Crystallography Open Database

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1010858 CIFB Na O26.85; 6.85; 10.95
90; 90; 120
445Cole, S S; Scholes, S R; Amberg, C R
The System R~2~ O - B~2~ O~3~, II. Properties of Anhydrous and Hydrated Metaborates of Sodium and Potassium
Journal of the American Ceramic Society, 1935, 18, 58-61
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
1527001 CIFAl0.5 Ca4.9 H10.7 O22 Si5.5B 1 1 m6.7296; 7.355; 22.61
90; 90; 123.242
935.981Yamazaki, S.; Toraya, H.
Determination of positions of zeolitic calcium atoms and water molecules in hydrothermally formed aluminium-substituted tobermorite-1.1 nm using synchrotron radiation powder diffraction data
Journal of the American Ceramic Society, 2001, 84, 2685-2690
1530328 CIFAl4 O22 Si8C -15.2; 9.15; 9.45
92; 98.83; 89.03
444.001MacKenzie, K.J.D.; Brown, I.W.M.; Meinhold, R.H.; Bowden, M.E.
Thermal reactions of pyrophyllite studied by high-resolution solid-state 27Al and 29Si nuclear magnetic resonance spectroscopy
Journal of the American Ceramic Society, 1985, 68, 266-272
1526119 CIFEr2 Mn0.667 Mo1.333 O7C 1 2/c 112.781; 7.378; 11.643
90; 100.53; 90
1079.43Nakano, H.; Kamegashira, N.
Microstructure of a complex oxide, Er2 Mn2/3 Mo4/3 O7, with a pyrochlore-related structure
Journal of the American Ceramic Society, 2001, 84, 1374-1378
1511241 CIFB N0.975 Nb2C m c m3.172; 17.841; 3.114
90; 90; 90
176.226Klesnar, H.; Fischer, P.; Rogl, P.
Neutron powder diffraction of Nb2BN1-x
Journal of the American Ceramic Society, 1988, 71, 450-452
1528252 CIFGa0.091 S Zn0.864F -4 3 m5.39; 5.39; 5.39
90; 90; 90
156.591Zhang, J.; Chen, W.W.; Ardell, A.J.; Dunn, B.
Solid phase equilibria in the Zn S - Ga2 S3 system
Journal of the American Ceramic Society, 1990, 73, 1544-1547
9012588 CIFCF d -3 m :13.5667; 3.5667; 3.5667
90; 90; 90
45.373Ownby, P. D.; Yang, X.; Liu, J.
Calculated X-ray diffraction data for diamond polytypes Note: cubic, 3C structure Note: theoretically calculated structure values
Journal of the American Ceramic Society, 1992, 75, 1876-1883
1514114 CIFMn OF m -3 m4.442; 4.442; 4.442
90; 90; 90
87.647Barrett, C. A.; Evans, E. B.
Solid solubility and lattice parameter of Ni O - Mn O
Journal of the American Ceramic Society, 1964, 47, 533-533
1521753 CIFO2 ZrF m -3 m5.09; 5.09; 5.09
90; 90; 90
131.872Katz, G.
X-ray diffraction powder pattern of metastable cubic Zr O2
Journal of the American Ceramic Society, 1971, 54, 531-531
1528640 CIFO2 Th0.185 Y0.07 Zr0.745F m -3 m5.2097; 5.2097; 5.2097
90; 90; 90
141.396Kim Daejoon
Lattice parameters, ionic conductivities, and solubility limits in fluorite-structure M O2 oxide (M = Hf(4+), Zr(4+), Ce(4+), Th(4+), U(4+)) solid solutions
Journal of the American Ceramic Society, 1989, 72, 1415-1421
1528641 CIFO2 Th0.17 Y0.02 Zr0.81F m -3 m5.1979; 5.1979; 5.1979
90; 90; 90
140.438Kim Daejoon
Lattice parameters, ionic conductivities, and solubility limits in fluorite-structure M O2 oxide (M = Hf(4+), Zr(4+), Ce(4+), Th(4+), U(4+)) solid solutions
Journal of the American Ceramic Society, 1989, 72, 1415-1421
1528642 CIFO2 Th0.086 Y0.088 Zr0.826F m -3 m5.164; 5.164; 5.164
90; 90; 90
137.708Kim Daejoon
Lattice parameters, ionic conductivities, and solubility limits in fluorite-structure M O2 oxide (M = Hf(4+), Zr(4+), Ce(4+), Th(4+), U(4+)) solid solutions
Journal of the American Ceramic Society, 1989, 72, 1415-1421
1528643 CIFO2 Th0.05 Y0.06 Zr0.89F m -3 m5.15; 5.15; 5.15
90; 90; 90
136.591Kim Daejoon
Lattice parameters, ionic conductivities, and solubility limits in fluorite-structure M O2 oxide (M = Hf(4+), Zr(4+), Ce(4+), Th(4+), U(4+)) solid solutions
Journal of the American Ceramic Society, 1989, 72, 1415-1421
1528644 CIFO2 Y0.18 Zr0.82F m -3 m5.145; 5.145; 5.145
90; 90; 90
136.193Kim Daejoon
Lattice parameters, ionic conductivities, and solubility limits in fluorite-structure M O2 oxide (M = Hf(4+), Zr(4+), Ce(4+), Th(4+), U(4+)) solid solutions
Journal of the American Ceramic Society, 1989, 72, 1415-1421
1537719 CIFN ThF m -3 m5.144; 5.144; 5.144
90; 90; 90
136.114Chiotti, B.
Experimental refractory bodies of high-melting nitrides, carbides, and uranium dioxide
Journal of the American Ceramic Society, 1952, 35, 123-123
1540575 CIF
HKL
Ca Gd2 Mo4 O16I 41/a :25.22344; 5.22344; 11.50019
90; 90; 90
313.77Chang Sung Lim; Victor Atuchin; Aleksandr Aleksandrovsky; Maxim Molokeev; Aleksandr Oreshonkov
Microwave sol-gel synthesis of CaGd2(MoO4)4:Er3+/Yb3+ phosphors and their upconversion photoluminescence properties
Journal of the American Ceramic Society, 2015, 98, 3223-3230
1540576 CIF
HKL
Ca Er0.2 Gd1.8 Mo4 O16I 41/a :25.21601; 5.21601; 11.4875
90; 90; 90
312.54Chang Sung Lim; Victor Atuchin; Aleksandr Aleksandrovsky; Maxim Molokeev; Aleksandr Oreshonkov
Microwave sol-gel synthesis of CaGd2(MoO4)4:Er3+/Yb3+ phosphors and their upconversion photoluminescence properties
Journal of the American Ceramic Society, 2015, 98, 3223-3230
1540577 CIF
HKL
Ca Er0.1 Gd1.7 Mo4 O16 Yb0.2I 41/a :25.21412; 5.21412; 11.48095
90; 90; 90
312.13Chang Sung Lim; Victor Atuchin; Aleksandr Aleksandrovsky; Maxim Molokeev; Aleksandr Oreshonkov
Microwave sol-gel synthesis of CaGd2(MoO4)4:Er3+/Yb3+ phosphors and their upconversion photoluminescence properties
Journal of the American Ceramic Society, 2015, 98, 3223-3230
1540578 CIF
HKL
Ca Er0.05 Gd1.5 Mo4 O16 Yb0.45I 41/a :25.21103; 5.21103; 11.47435
90; 90; 90
311.58Chang Sung Lim; Victor Atuchin; Aleksandr Aleksandrovsky; Maxim Molokeev; Aleksandr Oreshonkov
Microwave sol-gel synthesis of CaGd2(MoO4)4:Er3+/Yb3+ phosphors and their upconversion photoluminescence properties
Journal of the American Ceramic Society, 2015, 98, 3223-3230

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