Crystallography Open Database

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9013967 CIFCa3 Fe2.16 Hf2 O12 Si0.99I a -3 d12.5898; 12.5898; 12.5898
90; 90; 90
1995.52Whittle, K. R.; Lumpkin, G. R.; Berry, F. J.; Oates, G.; Smith, K. L.; Yudintsev, S.; Zaluzec, N. J.
The structure and ordering of zirconium and hafnium containing garnets studied by electron channelling, neutron diffraction and Mossbauer spectroscopy Locality: synthetic
Journal of Solid State Chemistry, 2007, 180, 785-791
9013968 CIFC0.38 H6.92 As0.3 Mg6.68 O18.62 P3.32P 63 m c12.467; 12.467; 5.0437
90; 90; 120
678.897Raade, G.; Romming, C.; Medenbach, O.
Carbonate-substituted phosphoellenbergerite from Modum, Norway: description and crystal structure
Mineralogy and Petrology, 1998, 62, 89-101
9013969 CIFC3 K4 O11 UC 1 2/c 110.247; 9.202; 12.226
90; 95.11; 90
1148.24Anderson, A.; Chieh, C.; Irish, D. E.; Tong, J. P. K.
An X-ray crystallographic, Raman, and infrared spectral study of crystalline potassium uranyl carbonate, K4UO2(CO3)3
Canadian Journal of Chemistry, 1980, 58, 1651-1658
9013970 CIFMn SiP 21 34.5559; 4.5559; 4.5559
90; 90; 90
94.563Jorgensen, J. E.; Rasmussen, S. E.
Refinement of the structure of MnSi by powder diffraction
Powder Diffraction, 1991, 6, 194-195
9013971 CIFMn SiP 21 34.55613; 4.55613; 4.55613
90; 90; 90
94.578Jorgensen, J. E.; Rasmussen, S. E.
Refinement of the structure of MnSi by powder diffraction
Powder Diffraction, 1991, 6, 194-195
9013972 CIFMn SiP 21 34.55643; 4.55643; 4.55643
90; 90; 90
94.596Jorgensen, J. E.; Rasmussen, S. E.
Refinement of the structure of MnSi by powder diffraction
Powder Diffraction, 1991, 6, 194-195
9013973 CIFCl2 Hg7 O3P b m a11.777; 13.891; 6.46
90; 90; 90
1056.82Roberts, A. C.; Grice, J. D.; Gault, R. A.; Criddle, A. J.; Erd, R. C.
Hanawaltite, Hg1+6Hg2+[Cl,(OH)]2O3 - A new mineral from the Clear Creek claim, San Benito County, California: Description and crystal structure
Powder Diffraction, 1996, 11, 45-50
9013974 CIFCa2.5 H11 O12.5 Si3B 1 1 b6.735; 7.425; 27.987
90; 90; 123.25
1170.43Bonaccorsi, E.; Merlino, S.
The crystal of tobermorite 14 A (plombierite) a C­S­H phase
Journal of the American Ceramic Society, 2005, 88, 505-512
9013975 CIFMn Ni6 O8F m -3 m8.32; 8.32; 8.32
90; 90; 90
575.93Taguchi, H.
Relationship between crystal structure and electrical properties of murdochite-type Ni6+2xMn1-xO8 Sample Number: x = 0.0
Solid State Communications, 1998, 108, 635-639
9013976 CIFMn0.8 Ni6.4 O8F m -3 m8.3271; 8.3271; 8.3271
90; 90; 90
577.406Taguchi, H.
Relationship between crystal structure and electrical properties of murdochite-type Ni6+2xMn1-xO8 Sample Number: x = 0.2
Solid State Communications, 1998, 108, 635-639
9013977 CIFMn0.6 Ni6.8 O8F m -3 m8.3368; 8.3368; 8.3368
90; 90; 90
579.426Taguchi, H.
Relationship between crystal structure and electrical properties of murdochite-type Ni6+2xMn1-xO8 Sample Number: x = 0.4
Solid State Communications, 1998, 108, 635-639
9013978 CIFMn0.4 Ni7.2 O8F m -3 m8.343; 8.343; 8.343
90; 90; 90
580.72Taguchi, H.
Relationship between crystal structure and electrical properties of murdochite-type Ni6+2xMn1-xO8 Sample Number: x = 0.6
Solid State Communications, 1998, 108, 635-639
9013979 CIFMn0.2 Ni7.6 O8F m -3 m8.3495; 8.3495; 8.3495
90; 90; 90
582.078Taguchi, H.
Relationship between crystal structure and electrical properties of murdochite-type Ni6+2xMn1-xO8 Sample Number: x = 0.8
Solid State Communications, 1998, 108, 635-639
9013980 CIFNi0.995 OF m -3 m8.3532; 8.3532; 8.3532
90; 90; 90
582.852Taguchi, H.
Relationship between crystal structure and electrical properties of murdochite-type Ni6+2xMn1-xO8 Sample Number: x = 1.0
Solid State Communications, 1998, 108, 635-639
9013981 CIFCa3.3 Ce0.3 F0.667 H0.333 Na0.3 O12.333 P3 Sr1.1P 639.485; 9.485; 7
90; 90; 120
545.385Rastsvetaeva, R. K.; Khomyakov, A. P.
Structural features of a new naturally occurring representative of the fluorapatite-deloneite series
Crystallography Reports, 1996, 41, 789-792
9013982 CIFAl2 Be2 Cs0.75 H6 Li Na0.226 O18.285 Si6R -3 c :H15.955; 15.955; 27.81
90; 90; 120
6130.91Yakubivich, O. V.; Pekov, I. V.; Steele, I. M.; Massa, W.; Chukanov, N. V.
Alkali metals in beryl and their role in the formation of derivative structural motifs: Comparative crystal chemistry of vorobyevite and pezzottaite Locality: Sakavalana granitic pegmatite, Antsirabe, Fianarantsoa Province, Madagascar Note: T = 100 K
Crystallography Reports, 2009, 54, 399-412
9013983 CIFAl2 Be2.34 Cs0.079 H2 Li0.66 Na0.419 O18.19 Si6P 6/m c c9.2101; 9.2101; 9.2179
90; 90; 120
677.16Yakubivich, O. V.; Pekov, I. V.; Steele, I. M.; Massa, W.; Chukanov, N. V.
Alkali metals in beryl and their role in the formation of derivative structural motifs: Comparative crystal chemistry of vorobyevite and pezzottaite Locality: Lipovka pegmatite field, Rezh District, Central Urals, Urals Region, Russia Note: T = 100 K Note: variety vorobyevite Note: Coordinates of O1 and O2 corrected by Yakubivich
Crystallography Reports, 2009, 54, 399-412
9013984 CIFCa3 H6 O10 Si2P 116.33; 5.6389; 11.685
90.08; 126.446; 89.95
865.546Rastsvetaeva, R. K.; Chukanov, N. V.; Zadov, A. E.
Refined structure of afwillite from the northern Baikal region
Crystallography Reports, 2009, 54, 418-422
9013985 CIFAl0.26 Be2 Ca Fe0.97 H8.5 Mg1.61 Mn0.18 O17 P3C 1 2/c 115.876; 11.86; 6.607
90; 95.49; 90
1238.32Rastsvetaeva, R. K.; Rozenberg, K. A.; Chukanov, N. V.; Mockel, S.
The crystal structure of an iron-rich variety of zanazziite belonging to heteropolyhedral framework roscherite-group beryllophosphates
Crystallography Reports, 2009, 54, 568-571
9013986 CIFCa10.381 O28 P7 Th0.119R 3 c :H10.4372; 10.4372; 37.4876
90; 90; 120
3536.6Orlova, A. I.; Khainakov, S. A.; Loginova, E. E.; Oleneva, T. A.; Garcia Granda, S.; Kurazhkovskaya, V. S.
Calcium thorium phosphate (whitlockite-type mineral). Synthesis and structure refinement
Crystallography Reports, 2009, 54, 591-597

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