Crystallography Open Database

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9013998 CIFMn SiP 21 34.558; 4.558; 4.558
90; 90; 90
94.694Lebech, B.; Bernhard, J.; Freltoft, T.
Magnetic structures of cubic FeGe studied by small-angle neutron scattering
Journal of Physics: Condensed Matter, 1989, 1, 6105-6122
9013999 CIFAs0.02 Cu0.94 H O5 P0.98 Zn1.06P n n m8.323; 8.251; 5.861
90; 90; 90
402.493Williams, P. A.; Leverett, P.; Birch, W. D.; Hibbs, D. E.; Kilitsch, U.; Mihajlovic, T.
Zinc-rich zincolibethenite from Broken Hill, New South Wales Note: z-coordinate of O3 altered by communication with authors, April 2010
Australian Journal of Mineralogy, 2006, 12, 3-7
9014000 CIFCu H6 O14 Pb4 S2P -15.796; 7.9471; 7.9836
111.994; 97.765; 100.426
326.939Mereiter, K.
Chenite, Pb4Cu(SO4)2(OH)6, from Susanna mine, Leadhills, Scotland. Note: Crystal is from the Paar et al (1986) mineral description paper
Private communication, 2009
9014001 CIFBa Fe12 O19P 63/m m c5.9291; 5.9281; 23.407
90; 90; 120
712.493Collomb, A.; Wolfers, P.; Obradors, X.
Neutron diffraction studies of some hexagonal ferrites: BaFe12O19, BaMg2-W and CaCo2-W Note: T = 470 C, neutron, refined with Rietveld
Journal of Magnetism and Magnetic Materials, 1986, 62, 57-67
9014002 CIFCl O12 Pb5 V3P 63/m10.299; 10.299; 7.308
90; 90; 120
671.304Laufek, F.; Skala, R.; Haloda, J.; Cisarova, I.
Crystal structure of vanadinite: refinement of anisotropic displacement parameters Locality: Mibladen, Morocco
Journal of the Czech Geological Society, 2006, 51, 271-275
9014003 CIFC H8 B Na O8C 1 2 116.119; 6.928; 6.73
90; 100.46; 90
739.066Wang, L.; Zhou, K.; Shi, J.
Refinement of the qilianshanite structure
Geological Review, 1994, 40, 347-353
9014004 CIFCP 6/m m m4.89; 4.89; 3.88
90; 90; 120
80.349Bucknum, M. J.; Castro, E. A.
The carbon allotrope hexagonite and its potential synthesis from cold compression of carbon nanotubes
Journal of Chemical Theory and Computation, 2006, 2, 775-781
9014005 CIFC3 K4 O11 UC 1 2/c 110.24; 9.198; 12.222
90; 95.12; 90
1146.57Han, J. C.; Rong, S. B.; Chen, Q. M.; Wu, X. R.
The determination of the crystal structure of tetrapotassium uranyl tricarbonate by powder X-ray diffraction method Locality: synthetic
Chinese Journal of Chemistry, 1990, 4, 313-318
9014006 CIFNi3 SnP m -3 m3.738; 3.738; 3.738
90; 90; 90
52.23Cannon, F. C.
Effect of high pressure on the structure of AB3-type layered compounds
Materials Research Society Symposia Proceedings, 1984, 22, 113-116
9014009 CIFAl6.873 B3 F0.05 Fe1.188 H5.85 Li0.021 Mg0.819 Mn0.081 Na0.37 O30.95 Si5.958 Ti0.009 Zn0.009R 3 m :H15.9537; 15.9537; 7.1448
90; 90; 120
1574.87Ertl, A.; Schuster, R.; Hughes, J. M.; Ludwig, T.; Meyer, H.-P.; Finger, F.; Dyar, M. D.; Ruschel, K.; Rossman, G. R.; Klotzli, U.; Brandstatter, F.; Lengauer, C. L.; Tillmanns, E.
Li-bearing tourmalines in Variscan granitic pegmatites from the Moldanubian nappes, Lower Austria Note: Sample TK3
European Journal of Mineralogy, 2012, 24, 695-715
9014010 CIFB H3 O3P -17.05; 7.05; 6.57
92.5; 101.17; 120
273.621Zachariasen, W. H.
The crystal lattice of boric acid, BO3H3
Zeitschrift fur Kristallographie, 1934, 88, 150-161
9014011 CIFC0.88 H2 Al3 Ca0.438 Na3.522 O15.64 Si3P 6312.24; 12.24; 4.843
90; 90; 120
628.359Lotti, P.; Gatta, G. D.; Rotiroti, N.; Camara, F.
High-pressure study of a natural cancrinite Note: P = 6.63 GPa
American Mineralogist, 2012, 97, 872-882
9014013 CIFAs0.111 Cu0.889P 63/m m c2.588; 2.588; 4.226
90; 90; 120
24.513Heyding, R. D.; Despault, G. J. G.
The copper/arsenic system and the copper arsenide minerals
Canadian Journal of Chemistry, 1960, 38, 2477-2481
9014014 CIFAl7.167 B3 Ca0.441 F0.681 Fe0.027 H3.318 Li1.278 Mn0.531 Na0.471 O30.318 Pb0.025 Si6R 3 m :H15.8675; 15.8675; 7.1135
90; 90; 120
1551.07Lussier, 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: L11, disordered model
The Canadian Mineralogist, 2011, 49, 63-88
9014015 CIFC0.85 H1.998 Al2.82 Ca0.51 Na3.49 O15.549 Si3.18P 6312.627; 12.627; 5.136
90; 90; 120
709.179Pekov, I. V.; Olysych, L. V.; Chukanov, N. V.; Zubkova, N. V.; Pushcharovsky D Yu; Van, K. V.; Giester, G.; Tillmanns, E.
Crystal chemistry of cancrinite-group minerals with an AB-type framework: A review and new data. I. Chemical and structural variations Note: Sample# ggm44331
The Canadian Mineralogist, 2012, 49, 1129-1150
9014016 CIFGe O2P 32 2 14.9113; 4.9113; 5.6099
90; 90; 120
117.187Yamanaka, T.; Ogata, K.
Structure refinement of GeO2 polymorphs at high pressures and temperatures by energy-dispersive spectra of powder diffraction Note: P = 1.69 GPa T = 293 K Note: quartz structure
Journal of Applied Crystallography, 1991, 24, 111-118
9014018 CIFB Ca H O5 SiP 1 21/c 14.8336; 7.6076; 9.6298
90; 90.165; 90
354.106Rinaldi, R.; Gatta, G. D.; Angel, R. J.
Crystal chemistry and low-temperature behavior of datolite: a single-crystal X-ray diffraction study
American Mineralogist, 2010, 95, 1413-1421
9014019 CIFNi0.493 Ti0.507P m -3 m3.00896; 3.00896; 3.00896
90; 90; 90
27.243Sitepu, 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: Annealed
Powder Diffraction, 2009, 24, 315-326
9014020 CIFCa1.78 Fe1.72 H2 K0.4 Mg3.404 Na0.56 O24 Si8C 1 2/m 19.718; 17.87; 5.259
90; 105.8; 90
878.776Comopdi, P.; Boffa Ballaran, T.; Zanazzi, P. F.; Capalbo, C.; Zanetti, A.; Nazzareni, S.
The effect of oxo-component on the high-pressure behavior of amphiboles Sample: FR12 P = 2.85 GPa
American Mineralogist, 2010, 95, 1042-1051
9014023 CIFCl2 Cu5 H12 O10C 1 2/m 110.3113; 6.7606; 8.8386
90; 111.468; 90
573.397Hawthorne, F. C.; Cooper, M. A.; Grice, J. D.; Roberts, A. C.; Hubbard, N.
Description and crystal structure of bobkingite, (Cu2+)5Cl2(OH)8(H2O)2, a new mineral from New Cliffe Hill Quarry, Stanton-under-Bardon, Leicestershire, UK
Mineralogical Magazine, 2002, 66, 301-311
9014024 CIFAl5.451 B3 Ca0.062 F0.3 Fe3.549 H3.23 Na0.938 O30.7 Si6R 3 m :H16.043; 16.043; 7.247
90; 90; 120
1615.33Ertl, 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 bls2
American Mineralogist, 2012, 97, 1402-1416
9014025 CIFO4 Pb WI 41/a :15.44505; 5.44503; 12.0495
90; 90; 90
357.249Xu, K.; Xue, J.; Ding, Y.; Lu, G.
Discovery of stolzite in China and refinement of its crystal structure
Acta Geologica Sinica, 1995, 8, 111-116
9014026 CIFCl10 Cu6.15 K0.62 O8 Pb1.45 Se2 ZnP n n m9.132; 19.415; 13.213
90; 90; 90
2342.64Shuvalov, R. R.; Vergasova, L. P.; Semenova, T. F.; Filatov, S. K.; Krivovichev, S. V.; Siidra, O. I.; Rudashevsky, N. S.
Prewittite, KPb1.5Cu6Zn(SeO3)2O2Cl10, a new mineral from Tolbachik fumaroles, Kamchatka peninsula, Russia: Description and crystal structure
American Mineralogist, 2013, 98, 463-469
9014030 CIFAs10 Cu13 H50 O63P -16.424; 14.37; 16.559
102.882; 101.036; 98.022
1435.81Sejkora, J.; Plasil, J.; Ondrus, P.; Veselovsky, F.; Cisarova, I.; Hlousek, J.
Slavkovite, Cu13(AsO4)6(AsO3OH)4*23H2O, a new mineral species from Horni Slavkov and Jachymov, Czech Republic: Description and crystal-structure determination
The Canadian Mineralogist, 2010, 48, 1157-1170
9014032 CIFBi2 PtP a -36.7022; 6.7022; 6.7022
90; 90; 90
301.059Furuseth, S.; Selte, K.; Kjekshus, A.
Redetermined crystal structures of PdAs2, PdSb2, PtP2, PtAs2, PtSb2, alpha-PtBi2, and AuSb2
Acta Chemica Scandinavica, 1965, 19, 735-741
9014033 CIFAl Ca F6 H2 Na OP 1 21/c 15.563; 5.541; 16.115
90; 96.35; 90
493.691Adhikesavalu, D.; Cameron, T. S.; Knop, O.
Thomsenolite, NaCaAlF6*H2O: hydrogen bonding and comparison with pachnolite
Canadian Journal of Chemistry, 1985, 63, 3322-3327
9014034 CIFC0.61 Na4 O7.39 S1.39P m n m :25.17; 9.217; 7.058
90; 90; 90
336.327Giuseppetti, G.; Mazzi, F.; Tadini, C.
The crystal structure of synthetic burkeite Na4SO4(CO3)t(SO4)1-t Sample A Note sign of y-coordinate for O3 and O5 altered to reproduce reported bond lengths
Neues Jahrbuch fur Mineralogie, Monatshefte, 1988, 1988, 203-221
9014036 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: harmonic scattering factor refinement
Materials Research Bulletin, 1994, 29, 239-245
9014038 CIFO7 W2F d -3 m :210.206; 10.206; 10.206
90; 90; 90
1063.08Nedjar, R.; Borel, M.; Hervieu, M.; Raveau, B.
Une Nouvelle Forme de Trioxyde de Tungstene: Les Oxydes WO3 et WO3*0.5(H2O) a Structure Pyrochlore _cod_database_code 1001358
Materials Research Bulletin, 1988, 23, 91-97
9014041 CIFNi7 P7C m c 2123.801; 5.9238; 4.8479
90; 90; 90
683.517Dera, P.; Lazarz, J. D.; Lavina, B.
Pressure-induced development of bonding in NiAs type compounds and polymorphism of NiP Note: P = 5.79 GPa
Journal of Solid State Chemistry, 2011, 184, 1997-2003
9014042 CIFCu K2 O14 S2P 1 21/c 16.159; 12.131; 9.086
90; 104.45; 90
657.384Carapezza, M.; Di Sanseverino, L. R.
Crystallography and genesis of double sulfates and their hydrates. II. Structure, powder pattern and thermoanalysis of cyanochroite, K2Cu(SO4)2*6H2O
Mineralogica Petrographica Acta, 1968, 14, 23-37
9014043 CIFC2 H10 Ca Cl O7P 1 21/c 16.82; 13.72; 11.51
90; 116.7; 90
962.157Giuseppetti, G.; Tadini, C.; Ungaretti, L.
La struttura cristallina della calclacite
Periodico di Mineralogia, 1970, 39, 145-158
9014045 CIFAl2 Mg3 O12 Si3I a -3 d11.5136; 11.5136; 11.5136
90; 90; 90
1526.28Nakatsuka, A.; Shimokawa, M.; Nakayama, N.; Ohtaka, O.; Arima, H.; Okube, M.; Yoshiasa, A.
Static disorders of atoms and experimental determination of Debye temperature in pyrope: Low- and high-temperature single-crystal X-ray diffraction study Note: T = 823.1 K
American Mineralogist, 2011, 96, 1593-1605
9014048 CIFNa Nb O3P b m a5.5679; 15.5156; 5.5029
90; 90; 90
475.392Hewat, A. W.
Neutron powder profile refinement of ferroelectric and antiferroelectric crystal structures: sodium niobate at 22 deg C
Ferroelectrics, 1974, 7, 83-85
9014049 CIFAs SP 1 21/n 18.827; 12.683; 6.213
90; 106.95; 90
665.347Hejny, C.; Sagl, R.; Tobbens, D. M.; Miletich, R.; Wildner, M.; Nasdala, L.; Ullrich, A.; Balic-Zunic T
Crystal-structure properties and the molecular nature of hydrostatically compressed realgar Note: P = 3.97 GPa
Physics and Chemistry of Minerals, 2012, 39, 399-412
9014051 CIFAl7.287 B3 Ca0.685 F0.685 Fe0.06 H3.315 Li1.617 Mn0.036 Na0.245 O30.315 Pb0.01 Si6 Ti0.003R 3 m :H15.8307; 15.8307; 7.1013
90; 90; 120
1541.23Lussier, 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: L16, ordered model
The Canadian Mineralogist, 2011, 49, 63-88
9014052 CIFBa2 Co O7 Si2C 1 2/c 18.45; 10.729; 8.474
90; 111.365; 90
715.458Adams, R. D.; Layland, R.; Payen, C.; Datta, T.
Synthesis, structural analyses, and unusual magnetic properties of Ba2CoSi2O7 and BaCo2Si2O7 Note: Compound 1
Inorganic Chemistry, 1996, 35, 3492-3497
9014053 CIFCa3 Cu0.92 O13 Si3P n 2 n5.6551; 3.683; 27.1372
90; 90; 90
565.206Kampf, A. R.; Mills, S. J.; Merlino, S.; Pasero, M.; McDonald, A. M.; Wray, W. B.; Hindman, J. R.
Whelanite, Cu2Ca6[Si6O17(OH)](CO3)(OH)3(H2O)2, an (old) new mineral from the Bawana mine, Milford, Utah Note: not all atoms could be located
American Mineralogist, 2012, 97, 2007-2015
9014056 CIFFeF m -3 m3.581; 3.581; 3.581
90; 90; 90
45.921Nishihara, 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 = 6.41 GPa, T = 1073 K
American Mineralogist, 2012, 97, 1417-1420
9014057 CIFBe OP 63 m c2.7178; 2.7178; 4.4078
90; 90; 120
28.196Hazen, R. M.; Finger, L. W.
High-pressure and high-temperature crystal chemistry of beryllium oxide Note: T = 1183 K
Journal of Applied Physics, 1986, 59, 3728-3733
9014058 CIFAl6.109 B3.08 Ca0.09 F0.17 Fe0.06 H3.58 Li0.002 Mg2.73 Na0.82 O30.83 Si5.9 Ti0.11R 3 m :H15.941; 15.941; 7.201
90; 90; 120
1584.73Grice, J. D.; Ercit, T. S.
Ordering of Fe and Mg in the tourmaline crystal structure: The correct formula Sample: Dravite 43230
Neues Jahrbuch fur Mineralogie, Abhandlungen, 1993, 165, 245-266
9014059 CIFCa12 F K O26 S2 Si4R -3 m :H7.197; 7.197; 41.224
90; 90; 120
1849.2Fayos, J.; Glasser, F. P.; Howie, R. A.; Lachowski, E.; Perez-Mendez M
Structure of dodecacalcium potassium fluoride dioxide tetrasilicate bis(sulphate), KF.2[Ca6(SO4)(SiO4)20]: a fluorine-containing phase encountered in cement clinker production process
Acta Crystallographica, Section C, 1985, 41, 814-816
9014060 CIFAs H7.5 K0.5 O9.5 UP 4/n c c :27.171; 7.171; 18.048
90; 90; 90
928.087Ross, M.; Evans, H. T.
Studies of the torbernite minerals (I): The crystal structure of abernathyite and the structurally related compounds NH4(UO2AsO4).3H2O and K(H3O)(UO2AsO4)2.6H2O Sample: Abernathyite - K(H3O)
American Mineralogist, 1964, 49, 1578-1602
9014061 CIFB Ca H O3P 1 21/m 16.722; 5.437; 3.555
90; 93; 90
129.748Takahashi, R.; Kusachi, I.; Miura, H.
Crystal structure of parasibirskite (CaHBO3) and polymorphism in sibirskite and parasibirskite
Journal of Mineralogical and Petrological Sciences, 2010, 105, 70-73
9014064 CIFC2 H2 O12 Pb4 SP 1 21/a 19.11; 20.82; 11.59
90; 90.46; 90
2198.21Giuseppetti, G.; Mazzi, F.; Tadini, C.
The crystal structure of leadhillite: Pb4(SO4)(CO3)2(OH)2
Neues Jahrbuch fur Mineralogie, Monatshefte, 1990, 1990, 255-268
9014066 CIFBa0.06 Ca4.2 Ce0.82 F1.88 Gd0.04 La0.1 Na2.36 Nd1.14 O24 P5.88 Pr0.2 Si0.12 Sm0.22 Sr0.9P -39.4553; 9.4553; 6.9825
90; 90; 120
540.62Pekov, I. V.; Zubkova, N. V.; Husdal, T. A.; Kononkova, N. N.; Agakhanov, A. A.; Zadov, A. E.; Pushcharovsky, D. Y.
Carlgieseckeite-(Nd), NaNdCa3(PO4)3F, a new belovite-group mineral species from the Ilimaussaq alkaline complex, South Greenland
The Canadian Mineralogist, 2012, 50, 571-580
9014067 CIFCr2 O3R -3 c :H4.629; 4.629; 12.88
90; 90; 120
239.013Kantor, 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 = 63.9 GPa
American Mineralogist, 2012, 97, 1764-1770
9014068 CIFAl0.03 Ba0.6 Fe0.98 H0.4 Mg0.02 O11.4 Si0.86 V5.305 Zn0.11P -3 m 15.75; 5.75; 14.459
90; 90; 120
414.004Bartholomew, P. R.; Mancini, F.; Harlow, G. E.; Deifel, N.; Cahill, C.; Bernhardt, H. J.
Greenwoodite, a new nesosilicate from British Columbia with a Ba-VOH coupled substitution and tetrahedral Fe: description and structure
The Canadian Mineralogist, 2012, 50, 1233-1242
9014069 CIFAl1.33 Fe0.21 Mg0.16 O6 Si0.91P -3 1 m4.7621; 4.7621; 4.2964
90; 90; 120
84.379Boffa Ballaran, T.; Frost, D. J.; Miyajima, N.; Heidelbach, F.
The structure of a super-aluminous version of the dense hydrous-magnesium silicate phase D
American Mineralogist, 2010, 95, 1113-1116
9014071 CIFC0.097 H3.224 Cr0.19 Mg0.81 O2.903P 63/m m c3.09646; 3.09646; 15.627
90; 90; 120
129.759Mills, S. J.; Whitfield, P. S.; Wilson, S. A.; Woodhouse, J. N.; Dipple, G. M.; Raudsepp, M.; Francis, C. A.
The crystal structure of stichtite, re-examination of barbertonite, and the nature of polytypism in MgCr hydrotalcites Note: Sample 92459, 2H1 polytype of stichtite
American Mineralogist, 2011, 96, 179-187

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