Crystallography Open Database

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9016506 CIFFeF m -3 m3.507; 3.507; 3.507
90; 90; 90
43.133Nishihara, Y.; Nakajima, Y.; Akashi, A.; Tsujino, N.; Takahashi, E.; Funakoshi, K.; Higo, Y.
Isothermal compression of face-centered cubic iron Note: gamma iron, Sample M622, P = 17.47 GPa, T = 1073 K
American Mineralogist, 2012, 97, 1417-1420
9016509 CIFC H O4 TmP 42/n m c :29.3951; 9.3951; 7.7546
90; 90; 90
684.482Tahara, T.; Nakai, I.; Miyawaki, R.; Matsubara, S.
Crystal chemistry of RE(CO3)OH
Zeitschrift fur Kristallographie, 2007, 222, 326-334
9016511 CIFAl2 Cu0.7 Mg0.3 O4F d -3 m :28.0831; 8.0831; 8.0831
90; 90; 90
528.122Fregola, R. A.; Bosi, F.; Skogby, H.; Halenius, U.
Cation ordering over short-range and long-range scales in the MgAl2O4-CuAl2O4 series Sample: CuAl90dm
American Mineralogist, 2012, 97, 1821-1827
9016512 CIFB Ca H O5 SiP 1 21/c 14.8308; 7.6011; 9.629
90; 90.176; 90
353.569Rinaldi, R.; Gatta, G. D.; Angel, R. J.
Crystal chemistry and low-temperature behavior of datolite: a single-crystal X-ray diffraction study Note: T = 190 K
American Mineralogist, 2010, 95, 1413-1421
9016514 CIFH1.68 Na O7.34 Si2 TiA 1 2/a 15.219; 8.691; 25.01
90; 104.43; 90
1098.62Rastsvetaeva, R. K.; Andrianov, V. I.
Refined crystal structure of vinogradovite
Soviet Physics Crystallography, 1984, 29, 403-406
9016517 CIFAs3 IrI m -38.4673; 8.4673; 8.4673
90; 90; 90
607.065Kjekshus, A.; Rakke, T.
Compounds with the skutterudite type crystal structure. III. Structural data for arsenides and antimonides,
Acta Chemica Scandinavica A, 1974, 28, 99-103
9016519 CIFCl5 Cu6 H7 O13 Pb3 TeR -3 :H8.4035; 8.4035; 44.681
90; 90; 120
2732.59Kampf, A. R.; Mills, S. J.; Housley, R. M.; Marty, J.
Lead-tellurium oxysalts from Otto Mountain near Baker, California: VIII. Fuettererite, Pb3Cu2+6Te6+O6(OH)7Cl5, a new mineral with double spangolite-type sheets
American Mineralogist, 2013, 98, 506-511
9016520 CIFAl2 Ca H2 Mg3 Na O24 Si8C 1 2/m 19.9; 18.04; 5.33
90; 106.75; 90
911.528Heritsch, H.; Paulitsch, P.; Walitzi, E. M.
Die Struktur von Karinthin und einer barroisitischen Hornblende Note: this is not a good structure
Tschermaks Mineralogische und Petrographische Mitteilungen, 1957, 6, 215-222
9016521 CIFCu4 H6 O10 SP 1 21/a 113.1117; 9.8654; 6.0307
90; 103.255; 90
759.302Mills, S. J.; Kampf, A. R.; Pasero, M.; Merlino, S.
Discreditation of ''orthobrochantite'' (IMA 78-64) as the MDO1 polytype of brochantite Note: This is the MDO1 polytype of brochanite, that used to be called orthobrochantite
European Journal of Mineralogy, 2010, 22, 453-457
9016523 CIFAs2 Fe2 SrF m m m5.5783; 5.5175; 12.2965
90; 90; 90
378.465Tegel, 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 = 90 K
Journal of Physics: Condensed Matter, 2008, 20, 452201_1-452201_5
9016524 CIFBe OP 63 m c2.6883; 2.6883; 4.3614
90; 90; 120
27.297Hazen, R. M.; Finger, L. W.
High-pressure and high-temperature crystal chemistry of beryllium oxide Note: P = 2.2 GPa
Journal of Applied Physics, 1986, 59, 3728-3733
9016526 CIFC Ca O3P m c n4.9594; 7.9893; 5.7584
90; 90; 90
228.16Antao, 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 = 113 C Note: P = 101 kPa
The Canadian Mineralogist, 2010, 48, 1225-1236
9016530 CIFO10 Si3 Sr Y2P -16.757; 6.885; 9.273
72.42; 86.37; 88.37
410.405Wierzbicka-Wieczorek M; Kolitsch, U.; Tillmanns, E.
Synthesis and structural study of five new trisilicates, BaREE2Si3O10 (REE = Gd, Er, Yb, Sc) and SrY2Si3O10, including a review on the geometry of the Si3O10 unit
European Journal of Mineralogy, 2010, 22, 245-258
9016531 CIFC Fe Na3 O7 PP 1 1 21/m8.955; 5.149; 6.629
90; 90; 90.45
305.649Tjy, C. T. L.; Nadezhina, T. N.; Pobedimskaya, E. A.; Khomyakov, A. P.
Crystal chemical characteristics of bradleyite, sidorenkite and bonshtedtite Note: atomic parameters from ICSD
Mineralogiceskij Zhurnal, 1984, 6, 79-84
9016532 CIFAl8.601 B3.24 Ca0.01 F0.04 Fe0.039 H2.899 Li0.321 Mn0.279 Na0.46 O30.96 Si5.508 Ti0.012R 3 m :H15.8171; 15.8171; 7.0935
90; 90; 120
1536.9Ertl, A.; Rossman, G. R.; Hughes, J. M.; Prowatke, S.; Ludwig, T.
Mn-bearing "oxy-rossmanite" with tetrahedrally-coordinated Al and B from Austria: Structure, chemistry, and infrared and optical spectroscopic study Sample: REDT4 Reported formula: (Na.46 Ca.01) (Al2.35 Li.32 Mn2+.28 Fe2+.04 Ti4+.01) Al6 (Si5.51 Al.25 B.24) O18 (BO3)3 [(OH)2.80 O.20] [O.86 (OH).10 F.04] Tourmaline
American Mineralogist, 2005, 90, 481-487
9016533 CIFAl12 Ca5.515 Cl3 K2.505 Na7.5 O60 S3 Si12P 3 1 c12.7961; 12.7961; 21.4094
90; 90; 120
3035.92Ballirano, P.; Bosi, F.
Thermal behavior of afghanite, an ABABACAC member of the cancrinite group
American Mineralogist, 2012, 97, 630-640
9016534 CIFAs2 H16 Mg Mn2 O18 Pb2P -15.0528; 5.7671; 14.617
85.656; 82.029; 88.728
420.583Chukanov, N. V.; Pekov, I. V.; Johsson, E.; Zubkova, N. V.; Filinchuk, Y. E.; Belakovskiy, D. I.; Pushcharovsky, D. Y.
Langbanshyttanite, a new low-temperature arsenate mineral with a novel structure from Langban, Sweden
European Journal of Mineralogy, 2011, 23, 675-681
9016535 CIFO3 V2R -3 c :H4.9322; 4.9322; 13.991
90; 90; 120
294.755Finger, L. W.; Hazen, R. M.
Crystal structure and isothermal compression of Fe2O3, Cr2O3, and V2O3 to 50 kbars Note: P = 18.3 kbar
Journal of Applied Physics, 1980, 51, 5362-5367
9016536 CIFAl0.3 B3 Fe6.87 H3.12 K0.2 Mg1.83 Na0.8 O31 Si6R 3 m :H16.186; 16.186; 7.444
90; 90; 120
1688.95Grice, J. D.; Ercit, T. S.; Hawthorne, F. C.
Povondraite, a redefinition of the tourmaline ferridravite Note: Atomic parameters updated by Grice on 11/20/2001
American Mineralogist, 1993, 78, 433-436
9016540 CIFH18 Na2.76 Nb3 O26 Si4P 39.937; 9.937; 7.004
90; 90; 120
598.946Haring, M. M. M.; McDonald, A. M.; Cooper, M. A.; Poirier, G. A.
Laurentianite, [NbO(H2O)]3(Si2O7)2[Na(H2O)2]3, a new mineral from Mont Saint-Hilaire, Quebec: description, crystal-structure determination and paragenesis
The Canadian Mineralogist, 2012, 50, 1265-1280

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