8899
4113931 CIFFeI m -3 m2.86284; 2.86284; 2.86284
90; 90; 90
23.4634Patrick M. Woodward; Emmanuelle Suard; Pavel Karen
Structural Tuning of Charge, Orbital, and Spin Ordering in Double-Cell Perovskite Series between NdBaFe2O5 and HoBaFe2O5
Journal of the American Chemical Society, 2003, 125, 8889-8899
4113936 CIFFeI m -3 m2.86661; 2.86661; 2.86661
90; 90; 90
23.5562Patrick M. Woodward; Emmanuelle Suard; Pavel Karen
Structural Tuning of Charge, Orbital, and Spin Ordering in Double-Cell Perovskite Series between NdBaFe2O5 and HoBaFe2O5
Journal of the American Chemical Society, 2003, 125, 8889-8899
4113941 CIFFeI m -3 m2.87142; 2.87142; 2.87142
90; 90; 90
23.675Patrick M. Woodward; Emmanuelle Suard; Pavel Karen
Structural Tuning of Charge, Orbital, and Spin Ordering in Double-Cell Perovskite Series between NdBaFe2O5 and HoBaFe2O5
Journal of the American Chemical Society, 2003, 125, 8889-8899
4105683 CIF
HKL
VI m -3 m3.01596; 3.01596; 3.01596
90; 90; 90
27.433Catherine F. Smura; Dinah R. Parker; Mohamed Zbiri; Mark R. Johnson; Zoltán A. Gál; Simon J. Clarke
High-Spin Cobalt(II) Ions in Square Planar Coordination: Structures and Magnetism of the Oxysulfides Sr2CoO2Cu2S2 and Ba2CoO2Cu2S2 and Their Solid Solution
Journal of the American Chemical Society, 2011, 133, 2691-2705
4105686 CIF
HKL
VI m -3 m3.01691; 3.01691; 3.01691
90; 90; 90
27.459Catherine F. Smura; Dinah R. Parker; Mohamed Zbiri; Mark R. Johnson; Zoltán A. Gál; Simon J. Clarke
High-Spin Cobalt(II) Ions in Square Planar Coordination: Structures and Magnetism of the Oxysulfides Sr2CoO2Cu2S2 and Ba2CoO2Cu2S2 and Their Solid Solution
Journal of the American Chemical Society, 2011, 133, 2691-2705
4117482 CIF
HKL
VI m -3 m3.02032; 3.02032; 3.02032
90; 90; 90
27.5524Wojciech Miiller; Maxim Avdeev; Qingdi Zhou; Brendan J. Kennedy; Neeraj Sharma; Ramzi Kutteh; Gordon J. Kearley; Siegber Schmid; Kevin S. Knight; Peter E. R. Blanchard; Chris D. Ling
Giant Magnetoelastic Effect at the Opening of a Spin-Gap in Ba3BiIr2O9
Journal of the American Chemical Society, 2012, 134, 3265-3270
4111969 CIFNbI m -3 m3.3279; 3.3279; 3.3279
90; 90; 90
36.856H. Gijs Schimmel; Jacques Huot; Laurent C. Chapon; Frans D. Tichelaar; Fokko M. Mulder
Hydrogen Cycling of Niobium and Vanadium Catalyzed Nanostructured Magnesium
Journal of the American Chemical Society, 2005, 127, 14348-14354
1011134 CIFH2 Ni O2P -3 m 13.114; 3.114; 4.617
90; 90; 120
38.8Cairns, R W; Ott, E
X-ray studies of the system nickel-oxygen-water. I. Nickelous oxide and hydroxide
Journal of the American Chemical Society, 1933, 55, 527-533
4111970 CIFD0.83 NbI m -3 m3.438; 3.438; 3.438
90; 90; 90
40.637H. Gijs Schimmel; Jacques Huot; Laurent C. Chapon; Frans D. Tichelaar; Fokko M. Mulder
Hydrogen Cycling of Niobium and Vanadium Catalyzed Nanostructured Magnesium
Journal of the American Chemical Society, 2005, 127, 14348-14354
4123954 CIFCd0.9 Mg0.1P 63/m m c2.9999; 2.9999; 5.5158
90; 90; 120
42.989Edwards, D.A.; Wallace, W.E.; Craig, R.S.
Magnesium-cadmium alloys. IV. The cadmium-rich alloys; some lattice parameters and phase relationships between 25 and 300 C. Structure of Mg Cd3
Journal of the American Chemical Society, 1952, 52, 5256-5262
9012289 CIFCF d -3 m :13.56669; 3.56669; 3.56669
90; 90; 90
45.373Straumanis, M. E.; Aka, E. Z.
Precision determination of lattice parameter, coefficient of thermal expansion and atomic weight of carbon in diamond Locality: Belgian Congo Sample: at T = 10 C Note: Diamond #1, lattice parameter is average of three runs
Journal of the American Chemical Society, 1951, 73, 5643-5646
9012294 CIFCF d -3 m :13.5667; 3.5667; 3.5667
90; 90; 90
45.373Straumanis, M. E.; Aka, E. Z.
Precision determination of lattice parameter, coefficient of thermal expansion and atomic weight of carbon in diamond Locality: Belgian Congo Sample: at T = 10 C Note: white boart
Journal of the American Chemical Society, 1951, 73, 5643-5646
9012290 CIFCF d -3 m :13.56672; 3.56672; 3.56672
90; 90; 90
45.374Straumanis, M. E.; Aka, E. Z.
Precision determination of lattice parameter, coefficient of thermal expansion and atomic weight of carbon in diamond Locality: Belgian Congo Sample: at T = 20 C Note: Diamond #1, lattice parameter is average of three runs
Journal of the American Chemical Society, 1951, 73, 5643-5646
9012295 CIFCF d -3 m :13.56674; 3.56674; 3.56674
90; 90; 90
45.375Straumanis, M. E.; Aka, E. Z.
Precision determination of lattice parameter, coefficient of thermal expansion and atomic weight of carbon in diamond Locality: Belgian Congo Sample: at T = 20 C Note: white boart
Journal of the American Chemical Society, 1951, 73, 5643-5646
9012296 CIFCF d -3 m :13.56675; 3.56675; 3.56675
90; 90; 90
45.375Straumanis, M. E.; Aka, E. Z.
Precision determination of lattice parameter, coefficient of thermal expansion and atomic weight of carbon in diamond Locality: Belgian Congo Sample: at T = 30 C Note: white boart
Journal of the American Chemical Society, 1951, 73, 5643-5646
9012291 CIFCF d -3 m :13.56678; 3.56678; 3.56678
90; 90; 90
45.376Straumanis, M. E.; Aka, E. Z.
Precision determination of lattice parameter, coefficient of thermal expansion and atomic weight of carbon in diamond Locality: Belgian Congo Sample: at T = 30 C Note: Diamond #1, lattice parameter is average of three runs
Journal of the American Chemical Society, 1951, 73, 5643-5646
9012305 CIFCF d -3 m :13.56678; 3.56678; 3.56678
90; 90; 90
45.376Straumanis, M. E.; Aka, E. Z.
Precision determination of lattice parameter, coefficient of thermal expansion and atomic weight of carbon in diamond Locality: Belgian Congo Sample: at T = 20 C Note: Diamond #2
Journal of the American Chemical Society, 1951, 73, 5643-5646
9012299 CIFCF d -3 m :13.5668; 3.5668; 3.5668
90; 90; 90
45.377Straumanis, M. E.; Aka, E. Z.
Precision determination of lattice parameter, coefficient of thermal expansion and atomic weight of carbon in diamond Locality: Belgian Congo Sample: at T = 10 C Note: grey boart
Journal of the American Chemical Society, 1951, 73, 5643-5646
9012300 CIFCF d -3 m :13.5668; 3.5668; 3.5668
90; 90; 90
45.377Straumanis, M. E.; Aka, E. Z.
Precision determination of lattice parameter, coefficient of thermal expansion and atomic weight of carbon in diamond Locality: Belgian Congo Sample: at T = 20 C Note: grey boart
Journal of the American Chemical Society, 1951, 73, 5643-5646
9012297 CIFCF d -3 m :13.56683; 3.56683; 3.56683
90; 90; 90
45.378Straumanis, M. E.; Aka, E. Z.
Precision determination of lattice parameter, coefficient of thermal expansion and atomic weight of carbon in diamond Locality: Belgian Congo Sample: at T = 40 C Note: white boart
Journal of the American Chemical Society, 1951, 73, 5643-5646
9012292 CIFCF d -3 m :13.56684; 3.56684; 3.56684
90; 90; 90
45.379Straumanis, M. E.; Aka, E. Z.
Precision determination of lattice parameter, coefficient of thermal expansion and atomic weight of carbon in diamond Locality: Belgian Congo Sample: at T = 40 C Note: Diamond #1, lattice parameter is average of three runs
Journal of the American Chemical Society, 1951, 73, 5643-5646
9012301 CIFCF d -3 m :13.56684; 3.56684; 3.56684
90; 90; 90
45.379Straumanis, M. E.; Aka, E. Z.
Precision determination of lattice parameter, coefficient of thermal expansion and atomic weight of carbon in diamond Locality: Belgian Congo Sample: at T = 30 C Note: grey boart
Journal of the American Chemical Society, 1951, 73, 5643-5646
9012298 CIFCF d -3 m :13.56689; 3.56689; 3.56689
90; 90; 90
45.38Straumanis, M. E.; Aka, E. Z.
Precision determination of lattice parameter, coefficient of thermal expansion and atomic weight of carbon in diamond Locality: Belgian Congo Sample: at T = 50 C Note: white boart
Journal of the American Chemical Society, 1951, 73, 5643-5646
9012302 CIFCF d -3 m :13.56689; 3.56689; 3.56689
90; 90; 90
45.38Straumanis, M. E.; Aka, E. Z.
Precision determination of lattice parameter, coefficient of thermal expansion and atomic weight of carbon in diamond Locality: Belgian Congo Sample: at T = 40 C Note: grey boart
Journal of the American Chemical Society, 1951, 73, 5643-5646
9012293 CIFCF d -3 m :13.5669; 3.5669; 3.5669
90; 90; 90
45.381Straumanis, M. E.; Aka, E. Z.
Precision determination of lattice parameter, coefficient of thermal expansion and atomic weight of carbon in diamond Locality: Belgian Congo Sample: at T = 50 C Note: Diamond #1, lattice parameter is average of three runs
Journal of the American Chemical Society, 1951, 73, 5643-5646
9012303 CIFCF d -3 m :13.567; 3.567; 3.567
90; 90; 90
45.385Straumanis, M. E.; Aka, E. Z.
Precision determination of lattice parameter, coefficient of thermal expansion and atomic weight of carbon in diamond Locality: Belgian Congo Sample: at T = 50 C Note: grey boart
Journal of the American Chemical Society, 1951, 73, 5643-5646
4105040 CIF
HKL
CuF m -3 m3.58191; 3.58191; 3.58191
90; 90; 90
45.956Fortes, A. Dominic; Suard, Emmanuelle; Lemée-Cailleau, Marie-Hélène; Pickard, Christopher J.; Needs, Richard J.
Crystal Structure of Ammonia Monohydrate Phase II
Journal of the American Chemical Society, 2009, 131, 13508-13515
4105681 CIF
HKL
CuF m -3 m3.61538; 3.61538; 3.61538
90; 90; 90
47.257Catherine F. Smura; Dinah R. Parker; Mohamed Zbiri; Mark R. Johnson; Zoltán A. Gál; Simon J. Clarke
High-Spin Cobalt(II) Ions in Square Planar Coordination: Structures and Magnetism of the Oxysulfides Sr2CoO2Cu2S2 and Ba2CoO2Cu2S2 and Their Solid Solution
Journal of the American Chemical Society, 2011, 133, 2691-2705
4111965 CIFMgP 63/m m c3.23439; 3.23439; 5.25266
90; 90; 120
47.5877H. Gijs Schimmel; Jacques Huot; Laurent C. Chapon; Frans D. Tichelaar; Fokko M. Mulder
Hydrogen Cycling of Niobium and Vanadium Catalyzed Nanostructured Magnesium
Journal of the American Chemical Society, 2005, 127, 14348-14354
4124668 CIFO PdP 42/m m c3.02; 3.02; 5.31
90; 90; 90
48.429Moore, W.J.; Pauling, L.
The crystal structures of the tetragonal monoxides of lead, tin, palladium, and platinum
Journal of the American Chemical Society, 1941, 63, 1392-1394
4124669 CIFO PtP 42/m m c3.04; 3.04; 5.34
90; 90; 90
49.35Moore, W.J.; Pauling, L.
The crystal structures of the tetragonal monoxides of lead, tin, palladium, and platinum
Journal of the American Chemical Society, 1941, 63, 1392-1394
4124114 CIFCa0.8 Fe O2 Sr0.2P 4/m m m3.9028; 3.9028; 3.29132
90; 90; 90
50.133Tassel, C.; Sumida, Y.; Tsujimoto, Y.; Watanabe, T.; Kitada, A.; Hayashi, N.; Kageyama, H.; Yoshimura, K.; Yamamoto, T.; Takano, M.
Stability of the infinite layer structure with iron square planar coordination
Journal of the American Chemical Society, 2008, 130, 3764-3765
4124115 CIFCa Fe O2P 4/m m m3.89079; 3.89079; 3.35433
90; 90; 90
50.779Tassel, C.; Watanabe, T.; Sumida, Y.; Hayashi, N.; Takano, M.; Tsujimoto, Y.; Kitada, A.; Yamamoto, T.; Kageyama, H.; Yoshimura, K.
Stability of the infinite layer structure with iron square planar coordination
Journal of the American Chemical Society, 2008, 130, 3764-3765
4124850 CIFLi0.93 O3 WP m -3 m3.722; 3.722; 3.722
90; 90; 90
51.562Straumanis, M.E.; Doctor, G.F.
The System Sodium Tungsten Bronze - Lithium Tungsten Bronze - Tungtsen(VI) Oxide
Journal of the American Chemical Society, 1951, 73, 3492-3496
4124855 CIFCo O3 SmP m -3 m3.75; 3.75; 3.75
90; 90; 90
52.734Wold, A.; Ward, R.
Perowskite-Type Oxides of Cobalt, Chromium and Vanadium with Some Rare Earth Elements
Journal of the American Chemical Society, 1954, 76, 1029-1030
4124113 CIFCa0.4 Fe O2 Sr0.6P 4/m m m3.9578; 3.9578; 3.38003
90; 90; 90
52.945Tassel, C.; Watanabe, T.; Tsujimoto, Y.; Hayashi, N.; Kitada, A.; Sumida, Y.; Yamamoto, T.; Takano, M.; Kageyama, H.; Yoshimura, K.
Stability of the infinite layer structure with iron square planar coordination
Journal of the American Chemical Society, 2008, 130, 3764-3765
4117966 CIFMn OP 63 m c3.3717; 3.3717; 5.3855
90; 90; 120
53.022Ki Min Nam; Yong-Il Kim; Younghun Jo; Seung Mi Lee; Bog G. Kim; Ran Choi; Sang-Il Choi; Hyunjoon Song; Joon T. Park
New Crystal Structure: Synthesis and Characterization of Hexagonal Wurtzite MnO
Journal of the American Chemical Society, 2012, 134, 8392-8395
4124112 CIFCa0.2 Fe O2 Sr0.8P 4/m m m3.95638; 3.95638; 3.42098
90; 90; 90
53.548Tassel, C.; Watanabe, T.; Hayashi, N.; Tsujimoto, Y.; Kitada, A.; Kageyama, H.; Yoshimura, K.; Yamamoto, T.; Sumida, Y.; Takano, M.
Stability of the infinite layer structure with iron square planar coordination
Journal of the American Chemical Society, 2008, 130, 3764-3765
4124854 CIFCo Nd O3P m -3 m3.77; 3.77; 3.77
90; 90; 90
53.583Wold, A.; Ward, R.
Perowskite-Type Oxides of Cobalt, Chromium and Vanadium with Some Rare Earth Elements
Journal of the American Chemical Society, 1954, 76, 1029-1030
4124853 CIFCo O3 PrP m -3 m3.78; 3.78; 3.78
90; 90; 90
54.01Wold, A.; Ward, R.
Perowskite-Type Oxides of Cobalt, Chromium and Vanadium with Some Rare Earth Elements
Journal of the American Chemical Society, 1954, 76, 1029-1030
4124866 CIFLi0.51 Na0.42 O3 WP m -3 m3.7882; 3.7882; 3.7882
90; 90; 90
54.362Straumanis, M.E.; Doctor, G.F.
The System Sodium Tungsten Bronze - Lithium Tungsten Bronze - Tungsten(VI) Oxide
Journal of the American Chemical Society, 1951, 73, 3492-3496
4124867 CIFNa0.3 O3 WP m -3 m3.809; 3.809; 3.809
90; 90; 90
55.263Brown, B.W.; Banks, E.
The Sodium Tungsten Bronzes
Journal of the American Chemical Society, 1954, 76, 963-966
4124111 CIFFe O2 SrP 4/m m m3.99107; 3.99107; 3.47481
90; 90; 90
55.349Tassel, C.; Watanabe, T.; Tsujimoto, Y.; Takano, M.; Kitada, A.; Sumida, Y.; Hayashi, N.; Yoshimura, K.; Yamamoto, T.; Kageyama, H.
Stability of the infinite layer structure with iron square planar coordination
Journal of the American Chemical Society, 2008, 130, 3764-3765
4124846 CIFNa0.44 O3 WP m -3 m3.818; 3.818; 3.818
90; 90; 90
55.655Straumanis, M.E.
The Sodium Tungsten Bronzes. I. Chemical Properties and Structure
Journal of the American Chemical Society, 1949, 71, 679-683
4124852 CIFCo La O3P m -3 m3.82; 3.82; 3.82
90; 90; 90
55.743Wold, A.; Ward, R.
Perowskite-type oxides of cobalt, chromium and vanadium with some rare earth elements
Journal of the American Chemical Society, 1954, 76, 1029-1030
4124845 CIFNa0.54 O3 WP m -3 m3.825; 3.825; 3.825
90; 90; 90
55.962Straumanis, M.E.
The Sodium Tungsten Bronzes. I. Chemical Properties and Structure
Journal of the American Chemical Society, 1949, 71, 679-683
4124849 CIFNa0.72 O3 WP m -3 m3.839; 3.839; 3.839
90; 90; 90
56.579Straumanis, M.E.
The Sodium Tungsten Bronzes. I. Chemical Properties and Structure
Journal of the American Chemical Society, 1949, 71, 679-683
4124848 CIFNa0.83 O3 WP m -3 m3.846; 3.846; 3.846
90; 90; 90
56.889Straumanis, M.E.
The Sodium Tungsten Bronzes. I. Chemical Properties and Structure
Journal of the American Chemical Society, 1949, 71, 679-683
4124865 CIFCr O3 SmP m -3 m3.86; 3.86; 3.86
90; 90; 90
57.512Wold, A.; Ward, R.
Perowskite-Type Oxides of Cobalt, Chromium and Vanadium with Some Rare EArth Elements
Journal of the American Chemical Society, 1954, 76, 1029-1030
4124869 CIFNa O3 WP m -3 m3.86; 3.86; 3.86
90; 90; 90
57.512Straumanis, M.E.
The Sodium Tungsten Bronzes. I. Chemical Properties and Structure
Journal of the American Chemical Society, 1949, 71, 679-683
4124683 CIFCr H2F m -3 m3.8605; 3.8605; 3.8605
90; 90; 90
57.535Snavely, C.A.; Vaughan, D.A.; Dale, A.
Unit cell dimension of face-centered cubic chromium hydride and space groups of two chromium hydrides
Journal of the American Chemical Society, 1949, 71, 313-314
1010088 CIFN3 NaR -3 m :R5.481; 5.481; 5.481
38.72; 38.72; 38.72
57.9Hendricks, S B; Pauling, L
The Crystal Structures of Sodium and Potassium Trinitrides and Potassium Cyanate and the Nature of the Trinitride Group
Journal of the American Chemical Society, 1925, 47, 2904-2920
1010392 CIFN3 NaR -3 m :R5.481; 5.481; 5.481
38.72; 38.72; 38.72
57.9Frevel, L K
The Configuration of the Azide Ion
Journal of the American Chemical Society, 1936, 58, 779-782
1011129 CIFCl H4 NP m -3 m3.868; 3.868; 3.868
90; 90; 90
57.9Bartlett, G; Langmuir, I
The crystal structure of the ammonium halides above and below the transition temperature
Journal of the American Chemical Society, 1921, 43, 84-91
4124656 CIFSi2 ThP 6/m m m3.985; 3.985; 4.22
90; 90; 120
58.036Jacobson, E.L.; Freeman, R.D.; Tharp, W.G.; Searcy, A.W.
Preparation, identification and chemical properties of the thorium silicides
Journal of the American Chemical Society, 1956, 78, 4850-4852
4124626 CIFC Ca N2R -3 m :R5.4; 5.4; 5.4
39.92; 39.92; 39.92
58.417Bredig, M.A.
The crystal structure of calcium cyanamide
Journal of the American Chemical Society, 1942, 64, 1730-1731
4119063 CIFAg F3 ZnP m -3 m3.89; 3.89; 3.89
90; 90; 90
58.864Roy, R.; de Vries, R.C.
Fluoride Models for Oxide Systems of Dielectric Interest. The Systems K F - Mg F2 and Ag F - Zn F2
Journal of the American Chemical Society, 1953, 75, 2479-2484
4124858 CIFO3 Pr VP m -3 m3.89; 3.89; 3.89
90; 90; 90
58.864Wold, A.; Ward, R.
Perowskite-Type Oxides of Cobalt, Chromium and Vanadium with Some Rare Earth Elements
Journal of the American Chemical Society, 1954, 76, 1029-1030
4124859 CIFNd O3 VP m -3 m3.89; 3.89; 3.89
90; 90; 90
58.864Wold, A.; Ward, R.
Perowskite-Type Oxides of Cobalt, Chromium and Vanadium with Some Rare Earth Elements
Journal of the American Chemical Society, 1954, 76, 1029-1030
4124860 CIFO3 Sm VP m -3 m3.89; 3.89; 3.89
90; 90; 90
58.864Wold, A.; Ward, R.
Perowskite-Type Oxides of Cobalt, Chromium and Vanadium with Some Rare Earth Elements
Journal of the American Chemical Society, 1954, 76, 1029-1030
4124862 CIFCe Cr O3P m -3 m3.89; 3.89; 3.89
90; 90; 90
58.864Wold, A.; Ward, R.
Perowskite-Type Oxides of Cobalt, Chromium and Vanadium with Some Rare Earth Elements
Journal of the American Chemical Society, 1954, 76, 1029-1030
4124863 CIFCr O3 PrP m -3 m3.89; 3.89; 3.89
90; 90; 90
58.864Wold, A.; Ward, R.
Perowskite-Type Oxides of Cobalt, Chromium and Vanadium with Some Rare Earth Elements
Journal of the American Chemical Society, 1954, 76, 1029-1030
4124864 CIFCr Nd O3P m -3 m3.89; 3.89; 3.89
90; 90; 90
58.864Wold, A.; Ward, R.
Perowskite-Type Oxides of Cobalt, Chromium and Vanadium with Some Rare Earth Elements
Journal of the American Chemical Society, 1954, 76, 1029-1030
4124857 CIFCe O3 VP m -3 m3.9; 3.9; 3.9
90; 90; 90
59.319Wold, A.; Ward, R.
Perowskite-Type Oxides of Cobalt, Chromium and Vanadium with Some Rare Earth Elements
Journal of the American Chemical Society, 1954, 76, 1029-1030
4124861 CIFCr La O3P m -3 m3.9; 3.9; 3.9
90; 90; 90
59.319Wold, A.; Ward, R.
Perowskite-type oxides of cobalt, chromium and vanadium with some rare earth elements
Journal of the American Chemical Society, 1954, 76, 1029-1030
4124856 CIFLa O3 VP m -3 m3.91; 3.91; 3.91
90; 90; 90
59.776Wold, A.; Ward, R.
Perowskite-type oxides of cobalt, chromium and vanadium with some rare earth elements
Journal of the American Chemical Society, 1954, 76, 1029-1030
4124868 CIFLa O3 TiP m -3 m3.92; 3.92; 3.92
90; 90; 90
60.236Kestigian, M.; Ward, R.
The Preparation of Lanthanum Titanium Oxide, La Ti O3
Journal of the American Chemical Society, 1954, 76, 6027-6027
4124639 CIFH2 MgP 42/m n m4.5168; 4.5168; 3.0205
90; 90; 90
61.623Ellinger, F.H.; Holley, C.E.jr.; McInteer, B.B.; Pavone, D.; Potter, R.M.; Zachariasen, W.H.; Staritzky, E.
The Preparation and Some Properties of Magnesium Hydride
Journal of the American Chemical Society, 1955, 77, 2647-2648
4111967 CIFD1.95 MgP 42/m n m4.52026; 4.52026; 3.02593
90; 90; 90
61.8281H. Gijs Schimmel; Jacques Huot; Laurent C. Chapon; Frans D. Tichelaar; Fokko M. Mulder
Hydrogen Cycling of Niobium and Vanadium Catalyzed Nanostructured Magnesium
Journal of the American Chemical Society, 2005, 127, 14348-14354
4111966 CIFD1.29 MgP 42/m n m4.5288; 4.5288; 3.0177
90; 90; 90
61.893H. Gijs Schimmel; Jacques Huot; Laurent C. Chapon; Frans D. Tichelaar; Fokko M. Mulder
Hydrogen Cycling of Niobium and Vanadium Catalyzed Nanostructured Magnesium
Journal of the American Chemical Society, 2005, 127, 14348-14354
4102355 CIFO2 TiP 42/m n m4.58878; 4.58878; 2.95756
90; 90; 90
62.277Eugen Dorolti; Laurent Cario; Benoît Corraze; Etienne Janod; Cristian Vaju; Hyun-Joo Koo; Erjun Kan; Myung-Hwan Whangbo
Half-Metallic Ferromagnetism and Large Negative Magnetoresistance in the New Lacunar Spinel GaTi3VS8
Journal of the American Chemical Society, 2010, 132, 5704-5710
4107510 CIFGa1.13 Si0.87 YbP 6/m m m4.1275; 4.1275; 4.2357
90; 90; 120
62.493Motoharu Imai; Akira Sato; Takeshi Aoyagi; Takashi Kimura; Yoshitaka Matsushita; Naohito Tsujii
Superconductivity in the AlB2-Type Ternary Rare-Earth Silicide YbGa1.1Si0.9
Journal of the American Chemical Society, 2008, 130, 2886-2887
1011300 CIFBr H4 NP m -3 m3.988; 3.988; 3.988
90; 90; 90
63.4Bartlett, G; Langmuir, I
The crystal structure of the ammonium halides above and below the transition temperature
Journal of the American Chemical Society, 1921, 43, 84-91
1008127 CIFBr D4 NP -4 3 m4; 4; 4
90; 90; 90
64Levy, H A; Peterson, S W
Neutron Diffraction Determination of the Crystal Structure of Ammonium Bromide in Four Phases
Journal of the American Chemical Society, 1953, 75, 1536-1542
1010073 CIFCl2 Cs IR -3 m :R4.06; 4.06; 4.06
98.37; 98.37; 98.37
64.5Wyckoff, R W G
The Crystal Structure of Cesium Dichloro-Iodide
Journal of the American Chemical Society, 1920, 42, 1100-1116
4127282 CIFF3 ScP m -3 m4.01245; 4.01245; 4.01245
90; 90; 90
64.599Hu, Lei; Chen, Jun; Fan, Longlong; Ren, Yang; Rong, Yangchun; Pan, Zhao; Deng, Jinxia; Yu, Ranbo; Xing, Xianran
Zero thermal expansion and ferromagnetism in cubic Sc1-x Mx F3 (M = Ga, Fe) over a wide temperature range
Journal of the American Chemical Society, 2014, 136, 13566-13569
4124844 CIFBa Fe O3P m -3 m4.02; 4.02; 4.02
90; 90; 90
64.965Erchak, M.; Fankuchen, I.; Ward, R.
Reaction between Ferric Oxide and Barium Carbonate in the Solid Phase. Identification of Phases by X-Ray Diffraction
Journal of the American Chemical Society, 1946, 68, 2085-2093
4107787 CIFCa D2 Li2 N2P -3 m 13.55894; 3.55894; 5.92341
90; 90; 120
64.975Hui Wu
Structure of Ternary Imide Li2Ca(NH)2 and Hydrogen Storage Mechanisms in Amide-Hydride System
Journal of the American Chemical Society, 2008, 130, 6515-6522
4119149 CIF
HKL
K Nb O3P 1 m 14.04976; 3.99218; 4.02076
90; 90.1012; 90
65.005Seungwook Kim; Ju-Hyuck Lee; Jaeyeon Lee; Sang-Woo Kim; Myung Hwa Kim; Sungnam Park; Haegeun Chung; Yong-Il Kim; Woong Kim
Synthesis of Monoclinic Potassium Niobate Nanowires That Are Stable at Room Temperature
Journal of the American Chemical Society, 2013, 135, 6-9
4107788 CIFCa D2 Li2 N2P -3 m 13.56787; 3.56787; 5.94851
90; 90; 120
65.578Hui Wu
Structure of Ternary Imide Li2Ca(NH)2 and Hydrogen Storage Mechanisms in Amide-Hydride System
Journal of the American Chemical Society, 2008, 130, 6515-6522
4124842 CIFBa O3 TiP m -3 m4.0335; 4.0335; 4.0335
90; 90; 90
65.622Edwards, J.W.; Speiser, R.; Johnston, H.L.
Structure of Barium Titanate at Elevated Temperatures
Journal of the American Chemical Society, 1951, 73, 2934-2935
1008128 CIFBr D4 NP m -3 m4.06; 4.06; 4.06
90; 90; 90
66.9Levy, H A; Peterson, S W
Neutron Diffraction Determination of the Crystal Structure of Ammonium Bromide in Four Phases
Journal of the American Chemical Society, 1953, 75, 1536-1542
4124004 CIFBa Ir O3P m -3 m4.0611; 4.0611; 4.0611
90; 90; 90
66.978Cheng Jinguang; Alonso, J.A.; Suard, E.; Zhou Jianshi; Goodenough, J.B.
A new perovskite polytype in the high-pressure sequence of Ba Ir O3
Journal of the American Chemical Society, 2009, 131, 7461-7469
4111971 CIFMg0.33 Nb1.67 O3P m -3 m4.07047; 4.07047; 4.07047
90; 90; 90
67.443H. Gijs Schimmel; Jacques Huot; Laurent C. Chapon; Frans D. Tichelaar; Fokko M. Mulder
Hydrogen Cycling of Niobium and Vanadium Catalyzed Nanostructured Magnesium
Journal of the American Chemical Society, 2005, 127, 14348-14354
4124851 CIFBa Co O2.23P m -3 m4.072; 4.072; 4.072
90; 90; 90
67.519Strauss, S.W.; Fankuchen, I.; Ward, R.
Barium Cobalt Oxide of the Perowskite Type
Journal of the American Chemical Society, 1951, 73, 5084-5086
4124261 CIFFe SP 4/n m m :23.6802; 3.6802; 5.0307
90; 90; 90
68.135Lai, Xiaofang; Zhang, Hui; Wang, Yingqi; Wang, Xin; Zhang, Xian; Lin, Jianhua; Huang, Fuqiang
Observation of Superconductivity in Tetragonal FeS.
Journal of the American Chemical Society, 2015, 137, 10148-10151
4124017 CIFCa Ga H SiP 3 m 14.0911; 4.0911; 4.7628
90; 90; 120
69.036Evans, M.J.; Holland, G.P.; Garcia-Garcia, F.J.; Haeussermann, U.
Polyanionic gallium hydrides from Al B2-type precursors Ae Ga E (Ae = Ca, Sr, Ba; E = Si, Ge, Sn)
Journal of the American Chemical Society, 2008, 130, 12139-12147
4124667 CIFO SnP 4/n m m :13.796; 3.796; 4.816
90; 90; 90
69.397Moore, W.J.; Pauling, L.
The Crystal Structures of the Tetragonal Monoxides of Lead, Tin, Palladium, and Platinum
Journal of the American Chemical Society, 1941, 63, 1392-1394
4124018 CIFCa Ga Ge HP 3 m 14.1509; 4.1509; 4.7995
90; 90; 120
71.616Evans, M.J.; Holland, G.P.; Garcia-Garcia, F.J.; Haeussermann, U.
Polyanionic gallium hydrides from Al B2-type precursors Ae Ga E (Ae = Ca, Sr, Ba; E = Si, Ge, Sn)
Journal of the American Chemical Society, 2008, 130, 12139-12147
4124522 CIFN2 S Zr2P -3 m 13.605; 3.605; 6.412
90; 90; 120
72.166Stoltz, C.; Ramesha, K.; Sirchio, S.A.; Gonen, Z.S.; Eichhorn, B.W.; Salamanca-Riba, L.; Gopalakrishnan, J.
Topochemical anion metathesis routes to the Zr2 N2 S phases and the Na2 S and A Cl derivatives (A = Na, K, Rb)
Journal of the American Chemical Society, 2003, 125, 4285-4292
1010093 CIFNi OF m -3 m4.1684; 4.1684; 4.1684
90; 90; 90
72.4Cairns, R W; Ott, E
X-Ray Studies of the System Nickel-Oxygen-Water. I. Nickelous Oxide and Hydroxide
Journal of the American Chemical Society, 1933, 55, 527-533
1010381 CIFNi OF m -3 m4.17; 4.17; 4.17
90; 90; 90
72.5Thomassen, L
An X-Ray Investigation of the System Cr~2~ O~3~ - Ni O
Journal of the American Chemical Society, 1940, 62, 1134-1135
1010095 CIFNi OF m -3 m4.18; 4.18; 4.18
90; 90; 90
73Smith, N
The Structure of Thin Films of Metallic Oxides and Hydrates
Journal of the American Chemical Society, 1936, 58, 173-179
4124785 CIFNi0.8 O Zn0.2F m -3 m4.201; 4.201; 4.201
90; 90; 90
74.141Kedesdy, H.; Drukalsky, A.
X-Ray Diffraction Studies of the Solid State Reaction in the Ni O - Zn O System
Journal of the American Chemical Society, 1954, 76, 5941-5946
4124786 CIFNi0.7 O Zn0.3F m -3 m4.214; 4.214; 4.214
90; 90; 90
74.831Kedesdy, H.; Drukalsky, A.
X-Ray Diffraction Studies of the Solid State Reaction in the Ni O - Zn O System
Journal of the American Chemical Society, 1954, 76, 5941-5946
4124787 CIFNi0.6 O Zn0.4F m -3 m4.219; 4.219; 4.219
90; 90; 90
75.098Kedesdy, H.; Drukalsky, A.
X-Ray Diffraction Studies of the Solid State Reaction in the Ni O - Zn O System
Journal of the American Chemical Society, 1954, 76, 5941-5946
4111968 CIFMg OF m -3 m4.227; 4.227; 4.227
90; 90; 90
75.526H. Gijs Schimmel; Jacques Huot; Laurent C. Chapon; Frans D. Tichelaar; Fokko M. Mulder
Hydrogen Cycling of Niobium and Vanadium Catalyzed Nanostructured Magnesium
Journal of the American Chemical Society, 2005, 127, 14348-14354
4124020 CIFGa H Si SrP 3 m 14.1881; 4.1881; 5.0025
90; 90; 120
75.989Evans, M.J.; Holland, G.P.; Garcia-Garcia, F.J.; Haeussermann, U.
Polyanionic gallium hydrides from Al B2-type precursors Ae Ga E (Ae = Ca, Sr, Ba; E = Si, Ge, Sn)
Journal of the American Chemical Society, 2008, 130, 12139-12147
4124013 CIFD Ga Ge SrP 3 m 14.2221; 4.2221; 4.9691
90; 90; 120
76.712Evans, M.J.; Garcia-Garcia, F.J.; Holland, G.P.; Haeussermann, U.
Polyanionic gallium hydrides from Al B2-type precursors Ae Ga E (Ae = Ca, Sr, Ba; E = Si, Ge, Sn)
Journal of the American Chemical Society, 2008, 130, 12139-12147
4121376 CIFCo0.6 Mo1.4 N2P 63/m m c2.85176; 2.85176; 10.98618
90; 90; 120
77.375Bingfei Cao; Gabriel M. Veith; Joerg C. Neuefeind; Radoslav R. Adzic; Peter G. Khalifah
Mixed Close-Packed Cobalt Molybdenum Nitrides as Non-noble Metal Electrocatalysts for the Hydrogen Evolution Reaction
Journal of the American Chemical Society, 2013, 135, 19186-19192
4121377 CIFCo0.6 Mo1.4 N2P 63/m m c2.85148; 2.85148; 10.98899
90; 90; 120
77.38Bingfei Cao; Gabriel M. Veith; Joerg C. Neuefeind; Radoslav R. Adzic; Peter G. Khalifah
Mixed Close-Packed Cobalt Molybdenum Nitrides as Non-noble Metal Electrocatalysts for the Hydrogen Evolution Reaction
Journal of the American Chemical Society, 2013, 135, 19186-19192
4124666 CIFO PbP 4/n m m :13.947; 3.947; 4.988
90; 90; 90
77.707Moore, W.J.; Pauling, L.
The crystal structures of the tetragonal monoxides of lead, tin, palladium, and platinum
Journal of the American Chemical Society, 1941, 63, 1392-1394
4124647 CIFRh TeP 63/m m c3.99; 3.99; 5.66
90; 90; 120
78.036Geller, S.
The Crystal Structures of Rh Te and Rh Te2
Journal of the American Chemical Society, 1955, 77, 2641-2644
4123997 CIFD2 Ga2 SrP -3 m 14.3932; 4.3932; 4.699
90; 90; 120
78.541Bjoerling, T.; Haeussermann, U.
Polyanionic hydrides from polar intermetallics Ae E2 (Ae = Ca, Sr, Ba; E = Al, Ga, In)
Journal of the American Chemical Society, 2006, 128, 817-824
4124021 CIFGa Ge H SrP 3 m 14.2502; 4.2502; 5.0207
90; 90; 120
78.544Evans, M.J.; Haeussermann, U.; Holland, G.P.; Garcia-Garcia, F.J.
Polyanionic gallium hydrides from Al B2-type precursors Ae Ga E (Ae = Ca, Sr, Ba; E = Si, Ge, Sn)
Journal of the American Chemical Society, 2008, 130, 12139-12147
4124661 CIFO2 S Tm2P -3 m 13.747; 3.747; 6.538
90; 90; 120
79.496Eick, H.
The preparation, lattice parameters and some chemical properties of the rare earth mono-thio oxides
Journal of the American Chemical Society, 1958, 80, 43-44
1010977 CIFO PbP 4/n m m :13.99; 3.99; 5.01
90; 90; 90
79.8Dickinson, R G; Friauf, J B
The crystal structure of tetragonal lead monoxide
Journal of the American Chemical Society, 1924, 46, 2457-2462
4124638 CIFNa Ni O2C 1 2/m 15.33; 2.86; 5.59
90; 110.5; 90
79.816Dyer, L.D.; Borie, B.S.; Smith, G.P.
Alkali metal-nickel oxides of the type M Ni O2
Journal of the American Chemical Society, 1954, 76, 1499-1503
4105685 CIF
HKL
Cu OC 1 2/c 14.6809; 3.4176; 5.122
90; 99.784; 90
80.747Catherine F. Smura; Dinah R. Parker; Mohamed Zbiri; Mark R. Johnson; Zoltán A. Gál; Simon J. Clarke
High-Spin Cobalt(II) Ions in Square Planar Coordination: Structures and Magnetism of the Oxysulfides Sr2CoO2Cu2S2 and Ba2CoO2Cu2S2 and Their Solid Solution
Journal of the American Chemical Society, 2011, 133, 2691-2705
4124631 CIFNa O2P n n m4.26; 5.54; 3.44
90; 90; 90
81.185Carter, G.F.; Templeton, D.H.
Polymorphism of sodium superoxide
Journal of the American Chemical Society, 1953, 75, 5247-5249
4105682 CIF
HKL
Cu OC 1 2/c 14.649; 3.4382; 5.187
90; 98.64; 90
81.97Catherine F. Smura; Dinah R. Parker; Mohamed Zbiri; Mark R. Johnson; Zoltán A. Gál; Simon J. Clarke
High-Spin Cobalt(II) Ions in Square Planar Coordination: Structures and Magnetism of the Oxysulfides Sr2CoO2Cu2S2 and Ba2CoO2Cu2S2 and Their Solid Solution
Journal of the American Chemical Society, 2011, 133, 2691-2705
4124014 CIFBa D Ga SiP 3 m 14.2776; 4.2776; 5.1948
90; 90; 120
82.319Evans, M.J.; Holland, G.P.; Garcia-Garcia, F.J.; Haeussermann, U.
Polyanionic gallium hydrides from Al B2-type precursors Ae Ga E (Ae = Ca, Sr, Ba; E = Si, Ge, Sn)
Journal of the American Chemical Society, 2008, 130, 12139-12147
4124713 CIFUC m c m2.852; 5.865; 4.945
90; 90; 90
82.715Jacob, C.W.; Warren, B.E.
The crystalline structure of uranium
Journal of the American Chemical Society, 1937, 59, 2588-2591
4124019 CIFCa Ga H SnP 3 m 14.3852; 4.3852; 4.9679
90; 90; 120
82.734Evans, M.J.; Holland, G.P.; Haeussermann, U.; Garcia-Garcia, F.J.
Polyanionic gallium hydrides from Al B2-type precursors Ae Ga E (Ae = Ca, Sr, Ba; E = Si, Ge, Sn)
Journal of the American Chemical Society, 2008, 130, 12139-12147
1011031 CIFC SiF -4 3 m4.358; 4.358; 4.358
90; 90; 90
82.8Burdick, C L; Owen, E A
The Atomic Structure of Carborundum Determined by X-Rays
Journal of the American Chemical Society, 1918, 40, 1749-1759
4124712 CIFUC m c m2.858; 5.876; 4.955
90; 90; 90
83.212Jacob, C.W.; Warren, B.E.
The crystalline structure of uranium
Journal of the American Chemical Society, 1937, 59, 2588-2588
4102405 CIFLa2 O3P 63/m m c3.957; 3.95715; 6.138
90; 90; 120
83.24Cao Wang; Ming-qiu Tan; Chun-mu Feng; Zhi-feng Ma; Shuai Jiang; Zhu-an Xu; Guang-han Cao; Kazuyuki Matsubayashi; Yoshiya Uwatoko
La2Co2Se2O3: A Quasi-Two-Dimensional Mott Insulator with Unusual Cobalt Spin State and Possible Orbital Ordering
Journal of the American Chemical Society, 2010, 132, 7069-7073
4124015 CIFBa D Ga GeP 3 m 14.3344; 4.3344; 5.1895
90; 90; 120
84.433Evans, M.J.; Garcia-Garcia, F.J.; Holland, G.P.; Haeussermann, U.
Polyanionic gallium hydrides from Al B2-type precursors Ae Ga E (Ae = Ca, Sr, Ba; E = Si, Ge, Sn)
Journal of the American Chemical Society, 2008, 130, 12139-12147
4124023 CIFBa Ga H SiP 3 m 14.3015; 4.3015; 5.2703
90; 90; 120
84.451Evans, M.J.; Holland, G.P.; Haeussermann, U.; Garcia-Garcia, F.J.
Polyanionic gallium hydrides from Al B2-type precursors Ae Ga E (Ae = Ca, Sr, Ba; E = Si, Ge, Sn)
Journal of the American Chemical Society, 2008, 130, 12139-12147
1010914 CIFAl2 O3R -3 c :R5.12; 5.12; 5.12
55.28; 55.28; 55.28
84.5Pauling, L; Hendricks, S B
Crystal Structures of Hematite and Corundum
Journal of the American Chemical Society, 1925, 47, 781-790
1011131 CIFH4 N2 O3P m -3 m4.4; 4.4; 4.4
90; 90; 90
85.2Hendricks, S B; Posnjak, E; Kracek, F C
Molecular rotation in the solid state. The variation of the crystal structure of ammonium nitrate with temperature
Journal of the American Chemical Society, 1932, 54, 2766-2786
4123998 CIFBa D2 Ga2P -3 m 14.5286; 4.5286; 4.8991
90; 90; 120
87.011Bjoerling, T.; Haeussermann, U.
Polyanionic hydrides from polar intermetallics Ae E2 (Ae = Ca, Sr, Ba; E = Al, Ga, In)
Journal of the American Chemical Society, 2006, 128, 817-824
4126741 CIFFe2 O4.846 YbP -13.4659; 3.4659; 8.3694
90; 90; 120
87.068Nicoud, Sarah; Huvé, Marielle; Hernandez, Olivier; Pautrat, Alain; Duttine, Mathieu; Wattiaux, Alain; Colin, Claire; Kabbour, Houria; Mentré, Olivier
Comprehensive Study of Oxygen Storage in YbFe2O4+x (x ≤ 0.5): Unprecedented Coexistence of FeOn Polyhedra in One Single Phase.
Journal of the American Chemical Society, 2017
4124024 CIFBa Ga Ge HP 3 m 14.3758; 4.3758; 5.2687
90; 90; 120
87.367Evans, M.J.; Holland, G.P.; Garcia-Garcia, F.J.; Haeussermann, U.
Polyanionic gallium hydrides from Al B2-type precursors Ae Ga E (Ae = Ca, Sr, Ba; E = Si, Ge, Sn)
Journal of the American Chemical Society, 2008, 130, 12139-12147
4124660 CIFO2 S Sm2P -3 m 13.8934; 3.8934; 6.717
90; 90; 120
88.179Eick, H.
The preparation, lattice parameters and some chemical properties of the rare earth mono-thio oxides
Journal of the American Chemical Society, 1958, 80, 43-44
4124022 CIFGa H Sn SrP 3 m 14.4829; 4.4829; 5.1912
90; 90; 120
90.348Evans, M.J.; Haeussermann, U.; Garcia-Garcia, F.J.; Holland, G.P.
Polyanionic gallium hydrides from Al B2-type precursors Ae Ga E (Ae = Ca, Sr, Ba; E = Si, Ge, Sn)
Journal of the American Chemical Society, 2008, 130, 12139-12147
4103059 CIFFe1.13 S0.05 Te0.95P 4/n m m :23.8159; 3.8159; 6.246
90; 90; 90
90.949Pawel Zajdel; Ping-Yen Hsieh; Efrain E. Rodriguez; Nicholas P. Butch; Jeff D. Magill; Johnpierre Paglione; Peter Zavalij; Matthew R. Suchomel; Mark A. Green
Phase Separation and Suppression of the Structural and Magnetic Transitions in Superconducting Doped Iron Tellurides, Fe1+xTe1-ySy
Journal of the American Chemical Society, 2010, 132, 13000-13007
4102703 CIFFe1.095 TeP 4/n m m :23.8139; 3.8139; 6.2631
90; 90; 90
91.102Efrain E. Rodriguez; Peter Zavalij; Ping-Yen Hsieh; Mark A. Green
Iodine as an Oxidant in the Topotactic Deintercalation of Interstitial Iron in Fe1+xTe
Journal of the American Chemical Society, 2010, 132, 10006-10008
4102702 CIFFe1.12 TeP 4/n m m :23.8197; 3.8197; 6.2587
90; 90; 90
91.315Efrain E. Rodriguez; Peter Zavalij; Ping-Yen Hsieh; Mark A. Green
Iodine as an Oxidant in the Topotactic Deintercalation of Interstitial Iron in Fe1+xTe
Journal of the American Chemical Society, 2010, 132, 10006-10008
4124662 CIFNd2 O2 SP -3 m 13.946; 3.946; 6.79
90; 90; 120
91.562Eick, H.
The preparation, lattice parameters and some chemical properties of the rare earth mono-thio oxides
Journal of the American Chemical Society, 1958, 80, 43-44
4124016 CIFBa D Ga SnP 3 m 14.559; 4.559; 5.298
90; 90; 120
95.363Evans, M.J.; Holland, G.P.; Garcia-Garcia, F.J.; Haeussermann, U.
Polyanionic gallium hydrides from Al B2-type precursors Ae Ga E (Ae = Ca, Sr, Ba; E = Si, Ge, Sn)
Journal of the American Chemical Society, 2008, 130, 12139-12147
4124620 CIFAm F2 K O2R -3 m :R6.78; 6.78; 6.78
36.25; 36.25; 36.25
97.511Asprey, L.B.; Zachariasen, W.H.; Ellinger, F.H.
Preparation, identification and crystal structure of a pentavalent americium compound, K Am O2 F2
Journal of the American Chemical Society, 1954, 76, 5235-5237
4121515 CIFLi2 OF m -3 m4.6124; 4.6124; 4.6124
90; 90; 90
98.125David, W. I. F.; Jones, M. O.; Gregory, D. H.; Jewell, C. M.; Johnson, S. R.; Walton, A.; Edwards, P. P.
A mechanism for non-stoichiometry in the lithium amide/lithium imide hydrogen storage reaction
Journal of the American Chemical Society, 2007, 129, 1594-1601
4121514 CIFLi2 OF m -3 m4.614; 4.614; 4.614
90; 90; 90
98.23David, William I. F.; Jones, Martin O.; Gregory, Duncan H.; Jewell, Catherine M.; Johnson, Simon R.; Walton, Allan; Edwards, Peter P.
A mechanism for non-stoichiometry in the lithium amide/lithium imide hydrogen storage reaction
Journal of the American Chemical Society, 2007, 129, 1594-1601
4124025 CIFBa Ga H SnP 3 m 14.5914; 4.5914; 5.4257
90; 90; 120
99.055Evans, M.J.; Holland, G.P.; Haeussermann, U.; Garcia-Garcia, F.J.
Polyanionic gallium hydrides from Al B2-type precursors Ae Ga E (Ae = Ca, Sr, Ba; E = Si, Ge, Sn)
Journal of the American Chemical Society, 2008, 130, 12139-12147
4107198 CIFC Ca F K O3P -6 m 25.0968; 5.0968; 4.4553
90; 90; 120
100.23Guohong Zou; Ning Ye; Ling Huang; Xinsong Lin
Alkaline-Alkaline Earth Fluoride Carbonate Crystals ABCO3F (A = K, Rb, Cs; B = Ca, Sr, Ba) as Nonlinear Optical Materials
Journal of the American Chemical Society, 2011, 133, 20001-20007
9009782 CIFFe2 O3R -3 c :R5.42; 5.42; 5.42
55.28; 55.28; 55.28
100.236Pauling, L.; Hendricks, S. B.
Crystal structures of hematite and corundum
Journal of the American Chemical Society, 1925, 47, 781-790
9017518 CIFFe O3R 3 c :R5.43; 5.43; 5.43
55.28; 55.28; 55.28
100.792Pauling, L.; Hendricks, S.
The Structure of Hematite
Journal of the American Chemical Society, 1925, 47, 781-790
1011240 CIFFe2 O3R -3 c :R5.43; 5.43; 5.43
55.28; 55.28; 55.28
100.8Pauling, L; Hendricks, S B
The Structure of Hematite
Journal of the American Chemical Society, 1925, 47, 781-790
4124622 CIFC2 LaI 4/m m m3.934; 3.934; 6.572
90; 90; 90
101.711Atoji, M.; Daane, A.H.; Gschneidner, K.A.jr.; Rundle, R.E.; Spedding, F.H.
The structures of lanthanum dicarbide and sesquicarbide by X-ray and neutron diffraction
Journal of the American Chemical Society, 1958, 80, 1804-1808
1010205 CIFBa F6 SiR -3 m :R4.75; 4.75; 4.75
97.97; 97.97; 97.97
103.7Hoard, J L; Vincent, W B
Structures of Complex Fluorides. Barium Fluorosilicate and Barium Fluorogermanate
Journal of the American Chemical Society, 1940, 62, 3126-3129
1010993 CIFMo S2P 63/m m c3.15; 3.15; 12.3
90; 90; 120
105.7Dickinson, R G; Pauling, L
The Crystal Structure of Molybdenite
Journal of the American Chemical Society, 1923, 45, 1466-1471
4124687 CIFAm Cl OP 4/n m m :14; 4; 6.78
90; 90; 90
108.48Templeton, D.H.; Dauben, C.H.
Crystal Structures of Americium Compounds
Journal of the American Chemical Society, 1953, 75, 4560-4562
4124670 CIFRe SiP 21 34.775; 4.775; 4.775
90; 90; 90
108.873McNees, R.A.; Searcy, A.W.
The Crystal Structure of Rhenium Monosilicide
Journal of the American Chemical Society, 1955, 77, 5290-5291
1010206 CIFBa F6 GeR -3 m :R4.83; 4.83; 4.83
98.02; 98.02; 98.02
109Hoard, J L; Vincent, W B
Structures of Complex Fluorides. Barium Fluorosilicate and Barium Fluorogermanate
Journal of the American Chemical Society, 1940, 62, 3126-3129
1000044 CIFCa OF m -3 m4.799; 4.799; 4.799
90; 90; 90
110.5Primak, W; Kaufman, H; Ward, R
X-Ray Diffraction Studies of Systems Involved in the Preparation of Alkaline Earth Sulfide and Selenide Phosphors
Journal of the American Chemical Society, 1948, 70, 2043-2046
4127852 CIFB4.27 K O3P -6 2 m6.072; 6.072; 3.469
90; 90; 120
110.764Kambe, Tetsuya; Hosono, Reina; Imaoka, Shotaro; Kuzume, Akiyoshi; Yamamoto, Kimihisa
Solution Phase Mass Synthesis of 2D Atomic Layer with Hexagonal Boron Network.
Journal of the American Chemical Society, 2019, 141, 12984-12988
4111783 CIFAg Sb Te2P 4/m m m4.2898; 4.2898; 6.0667
90; 90; 90
111.64Eric Quarez; Kuei-Fang Hsu; Robert Pcionek; N. Frangis; E. K. Polychroniadis; Mercouri G. Kanatzidis
Nanostructuring, Compositional Fluctuations, and Atomic Ordering in the Thermoelectric Materials AgPbmSbTe2+m. The Myth of Solid Solutions
Journal of the American Chemical Society, 2005, 127, 9177-9190
4132332 CIFIr SiP 21/n 1 15.5573; 3.221; 6.278
90; 90; 90
112.38Mitchell Warden, Hillary E.; Fredrickson, Daniel C.
Frustrated and Allowed Structural Transitions: The Theory-Guided Discovery of the Modulated Structure of IrSi.
Journal of the American Chemical Society, 2019
4107199 CIFC F K O3 SrP -6 m 25.2598; 5.2598; 4.6956
90; 90; 120
112.5Guohong Zou; Ning Ye; Ling Huang; Xinsong Lin
Alkaline-Alkaline Earth Fluoride Carbonate Crystals ABCO3F (A = K, Rb, Cs; B = Ca, Sr, Ba) as Nonlinear Optical Materials
Journal of the American Chemical Society, 2011, 133, 20001-20007
4124659 CIFF3 MoR -3 c :R5.666; 5.666; 5.666
54.72; 54.72; 54.72
112.803la Valle, D.E.; Steele, R.M.; Wilkinson, M.K.; Yakel, H.L.jr.
The preparation and crystal structure of molybdenum(III) fluoride
Journal of the American Chemical Society, 1960, 82, 2433-2434
4124680 CIFN UF m -3 m4.88; 4.88; 4.88
90; 90; 90
116.214Rundle, R.E.; Wilson, A.S.; Baenziger, N.C.; McDonald, R.A.
The structures of the carbides, nitrides and oxides of uranium
Journal of the American Chemical Society, 1948, 70, 99-105
4107201 CIFC F O3 Rb SrP -6 m 25.3; 5.3; 4.79
90; 90; 120
116.525Guohong Zou; Ning Ye; Ling Huang; Xinsong Lin
Alkaline-Alkaline Earth Fluoride Carbonate Crystals ABCO3F (A = K, Rb, Cs; B = Ca, Sr, Ba) as Nonlinear Optical Materials
Journal of the American Chemical Society, 2011, 133, 20001-20007
4113922 CIFBa Fe2 Ho O5P m m m3.932787; 3.918529; 7.56186
90; 90; 90
116.534Patrick M. Woodward; Emmanuelle Suard; Pavel Karen
Structural Tuning of Charge, Orbital, and Spin Ordering in Double-Cell Perovskite Series between NdBaFe2O5 and HoBaFe2O5
Journal of the American Chemical Society, 2003, 125, 8889-8899
4105298 CIFCu Se2P n n m5.0252; 6.1941; 3.7447
90; 90; 90
116.56Alfred J. Wooten; Donald J. Werder; Darrick J. Williams; Joanna L. Casson; Jennifer A. Hollingsworth
Solution-Liquid-Solid Growth of Ternary Cu-In-Se Semiconductor Nanowires from Multiple- and Single-Source Precursors
Journal of the American Chemical Society, 2009, 131, 16177-16188
4113924 CIFBa Fe2 Ho O5P m m m3.93355; 3.92896; 7.57777
90; 90; 90
117.113Patrick M. Woodward; Emmanuelle Suard; Pavel Karen
Structural Tuning of Charge, Orbital, and Spin Ordering in Double-Cell Perovskite Series between NdBaFe2O5 and HoBaFe2O5
Journal of the American Chemical Society, 2003, 125, 8889-8899
4113932 CIFBa Fe2 Nd O5P m m m3.96584; 3.95339; 7.64046
90; 90; 90
119.791Patrick M. Woodward; Emmanuelle Suard; Pavel Karen
Structural Tuning of Charge, Orbital, and Spin Ordering in Double-Cell Perovskite Series between NdBaFe2O5 and HoBaFe2O5
Journal of the American Chemical Society, 2003, 125, 8889-8899
4113101 CIFBa PtP 63/m m c5.057; 5.057; 5.42
90; 90; 120
120.04Andrey Karpov; Jürgen Nuss; Ulrich Wedig; Martin Jansen
Covalently Bonded [Pt]-Chains in BaPt: Extension of the Zintl-Klemm Concept to Anionic Transition Metals?
Journal of the American Chemical Society, 2004, 126, 14123-14128
4111786 CIFAg0.67 Pb0.67 Sb0.67 Te2P 4/m m m4.3963; 4.3963; 6.2173
90; 90; 90
120.16Eric Quarez; Kuei-Fang Hsu; Robert Pcionek; N. Frangis; E. K. Polychroniadis; Mercouri G. Kanatzidis
Nanostructuring, Compositional Fluctuations, and Atomic Ordering in the Thermoelectric Materials AgPbmSbTe2+m. The Myth of Solid Solutions
Journal of the American Chemical Society, 2005, 127, 9177-9190
4113934 CIFBa Fe2 Nd O5P m m m3.969451; 3.958035; 7.64849
90; 90; 90
120.167Patrick M. Woodward; Emmanuelle Suard; Pavel Karen
Structural Tuning of Charge, Orbital, and Spin Ordering in Double-Cell Perovskite Series between NdBaFe2O5 and HoBaFe2O5
Journal of the American Chemical Society, 2003, 125, 8889-8899
4113937 CIFBa Fe2 Nd O5P m m m3.97079; 3.96456; 7.6583
90; 90; 90
120.56Patrick M. Woodward; Emmanuelle Suard; Pavel Karen
Structural Tuning of Charge, Orbital, and Spin Ordering in Double-Cell Perovskite Series between NdBaFe2O5 and HoBaFe2O5
Journal of the American Chemical Society, 2003, 125, 8889-8899
4113939 CIFBa Fe2 Nd O5P m m m3.97431; 3.96949; 7.66813
90; 90; 90
120.972Patrick M. Woodward; Emmanuelle Suard; Pavel Karen
Structural Tuning of Charge, Orbital, and Spin Ordering in Double-Cell Perovskite Series between NdBaFe2O5 and HoBaFe2O5
Journal of the American Chemical Society, 2003, 125, 8889-8899
1010928 CIFC Ca O3R -3 c RS6.36; 6.36; 6.36
46.1; 46.1; 46.1
121.9Elliott, N
A Redetermination of the Carbon - Oxygen Distance in Calcite and the Nitrogen - Oxygen Distance in Sodium Nitrate
Journal of the American Chemical Society, 1937, 59, 1380-1382
4124783 CIFAl2 OF m -3 m4.98; 4.98; 4.98
90; 90; 90
123.506Hoch, M.; Johnston, H.L.
Formation, Stability and Crystal Structure of the Solid Aluminium Suboxides. Al2 O and Al O
Journal of the American Chemical Society, 1954, 76, 2560-2561
4118243 CIFCa D Ge NiP 4/n m m :23.999502; 3.999502; 7.75966
90; 90; 90
124.124Xiaofeng Liu; Satoru Matsuishi; Satoru Fujitsu; Toru Ishigaki; Takashi Kamiyama; Hideo Hosono
Layered Hydride CaNiGeH with a ZrCuSiAs-type Structure: Crystal Structure, Chemical Bonding, and Magnetism Induced by Mn Doping
Journal of the American Chemical Society, 2012, 134, 11687-11694
4118242 CIFCa Ge H Mn0.05 Ni0.95P 4/n m m :24.00062; 4.00062; 7.77622
90; 90; 90
124.458Xiaofeng Liu; Satoru Matsuishi; Satoru Fujitsu; Toru Ishigaki; Takashi Kamiyama; Hideo Hosono
Layered Hydride CaNiGeH with a ZrCuSiAs-type Structure: Crystal Structure, Chemical Bonding, and Magnetism Induced by Mn Doping
Journal of the American Chemical Society, 2012, 134, 11687-11694
4118244 CIFCa Ge H NiP 4/n m m :24.00379; 4.00379; 7.76501
90; 90; 90
124.476Xiaofeng Liu; Satoru Matsuishi; Satoru Fujitsu; Toru Ishigaki; Takashi Kamiyama; Hideo Hosono
Layered Hydride CaNiGeH with a ZrCuSiAs-type Structure: Crystal Structure, Chemical Bonding, and Magnetism Induced by Mn Doping
Journal of the American Chemical Society, 2012, 134, 11687-11694
1011029 CIFN Na O3R -3 c :R6.32; 6.32; 6.32
47.25; 47.25; 47.25
124.5Elliott, N
A Redetermination of the Carbon - Oxygen Distance in Calcite and the Nitrogen - Oxygen Distance in Sodium Nitrate
Journal of the American Chemical Society, 1937, 59, 1380-1382
4118241 CIFCa Ge H Mn0.1 Ni0.9P 4/n m m :23.9995; 3.9995; 7.80056
90; 90; 90
124.778Xiaofeng Liu; Satoru Matsuishi; Satoru Fujitsu; Toru Ishigaki; Takashi Kamiyama; Hideo Hosono
Layered Hydride CaNiGeH with a ZrCuSiAs-type Structure: Crystal Structure, Chemical Bonding, and Magnetism Induced by Mn Doping
Journal of the American Chemical Society, 2012, 134, 11687-11694
4124011 CIFH1.3 Li1.7 NF m -3 m4.9996; 4.9996; 4.9996
90; 90; 90
124.97David, W.I.F.; Gregory, D.H.; Jones, M.O.; Jewell, C.M.; Johnson, S.R.; Edwards, P.P.; Walton, A.
A mechanism for non-stoichiometry in the lithium amide/lithium imide hydrogen storage reaction
Journal of the American Chemical Society, 2007, 129, 1594-1601
4124010 CIFH1.46 Li1.54 NF m -3 m5.0207; 5.0207; 5.0207
90; 90; 90
126.559David, W.I.F.; Jones, M.O.; Gregory, D.H.; Johnson, S.R.; Jewell, C.M.; Walton, A.; Edwards, P.P.
A mechanism for non-stoichiometry in the lithium amide/lithium imide hydrogen storage reaction
Journal of the American Chemical Society, 2007, 129, 1594-1601
1010101 CIFF6 Ge K2P -3 m 15.62; 5.62; 4.65
90; 90; 120
127.2Hoard, J L; Vincent, W B
Structures of Complex Fluorides. Potassium Hexafluogermanate and Ammonium Hexafluogermanate
Journal of the American Chemical Society, 1939, 61, 2849-2852
4109804 CIF
HKL
O7.9 Tc4P 1 21/c 15.68908; 4.75461; 5.51948
90; 121.453; 90
127.361Efrain E. Rodriguez; Frederic Poineau; Anna Llobet; Alfred P. Sattelberger; Joydeep Bhattacharjee; Umesh V. Waghmare; Thomas Hartmann; Anthony K. Cheetham
Structural Studies of TcO2 by Neutron Powder Diffraction and First-Principles Calculations
Journal of the American Chemical Society, 2007, 129, 10244-10248
4124108 CIFO2 TcP 1 21/c 15.68908; 4.75461; 5.51948
90; 121.453; 90
127.361Rodriguez, E.E.; Poineau, F.; Llobet, A.; Sattelberger, A.P.; Bhattacharjee, J.; Waghmare, U.V.; Hartmann, T.; Cheetham, A.K.
Structural studies of Tc O2 by neutron powder diffraction and first-principles calculation
Journal of the American Chemical Society, 2007, 129, 10244-10248
4124663 CIFO SmF m -3 m5.032; 5.032; 5.032
90; 90; 90
127.415Ellinger, F.H.
The crystal structure of samarium metal and of samarium monoxide
Journal of the American Chemical Society, 1953, 75, 5650-5650
4124009 CIFH1.61 Li1.39 NF m -3 m5.0418; 5.0418; 5.0418
90; 90; 90
128.161David, W.I.F.; Jones, M.O.; Jewell, C.M.; Gregory, D.H.; Johnson, S.R.; Walton, A.; Edwards, P.P.
A mechanism for non-stoichiometry in the lithium amide/lithium imide hydrogen storage reaction
Journal of the American Chemical Society, 2007, 129, 1594-1601
4121280 CIFC Cs F O3 PbP -6 m 25.3888; 5.3888; 5.1071
90; 90; 120
128.44Guohong Zou; Ling Huang; Ning Ye; Chensheng Lin; Wendan Cheng; Hui Huang
CsPbCO3F: A Strong Second-Harmonic Generation Material Derived from Enhancement via p-π Interaction
Journal of the American Chemical Society, 2013, 135, 18560-18566
4124644 CIFO2 PaF m -3 m5.05; 5.05; 5.05
90; 90; 90
128.788Elson, R.; Zachariasen, W.H.; Sellers, P.A.; Fried, S.
The tetravalent and pentavalent states of protactinium
Journal of the American Chemical Society, 1950, 72, 5791-5791
4124008 CIFH1.77 Li1.23 NF m -3 m5.0628; 5.0628; 5.0628
90; 90; 90
129.769David, W.I.F.; Jewell, C.M.; Gregory, D.H.; Jones, M.O.; Johnson, S.R.; Walton, A.; Edwards, P.P.
A mechanism for non-stoichiometry in the lithium amide/lithium imide hydrogen storage reaction
Journal of the American Chemical Society, 2007, 129, 1594-1601
1008156 CIFF2 XeI 4/m m m4.315; 4.315; 6.99
90; 90; 90
130.1Levy, H A; Agron, P A
The Crystal and Molecular Structure of Xenon Difluoride by Neutron Diffraction
Journal of the American Chemical Society, 1963, 85, 241-242
4124682 CIFF2 XeI 4/m m m4.315; 4.315; 6.99
90; 90; 90
130.148Siegel, S.; Gebert, E.
Crystallographic studies of Xe F2 and Xe F4
Journal of the American Chemical Society, 1963, 85, 240-240
4124006 CIFH1.92 Li1.08 NF m -3 m5.0713; 5.0713; 5.0713
90; 90; 90
130.424David, W.I.F.; Jones, M.O.; Johnson, S.R.; Gregory, D.H.; Jewell, C.M.; Edwards, P.P.; Walton, A.
A mechanism for non-stoichiometry in the lithium amide/lithium imide hydrogen storage reaction
Journal of the American Chemical Society, 2007, 129, 1594-1601
4124649 CIFBa Co O3P 63/m m c5.59; 5.59; 4.82
90; 90; 120
130.437Gushee, B.E.; Katz, L.; Ward, R.
The preparation of a barium cobalt oxide and other phases with similar structures
Journal of the American Chemical Society, 1957, 79, 5601-5603
4116439 CIFB H6 NP m n 215.395; 4.887; 4.986
90; 90; 90
131.46Wim T. Klooster; Thomas F. Koetzle; Per E. M. Siegbahn; Thomas B. Richardson; Robert H. Crabtree
Study of the N-H...H-B Dihydrogen Bond Including the Crystal Structure of BH3NH3 by Neutron Diffraction
Journal of the American Chemical Society, 1999, 121, 6337-6343
4109372 CIFCo0.012 H2 Ni0.988 O2C 1 2/m 14.8834; 2.9197; 9.243
90; 88.82; 90
131.76Montse Casas-Cabanas; Jesús Canales-Vázquez; Juan Rodríguez-Carvajal; M. Rosa Palacín
Deciphering the Structural Transformations during Nickel Oxyhydroxide Electrode Operation
Journal of the American Chemical Society, 2007, 129, 5840-5842
4111788 CIFAg0.25 Pb1.5 Sb0.25 Te2P 4/m m m4.5377; 4.5377; 6.4173
90; 90; 90
132.14Eric Quarez; Kuei-Fang Hsu; Robert Pcionek; N. Frangis; E. K. Polychroniadis; Mercouri G. Kanatzidis
Nanostructuring, Compositional Fluctuations, and Atomic Ordering in the Thermoelectric Materials AgPbmSbTe2+m. The Myth of Solid Solutions
Journal of the American Chemical Society, 2005, 127, 9177-9190
4111790 CIFAg0.19 Pb1.62 Sb0.19 Te2P 4/m m m4.5453; 4.5453; 6.428
90; 90; 90
132.8Eric Quarez; Kuei-Fang Hsu; Robert Pcionek; N. Frangis; E. K. Polychroniadis; Mercouri G. Kanatzidis
Nanostructuring, Compositional Fluctuations, and Atomic Ordering in the Thermoelectric Materials AgPbmSbTe2+m. The Myth of Solid Solutions
Journal of the American Chemical Society, 2005, 127, 9177-9190
4111792 CIFAg0.13 Pb1.75 Sb0.13 Te2P 4/m m m4.5538; 4.5538; 6.4404
90; 90; 90
133.56Eric Quarez; Kuei-Fang Hsu; Robert Pcionek; N. Frangis; E. K. Polychroniadis; Mercouri G. Kanatzidis
Nanostructuring, Compositional Fluctuations, and Atomic Ordering in the Thermoelectric Materials AgPbmSbTe2+m. The Myth of Solid Solutions
Journal of the American Chemical Society, 2005, 127, 9177-9190
4101558 CIF?P 4/n m m :23.96358; 3.96358; 8.51222
90; 90; 90
133.727Kamihara, Yoichi; Hiramatsu, Hidenori; Hirano, Masahiro; Kawamura, Ryuto; Yanagi, Hiroshi; Kamiya, Toshio; Hosono, Hideo
Iron-based layered superconductor: LaOFeP.
Journal of the American Chemical Society, 2006, 128, 10012-10013
4124665 CIFNb3 OsP m -3 n5.121; 5.121; 5.121
90; 90; 90
134.296Geller, S.; Goldstein, R.; Matthias, B.T.
Some new intermetallic compounds with the beta-wolfram structure
Journal of the American Chemical Society, 1955, 77, 1502-1504
4124664 CIFIr Nb3P m -3 n5.131; 5.131; 5.131
90; 90; 90
135.085Geller, S.; Matthias, B.T.; Goldstein, R.
Some new intermetallic compounds with the beta-wolfram structure
Journal of the American Chemical Society, 1955, 77, 1502-1504
4124614 CIFCu2 O3 SrP m m n :23.8833; 10.6202; 3.2791
90; 90; 90
135.235Azuma, M.; Yoshida, H.; Saito, T.; Yamada, T.; Takano, M.
Pressure-induced buckling of spin ladder in Sr Cu2 O3
Journal of the American Chemical Society, 2004, 126, 8244-8246
1100027 CIFO SrF m -3 m5.1396; 5.1396; 5.1396
90; 90; 90
135.8Primak, W; Kaufman, H; Ward, R
X-Ray Diffraction Studies of Systems Involved in the Preparation of Alkaline Earth Sulfide and Selenide Phosphors
Journal of the American Chemical Society, 1948, 70, 2043-2046
4124518 CIFLi0.026 O2 TiI 41/a m d :23.7919; 3.7919; 9.4973
90; 90; 90
136.557Wagemaker, M.; van Well, A.A.; Kearley, G.J.; Mutka, H.; Mulder, F.M.
Multiple Li positions inside oxygen octahedra in lithiated Ti O2 anatase
Journal of the American Chemical Society, 2003, 125, 840-848
4128069 CIFC10.51 Cl O4P m -3 m5.1525; 5.1525; 5.1525
90; 90; 90
136.79Yang, Chen-Kai; Chen, Wang-Nan; Ding, Yan-Ting; Wang, Jing; Rao, Yin; Liao, Wei-Qiang; Xie, Yongfa; Zou, Wennan; Xiong, Ren-Gen
Directional Intermolecular Interactions for Precise Molecular Design of a High- T<sub>c</sub> Multiaxial Molecular Ferroelectric.
Journal of the American Chemical Society, 2019, 141, 1781-1787
4124641 CIFN2 S2P 1 21/c 14.485; 3.767; 8.452
90; 106.43; 90
136.966Cohen, M.J.; Mikulski, C.M.; Garito, A.F.; Heeger, A.J.; MacDiarmid, A.G.; Saran, M.S.; Kleppinger, J.
Solid state polymerization of S2 N2 to (SN)x
Journal of the American Chemical Society, 1976, 98, 3844-3848
4124630 CIFGe Nb3P m -3 n5.168; 5.168; 5.168
90; 90; 90
138.028Carpenter, J.H.; Searcy, A.W.
Preparation, Identification and Chemical Properties of the Niobium Germanides
Journal of the American Chemical Society, 1956, 78, 2079-2081
4124654 CIFB H6 NI 4 m m5.255; 5.255; 5.048
90; 90; 90
139.401Hughes, E.W.
The Crystal Structure of Ammonia-Borane, H3 N B H3
Journal of the American Chemical Society, 1956, 78, 502-503
1008129 CIFBr D4 NP 4/n m m :15.826; 5.826; 4.136
90; 90; 90
140.4Levy, H A; Peterson, S W
Neutron Diffraction Determination of the Crystal Structure of Ammonium Bromide in Four Phases
Journal of the American Chemical Society, 1953, 75, 1536-1542
4124692 CIFF6 Ge Rb2P -3 m 15.82; 5.82; 4.79
90; 90; 120
140.512Vincent, W.B.; Hoard, J.L.
Structures of Complex Fluorides. Rubidium Hexafluorogermanate
Journal of the American Chemical Society, 1942, 64, 1233-1234
4124520 CIFLi0.59 O2 TiI m m a3.8141; 4.0771; 9.042
90; 90; 90
140.607Wagemaker, M.; Kearley, G.J.; van Well, A.A.; Mutka, H.; Mulder, F.M.
Multiple Li positions inside oxygen octahedra in lithiated Ti O2 anatase
Journal of the American Chemical Society, 2003, 125, 840-848
4103157 CIFF2 N2 O4 XeP -14.5822; 5.0597; 6.2761
79.17; 88.454; 81.083
141.189Matthew D. Moran; David S. Brock; Hélène P. A. Mercier; Gary J. Schrobilgen
Xe3OF3+, a Precursor to a Noble-Gas Nitrate; Syntheses and Structural Characterizations of FXeONO2, XeF2.HNO3, and XeF2.N2O4
Journal of the American Chemical Society, 2010, 132, 13823-13839
4124519 CIFLi0.51 O2 TiI m m a3.8186; 4.0842; 9.0656
90; 90; 90
141.386Wagemaker, M.; Kearley, G.J.; van Well, A.A.; Mutka, H.; Mulder, F.M.
Multiple Li positions inside oxygen octahedra in lithiated Ti O2 anatase
Journal of the American Chemical Society, 2003, 125, 840-848
1010102 CIFF6 Ge H8 N2P -3 m 15.85; 5.85; 4.775
90; 90; 120
141.5Hoard, J L; Vincent, W B
Ytructures of Complex Fluorides. Potassium Hexafluogermanate and Ammonium Hexafluogermanate
Journal of the American Chemical Society, 1939, 61, 2849-2852
4124781 CIFO2 TbF m -3 m5.213; 5.213; 5.213
90; 90; 90
141.665Gruen, D.M.; Koehler, W.C.; Katz, J.J.
Higher Oxides of the Lanthanide Elements. Terbium Dioxide
Journal of the American Chemical Society, 1951, 73, 1475-1479
4107570 CIFAs Fe La OP 4/n m m :24.03533; 4.03533; 8.7409
90; 90; 90
142.336Yoichi Kamihara; Takumi Watanabe; Masahiro Hirano; Hideo Hosono
Iron-Based Layered Superconductor La[O1-xFx]FeAs (x = 0.05-0.12) with Tc = 26 K
Journal of the American Chemical Society, 2008, 130, 3296-3297
1010929 CIFCu Fe S2F -4 3 m5.228; 5.228; 5.228
90; 90; 90
142.9Burdick, C L; Ellis, J H
The Crystal Structure of Chalcopyrite Determined by X-Rays
Journal of the American Chemical Society, 1917, 39, 2519-2525
4124514 CIFN2 S Zr2P 63/m m c3.611; 3.611; 12.818
90; 90; 120
144.746Stoltz, C.; Sirchio, S.A.; Ramesha, K.; Gonen, Z.S.; Eichhorn, B.W.; Salamanca-Riba, L.; Gopalakrishnan, J.
Topochemical anion metathesis routes to the Zr2 N2 S phases and the Na2 S and A Cl derivatives (A = Na, K, Rb)
Journal of the American Chemical Society, 2003, 125, 4285-4292
4124629 CIFGe2 NbP 62 2 24.966; 4.966; 6.781
90; 90; 120
144.823Carpenter, J.H.; Searcy, A.W.
Preparation, identification and chemical properties of the niobium germanides
Journal of the American Chemical Society, 1956, 78, 2079-2081
4124684 CIFH2 YbF m -3 m5.26; 5.26; 5.26
90; 90; 90
145.532Warf, J.C.; Hardcastle, K.
A higher hydride of ytterbium
Journal of the American Chemical Society, 1961, 83, 2206-2207
4123983 CIFSn Ta3P m -3 n5.276; 5.276; 5.276
90; 90; 90
146.864Geller, S.; Goldstein, R.; Matthias, B.T.
Some new intermetallic compounds with the beta.-wolfram structure
Journal of the American Chemical Society, 1955, 77, 1502-1504
4103660 CIFCa H2P n m a5.9696; 3.6022; 6.8336
90; 90; 90
146.95David A. Lang; Julia V. Zaikina; Derek D. Lovingood; Thomas E. Gedris; Susan E. Latturner
Ca2LiC3H: A New Complex Carbide Hydride Phase Grown in Metal Flux
Journal of the American Chemical Society, 2010, 132, 17523-17530
4124782 CIFO1.81 TbF m -3 m5.286; 5.286; 5.286
90; 90; 90
147.7Guth, D.; Eyring, L.
The Terbium Oxides. I. Dissociation Pressure Measurements. X-Ray and Differential Thermal Analyses
Journal of the American Chemical Society, 1954, 76, 5242-5244
4120252 CIFAg0.87 Ca0.86 Nd0.14 SbP 63 m c4.6931; 4.6931; 7.753
90; 90; 120
147.88Jian Wang; Xiao-Cun Liu; Sheng-Qing Xia; Xu-Tang Tao
Ca1-xRExAg1-ySb (RE = La, Ce, Pr, Nd, Sm; 0 <=x<=1; 0 <=y<=1): Interesting Structural Transformation and Enhanced High-Temperature Thermoelectric Performance
Journal of the American Chemical Society, 2013, 135, 11840-11848
4120253 CIFAg0.88 Ca0.83 Sb Sm0.17P 63 m c4.7008; 4.7008; 7.759
90; 90; 120
148.48Jian Wang; Xiao-Cun Liu; Sheng-Qing Xia; Xu-Tang Tao
Ca1-xRExAg1-ySb (RE = La, Ce, Pr, Nd, Sm; 0 <=x<=1; 0 <=y<=1): Interesting Structural Transformation and Enhanced High-Temperature Thermoelectric Performance
Journal of the American Chemical Society, 2013, 135, 11840-11848
4120249 CIFAg0.92 Ca0.89 La0.11 SbP 63 m c4.7029; 4.7029; 7.7921
90; 90; 120
149.25Jian Wang; Xiao-Cun Liu; Sheng-Qing Xia; Xu-Tang Tao
Ca1-xRExAg1-ySb (RE = La, Ce, Pr, Nd, Sm; 0 <=x<=1; 0 <=y<=1): Interesting Structural Transformation and Enhanced High-Temperature Thermoelectric Performance
Journal of the American Chemical Society, 2013, 135, 11840-11848
4120250 CIFAg0.9 Ca0.84 Ce0.16 SbP 63 m c4.7023; 4.7023; 7.7951
90; 90; 120
149.27Jian Wang; Xiao-Cun Liu; Sheng-Qing Xia; Xu-Tang Tao
Ca1-xRExAg1-ySb (RE = La, Ce, Pr, Nd, Sm; 0 <=x<=1; 0 <=y<=1): Interesting Structural Transformation and Enhanced High-Temperature Thermoelectric Performance
Journal of the American Chemical Society, 2013, 135, 11840-11848
4120251 CIFAg0.86 Ca0.87 Pr0.14 SbP 63 m c4.7057; 4.7057; 7.788
90; 90; 120
149.35Jian Wang; Xiao-Cun Liu; Sheng-Qing Xia; Xu-Tang Tao
Ca1-xRExAg1-ySb (RE = La, Ce, Pr, Nd, Sm; 0 <=x<=1; 0 <=y<=1): Interesting Structural Transformation and Enhanced High-Temperature Thermoelectric Performance
Journal of the American Chemical Society, 2013, 135, 11840-11848
4124685 CIFNa2 O2P -6 2 m6.22; 6.22; 4.47
90; 90; 120
149.768Tallman, R.L.; Margrave, J.L.; Bailey, S.W.
The crystal structure of sodium peroxide
Journal of the American Chemical Society, 1957, 79, 2979-2980
4124007 CIFH1.6 Li1.4 NF m -3 m5.318; 5.318; 5.318
90; 90; 90
150.399David, W.I.F.; Gregory, D.H.; Jones, M.O.; Jewell, C.M.; Walton, A.; Johnson, S.R.; Edwards, P.P.
A mechanism for non-stoichiometry in the lithium amide/lithium imide hydrogen storage reaction
Journal of the American Chemical Society, 2007, 129, 1594-1601
4117452 CIF
HKL
N2 NpF m -3 m5.32356; 5.32356; 5.32356
90; 90; 90
150.871G. W. Chinthaka Silva; Philippe F. Weck; Eunja Kim; Charles B. Yeamans; Gary S. Cerefice; Alfred P. Sattelberger; Kenneth R. Czerwinski
Crystal and Electronic Structures of Neptunium Nitrides Synthesized Using a Fluoride Route
Journal of the American Chemical Society, 2012, 134, 3111-3119
1011079 CIFH4 N2 O3P n m m :14.928; 5.438; 5.732
90; 90; 90
153.6West, C. D.
The crystal structure of rhombic ammonium nitrate
Journal of the American Chemical Society, 1932, 54, 2256-2260
1011133 CIFH4 N2 O3P m m n :15.75; 5.45; 4.96
90; 90; 90
155.4Hendricks, S B; Posnjak, E; Kracek, F C
Molecular rotation in the solid state. The variation of the crystal structure of ammonium nitrate with temperature
Journal of the American Chemical Society, 1932, 54, 2766-2786
4120528 CIFAs2 Ca0.73 Fe Pr0.27P 1 21/m 13.9163; 3.8953; 10.311
90; 90.788; 90
157.28Yakita, Hiroyuki; Ogino, Hiraku; Okada, Tomoyuki; Yamamoto, Akiyasu; Kishio, Kohji; Tohei, Tetsuya; Ikuhara, Yuichi; Gotoh, Yoshito; Fujihisa, Hiroshi; Kataoka, Kunimitsu; Eisaki, Hiroshi; Shimoyama, Jun-Ichi
A New Layered Iron Arsenide Superconductor: (Ca,Pr)FeAs2.
Journal of the American Chemical Society, 2014, 136, 846-849
4124613 CIFCu2 O3 SrC m m m3.9313; 11.5629; 3.4926
90; 90; 90
158.764Azuma, M.; Yoshida, H.; Saito, T.; Yamada, T.; Takano, M.
Pressure-induced buckling of spin ladder in Sr Cu2 O3
Journal of the American Chemical Society, 2004, 126, 8244-8246
4124624 CIFMo S2R 3 m :H3.171; 3.171; 18.34499
90; 90; 120
159.75Bell, R.E.; Herfert, R.E.
Preparation and characterization of a new crystalline form of molybdenum bisulfide
Journal of the American Chemical Society, 1957, 79, 3351-3354
4104917 CIFSiF d -3 m :25.43088; 5.43088; 5.43088
90; 90; 90
160.181May Nyman; Mark A. Rodriguez; Lauren E. Shea-Rohwer; James E. Martin; Paula P. Provencio
Highly Versatile Rare Earth Tantalate Pyrochlore Nanophosphors
Journal of the American Chemical Society, 2009, 131, 11652-11653
4124925 CIFAs2 Ca Co1.87I 4/m m m3.9927; 3.9927; 10.3133
90; 90; 90
164.411Tan, Xiaoyan; Fabbris, Gilberto; Haskel, Daniel; Yaroslavtsev, Alexander A.; Cao, Huibo; Thompson, Corey M.; Kovnir, Kirill; Menushenkov, Alexey P.; Chernikov, Roman V.; Garlea, V. Ovidiu; Shatruk, Michael
A Transition from Localized to Strongly Correlated Electron Behavior and Mixed Valence Driven by Physical or Chemical Pressure in ACo2As2 (A = Eu and Ca).
Journal of the American Chemical Society, 2016, 138, 2724-2731
1010092 CIFH4 N2 O3P -45.74; 5.74; 5
90; 90; 90
164.7Hendricks, S B; Posnjak, E; Kracek, F C
Molecular Rotation in the Solid State. The Variation of the Crystal Structure of Ammonium Nitrate with Temperature
Journal of the American Chemical Society, 1932, 54, 2766-2786
4124127 CIFLi7.5 O8 P0.5 Si1.5P 1 21/m 15.10536; 6.11225; 5.29671
90; 90.3692; 90
165.282Deng, Yue; Eames, Christopher; Chotard, Jean-Noël; Lalère, Fabien; Seznec, Vincent; Emge, Steffen; Pecher, Oliver; Grey, Clare P.; Masquelier, Christian; Islam, M. Saiful
Structural and Mechanistic Insights into Fast Lithium-Ion Conduction in Li4SiO4-Li3PO4 Solid Electrolytes.
Journal of the American Chemical Society, 2015, 137, 9136-9145
4124924 CIFAs2 Ca0.9 Co1.906 Eu0.1I 4/m m m3.9984; 3.9984; 10.3696
90; 90; 90
165.781Tan, Xiaoyan; Fabbris, Gilberto; Haskel, Daniel; Yaroslavtsev, Alexander A.; Cao, Huibo; Thompson, Corey M.; Kovnir, Kirill; Menushenkov, Alexey P.; Chernikov, Roman V.; Garlea, V. Ovidiu; Shatruk, Michael
A Transition from Localized to Strongly Correlated Electron Behavior and Mixed Valence Driven by Physical or Chemical Pressure in ACo2As2 (A = Eu and Ca).
Journal of the American Chemical Society, 2016, 138, 2724-2731
4124926 CIFAs2 Ca0.845 Co1.888 La0.155I 4/m m m4.0018; 4.0018; 10.3726
90; 90; 90
166.111Tan, Xiaoyan; Fabbris, Gilberto; Haskel, Daniel; Yaroslavtsev, Alexander A.; Cao, Huibo; Thompson, Corey M.; Kovnir, Kirill; Menushenkov, Alexey P.; Chernikov, Roman V.; Garlea, V. Ovidiu; Shatruk, Michael
A Transition from Localized to Strongly Correlated Electron Behavior and Mixed Valence Driven by Physical or Chemical Pressure in ACo2As2 (A = Eu and Ca).
Journal of the American Chemical Society, 2016, 138, 2724-2731
1010991 CIFCl CuF -4 3 m5.501; 5.501; 5.501
90; 90; 90
166.5Wyckoff, R W G; Posnjak, E
The Crystal Structures of the Cuprous Halides
Journal of the American Chemical Society, 1922, 44, 30-36
1010849 CIFH4 O7 Pb55.93; 4.65; 6.36
90; 105.78; 90
168.8Clark, G L; Tyler, W P
On Lead Oxides. II. Hydrous, Normal and Active Lead Monoxides
Journal of the American Chemical Society, 1939, 61, 58-65
4135376 CIFC H F0 Na O4 ZnP 1 c 13.3823; 5.453; 9.2505
90; 96.88; 90
169.385Peng, Guang; Lin, Chensheng; Ye, Ning
NaZnCO3(OH): A High-Performance Carbonate Ultraviolet Nonlinear Optical Crystal Derived from KBe2BO3F2
Journal of the American Chemical Society, 2020
4123953 CIFCd3 MgP 63/m m c6.2335; 6.2335; 5.0449
90; 90; 120
169.765Edwards, D.A.; Wallace, W.E.; Craig, R.S.
Magnesium-cadmium alloys. IV. The cadmium-rich alloys; some lattice parameters and phase relationships between 25 and 300 C. Structure of Mg Cd3
Journal of the American Chemical Society, 1952, 52, 5256-5262
4128030 CIFHg Li O4 PP -4 21 m4.5946; 4.5946; 8.0512
90; 90; 90
169.96Wu, Bao-Lin; Hu, Chun-Li; Mao, Fei-Fei; Tang, Ru-Ling; Mao, Jiang-Gao
Highly Polarizable Hg<sup>2+</sup> Induced a Strong Second Harmonic Generation Signal and Large Birefringence in LiHgPO<sub>4</sub>.
Journal of the American Chemical Society, 2019, 141, 10188-10192
4124689 CIFF4 XeP 1 21/n 15.05; 5.922; 5.771
90; 99.6; 90
170.171Templeton, D.H.; Zalkin, A.; Williamson, S.M.; Forrester, J.D.
Crystal and molecular structure of xenon tetrafluoride
Journal of the American Chemical Society, 1963, 85, 242-242
4102045 CIFAs0.5 Li0.5 SeF m -3 m5.557; 5.557; 5.557
90; 90; 90
171.6Tarun K. Bera; Joon I. Jang; Jung-Hwan Song; Christos D. Malliakas; Arthur J. Freeman; John B. Ketterson; Mercouri G. Kanatzidis
Soluble Semiconductors AAsSe2 (A = Li, Na) with a Direct-Band-Gap and Strong Second Harmonic Generation: A Combined Experimental and Theoretical Study
Journal of the American Chemical Society, 2010, 132, 3484-3495
4102048 CIFAs Li Se2P 15.55073; 5.58029; 5.57706
92.72; 90.8322; 91.516
172.471Tarun K. Bera; Joon I. Jang; Jung-Hwan Song; Christos D. Malliakas; Arthur J. Freeman; John B. Ketterson; Mercouri G. Kanatzidis
Soluble Semiconductors AAsSe2 (A = Li, Na) with a Direct-Band-Gap and Strong Second Harmonic Generation: A Combined Experimental and Theoretical Study
Journal of the American Chemical Society, 2010, 132, 3484-3495
4123984 CIFBa Ni S2P 4/n m m :24.43; 4.43; 8.893
90; 90; 90
174.524Grey, I.E.; Steinfink, H.
Crystal structure and properties of barium nickel sulfide, a square-pyramidal nickel(II) compound
Journal of the American Chemical Society, 1970, 92, 5093-5095
4130845 CIFC8 H6 O4P -15.0384; 5.3623; 7.006
71.993; 76.093; 87.198
174.67Karothu, Durga Prasad; Weston, James; Desta, Israel Tilahun; Naumov, Panče
Shape-Memory and Self-Healing Effects in Mechanosalient Molecular Crystals.
Journal of the American Chemical Society, 2016, 138, 13298-13306
4103659 CIFC3 H Ca2 LiP 4/m b m6.8236; 6.8236; 3.7518
90; 90; 90
174.689David A. Lang; Julia V. Zaikina; Derek D. Lovingood; Thomas E. Gedris; Susan E. Latturner
Ca2LiC3H: A New Complex Carbide Hydride Phase Grown in Metal Flux
Journal of the American Chemical Society, 2010, 132, 17523-17530
4130843 CIFC8 H6 O4P -15.0374; 5.3641; 7.0068
72.004; 76.098; 87.219
174.73Karothu, Durga Prasad; Weston, James; Desta, Israel Tilahun; Naumov, Panče
Shape-Memory and Self-Healing Effects in Mechanosalient Molecular Crystals.
Journal of the American Chemical Society, 2016, 138, 13298-13306
4123952 CIFCd Mg3P 63/m m c6.313; 6.313; 5.074
90; 90; 120
175.127Edwards, D.A.; Craig, R.S.; Wallace, W.E.
Magnesium-cadmium alloys. IV. The cadmium-rich alloys; some lattice parameters and phase relationships between 25 and 300 C. Structure of Mg Cd3
Journal of the American Chemical Society, 1952, 74, 5256-5262
4105296 CIFCu3 Se2P -4 21 m6.469; 6.469; 4.203
90; 90; 90
175.9Alfred J. Wooten; Donald J. Werder; Darrick J. Williams; Joanna L. Casson; Jennifer A. Hollingsworth
Solution-Liquid-Solid Growth of Ternary Cu-In-Se Semiconductor Nanowires from Multiple- and Single-Source Precursors
Journal of the American Chemical Society, 2009, 131, 16177-16188
4124655 CIFC2 ThC 1 2/c 16.53; 4.24; 6.56
90; 104; 90
176.233Hunt, E.B.; Rundle, R.E.
The structure of thorium dicarbide by X-ray and neutron diffraction
Journal of the American Chemical Society, 1951, 73, 4777-4781
4124511 CIFO5 V2P m m n :111.498; 3.545; 4.345
90; 90; 90
177.104Petkov, V.; Trikalitis, P.N.; Bozin, E.S.; Billinge, S.J.L.; Vogt, T.; Kanatzidis, M.G.
Structure of V2 O5 * n(H2 O) xerogel solved by the atomic pair distribution function technique
Journal of the American Chemical Society, 2002, 124, 10157-10162
4109719 CIFC4 Co Sc3I m m m3.3935; 4.3687; 11.9851
90; 90; 90
177.68Benjamin Rohrmoser; Georg Eickerling; Manuel Presnitz; Wolfgang Scherer; Volker Eyert; Rolf-Dieter Hoffmann; Ute Ch. Rodewald; Christian Vogt; Rainer Pöttgen
Experimental Electron Density of the Complex Carbides Sc3[Fe(C2)2] and Sc3[Co(C2)2]
Journal of the American Chemical Society, 2007, 129, 9356-9365
4124927 CIFAs2 Co2 EuI 4/m m m3.929; 3.929; 11.512
90; 90; 90
177.71Tan, Xiaoyan; Fabbris, Gilberto; Haskel, Daniel; Yaroslavtsev, Alexander A.; Cao, Huibo; Thompson, Corey M.; Kovnir, Kirill; Menushenkov, Alexey P.; Chernikov, Roman V.; Garlea, V. Ovidiu; Shatruk, Michael
A Transition from Localized to Strongly Correlated Electron Behavior and Mixed Valence Driven by Physical or Chemical Pressure in ACo2As2 (A = Eu and Ca).
Journal of the American Chemical Society, 2016, 138, 2724-2731
4130844 CIFC8 H6 O4P -13.7793; 6.4791; 7.404
82.942; 81.006; 88.982
177.71Karothu, Durga Prasad; Weston, James; Desta, Israel Tilahun; Naumov, Panče
Shape-Memory and Self-Healing Effects in Mechanosalient Molecular Crystals.
Journal of the American Chemical Society, 2016, 138, 13298-13306
4109720 CIFC4 Fe Sc3I m m m3.3689; 4.3818; 12.0959
90; 90; 90
178.56Benjamin Rohrmoser; Georg Eickerling; Manuel Presnitz; Wolfgang Scherer; Volker Eyert; Rolf-Dieter Hoffmann; Ute Ch. Rodewald; Christian Vogt; Rainer Pöttgen
Experimental Electron Density of the Complex Carbides Sc3[Fe(C2)2] and Sc3[Co(C2)2]
Journal of the American Chemical Society, 2007, 129, 9356-9365
4123272 CIFF3 Nb2 O2P -15.1791; 5.7043; 6.8911
108.669; 109.922; 90.332
179.82Tran, T. Thao; Gooch, Melissa; Lorenz, Bernd; Litvinchuk, Alexander P.; Sorolla, 2nd, Maurice G; Brgoch, Jakoah; Chu, Paul C. W.; Guloy, Arnold M.
Nb2O2F3: A Reduced Niobium (III/IV) Oxyfluoride with a Complex Structural, Magnetic, and Electronic Phase Transition.
Journal of the American Chemical Society, 2015, 137, 636-639
4105297 CIF
HKL
Cu3 Se2P -4 21 m6.66; 6.66; 4.102
90; 90; 90
181.9Alfred J. Wooten; Donald J. Werder; Darrick J. Williams; Joanna L. Casson; Jennifer A. Hollingsworth
Solution-Liquid-Solid Growth of Ternary Cu-In-Se Semiconductor Nanowires from Multiple- and Single-Source Precursors
Journal of the American Chemical Society, 2009, 131, 16177-16188
4124784 CIFAl OF m -3 m5.67; 5.67; 5.67
90; 90; 90
182.284Hoch, M.; Johnston, H.L.
Formation, Stability and Crystal Structure of the Solid Aluminium Suboxides. Al2 O and Al O
Journal of the American Chemical Society, 1954, 76, 2560-2561
4122597 CIFF10 Na Y3P m -3 m5.675; 5.675; 5.675
90; 90; 90
182.767Zalkin, A.; Templeton, D.H.
The crystal structures of yttrium fluoride and related compounds
Journal of the American Chemical Society, 1953, 75, 2453-2458
4124488 CIFLa3 Li Mn O8 SrI 4/m m m3.80292; 3.80292; 12.6881
90; 90; 90
183.498Burley, J.C.; Battle, P.D.; Gallon, D.J.; Sloan, J.; Grey, C.P.; Rosseinsky, M.J.
Magnetism and structural chemistry of the n=1 Ruddlesden-Popper phases La4 Li Mn O8 and La3 Sr Li Mn O8
Journal of the American Chemical Society, 2002, 124, 620-628
4101920 CIFCu0.15 Ga0.05 La0.198 Ni0.8 O4.232 Pr1.802I 4/m m m3.8245; 3.8245; 12.5592
90; 90; 90
183.7Masatomo Yashima; Nuansaeng Sirikanda; Tatsumi Ishihara
Crystal Structure, Diffusion Path, and Oxygen Permeability of a Pr2NiO4- Based Mixed Conductor (Pr0.9La0.1)2(Ni0.74Cu0.21Ga0.05)O4+δ
Journal of the American Chemical Society, 2010, 132, 2385-2392
5900025 CIFC H6 Cl NP 4/m n c6.04; 6.04; 5.05
90; 90; 90
184.23J. Am. Chem. Soc., 1946, 68, 1970
4101919 CIFCu0.21 Ga0.05 La0.198 Ni0.74 O4.21 Pr1.802I 4/m m m3.8333; 3.8333; 12.554
90; 90; 90
184.47Masatomo Yashima; Nuansaeng Sirikanda; Tatsumi Ishihara
Crystal Structure, Diffusion Path, and Oxygen Permeability of a Pr2NiO4- Based Mixed Conductor (Pr0.9La0.1)2(Ni0.74Cu0.21Ga0.05)O4+δ
Journal of the American Chemical Society, 2010, 132, 2385-2392
4110688 CIFCu3.42 Mn O2 S3 Sr2P 4/m m m4.0217; 4.0217; 11.418
90; 90; 90
184.676Zoltán A. Gál; Oliver J. Rutt; Catherine F. Smura; Timothy P. Overton; Nicolas Barrier; Simon J. Clarke; Joke Hadermann
Structural Chemistry and Metamagnetism of an Homologous Series of Layered Manganese Oxysulfides
Journal of the American Chemical Society, 2006, 128, 8530-8540
4124778 CIFCe F OF m -3 m5.703; 5.703; 5.703
90; 90; 90
185.486Baenziger, N.C.; Popov, A.I.; Knudson, G.E.; Holden, J.R.
Unit Cell Dimensions of Some Rare Earth Oxyfluorides
Journal of the American Chemical Society, 1954, 76, 4734-4735
4101921 CIFCu0.22 Ga0.05 La Ni0.73 O4.208 PrI 4/m m m3.836; 3.836; 12.611
90; 90; 90
185.57Masatomo Yashima; Nuansaeng Sirikanda; Tatsumi Ishihara
Crystal Structure, Diffusion Path, and Oxygen Permeability of a Pr2NiO4- Based Mixed Conductor (Pr0.9La0.1)2(Ni0.74Cu0.21Ga0.05)O4+δ
Journal of the American Chemical Society, 2010, 132, 2385-2392
4124487 CIFLa4 Li Mn O8I 4/m m m3.78709; 3.78709; 12.9561
90; 90; 90
185.817Burley, J.C.; Battle, P.D.; Gallon, D.J.; Sloan, J.; Grey, C.P.; Rosseinsky, M.J.
Magnetism and structural chemistry of the n=1 Ruddlesden-Popper phases La4 Li Mn O8 and La3 Sr Li Mn O8
Journal of the American Chemical Society, 2002, 124, 620-628
4127821 CIFB Na2 P2P n m a9.5672; 3.2014; 6.104
90; 90; 90
186.96Woo, Katherine E.; Wang, Jian; Mark, Justin; Kovnir, Kirill
Directing Boron-Phosphorus Bonds in Crystalline Solid: Oxidative Polymerization of P═B═P Monomers into 1D Chains.
Journal of the American Chemical Society, 2019, 141, 13017-13021
4101922 CIFCu0.23 Ga0.05 La0.198 Ni0.72 O4.176 Pr1.802I 4/m m m3.8557; 3.8557; 12.6765
90; 90; 90
188.45Masatomo Yashima; Nuansaeng Sirikanda; Tatsumi Ishihara
Crystal Structure, Diffusion Path, and Oxygen Permeability of a Pr2NiO4- Based Mixed Conductor (Pr0.9La0.1)2(Ni0.74Cu0.21Ga0.05)O4+δ
Journal of the American Chemical Society, 2010, 132, 2385-2392
4124679 CIFO4 Sr2 UI 4/m m m3.87; 3.87; 12.74
90; 90; 90
190.806Randall, J.
The preparation of some ternary oxides of the platinum metals
Journal of the American Chemical Society, 1959, 81, 2629-2629
4124705 CIFF3 YP n m a6.353; 6.85; 4.393
90; 90; 90
191.175Zalkin, A.; Templeton, D.H.
The crystal structure of Y F3 and related compounds
Journal of the American Chemical Society, 1953, 75, 2453-2458
4101923 CIFCu0.21 Ga0.05 La0.198 Ni0.74 O4.152 Pr1.802I 4/m m m3.8746; 3.8746; 12.7384
90; 90; 90
191.2Masatomo Yashima; Nuansaeng Sirikanda; Tatsumi Ishihara
Crystal Structure, Diffusion Path, and Oxygen Permeability of a Pr2NiO4- Based Mixed Conductor (Pr0.9La0.1)2(Ni0.74Cu0.21Ga0.05)O4+δ
Journal of the American Chemical Society, 2010, 132, 2385-2392
4119771 CIF
HKL
C2 N2 ZnP n -3 m :25.7707; 5.7707; 5.7707
90; 90; 90
192.17Saul H. Lapidus; Gregory J. Halder; Peter J. Chupas; Karena W. Chapman
Exploiting High Pressures to Generate Porosity, Polymorphism, And Lattice Expansion in the Nonporous Molecular Framework Zn(CN)2
Journal of the American Chemical Society, 2013, 135, 7621-7628
4127882 CIFBa F Mn0.5 TeP 4/n m m :14.4704; 4.4704; 9.634
90; 90; 90
192.53Chen, Haijie; McClain, Rebecca; He, Jiangang; Zhang, Chi; Olding, Jack N.; Dos Reis, Roberto; Bao, Jin-Ke; Hadar, Ido; Spanopoulos, Ioannis; Malliakas, Christos D.; He, Yihui; Chung, Duck Young; Kwok, Wai-Kwong; Weiss, Emily A.; Dravid, Vinayak P.; Wolverton, Christopher; Kanatzidis, Mercouri G.
Antiferromagnetic Semiconductor BaFMn<sub>0.5</sub>Te with Unique Mn Ordering and Red Photoluminescence.
Journal of the American Chemical Society, 2019, 141, 17421-17430
4124657 CIFSi ThP b n m5.89; 7.88; 4.15
90; 90; 90
192.615Jacobson, E.L.; Tharp, A.G.; Freeman, R.D.; Searcy, A.W.
Preparation, Identification and Chemical Properties of the Thorium Silicides
Journal of the American Chemical Society, 1956, 78, 4850-4852
4105291 CIF
HKL
Cu0.5 In0.5 SeF -4 3 m5.7817; 5.7817; 5.7817
90; 90; 90
193.27Alfred J. Wooten; Donald J. Werder; Darrick J. Williams; Joanna L. Casson; Jennifer A. Hollingsworth
Solution-Liquid-Solid Growth of Ternary Cu-In-Se Semiconductor Nanowires from Multiple- and Single-Source Precursors
Journal of the American Chemical Society, 2009, 131, 16177-16188
4115497 CIFTe ZrP n m a7.3915; 3.7723; 6.9434
90; 90; 90
193.6Gissur Örlygsson; Bernd Harbrecht
Structure, Properties, and Bonding of ZrTe (MnP Type), a Low-Symmetry, High-Temperature Modification of ZrTe (WC Type)
Journal of the American Chemical Society, 2001, 123, 4168-4173
4105293 CIF
HKL
Cu In SeF -4 3 m5.7886; 5.7886; 5.7886
90; 90; 90
193.964Alfred J. Wooten; Donald J. Werder; Darrick J. Williams; Joanna L. Casson; Jennifer A. Hollingsworth
Solution-Liquid-Solid Growth of Ternary Cu-In-Se Semiconductor Nanowires from Multiple- and Single-Source Precursors
Journal of the American Chemical Society, 2009, 131, 16177-16188
4114004 CIFC4 H16 B2 N2P -15.833; 6.029; 6.24
80.372; 81.533; 65.942
196.8Cory A. Jaska; Karen Temple; Alan J. Lough; Ian Manners
Transition Metal-Catalyzed Formation of Boron-Nitrogen Bonds: Catalytic Dehydrocoupling of Amine-Borane Adducts to Form Aminoboranes and Borazines
Journal of the American Chemical Society, 2003, 125, 9424-9434
1010076 CIFBr CuF -4 3 m5.82; 5.82; 5.82
90; 90; 90
197.1Wyckoff, R W G; Posnjak, E
The Crystal Structures of the Cuprous Halides
Journal of the American Chemical Society, 1922, 44, 30-36
4101578 CIFB4 Cu Li6 O10P 14.8131; 6.4288; 7.0223
83.369; 71.623; 73.364
197.5Pan, Shilie; Smit, Jared P; Watkins, Byron; Marvel, Michael R; Stern, Charlotte L; Poeppelmeier, Kenneth R
Synthesis, crystal structure, and nonlinear optical properties of Li6CuB4O10: a congruently melting compound with isolated [CuB4O10]6- units.
Journal of the American Chemical Society, 2006, 128, 11631-11634
4112987 CIFB6 Cr H16P -14.3898; 5.694; 9.023
105.192; 93.81; 111.102
199.79Dean M. Goedde; Gregory S. Girolami
A New Class of CVD Precursors to Metal Borides: Cr(B3H8)2 and Related Octahydrotriborate Complexes
Journal of the American Chemical Society, 2004, 126, 12230-12231
1010083 CIFCl4 K2 PtP 4/m m m6.99; 6.99; 4.13
90; 90; 90
201.8Dickinson, R G
The Crystal Structures of Potassium Chloroplatinate and of Potassium and Ammonium Chloropalladates
Journal of the American Chemical Society, 1922, 44, 2404-2411
4124780 CIFCa0.5 S Sr0.5F m -3 m5.868; 5.868; 5.868
90; 90; 90
202.055Primak, W.; Kaufman, H.; Ward, R.
X-ray diffraction studies of systems involved in the preparation of alkaline earth sulfide and selenide phosphors
Journal of the American Chemical Society, 1948, 70, 2043-2046
1010082 CIFCl4 K2 PdP 4/m m m7.04; 7.04; 4.1
90; 90; 90
203.2Dickinson, R G
The Crystal Structures of Potassium Chloroplatinate and of Potassium and Ammonium Chloropalladates
Journal of the American Chemical Society, 1922, 44, 2404-2411
4124086 CIFC6 Co D3 N6P -3 1 m6.41294; 6.41294; 5.71973
90; 90; 120
203.714Goodwin, A.L.; Dove, M.T.; Tucker, M.G.; Keen, D.A.; Evans, J.S.O.; Peters, L.
Argentophilicity-dependent colossal thermal expansion in extended Prussian blue analogues
Journal of the American Chemical Society, 2008, 130, 9660-9661
4123007 CIFAs2 Ba0.52 Fe2 K0.48I 4/m m m3.90675; 3.90675; 13.37425
90; 90; 90
204.127Zaikina, Julia V.; Batuk, Maria; Abakumov, Artem M.; Navrotsky, Alexandra; Kauzlarich, Susan M.
Facile Synthesis of Ba1-xKxFe2As2 Superconductors via Hydride Route.
Journal of the American Chemical Society, 2014, 141121132150009
4123004 CIFAs2 Ba0.32 Fe2 K0.68I 4/m m m3.88324; 3.88324; 13.53814
90; 90; 90
204.149Zaikina, Julia V.; Batuk, Maria; Abakumov, Artem M.; Navrotsky, Alexandra; Kauzlarich, Susan M.
Facile Synthesis of Ba1-xKxFe2As2 Superconductors via Hydride Route.
Journal of the American Chemical Society, 2014, 141121132150009
4123005 CIFAs2 Ba Fe2I 4/m m m3.961; 3.961; 13.02
90; 90; 90
204.3Zaikina, Julia V.; Batuk, Maria; Abakumov, Artem M.; Navrotsky, Alexandra; Kauzlarich, Susan M.
Facile Synthesis of Ba1-xKxFe2As2 Superconductors via Hydride Route.
Journal of the American Chemical Society, 2014, 141121132150009
4123003 CIFAs2 Ba0.83 Fe2 K0.17I 4/m m m3.94518; 3.94518; 13.13219
90; 90; 90
204.395Zaikina, Julia V.; Batuk, Maria; Abakumov, Artem M.; Navrotsky, Alexandra; Kauzlarich, Susan M.
Facile Synthesis of Ba1-xKxFe2As2 Superconductors via Hydride Route.
Journal of the American Chemical Society, 2014, 141121132150009
4123006 CIFAs2 Ba0.84 Fe2 K0.16I 4/m m m3.94518; 3.94518; 13.13219
90; 90; 90
204.395Zaikina, Julia V.; Batuk, Maria; Abakumov, Artem M.; Navrotsky, Alexandra; Kauzlarich, Susan M.
Facile Synthesis of Ba1-xKxFe2As2 Superconductors via Hydride Route.
Journal of the American Chemical Society, 2014, 141121132150009
4117906 CIFK0.8 Ni2 Se2I 4/m m m3.8922; 3.8922; 13.523
90; 90; 90
204.863James R. Neilson; Tyrel M. McQueen
Bonding, Ion Mobility, and Rate-Limiting Steps in Deintercalation Reactions with ThCr2Si2-type KNi2Se2
Journal of the American Chemical Society, 2012, 134, 7750-7757
4117904 CIFK0.95 Ni2 Se2I 4/m m m3.9061; 3.9061; 13.4278
90; 90; 90
204.876James R. Neilson; Tyrel M. McQueen
Bonding, Ion Mobility, and Rate-Limiting Steps in Deintercalation Reactions with ThCr2Si2-type KNi2Se2
Journal of the American Chemical Society, 2012, 134, 7750-7757
4117903 CIFK Ni2 Se2I 4/m m m3.9089; 3.9089; 13.412281
90; 90; 90
204.933James R. Neilson; Tyrel M. McQueen
Bonding, Ion Mobility, and Rate-Limiting Steps in Deintercalation Reactions with ThCr2Si2-type KNi2Se2
Journal of the American Chemical Society, 2012, 134, 7750-7757
4117905 CIFK0.9 Ni2 Se2I 4/m m m3.9018; 3.9018; 13.469
90; 90; 90
205.053James R. Neilson; Tyrel M. McQueen
Bonding, Ion Mobility, and Rate-Limiting Steps in Deintercalation Reactions with ThCr2Si2-type KNi2Se2
Journal of the American Chemical Society, 2012, 134, 7750-7757
4119770 CIF
HKL
C2 N2 ZnP n -3 m :25.89986; 5.899858; 5.899858
90; 90; 90
205.364Saul H. Lapidus; Gregory J. Halder; Peter J. Chupas; Karena W. Chapman
Exploiting High Pressures to Generate Porosity, Polymorphism, And Lattice Expansion in the Nonporous Molecular Framework Zn(CN)2
Journal of the American Chemical Society, 2013, 135, 7621-7628
4124708 CIFC2 N2 ZnP -4 3 m5.9002; 5.9002; 5.9002
90; 90; 90
205.4Hoskins, B.F.; Robson, R.
Design and construction of a class of scaffolding-like materials comprising infinite polymeric frameworks of 3Dlinked molecular rods. A reappraisal of the Zn (C N)2 and Cd (C N)2 structures and the synthesis and structure of the diamond-related frame
Journal of the American Chemical Society, 1990, 112, 1546-1554
4123008 CIFAs2 Fe2 KI 4/m m m3.849; 3.849; 13.867
90; 90; 90
205.44Zaikina, Julia V.; Batuk, Maria; Abakumov, Artem M.; Navrotsky, Alexandra; Kauzlarich, Susan M.
Facile Synthesis of Ba1-xKxFe2As2 Superconductors via Hydride Route.
Journal of the American Chemical Society, 2014, 141121132150009
4128800 CIFLi2.33 P Si0.17F m -3 m5.91566; 5.91566; 5.91566
90; 90; 90
207.019Strangmüller, Stefan; Eickhoff, Henrik; Müller, David; Klein, Wilhelm; Raudaschl-Sieber, Gabriele; Kirchhain, Holger; Sedlmeier, Christian; Baran, Volodymyr; Senyshyn, Anatoliy; Deringer, Volker L.; van Wüllen, Leo; Gasteiger, Hubert A.; Fässler, Thomas F
Fast Ionic Conductivity in the Most Lithium-Rich Phosphidosilicate Li<sub>14</sub>SiP<sub>6</sub>.
Journal of the American Chemical Society, 2019, 141, 14200-14209
4116140 CIFC3 H4 O4P -15.1604; 5.3319; 8.1838
108.083; 101.28; 95.23
207.11Venkat R. Thalladi; Markus Nüsse; Roland Boese
The Melting Point Alternation in α,ω-Alkanedicarboxylic Acids
Journal of the American Chemical Society, 2000, 122, 9227-9236
4128799 CIFLi2.33 P Si0.17F m -3 m5.9253; 5.9253; 5.9253
90; 90; 90
208.03Strangmüller, Stefan; Eickhoff, Henrik; Müller, David; Klein, Wilhelm; Raudaschl-Sieber, Gabriele; Kirchhain, Holger; Sedlmeier, Christian; Baran, Volodymyr; Senyshyn, Anatoliy; Deringer, Volker L.; van Wüllen, Leo; Gasteiger, Hubert A.; Fässler, Thomas F
Fast Ionic Conductivity in the Most Lithium-Rich Phosphidosilicate Li<sub>14</sub>SiP<sub>6</sub>.
Journal of the American Chemical Society, 2019, 141, 14200-14209
4113701 CIFC8 H10 O4P -15.7888; 5.8066; 6.7136
105.021; 105.843; 92.465
208.1F. Albert Cotton; James P. Donahue; Carlos A. Murillo
Polyunsaturated Dicarboxylate Tethers Connecting Dimolybdenum Redox and Chromophoric Centers: Syntheses, Structures, and Electrochemistry
Journal of the American Chemical Society, 2003, 125, 5436-5450

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