Crystallography Open Database

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9017887 CIFCa4 H16 O16 Si2C 1 2/m 116.907; 3.6528; 13.068
90; 117.25; 90
717.483Zubkova, N. V.; Pekov, I. V.; Pushcharovsky, D. Y.; Zadov, A. E.; Chukanov, N. V.
The crystal structure of aklimaite, Ca4[Si2O5(OH)2](OH)4*5H2O
Zeitschrift fur Kristallographie, 2012, 227, 452-455
9017888 CIFAs0.745 Pb0.98 S4 Sb1.275P 1 21/n 17.997; 19.517; 8.634
90; 91.061; 90
1347.34Makovicky, E.; Topa, D.
Twinnite, Pb0.8Tl0.1Sb1.3As0.8S4, the OD character and the question of its polytypism
Zeitschrift fur Kristallographie, 2012, 227, 468-475
9017889 CIFO2C 1 2/m 17.97; 5.633; 3.711
90; 116.3; 90
149.359Datchi, F.; Weck, G.
X-ray crystallography of simple molecular solids up to megabar pressures: application to solid oxygen and carbon dioxide
Zeitschrift fur Kristallographie, 2014, 229, 135-157
9017890 CIFAg10.96 Te7P -613.454; 13.454; 8.459
90; 90; 120
1326.03Bindi, L.; Keutsch, F. N.
Old defined minerals with complex, still unresolved structures: the case of stutzite, Ag5-xTe3 Note: type sample
Zeitschrift fur Kristallographie, 2018, 233, 247-253
9017891 CIFAl F Fe0.02 H34 Mg0.98 O25 S2P -16.6749; 6.773; 14.9076
79.604; 80.163; 62.475
584.9Mauro, D.; Biagioni, C.; Pasero, M.; Skogby, H.
Crystal-chemistry of sulfates From the Apuan Alps (Tuscany, Italy). III. Mg-rich sulfate assemblages from the Fornovolasco mining complex
Atti della Societa Toscana di Scienze Naturali, Memorie, Serie A, 2019, 126, 33-44
9017892 CIFFe0.17 H14 Mg0.83 O11 SP 21 21 2111.8664; 12.015; 6.8598
90; 90; 90
978.035Mauro, D.; Biagioni, C.; Pasero, M.; Skogby, H.
Crystal-chemistry of sulfates From the Apuan Alps (Tuscany, Italy). III. Mg-rich sulfate assemblages from the Fornovolasco mining complex
Atti della Societa Toscana di Scienze Naturali, Memorie, Serie A, 2019, 126, 33-44
9017893 CIFAs1.768 Fe2.686 H10.8 Na1.48 O20.36 P2 W0.664I m m a25.77; 7.325; 10.522
90; 90; 90
1986.19Grey, I. E.; Mumme, G.; Kampf, A. R.; MacRae, C. M.; Wilson, N. C.
Natrowalentaite, a new mineral from the Griffins Find gold deposit, Western Australia Note: T = 100 K
Australian Journal of Mineralogy, 2019, 20, 7-15
9017894 CIFH2 Mg O5 SC 1 2/c 16.891; 7.624; 7.549
90; 116.25; 90
355.701Coing-Boyat J
Remarques sur la structure commune de MgSO4*H2O et de CoSO4*H2O
Bulletin de la Societe Chimique de France, 1971, 1971, 3863-3865
9017895 CIFFe2 O12 S3R -3 :H8.229; 8.229; 22.177
90; 90; 120
1300.55Masse, R.; Guitel, J. C.; Perret, R.
Structure crystalline de la variete rhomboedrique du sulfate ferrique Fe2(SO4)3
Bulletin de la Societe Francaise de Mineralogie et de Cristallographie, 1973, 96, 346-349
9017897 CIFFe0.038 Mg1.962 O4 SiP m m a5.802; 2.905; 8.411
90; 90; 90
141.766Tomioka, N.; Bindi, L.; Okuchi, T.; Miyahara, M.; Iitaka, T.; Li, Z.; Kawatsu, T.; Xie, X.; Purevjav, N.; Tani, R.; Kodama, Y.
Poirierite, a dense metastable polymorph of magnesium iron silicate in shocked meteorites
Communications Earth & Environment, 2021, 2
9017898 CIFCo H2 O5 SC 1 2/c 16.963; 7.58; 7.47
90; 116.358; 90
353.275Le Fur, Y.; Coing-Boyat J; Bassi, G.
Structure des sulfates monohydrates, monocliniques, des metaux de transition, MSO4*H2O (M = Mn, Fe, Co, Ni et Zn)
Comptes Rendus de l'Academie des Sciences Paris, 1966, 632-635
9017899 CIFCo H2 O5 SC 1 2/c 16.963; 7.58; 7.47
90; 116.358; 90
353.275Le Fur, Y.; Coing-Boyat J; Bassi, G.
Structure des sulfates monohydrates, monocliniques, des metaux de transition, MSO4*H2O (M = Mn, Fe, Co, Ni et Zn)
Comptes Rendus de l'Academie des Sciences Paris, 1966, 632-635
9017900 CIFH2 Ni O5 SC 1 2/c 16.827; 7.595; 7.4
90; 116.892; 90
342.205Le Fur, Y.; Coing-Boyat J; Bassi, G.
Structure des sulfates monohydrates, monocliniques, des metaux de transition, MSO4*H2O (M = Mn, Fe, Co, Ni et Zn)
Comptes Rendus de l'Academie des Sciences Paris, 1966, 632-635
9017901 CIFH2 O5 S ZnC 1 2/c 16.93; 7.584; 7.503
90; 116.233; 90
353.721Le Fur, Y.; Coing-Boyat J; Bassi, G.
Structure des sulfates monohydrates, monocliniques, des metaux de transition, MSO4*H2O (M = Mn, Fe, Co, Ni et Zn)
Comptes Rendus de l'Academie des Sciences Paris, 1966, 632-635
9017902 CIFFe H2 O5 SC 1 2/c 17.075; 7.541; 7.6
90; 116.183; 90
363.873Le Fur, Y.; Coing-Boyat J; Bassi, G.
Structure des sulfates monohydrates, monocliniques, des metaux de transition, MSO4*H2O (M = Mn, Fe, Co, Ni et Zn)
Comptes Rendus de l'Academie des Sciences Paris, 1966, 632-635
9017903 CIFH2 Mn O5 SC 1 2/c 17.124; 7.663; 7.764
90; 115.85; 90
381.436Le Fur, Y.; Coing-Boyat J; Bassi, G.
Structure des sulfates monohydrates, monocliniques, des metaux de transition, MSO4*H2O (M = Mn, Fe, Co, Ni et Zn)
Comptes Rendus de l'Academie des Sciences Paris, 1966, 632-635
9017904 CIFFe H14.1 K4 Na10 O50.3 Si16C m c m28.866; 10.707; 17.425
90; 90; 90
5385.51Panikorovskii, T. L.; Pekov, I. V.; Krzhizhanovskaya, M. G.; Yakovenchuk, V. N.; Britven, S. N.; Gurzhiy, V. V.; Bocharov, V. N.; Yapaskurt, V. O.; Krivovichev, S. V.
Tiettaite K4Na12Fe3+Si16O41(OH)4·2H2O: A mineral with a novel type of microporous heteropolyhedral framework
Crystallography Reports, 2021, 66, 76-85
9017905 CIFC4 H6 N4 O3P 1 21/c 18.0004; 5.1487; 14.7501
90; 92.908; 90
606.799Xu, B.; Sung, C.; Han, B.
Crystal structure characterization of natural allantoin from edible lichen Umbilicaria esculenta Note: T = 232 K
Crystals, 2011, 1, 128-135
9017906 CIFAs5.79 Fe0.15 Ni14.25 Sb0.06P 63 c m6.7922; 6.7922; 12.4975
90; 90; 120
499.315Bindi, L.; Tredoux, M.; Zaccarini, F.; Miller, D. E.; Garuti, G.
Non-stoichiometric nickel arsenides in nature: The structure of orcelite, Ni5-xAs2 (x = 0.25), from the Bon Accord oxide body, South Africa
Journal of Alloys and Compounds, 2014, 601, 175-178
9017907 CIFC19 O8P 21 21 219.837; 10.517; 18.7594
90; 90; 90
1940.77Lisgarte, J. N.; Potter, B.; Palmer, R. A.; Chimanuka, B.; Aymami, J.
Structure, absolute configuration, and conformation of the antimalarial drug artesunate
Journal of Chemical Crystallography, 2002, 32, 43-48

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