Crystallography Open Database

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COD ID Blue up arrow Links Formula Up arrow Space group Up arrow Cell parameters Cell volume Up arrow Bibliography
9015940 CIFAl0.66 As0.48 B3 Ca3.15 F11.16 Fe0.27 Mn0.03 Na0.27 O39.64 P0.05 Si6.69 Sm7.71 Y4.38R 3 m :H10.675; 10.675; 27.02
90; 90; 120
2666.56Raade, G.; Johnsen, O.; Erambert, M.; Petersen, O. V.
Hundholmenite-(Y) from Norway - a new mineral species in the vicanite group: descriptive data and crystal structure
Mineralogical Magazine, 2007, 71, 179-192
9015942 CIFC Ca0.997 O3 Sr0.003P m c n4.9596; 7.9644; 5.7416
90; 90; 90
226.795Ye, Y.; Smyth, J. R.; Boni, P.
Crystal structure and thermal expansion of aragonite-group carbonates by single-crystal X-ray diffraction Note: T = 300 K, low-temperature experiment
American Mineralogist, 2012, 97, 707-712
9015946 CIFAl1.608 Fe0.389 Mg1.003 O4F d -3 m :28.1481; 8.1481; 8.1481
90; 90; 90
540.965Princivalle, 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 = 3069 min
European Journal of Mineralogy, 2012, 24, 633-643
9015949 CIFAl Ca0.5 O4 SiP 1 21 18.22; 8.951; 4.828
90; 90; 90
355.231Krivovichev, S. V.; Shcherbakova, E. P.; Nishanbaev, T. P.
The crystal structure of svyatoslavite and evolution of complexity during crystallization of a CaAl2Si2O8 melt: A structural automata description
The Canadian Mineralogist, 2012, 50, 585-592
9015950 CIFO4 Pb WI 41/a :25.456; 5.456; 12.02
90; 90; 90
357.811Moreau, J. M.; Galez, P.; Peigneux, J. P.; Korzhik, M. V.
Structural characterization of PbWO4 and related new phase Pb7W8O(32-x) Note: scheelite structure
Journal of Alloys and Compounds, 1996, 238, 46-48
9015955 CIFAl0.37 Ca2 Fe1.63 O5P n m a5.3549; 14.541; 5.5524
90; 90; 90
432.341Vanpeteghem, C. B.; Angel, R. J.; Zhao, J.; Ross, N. L.; Redhammer, G. J.; Seifert, F.
The effect of oxygen vacancies and aluminium substitution on the high-pressure properties of brownmillerite-structured Ca2Fe2-xAlxO5 Note: x = 0.37 Note: P = 3.729 GPa
Physics and Chemistry of Minerals, 2008, 35, 493-504
9015956 CIFAl8.367 B3.48 Be0.03 Ca0.252 Fe0.336 H3.31 Li0.273 Mg0.012 Mn0.015 Na0.478 O31 Si5.244 Ti0.009R 3 m :H15.7959; 15.7959; 7.0815
90; 90; 120
1530.19Hughes, J. M.; Ertl, A.; Dyar, M. D.; Grew, E. S.; Wieden-beck M; Brandstatter, F.
Structural and chemical response to varying B content in zoned Fe-bearing olenite from Koralpe, Austria Sample: T3
American Mineralogist, 2004, 89, 447-454
9015957 CIFB6 H8 O14 SrP 1 21/a 114.36; 8.198; 9.93
90; 113.92; 90
1068.59Clark, J. R.
Boron-oxygen polyanion in the crystal structure of tunellite
Science, 1963, 141, 1178-1179
9015958 CIFCl H9 Mn8 O24 Si6P -3 m 113.37; 13.37; 7.11
90; 90; 120
1100.69Kashaev, A. A.
The crystal structure of pyrosmalite
Soviet Physics Crystallography, 1968, 12, 923-924
9015959 CIFAl3 Ca2 H O13 Si3P n m a16.1353; 5.5062; 9.9432
90; 90; 90
883.396Alvaro, M.; Angel, R. J.; Camara, F.
High-pressure behavior of zoisite Note: P = 2.945 GPa
American Mineralogist, 2012, 97, 1165-1176
9015960 CIFC3 H16 Eu0.03 Gd0.08 La0.61 Nd0.95 O17 Pr0.17 Sm0.12 Y0.04P c c n8.9391; 9.4694; 16.9374
90; 90; 90
1433.72Morrison, S. M.; Andrade, M. B.; Wenz, M. D.; Domanik, K. J.; Downs, R. T.
Lanthanite-(Nd), Nd2(CO3)3*8H2O
Acta Crystallographica, Section E, 2013, 69, i15-i16
9015962 CIFC Fe O3R -3 c :H4.364; 4.364; 12.66
90; 90; 120
208.802Lavina, B.; Dera, P.; Downs, R. T.; Yang, W.; Sinogeikin, S.; Meng, Y.; Shen, G.; Schiferl, D.
Structure of siderite FeCO3 to 56 GPa and hysteresis of its spin-pairing transition Note: run P22, P = 49.2 GPa
Physical Review B, 2010, 82, 064110-064118
9015963 CIFAl1.88 Ba Fe1.3 H3 Mg0.62 Mn0.08 O15 P3P 1 21/m 19.014; 12.074; 4.926
90; 100.48; 90
527.178Cooper, M. A.; Hawthorne, F. C.
Refinement of the crystal structure of kulanite Note: occupancies of M1 and M2 have been switched, as noted by authors, 2006
The Canadian Mineralogist, 1994, 32, 15-19
9015964 CIFFe2 O3R -3 c :H5.0346; 5.0346; 13.7473
90; 90; 120
301.771Finger, L. W.; Hazen, R. M.
Crystal structure and isothermal compression of Fe2O3, Cr2O3, and V2O3 to 50 kbars Note: P = 0.001 kbar
Journal of Applied Physics, 1980, 51, 5362-5367
9015965 CIFCl5 K Pb2P 1 21/c 18.864; 7.932; 12.491
90; 90.153; 90
878.23Schluter, J.; Pohl, D.; Britvin, S.
The new mineral challacolloite, KPb2Cl5, the natural occurrence of a technically known laser material
Neues Jahrbuch fur Mineralogie, Abhandlungen, 2005, 182, 95-101
9015967 CIFCr H2 O2P n n m4.8623; 4.2972; 2.9567
90; 90; 90
61.778Jahn, S.; Wunder, B.; Koch-Muller M; Tarrieu, L.; Pohle, M.; Watenphul, A.; Taran, M. N.
Pressure-induced hydrogen bond symmetrisation in guyanaite, B-CrOOH: evidence from spectroscopy and ab initio simulations Sample: Run LT9
European Journal of Mineralogy, 2012, 24, 839-850
9015968 CIFB Nd O5 SiP 31 2 16.8035; 6.8035; 6.6487
90; 90; 120
266.521Shi, Y.; Liang, J. K.; Zhang, H.; Yang, J. L.; Zhuang, W. D.; Rao, G. H.
Crystal structure and vibrational spectra studies of stillwellite compounds NdBSiO5
Journal of Alloys and Compounds, 1997, 259, 163-169
9015969 CIFC Ca O3P m c n4.9644; 8.0057; 5.7805
90; 90; 90
229.737Antao, 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 = 218 C Note: P = 101 kPa
The Canadian Mineralogist, 2010, 48, 1225-1236
9015970 CIFAl2.73 Ba0.01 H2.86 K0.465 N0.36 Na0.03 O11.236 Si3.128C 1 2/c 19.027; 5.1999; 20.616
90; 100.113; 90
952.67Mesto, E.; Scordari, F.; Lacalamita, M.; Schingaro, E.
Tobelite and NH4+ -rich muscovite single crystals from Ordovician Armorican sandstones (Brittany, France): Structure and crystal chemistry Note: sample musc_4
American Mineralogist, 2012, 97, 1460-1468
9015971 CIFAl1.608 Fe0.389 Mg1.001 O4F d -3 m :28.1477; 8.1477; 8.1477
90; 90; 90
540.885Princivalle, 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 750 C Annealing time = 240 min
European Journal of Mineralogy, 2012, 24, 633-643

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