Crystallography Open Database

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9012098 CIFB2 Ba4 Cl H0.44 O29 Si8 Ti0.56 V3.44P m m n :213.937; 12.122; 7.116
90; 90; 90
1202.21Matsubara, S.
The crystal structure of nagashimalite, Ba4(V(3+),Ti)4[(O,OH)2|Cl|Si8B2O27]
Mineralogical Journal, 1980, 10, 131-142
9012312 CIFAs Cu0.5 H16 O10 UP 42/n m c7.1; 7.1; 17.7
90; 90; 90
892.257Hanic, F.
The crystal structure of meta-zeunerite Cu(UO2)2(AsO4)2*8H2O
Czechoslovak Journal of Physics B, 1960, 10, 169-181
9012858 CIFBi2 Te3R 3 m :H4.417; 4.417; 29.84
90; 90; 120
504.178Atabaeva, E. Y.; Ickevich, E. S.; Mashkov, S. A.; Popova, S. V.; Vereshchagin, L. F.
The polymorphism of bismuth telluride under high pressures and temperatures
Fizika Tverdogo Tela, 1968, 10, 62-65
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
9012887 CIFAl2.752 Ca0.01 Fe0.03 H2 K0.727 Mg0.022 Na0.17 O12 Si3.128 Ti0.02C 1 2/c 15.1909; 9.0048; 20.117
90; 95.773; 90
935.56Tomita, K.; Shiraki, K.; Kawano, M.
Crystal structure of dehydroxylated 2M1 sericite and its relationship with mixed-layer mica/smectite Sample: unheated
Clay Science, 1998, 10, 423-441
9013007 CIFNiP 63/m m c2.622; 2.622; 4.321
90; 90; 120
25.726Weik, H.; Hemenger, P.
Existence of the hexagonal modification of nickel Locality: synthetic
Bulletin of the American Physical Society, 1965, 10, 1140-1140
9014180 CIFFe2 H2 O10 Pb V2C 1 2/m 19.294; 6.166; 7.713
90; 115.57; 90
398.717Krause, W.; Belendorff, K.; Bernhardt, H. J.; McCammon, C. A.; Effenberger, H.; Mikenda, W.
Crystal chemistry of the tsumcorite-group minerals. New data on ferrilotharmeyerite, tsumcorite, thometzekite, mounanaite, helmutwinklerite, and a redefinition of gartrellite
European Journal of Mineralogy, 1998, 10, 179-206
9014595 CIFCa2 O4 SiP b n m5.081; 11.224; 6.778
90; 90; 90
386.544Udagawa, S.; Urabe, K.; Natsume, M.; Yano, T.
Refinement of the crystal structure of gamma-Ca2SiO4
Cement and Concrete Research, 1980, 10, 139-144
9014818 CIFH8 O12 P2 Zn3P b n m5.0135; 10.6044; 18.2828
90; 90; 90
972.008Herschke, L.; Enkelmann, V.; Lieberwirth, I.; Wenger, G.
The role of hydrogen bonding in the crystal structures of zinc phosphate hydrates Note: alpha-hopeite
Chemistry - A European Journal, 2004, 10, 2795-2803
9014854 CIFAl0.66 Ca1.96 Fe0.12 Mg0.24 Na0.04 O7 Si1.3P -4 21 m7.738; 7.738; 5.045
90; 90; 90
302.078Mokeeva, V.; Makarov, E.
Isomorph in melilites: refining of crystal structure of akermanite and intermediate melilite
Geokhimiya, 1979, 10, 1541-1544
9014901 CIFC2 H30 Mg O18 S2R -3 :H9.2715; 9.2715; 21.1298
90; 90; 120
1572.99Genceli Guner, F. E.; Lutz, M.; Sakurai, T.; Spek, A. L.; Hondoh, T.
Crystallization and characterization of magnesium methanesulfonate hydrate Mg(CH3SO3)2*12H2O Note: T = 110 K
Crystal Growth & Design, 2010, 10, 4327-4333
9015080 CIFFe0.54 K Li Mn1.46 Na2 O24 Si8 Ti2C 1 2/c 116.41; 12.55; 10.03
90; 115.5; 90
1864.41Borisov, S. V.; Klevtsova, R. F.; Bakakin, V. V.; Belov, N. V.
The crystal structure of neptunite
Soviet Physics Crystallography, 1966, 10, 684-689
9015130 CIFH8 O12 S2 UP n m a14.674; 11.093; 5.688
90; 90; 90
925.885Kierkegaard, P.
The crystal structure of U(SO4)2*4H2O
Acta Chemica Scandinavica, 1956, 10, 599-616
9015368 CIFAl0.41 Ca1.5 Fe0.16 Mg0.39 Na0.5 O7 Si2P -4 21 m7.76; 7.76; 5.029
90; 90; 90
302.834Mokeeva, V.; Makarov, E.
Isomorph in melilites: refining of crystal structure of akermanite and intermediate melilite
Geokhimiya, 1979, 10, 1541-1544
9015402 CIFBa9 O112 Ti36.4 V19.6P 4/m10.126; 10.126; 41.41
90; 90; 90
4246.01Shi, N.; Ma, Z.; Liu, W.
Crystal structure determination of ankangite with one dimensional incommensurate modulation
Acta Petrologica et Mineralogica, 1991, 10, 233-245
9015412 CIFH8 O13 P2 Zn3P b n m5.0266; 10.606; 18.2946
90; 90; 90
975.324Herschke, L.; Enkelmann, V.; Lieberwirth, I.; Wenger, G.
The role of hydrogen bonding in the crystal structures of zinc phosphate hydrates Note: beta-hopeite
Chemistry - A European Journal, 2004, 10, 2795-2803
9016080 CIFBa0.295 O4 Ti1.3 V0.7I 4/m10.139; 10.139; 2.961
90; 90; 90
304.389Shi, N.; Ma, Z.; Liu, W.
Crystal structure determination of ankangite with one dimensional incommensurate modulation
Acta Petrologica et Mineralogica, 1991, 10, 233-245
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
9017768 CIFFe0.92 Mn0.08 O3 TiR -3 :H5.148; 5.148; 13.649
90; 90; 120
313.263Tschauner, O.; Ma, C.; Newville, M. G.; Lanzirotti, A.
Structure analysis of natural wangdaodeite - LiNbO3-type FeTiO3
Minerals, 2020, 10
9017769 CIFK Nb0.96 O7 Si2 Ti0.02 Zr0.01P 4 b m8.73885; 8.73885; 8.1277
90; 90; 90
620.692Sharygin, V. V.; Doroshkevich, A. G.; Seryotkin, Y. V.; Karmanov, N. S.; Belogub, E. V.; Moroz, T. N.; Nigmatulina, E. N.; Yelisseyev, A. P.; Vedenyapin, V. N.; Kupriyanov, I. N.
Rippite, K2(Nb,Ti)2(Si4O12)O(O,F), a new K-Nb-cyclosilicate from Chuktukon Carbonatite Massif, Chadobets Upland, Krasnoyarsk Territory, Russia
Minerals, 2020, 10
9017770 CIFCr N0.47P 63/m m c4.7853; 4.7853; 4.463
90; 90; 120
88.507Bindi, L.; Camara, F.; Gain, S. E. M.; Griffin, W. L.; Huang, J.; Saunders, M.; Toledo, V.
Kishonite, VH2, and oreillyite, Cr2N, two new minerals from the corundum xenocrysts of Mt Carmel, Northern Israel
Minerals, 2020, 10
9017771 CIFAl0.04 H2 V0.96F m -3 m4.268; 4.268; 4.268
90; 90; 90
77.745Bindi, L.; Camara, F.; Gain, S. E. M.; Griffin, W. L.; Huang, J.; Saunders, M.; Toledo, V.
Kishonite, VH2, and oreillyite, Cr2N, two new minerals from the corundum xenocrysts of Mt Carmel, Northern Israel
Minerals, 2020, 10
9017819 CIFBa3 O8 V2R -3 m :H5.7733; 5.7733; 21.339
90; 90; 120
615.961Mugavero, S. J.; Bharathy, M.; McAlum, J.; Loye, H. C.
Crystal growth of alkaline earth vanadates from hydroxide fluxes
Solid State Sciences, 2008, 10, 370-376
9017820 CIFBa5 H O13 V3P 63/m10.4589; 10.4589; 7.8476
90; 90; 120
743.429Mugavero, S. J.; Bharathy, M.; McAlum, J.; Loye, H. C.
Crystal growth of alkaline earth vanadates from hydroxide fluxes
Solid State Sciences, 2008, 10, 370-376
9017821 CIFH O13 Sr5 V3P 63/m10.057; 10.057; 7.4349
90; 90; 120
651.242Mugavero, S. J.; Bharathy, M.; McAlum, J.; Loye, H. C.
Crystal growth of alkaline earth vanadates from hydroxide fluxes
Solid State Sciences, 2008, 10, 370-376
9017822 CIFBa K O4 VP n m a7.802; 5.908; 10.376
90; 90; 90
478.274Mugavero, S. J.; Bharathy, M.; McAlum, J.; Loye, H. C.
Crystal growth of alkaline earth vanadates from hydroxide fluxes
Solid State Sciences, 2008, 10, 370-376

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