Crystallography Open Database

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Searching space group like 'C 1'

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9003507 CIFH2 Mg2 Na0.193 O6 Si1.333C 15.358; 9.281; 14.574
90; 97.08; 90
719.204Krivovichev, S. V.; Armbruster, T.; Organova, N. I.; Burns, P. C.; Seredkin, M. V.; Chukanov, N. V.
Incorporation of sodium into the chlorite structure: the crystal structure of glagolevite, Na(Mg,Al)6[Si3AlO10](OH,O)8
American Mineralogist, 2004, 89, 1138-1141
9005269 CIFO2 SiC 115.021; 8.6004; 16.4338
90; 91.512; 90
2122.29Graetsch, H.; Topalovic-Dierdorf I
29Si MAS NMR spectrum and superstructure of modulated tridymite L3-To(MX-1) Sample: superstructure
European Journal of Mineralogy, 1996, 8, 103-113
9005275 CIFAl0.768 Ca0.333 H2.38 K0.024 Na0.038 O8 Si2.232C 19.083; 17.738; 10.209
89.95; 124.58; 90
1354.23Yang, P.; Armbruster, T.
(010) disorder, partial Si,Al ordering, and Ca distribution in triclinic (C1) epistilbite Sample: 293 K
European Journal of Mineralogy, 1996, 8, 263-271
9005444 CIFCa5 H10 O22 Si6C 111.274; 7.344; 11.468
99.18; 97.19; 90.02
929.775Merlino, S.; Bonaccorsi, E.; Armbruster, T.
The real structure of clinotobermorite and tobermorite 9 A: OD character, polytypes, and structural relationships Sample: MDO2 data collected at Pisa
European Journal of Mineralogy, 2000, 12, 411-429
9005445 CIFCa5 H10 O22 Si6C 111.273; 7.35; 11.498
99.17; 97.19; 89.97
932.93Merlino, S.; Bonaccorsi, E.; Armbruster, T.
The real structure of clinotobermorite and tobermorite 9 A: OD character, polytypes, and structural relationships Sample: MDO2 data collected at Bern
European Journal of Mineralogy, 2000, 12, 411-429
9009230 CIFAl2 H4 O9 Si2C 15.1554; 8.9448; 7.4048
91.7; 104.862; 89.822
329.893Bish, D. L.; Von Dreele, R. B.
Rietveld refinement of non-hydrogen atomic positions in kaolinite Note: clay
Clays and Clay Minerals, 1989, 37, 289-296
9009234 CIFAl2 H4 O9 Si2C 15.1535; 8.9419; 7.3906
91.926; 105.046; 89.797
328.708Bish, D. L.
Rietveld refinement of the kaolinite structure at 1.5 K Note: sample at T = 1.5 K
Clays and Clay Minerals, 1993, 41, 738-744
9009338 CIFAl4 H2 Li Na O12 Si2C 15.123; 8.872; 19.307
89.97; 95.15; 89.96
873.985Slade, P. G.; Schultz, P. K.; Dean, C.
Refinement of the ephesite structure in C1 symmetry Note: polytype 2M1
Neues Jahrbuch fur Mineralogie, Monatshefte, 1987, 1987, 275-287
9009525 CIFFe7.45 H10 Mg3.55 O10 S6C 15.37; 15.65; 10.72
90; 95; 90
897.486Organova, N. I.; Drits, V. A.; Dmitrik, A. L.
Structural study of tochilinite. Part I. The isometric variety Note: M-site reported bond lengths are inconsistent with reported structure
Soviet Physics Crystallography, 1973, 17, 667-671
9011523 CIFCa4 Fe0.41 H2 O28 Sc1.52 Si8 Sn2.07C 110.028; 8.408; 13.339
90.01; 109.1; 90
1062.77Ferraris, G.; Gula, A.; Ivaldi, G.; Nespolo, M.; Raade, G.
Crystal structure of kristiansenite: a case of class IIB twinning by metric merohedry Locality: amazonite pegmatite, Heftetjern, Tordal, Telemark, Norway
Zeitschrift fur Kristallographie, 2001, 216, 442-448
9012886 CIFAl2.726 Ca0.011 Fe0.03 K0.776 Mg0.02 Na0.181 O11 Si3.15 Ti0.02C 15.2234; 9.179; 20.2353
90; 95.8338; 90
965.169Tomita, K.; Shiraki, K.; Kawano, M.
Crystal structure of dehydroxylated 2M1 sericite and its relationship with mixed-layer mica/smectite Sample: heated
Clay Science, 1998, 10, 423-441
9015989 CIFAl2 H4 Mg2 O9 SiC 15.299; 9.181; 14.05
90.06; 90.3; 90
683.524Zheng, H.; Bailey, S. W.
Refinement of an amesite-2H1 polytype from Postmasburg, South Africa Note: polytype 2H1
Clays and Clay Minerals, 1997, 45, 301-310
9017412 CIFC Ca O3C 112.353; 7.102; 25.733
90.46; 99.78; 90.24
2224.67Demichelis, R.; Raiteri, P.; Gale, J. D.; Dovesi, R.
The multiple structures of vaterite
Crystal Growth & Design, 2013, 13, 2247-2251
9017413 CIFC Ca O3C 112.358; 7.106; 25.741
90.43; 99.88; 90.29
2226.84Demichelis, R.; Raiteri, P.; Gale, J. D.; Dovesi, R.
The multiple structures of vaterite
Crystal Growth & Design, 2013, 13, 2247-2251
9017680 CIFAl Cu2 H9.34 O10.03 S0.33 Sb0.33C 112.441; 2.913; 10.727
93.77; 95.57; 92.32
385.65Mills, S. J.; Christy, A. G.; Schnyder, C.; Favreau, G.; Price, J. R.
The crystal structure of camerolaite and structural variation in the cyanotrichite family of merotypes Note: C1 is not the preferred setting
Mineralogical Magazine, 2014, 78, 1527-1552
9017766 CIFAl1.992 Ca0.012 Fe0.016 H4 Mg0.008 O9 Si1.956 Ti0.018C 15.1546; 8.9425; 7.4033
91.704; 104.735; 89.852
329.882Lee, S.; Xu, H.
Using complementary methods of synchrotron radiation powder diffraction and pair distribution functions to refine crystal structures with high quality parameters - A review Note: X-ray data, chemistry data provided by author
Minerals, 2020, 10
9017767 CIFAl1.992 Ca0.012 Fe0.016 H4 Mg0.008 O9 Si1.956 Ti0.018C 15.1528; 8.9415; 7.3985
91.715; 104.756; 89.866
329.482Lee, S.; Xu, H.
Using complementary methods of synchrotron radiation powder diffraction and pair distribution functions to refine crystal structures with high quality parameters - A review Note: Neutron data, chemistry data provided by author
Minerals, 2020, 10
9017877 CIFCa0.81 Fe0.1 H8 Mn1.9 O17 Si4 Sr1.19C 19.1386; 6.2566; 12.0043
90.019; 91.643; 89.9
686.081Yang, H.; Gu, X.; Cairncross, B.; Downs, R. T.; Evans, S. H.
Taniajacoite and strontioruizite, two new minerals isostructural with ruizite from the N'Chwaning III mine, Kalahari manganese field, South Africa
The Canadian Mineralogist, 2021, 59, 431-444

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