Crystallography Open Database

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9015752 CIFFeF m -3 m3.509; 3.509; 3.509
90; 90; 90
43.207Nishihara, 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 = 19.70 GPa, T = 1273 K
American Mineralogist, 2012, 97, 1417-1420
9015753 CIFAl Ca Fe9.38 H2 K0.75 Li0.12 Mg0.5 Mn4 Na4.11 O50 P12C 1 2/c 116.526; 10.057; 24.73
90; 105.78; 90
3955.27Merlino, S.; Mellini, M.; Zanazzi, P. F.
Structure of arrojadite, KNa4CaMn4Fe10Al(PO4)12(OH,F)2
Acta Crystallographica, Section B, 1981, 37, 1733-1736
9015755 CIFCa5 Cl O10.5 Si3C m c m3.7617; 16.9385; 17.3196
90; 90; 90
1103.56Galuskin, E. V.; Galuskina, I. O.; Lazic, B.; Armbruster, T.; Zadov, A. E.; Krzykawski, T.; Banasik, K.; Gazeev, V. M.; Pertsev, N. N.
Rusinovite, Ca10(Si2O7)3Cl2: a new skarn mineral from the Upper Chegem caldera, Kabardino-Balkaria, Northern Caucasus, Russia
European Journal of Mineralogy, 2011, 23, 837-844
9015756 CIFAl2 Cu0.78 Mg0.22 O4F d -3 m :28.0841; 8.0841; 8.0841
90; 90; 90
528.318Fregola, R. A.; Bosi, F.; Skogby, H.; Halenius, U.
Cation ordering over short-range and long-range scales in the MgAl2O4-CuAl2O4 series Sample: CuAl95b
American Mineralogist, 2012, 97, 1821-1827
9015758 CIFAl7.272 B3 Ca0.614 F0.633 Fe0.156 H3.366 Li1.482 Mg0.018 Mn0.057 Na0.311 O30.366 Pb0.006 Si6 Ti0.018R 3 m :H15.8333; 15.8333; 7.1025
90; 90; 120
1542Lussier, 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: L27, disordered model
The Canadian Mineralogist, 2011, 49, 63-88
9015759 CIFAl1.61 Fe0.39 Mg O4F d -3 m :28.146; 8.146; 8.146
90; 90; 90
540.547Princivalle, 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 = 93 min
European Journal of Mineralogy, 2012, 24, 633-643
9015761 CIFC Ca O3R -3 c :H4.9764; 4.9764; 17.3886
90; 90; 120
372.929Antao, S. M.; Hassan, I.
Temperature dependence of the structural parameters in the transformation of aragonite to calcite, as determined from in situ synchrotron powder X-ray-diffraction data Note: T = 620 C Note: P = 101 kPa
The Canadian Mineralogist, 2010, 48, 1225-1236
9015762 CIFBa9.5 Ca3.5 Cl4 H12 O36 Si8 TiP 4/m m m14; 14; 5.625
90; 90; 90
1102.5Malinovskii, Y. A.; Pobedimskaya, E. A.; Belov, N. V.
Crystal structure of muirite Ba9(Ca,Ba)(Ca,Ti)4(OH)8[Si8O24](Cl,OH)8
Soviet Physics Doklady, 1975, 20, 163-164
9015763 CIFAs Ni RhP 4/n m m :23.5498; 3.5498; 6.1573
90; 90; 90
77.589Vymazalova, A.; Laufek, F.; Drabek, M.; Stanley, C. J.; Baker, R. J.; Bermejo, R.; Garuti, G.; Thalhammer, O.; Proenza, J. A.; Longo, F.
Zaccariniite, RhNiAs, a new platinum-group mineral from Loma Peguera, Dominican Republic
The Canadian Mineralogist, 2012, 50, 1321-1329
9015764 CIFCa O13.014 Si4 VP n m a9.4746; 13.262; 9.605
90; 90; 90
1206.89Danisi, R. M.; Armbruster, T.; Lazic, B.
In situ dehydration behavior of zeolite-like cavansite: A single-crystal X-ray study Note: T = 175 C
American Mineralogist, 2012, 97, 1874-1880
9015765 CIFFe5 Si3P 63/m c m6.6193; 6.6193; 4.621
90; 90; 120
175.344Santamaria-Perez D; Nuss, J.; Haines, J.; Jansen, M.; Vegas, A.
Iron silicides and their corresponding oxides: a high-pressure study of Fe5Si3 Note: P = 18.7 GPa
Solid State Sciences, 2004, 6, 673-678
9015766 CIFAs2 Eu Fe2I 4/m m m3.9062; 3.9062; 12.1247
90; 90; 90
185.004Tegel, M.; Rotter, M.; Weiss, V.; Schappacher, F. M.; Pottgen, R.; Johrendt, D.
Structural and magnetic phase transitions in the ternary iron arsenides SrFe2As2 and EuFe2As2 Note: T = 297 K
Journal of Physics: Condensed Matter, 2008, 20, 452201_1-452201_5
9015767 CIFCl2 FeP -3 m 13.585; 3.585; 5.735
90; 90; 120
63.833Vettier, C.; Yelon, W. B.
The structure of FeCl2 at high pressures Note: P = 5.97 kbar
Journal of Physics and Chemistry of Solids, 1975, 36, 401-405
9015768 CIFCl2 Cu H6 N2C m c m7.688; 10.645; 5.736
90; 90; 90
469.427Bojar, H. P.; Walter, F.; Baumgartner, J.; Farber, G.
Ammineite, CuCl2(NH3)2, a new species containing an ammine complex: Mineral data and crystal structure Note: T = 100 K
The Canadian Mineralogist, 2010, 48, 1359-1371
9015770 CIFAl7.23 B3 Ca0.06 F0.54 Fe0.42 H3.46 Li1.02 Mg0.06 Mn0.18 Na0.73 O30.46 Si6R 3 m :H15.856; 15.856; 7.1079
90; 90; 120
1547.6Diego Gatta, G.; Danisi, R. M.; Adamo, I.; Meven, M.; Diella, V.
A single-crystal neutron and X-ray diffraction study of elbaite Note: neutron data
Physics and Chemistry of Minerals, 2012, 39, 577-588
9015771 CIFCa O3 SnP b n m5.4824; 5.6384; 7.8387
90; 90; 90
242.31Zhao, J.; Ross, N. L.; Angel, R. J.
Tilting and distortion of CaSnO3 perovskite to 7 GPa determined from single-crystal X-ray diffraction Note: P = 2.61 GPa
Physics and Chemistry of Minerals, 2004, 31, 299-305
9015775 CIFAl2 Ca0.77 H4 O10 Si2 Sr0.23P 1 21/m 15.3025; 13.174; 5.8422
90; 123.72; 90
339.448Liebscher, A.; Dorsam, G.; Franz, G.; Wunder, B.; Gottschalk, M.
Crystal chemistry of synthetic lawsonite solid-solution series CaAl2 [(OH)2/(Si2O7)](H2O)-SrAl2[(OH)2/(Si2O7)](H2O) and the Cmcm-P2_1/m phase transition Note: Run #AU83
American Mineralogist, 2010, 95, 724-735
9015777 CIFAl2 Ca O8 Si2P 63/m c m5.1175; 5.1175; 14.7716
90; 90; 120
335.022Dimitrijevic, R.; Dondur, V.; Kremenovic, A.
Thermally induced phase transformations of Ca-exchanged LTA and FAU zeolite frameworks: Rietveld refinement of the hexagonal CaAl2Si2O8 diphyllosilicate structure
Zeolites, 1996, 16, 294-300
9015778 CIFCr2 O3R -3 c :H4.9128; 4.9128; 13.4689
90; 90; 120
281.528Finger, L. W.; Hazen, R. M.
Crystal structure and isothermal compression of Fe2O3, Cr2O3, and V2O3 to 50 kbars Note: P = 56.8 kbar
Journal of Applied Physics, 1980, 51, 5362-5367
9015779 CIFAl1.98 Ca0.69 Cr0.02 Fe1.08 Mg1.23 O12 Si3I a -3 d11.5826; 11.5825; 11.5826
90; 90; 90
1553.87Nestola, F.; Merli, M.; Nimis, P.; Parisatto, M.; Kopylova, M.; De Stefano, A.; Longo, M.; Ziberna, L.; Manghnani, M.
In situ analysis of garnet inclusion in diamond using single-crystal X-ray diffraction and X-ray micro-tomography Note: uncorrected for pressure inside the diamond
European Journal of Mineralogy, 2012, 24, 599-606

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