Crystallography Open Database

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9016200 CIFC Ca O3R -3 c :H4.9757; 4.9757; 17.273
90; 90; 120
370.345Antao, 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 = 434 C Note: P = 101 kPa
The Canadian Mineralogist, 2010, 48, 1225-1236
9016202 CIFBa Gd2 O10 Si3P 1 21/m 15.435; 12.241; 6.932
90; 106.26; 90
442.738Wierzbicka-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
9016203 CIFAs2.889 Ca2.01 Mg0.304 Mn1.696 Na0.99 O12I a -3 d12.4929; 12.4929; 12.4929
90; 90; 90
1949.8Nagashima, M.; Armbruster, T.
Palenzonaite, berzeliite, and manganberzeliite:(As5+,V5+,Si4+)O4 tetrahedra in garnet structures
Mineralogical Magazine, 2012, 76, 1081-1097
9016204 CIFH O5 P Zn2P -15.499; 5.654; 6.465
102.85; 102.77; 86.83
191.12Fanfani, L.; Zanazzi, P. F.
Dati strutturali sulla tarbuttite
Periodico di Mineralogia, 1965, 34, 539-545
9016206 CIFB11 H7 O22 Sr2P 1 21 16.7; 20.8; 6.6
90; 119.25; 90
802.501Rumanova, I. M.; Gandymov, O.
The crystal structure of the natural strontium borate, p-veatchite, Sr2[B5O8(OH)]2*B(OH)3*H2O Note: polytype veatchite-1M, formally known as veatchite-p
Soviet Physics Crystallography, 1971, 16, 75-81
9016209 CIFC2 H2 Ba0.09 Ca0.19 Ce0.11 Dy0.02 Er0.01 Gd0.02 La0.09 Na0.5 O7 Pr0.01 Sr0.71 Y0.24 Yb0.01R 3 m :H5.211; 5.211; 18.357
90; 90; 120
431.692Tjy, C. T. L.; Pobedimskaya, E. A.; Nadezhina, T. N.; Khomyakov, A. P.
Polymorphism of donnayite (Na,TR)Sr(CO3)2*H2O
Moscow University Geology Bulletin, 1992, 47, 60-70
9016211 CIFAs0.404 O14 P1.594 Pb3 Te Zn3P 3 2 18.392; 8.392; 5.204
90; 90; 120
317.394Mills, S. J.; Kampf, A. R.; Kolitsch, U.; Housley, R. M.; Raudsepp, M.
The crystal chemistry and crystal structure of kuksite, Pb3Zn3Te6+P2O14, and a note on the crystal structure of yafsoanite, (Ca,Pb)3Zn(TeO6)2
American Mineralogist, 2010, 95, 933-938
9016212 CIFFe1.1 Mg0.75 Mn0.15 O4 SiP b n m4.798; 10.39; 6.055
90; 90; 90
301.849Hazen, R. M.
Effects of temperature and pressure on the crystal structure of ferromagnesian olivine T = 23 C, P = 1 atm , Evacuated silica capillary
American Mineralogist, 1977, 62, 286-295
9016213 CIFCr2 O3R -3 c :H4.953; 4.953; 13.5884
90; 90; 120
288.693Kantor, A.; Kantor, I.; Merlini, M.; Glazyrin, K.; Prescher, C.; Hanfland, M.; Dubrovinsky, L.
High-pressure structural studies of eskolaite by means of single-crystal X-ray diffraction Note: P = 0 GPa, data from Ovsyannikov and Dubrovinsky (2011)
American Mineralogist, 2012, 97, 1764-1770
9016214 CIFPb10.15 S22 Sb7.85P 1 21/a 121.554; 23.454; 8.079
90; 100.76; 90
4012.35Ventruti, G.; Stasi, F.; Pinto, D.; Vurro, F.; Renna, M.
The plumose boulangerite from Bottino, Apuan Alps, Italy: Crystal structure, OD character and twinning Note: MDO1 polytype
The Canadian Mineralogist, 2012, 50, 181-199
9016215 CIFC Ca O3P b n m4.13; 7.15; 8.48
90; 90; 90
250.41Meyer, H. J.
Uber Vaterit und seine Struktur
Angewandte Chemie, 1959, 71, 678-679
9016216 CIFAl7.767 B3 F0.57 H6 Mn1.233 Na0.666 O30.43 Si6R 3 m :H15.951; 15.951; 7.138
90; 90; 120
1572.83Ertl, A.; Kolitsch, U.; Dyar, M. D.; Hughes, J. M.; Rossman, G. R.; Pieczka, A.; Henry, D. J.; Pezzotta, F.; Prowatke, S.; Lengauer, C. L.; Korner, W.; Brandstatter, F.; Francis, C. A.; Prem, M.; Tillmanns, E.
Limitations of Fe2+ and Mn2+ site occupancy in tourmaline: Evidence from Fe2+ - and Mn2+ -rich tourmaline Note: sample mnelb3
American Mineralogist, 2012, 97, 1402-1416
9016218 CIFAl0.04 As2.16 Ba0.468 Fe3.96 H9.04 K0.039 Na0.021 O18.52 P0.84P -4 3 m7.942; 7.942; 7.942
90; 90; 90
500.945Hager, S. L.; Leverett, P.; Williams, P. A.; Mills, S. J.; Hibbs, D. E.; Raudsepp, M.; Kampf, A. R.; Birch, W. D.
The single-crystal X-ray structures of bariopharmacosiderite-C, bariopharmacosiderite-Q and natropharmacosiderite Note: sample Bariopharmacosiderite-C
The Canadian Mineralogist, 2010, 48, 1477-1485
9016220 CIFCa H7 K O13 Si4P 1 21/c 16.4897; 6.9969; 26.714
90; 94.597; 90
1209.12Zubkova, N. V.; Filinchuk, Y. E.; Pekov, I. V.; Pushcharovsky, D. Y.; Gobechiya, E. R.
Crystal structures of shlykovite and cryptophyllite: comparative crystal chemistry of phyllosilicate minerals of the mountainite family
European Journal of Mineralogy, 2010, 22, 547-555
9016221 CIFBa O9 Si3 TiP -6 c 26.5689; 6.5689; 9.6804
90; 90; 120
361.751Hejny, C.; Miletich, R.; Jasser, A.; Schouwink, P.; Crichton, W.; Kahlenberg, V.
Second-order P6c2-P31c transition and structural crystallography of the cyclosilicate benitoite, BaTiSi3O9, at high pressure Note: P = 3.56 GPa
American Mineralogist, 2012, 97, 1749-1763
9016223 CIFC Ca O3P m c n4.9624; 7.9989; 5.7714
90; 90; 90
229.088Antao, 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 = 175 C Note: P = 101 kPa
The Canadian Mineralogist, 2010, 48, 1225-1236
9016224 CIFNa Nb0.95 O2.975 Ti0.05P b m a5.5528; 15.5597; 5.514
90; 90; 90
476.409Xu, H.; Su, Y.; Balmer, M. L.; Navrotsky, A.
A new series of oxygen-deficient perovskites in the NaTixNb1-xO3-.05x system: synthesis, crystal chemistry, and energetics Note: x = 0.05
Chemistry of Materials, 2003, 15, 1872-1878
9016225 CIFO2 SiP 1 21/c 18.011; 4.544; 8.89
90; 121; 90
277.391Dera, P.; Lazarz, J. D.; Prakapenka, V. B.; Barkley, M.; Downs, R. T.
New insights into the high-pressure polymorphism of SiO2 cristobalite Note: P = 4.9 GPa
Physics and Chemistry of Minerals, 2011, 38, Online-first
9016226 CIFFe1.74 K0.81 Mn0.26 Na0.35 O30 Si12 Zn2.79P 6/m c c10.12; 10.12; 14.298
90; 90; 120
1268.14Bojar, H. P.; Walter, F.; Hauzenberger, C.; Postl, W.
Klochite, K_2(Fe2+Fe3+)Zn3[Si12O30], a new milarite-type mineral species from the Kloch volcano, Styria, Austria
The Canadian Mineralogist, 2011, 49, 1115-1124
9016227 CIFNi0.493 Ti0.507P m -3 m3.01302; 3.01302; 3.01302
90; 90; 90
27.353Sitepu, 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: Aged
Powder Diffraction, 2009, 24, 315-326

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