Crystallography Open Database

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9014986 CIFH2 OR -3 c :R7.6; 7.6; 7.6
70.1; 70.1; 70.1
375.394Engelhardt, H.; Kamb, B.
Structure of ice IV, a metastable high-pressure phase Note: T = 110 K, synthesized at 4-5.5 kb
Journal of Chemical Physics, 1981, 75, 5887-5899
9014987 CIFMo O3P b n m3.9624; 13.86; 3.6971
90; 90; 90
203.041Sitepu, H.
Texture and structural refinement using neutron diffraction data from molybdite (MoO3) and calcite (CaCO3) powders and a Ni-rich Ni50.7Ti49.30 alloy Note: March model
Powder Diffraction, 2009, 24, 315-326
9014989 CIFAl1.609 Fe0.389 Mg O4F d -3 m :28.1465; 8.1465; 8.1465
90; 90; 90
540.646Princivalle, F.; Martignago, F.; Nestola, F.; Dal Negro, A.
Kinetics of cation ordering in synthetic Mg(Al,Fe3+)2O4 spinels Note Sample F39, disordered at 1000 C for 24 h, then ordered at 650 C Annealing time = 21 min
European Journal of Mineralogy, 2012, 24, 633-643
9014990 CIFAl1.463 Fe0.537 Mg1.002 O4F d -3 m :28.1706; 8.1706; 8.1706
90; 90; 90
545.459Princivalle, F.; Martignago, F.; Nestola, F.; Dal Negro, A.
Kinetics of cation ordering in synthetic Mg(Al,Fe3+)2O4 spinels Note Sample F54, disordered at 1000 C for 24 h, then ordered at 750 C Annealing time = 60 min
European Journal of Mineralogy, 2012, 24, 633-643
9014993 CIFC H5 Cl Mg2 O6R 3 c :H22.6791; 22.6791; 7.22336
90; 90; 120
3217.52Sugimoto, K.; Dinnebier, R. E.; Schlecht, T.
Crystal structure of dehydrated chlorartinite by X-ray powder diffraction Note: this is a dehydrated chlorartinite
Powder Diffraction, 2007, 22, 64-67
9014995 CIFAl K0.983 O4 SiP 3 1 c5.156; 5.156; 8.745
90; 90; 120
201.334Gatta, G. D.; Angel, R. J.; Carpenter, M. A.
Low-temperature behavior of natural kalsilite with P31c symmetry: An in situ single-crystal X-ray diffraction study T = 150 K
American Mineralogist, 2010, 95, 1027-1034
9014998 CIFC H2 Cu0.94 Mg1.06 O5P 1 21/a 112.9181; 9.3923; 3.1622
90; 111.233; 90
357.626Perchiazzi, N.
Crystal structure determination and Rietveld refinement of rosasite and mcguinnessite
Zeitschrift fur Kristallographie Supplement, 2006, 23, 505-510
9015000 CIFCr2 O3R -3 c :H4.957; 4.957; 13.5923
90; 90; 120
289.242Sawada, H.
Residual electron density study of chromium sesquioxide by crystal structure and scattering factor refinement Note: anharmonic/atomic scattering factor refinement
Materials Research Bulletin, 1994, 29, 239-245
9015002 CIFP2 PtP a -35.6956; 5.6956; 5.6956
90; 90; 90
184.764Furuseth, S.; Selte, K.; Kjekshus, A.
On the solid solubility and structural properties of PdAs2-xSbx, PtP2-xAsx, PtP2-xSbx, PtP2-xBix, PtAs2-xSbx, PtAs2-xBix, PtSb2-xBix, Pdl-mPtmAs2, Pdl-mPtmSb2, Pdl-mAumSb2, and Ptl-mAumSb2
Acta Chemica Scandinavica, 1967, 21, 527-536
9015003 CIFH8 O11 Sr V3P 1 21/m 15.313; 10.495; 8.568
90; 91.14; 90
477.657Bindi, L.; Carbone, C.; Cabella, R.; Lucchetti, G.
Bassoite, SrV3O7*4H2O, a new mineral from Molinello mine, Val Graveglia, eastern Liguria, Italy
Mineralogical Magazine, 2011, 75, 2677-2686
9015006 CIFAl7.188 B3 Ca0.628 F0.702 Fe0.021 H3.298 Li1.584 Mn0.207 Na0.297 O30.298 Pb0.023 Si6R 3 m :H15.8456; 15.8456; 7.1066
90; 90; 120
1545.29Lussier, A. J.; Abdu, Y.; Hawthorne, F. C.; Michaelis, V. K.; Aguiar, P. M.; Kroeker, S.
Oscillatory zoned liddicoatite from Anjanabonoina, central Madigascar. I. Crystal chemistry and structure by SREF and 11B and 27Al MAS NMR spectroscopy Sample: L5, ordered model
The Canadian Mineralogist, 2011, 49, 63-88
9015007 CIFFe Nb0.2 O6 Ta1.8P 42/m n m4.7515; 4.7515; 9.254
90; 90; 90
208.925von Heidenstam, O.
Neutron and X-ray diffraction studies on tapiolite and some synthetic substances of trirutile structure Note: Crystal A Note: Stalex diffractometer
Arkiv for Kemi, 1968, 28, 375-387
9015008 CIFB4 La4 O15 Si3P 31 2 16.827; 6.827; 6.779
90; 90; 120
273.625Belokoneva, E. L.; Shuvaeva, V. A.; Antipin M Yu; Leonyuk, N. I.
Crystal structure of a high-temperature modification of LaBSiO5, a synthetic analog of stillwellite Note: T = 473 K
Zhurnal Neorganicheskoi Khimii, 1996, 41, 1097-1101
9015009 CIFAg3 S3 SbR 3 c :H11.0464; 11.0464; 8.7211
90; 90; 120
921.602Laufek, F.; Sejkora, J.; Dusek, M.
The role of silver in the crystal structure of pyrargyrite: single crystal X-ray diffraction study
Journal of Geosciences, 2010, 55, 161-167
9015010 CIFCl3 Fe0.52 Na21.48 O40 S10I -4 3 d15.882; 15.882; 15.882
90; 90; 90
4006.04Demartin, F.; Campostrini, I.; Castellano, C.; Gramaccioli, C. M.; Russo, M.
D'ansite-(Mn), Na21Mn2+(SO4)10Cl3 and d'ansite-(Fe), Na21Fe2+(SO4)10Cl3, two new minerals from volcanic fumaroles
Mineralogical Magazine, 2012, 76, 2773-2783
9015011 CIFB Ca H O3P 1 21/a 18.643; 9.523; 3.567
90; 119.23; 90
256.206Miura, H.; Kusachi, I.
Crystal structure of sibirskite (CaHBO3) by Monte Carlo simulation and Rietveld refinement
Journal of Mineralogical and Petrological Sciences, 2008, 103, 156-160
9015014 CIFBi2 Pb3 S6P b n m10.891; 22.638; 3.9926
90; 90; 90
984.377Olsen, L. A.; Balic Zunic, T.; Makovicky, E.
High-pressure anisotropic distortion of Pb3Bi2S6: a pressure-induced, reversible phase transition with migration of chemical bonds Note: P = 7.92 GPa Note: occupancies not refined Note: phase known as beta-Pb3Bi2S6
Inorganic Chemistry, 2008, 47, 6756-6762
9015015 CIFH6 Na2 O18 Si6 ZrP b c m7.1312; 14.6853; 14.6349
90; 90; 90
1532.62Grigor'eva, A. A.; Zubkova, N. V.; Pekov, I. V.; Kolitsch, U.; Pushcharovsky, D. Y.; Vigasina, M. F.; Giester, G.; Dordevic, T.; Tillmanns, E.; Chukanov, N. V.
Crystal chemistry of elpidite from Kahn Bogdo (Mongolia) and its K- and Rb-exchanged forms
Crystallography Reports, 2011, 56, 832-841
9015019 CIFFeF m -3 m3.49; 3.49; 3.49
90; 90; 90
42.509Nishihara, Y.; Nakajima, Y.; Akashi, A.; Tsujino, N.; Takahashi, E.; Funakoshi, K.; Higo, Y.
Isothermal compression of face-centered cubic iron Note: gamma iron, Sample M620, P = 23.17 GPa, T = 1273 K
American Mineralogist, 2012, 97, 1417-1420
9015020 CIFAl1.46 Fe0.538 Mg O4F d -3 m :28.1701; 8.1701; 8.1701
90; 90; 90
545.359Princivalle, F.; Martignago, F.; Nestola, F.; Dal Negro, A.
Kinetics of cation ordering in synthetic Mg(Al,Fe3+)2O4 spinels Note Sample F54, disordered at 1000 C for 24 h, then ordered at 750 C Annealing time = 3 min
European Journal of Mineralogy, 2012, 24, 633-643

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