Crystallography Open Database
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Searching space group like 'P 1 c 1'
COD ID | Links | Formula | Space group | Cell parameters | Cell volume | Bibliography |
---|---|---|---|---|---|---|
9017763 | CIF | C24 Ca10 Cu4 Mg2 O154.25 U8 | P 1 c 1 | 22.052; 17.118; 19.354 90; 90.474; 90 | 7305.62 | Olds, T. A.; Plasil, J.; Kampf, A. R.; Dal Bo, F.; Burns, P. C. Paddlewheelite, a new uranyl carbonate from the Jachymov District, Bohemia, Czech Republic Minerals, 2018, 8 |
9017754 | CIF | As2 Ca H8 O12 Zn2 | P 1 c 1 | 9.416; 5.3; 10.893 90; 91.77; 90 | 543.354 | Rieck, B.; Giester, G.; Lengauer, C. L.; Chanmuang, N. C.; Topa, D. Stergiouite, CaZn2(AsO4)2*4H2O - a new mineral from the Lavrion Mining District, Greece Mineralogy and Petrology, 2020, 114, 319-327 |
9017626 | CIF | Ag2 As S2 | P 1 c 1 | 9.6155; 12.9331; 6.8616 90; 99.352; 90 | 841.955 | Bindi, L.; Nestola, F.; De Battisti, L.; Guastoni, A. Dervillite, Ag2AsS2, from Lengenbach quarry, Binn valley, Switzerland: occurrence and crystal structure Mineralogical Magazine, 2013, 77, 3105-3112 |
9016713 | CIF | Al6.78 Ca1.84 Fe12.22 Mn12.91 Na13.5 O120 P30 | P 1 c 1 | 13.4499; 12.5046; 26.6148 90; 101.221; 90 | 4390.66 | Tait, K. T.; Ercit, T. S.; Abdu, Y. A.; Cerny, P.; Hawthorne, F. C. The crystal structure and crystal chemistry of manitobaite, ideally (Na16_)Mn2+25Al8(PO4)30, from Cross Lake, Manitoba Note: brown sample The Canadian Mineralogist, 2011, 49, 1221-1242 |
9015353 | CIF | Al9 Ca Fe H Mg O17 | P 1 c 1 | 5.6973; 17.1823; 23.5718 90; 90; 90 | 2307.51 | Rastsvetaeva, R. K.; Aksenov, S. M.; Verin, I. A. Crystal structure of complex natural aluminum magnesium calcium iron oxide Crystallography Reports, 2010, 55, 563-568 |
9015039 | CIF | Al6.56 Ca2.44 Fe12 Mg0.44 Mn12.2 Na15.13 O120 P30 | P 1 c 1 | 13.4517; 12.5266; 26.6765 90; 101.582; 90 | 4403.57 | Tait, K. T.; Ercit, T. S.; Abdu, Y. A.; Cerny, P.; Hawthorne, F. C. The crystal structure and crystal chemistry of manitobaite, ideally (Na16_)Mn2+25Al8(PO4)30, from Cross Lake, Manitoba Note: green sample The Canadian Mineralogist, 2011, 49, 1221-1242 |
9013895 | CIF | Cu4 H10 O12 S | P 1 c 1 | 7.137; 6.031; 11.217 90; 90; 90 | 482.816 | Gentsch, M.; Weber, K. Structure of langite, Cu4[(OH)6|SO4]*2H2O Acta Crystallographica, Section C, 1984, 40, 1309-1311 |
9011478 | CIF | Al2 Ca H7.909 O20.038 Si6 | P 1 c 1 | 6.7; 13.972; 10.039 90; 111.07; 90 | 876.943 | Kvick, A.; Artioli, G.; Smith, J. V. Neutron diffraction study of the zeolite yugawaralite at 13 K Sample: T = 13 K Zeitschrift fur Kristallographie, 1986, 174, 265-281 |
9011456 | CIF | Au Te2 | P 1 c 1 | 8.76; 4.41; 10.15 90; 125.2; 90 | 320.411 | Pertlik, F. Kristallchemie naturlicher telluride III: Die kristallstruktur des minerals calaverit, AuTe2 Locality: Cripple Creek, Colorado, USA Zeitschrift fur Kristallographie, 1984, 169, 227-236 |
9011235 | CIF | As2 O9 S2 | P 1 c 1 | 6.65; 6.671; 16.612 90; 94.34; 90 | 734.831 | Mercier, R.; Douglade, J. Structure cristalline d'un oxysulfate d'arsenic(III) As2O(SO4)2 (ou As2O3*(SO3)2) Note: AnisoB's from ICSD Acta Crystallographica, Section B, 1982, 38, 1731-1735 |
9009715 | CIF | Cu4 H10 O12 S | P 1 c 1 | 7.118; 6.034; 11.209 90; 90.02; 90 | 481.427 | Galy, J.; Jaud, J.; Pulou, R.; Sempere, R. Structure cristalline de la langite, Cu4[SO4(OH)6H2O]*H2O Locality: Mazega, Aveyrone, France Bulletin de Mineralogie, 1984, 107, 641-648 |
9006305 | CIF | O2 Si | P 1 c 1 | 4.2166; 4.0206; 7.6423 90; 119.667; 90 | 112.579 | Boisen, M. B.; Gibbs, G. V.; Bukowinski, M. S. T. Framework silica structures generated using simulated annealing with a potential energy function based on an H6Si2O7 molecule Sample: 22 Physics and Chemistry of Minerals, 1994, 21, 269-284 |
9004968 | CIF | Ca1.63 F3 Fe0.1 Mg0.41 Mn1.02 Na13.62 Nb0.51 O33 P4 Si4 Sr0.03 Ti2.42 Zr0.09 | P 1 c 1 | 7.0755; 5.4106; 40.623 90; 93.156; 90 | 1552.8 | Sokolova, E.; Hawthorne, F. C.; Khomyakov, A. P. Polyphite and sobolevite: Revision of their crystal structures The Canadian Mineralogist, 2005, 43, 1527-1544 |
9002540 | CIF | Al2 Ca O19.07 Si6 | P 1 c 1 | 6.7836; 13.9842; 10.0736 90; 111.443; 90 | 889.468 | Artioli, G.; Stahl, K.; Cruciani, G.; Gualtieri, A.; Hanson, J. C. In situ dehydration of yugawaralite Sample: at T = 581 K American Mineralogist, 2001, 86, 185-192 |
9002539 | CIF | Al2 Ca O19.69 Si6 | P 1 c 1 | 6.75075; 14.0285; 10.0289 90; 111.216; 90 | 885.393 | Artioli, G.; Stahl, K.; Cruciani, G.; Gualtieri, A.; Hanson, J. C. In situ dehydration of yugawaralite Sample: at T = 454 K American Mineralogist, 2001, 86, 185-192 |
9002538 | CIF | Al2 Ca O20.29 Si6 | P 1 c 1 | 6.732; 14.0157; 10.0607 90; 111.189; 90 | 885.087 | Artioli, G.; Stahl, K.; Cruciani, G.; Gualtieri, A.; Hanson, J. C. In situ dehydration of yugawaralite Sample: at T = 315 K American Mineralogist, 2001, 86, 185-192 |
9001115 | CIF | Ca H4 Na2 O11 P2 | P 1 c 1 | 5.673; 8.48; 10.529 90; 106.13; 90 | 486.579 | Rouse, R. C.; Peacor, D. R.; Freed, R. L. Pyrophosphate groups in the structure of canaphite, CaNa2P2O7.4(H2O): The first occurrence of a condensed phosphate as a mineral American Mineralogist, 1988, 73, 168-171 |
9000979 | CIF | Cu4 H10 O12 S | P 1 c 1 | 6.045; 5.646; 14.337 90; 93.39; 90 | 488.467 | Hawthorne, F. C.; Groat, L. A. The crystal structure of wroewolfeite, a mineral with [Cu4(OH)6(SO4)(H2O)] sheets American Mineralogist, 1985, 70, 1050-1055 |
8107598 | CIF | C13 H8 Br2 N2 O S2 | P 1 c 1 | 13.405; 4.7716; 11.7303 90; 105.885; 90 | 721.66 | Al-Omary, Fatmah A. M.; Blacque, Olivier; Alanazi, Fahdah S.; Tiekink, Edward R. T.; El-Emam, Ali A. Crystal structure of 2-[(4-bromobenzyl)thio]-5-(5-bromothiophen-2-yl)-1,3,4-oxadiazole, C13H8Br2N2OS2 Zeitschrift für Kristallographie - New Crystal Structures, 2023, 238, 911-913 |
8107246 | CIF | C56 H107 K2 N11 O12 | P 1 c 1 | 18.7986; 8.3431; 22.4638 90; 100.554; 90 | 3463.6 | Wallach, Christoph; Klein, Wilhelm; Fässler, Thomas F. Crystal structure of (1,4,7,10,13,16-hexaoxacyclooctadecane-κ 6O6)potassium(2-methylphenylamino)ethyl-2-methylphenylamide ammoniate (1/3.5), [K(18-crown-6)](o-CH3C6H4)NH(CH2)2N(o-CH3C6H4) 3.5 NH3, C28H53.5KN5.5O6 Zeitschrift für Kristallographie - New Crystal Structures, 2022, 237, 897-901 |
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