Crystallography Open Database

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Searching space group like 'F d -3 m'

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1544849 CIFH0.03 Mg1.97 O4 SiF d -3 m7.996; 7.996; 7.996
90; 90; 90
511.2Kudoh, Y.; Kuribayashi, T.; Mizobata, H.; Ohtani, E.; Sasaki, S.; Tanaka, M.
Pressure dependence of u parameter in ringwoodite up to 7.9 GPa Sample: 5.0 GPa
Journal of Mineralogical and Petrological Sciences, 2007, 102, 8-11
1544850 CIFH0.03 Mg1.97 O4 SiF d -3 m7.962; 7.962; 7.962
90; 90; 90
504.74Kudoh, Y.; Kuribayashi, T.; Mizobata, H.; Ohtani, E.; Sasaki, S.; Tanaka, M.
Pressure dependence of u parameter in ringwoodite up to 7.9 GPa Sample: 7.9 GPa
Journal of Mineralogical and Petrological Sciences, 2007, 102, 8-11
1545032 CIFD0.34 Fe0.17 Mg1.72 O4 Si0.97F d -3 m8.09657; 8.09657; 8.09657
90; 90; 90
530.766Purevjav, N.; Okuchi, T.; Tomioka, N.; Abe, J.; Harjo, S.
Hydrogen site analysis of hydrous ringwoodite in mantle transition zone by pulsed neutron diffraction
Geophysical Research Letters, 2014, 41, 6718-6724
1545061 CIFBi3.47 Na0.39 O7F d -3 m10.943; 10.943; 10.943
90; 90; 90
1310.4Kinomura, N.; Hosoda, M.; Kumada, N.; Kojima, H.
Preparation of pyrochlore type Na0.39Bi3.47O7 containing Bi5+ by low temperature hydrothermal reaction
Journal of the Ceramic Society of Japan, 1993, 101, 966-968
1545121 CIFAl2.4 Co0.4 O4F d -3 m7.975; 7.975; 7.975
90; 90; 90
507.215Yamaguchi, G.; Miyabe, H.
Crystal structure of a defect spinel, CoO*3Al2O3, constituting cobalt blue pigment
Yogyo-Kyokai-Shi, 1975, 83, 87-89
1545154 CIFH0.03 Mg1.97 O4 SiF d -3 m7.993; 7.993; 7.993
90; 90; 90
510.7Kudoh, Y.; Kuribayashi, T.; Mizobata, H.; Ohtani, E.; Sasaki, S.; Tanaka, M.
Pressure dependence of u parameter in ringwoodite up to 7.9 GPa Sample: 6.2 GPa
Journal of Mineralogical and Petrological Sciences, 2007, 102, 8-11
1545158 CIFO4 Ta0.15 Ti0.85 Zn1.925F d -3 m8.4935; 8.4935; 8.4935
90; 90; 90
612.7Takai, S.; Okada, H.; Ohoyama, K.; Esaka, T.
Defect structure of Ta- and Al-doped Zn2TiO4 showing oxide ion conduction via cation vacancy : Sample at 500 K
Journal of the Ceramic Society of Japan, 2008, 116, 525-529
1545159 CIFO4 Ta0.15 Ti0.85 Zn1.925F d -3 m8.4902; 8.4902; 8.4902
90; 90; 90
612Takai, S.; Okada, H.; Ohoyama, K.; Esaka, T.
Defect structure of Ta- and Al-doped Zn2TiO4 showing oxide ion conduction via cation vacancy :Sample at 400 K
Journal of the Ceramic Society of Japan, 2008, 116, 525-529
1545190 CIFEu2 O7 Zr2F d -3 m10.65; 10.65; 10.65
90; 90; 90
1207.9Hagiwara, T.; Nomura, K.; Kageyama, H.
Crystal structure analysis of Ln2Zr2O7 (Ln = Eu and La) with a pyrochlore composition by high-temperature powder X-ray diffraction Note: Eu2Zr2O7 at 1173 K
Journal of the Ceramic Society of Japan, 2017, 125, 65-70
1545191 CIFEu2 O7 Zr2F d -3 m10.546; 10.546; 10.546
90; 90; 90
1172.91Hagiwara, T.; Nomura, K.; Kageyama, H.
Crystal structure analysis of Ln2Zr2O7 (Ln = Eu and La) with a pyrochlore composition by high-temperature powder X-ray diffraction Note: Eu2Zr2O7 at 298 K
Journal of the Ceramic Society of Japan, 2017, 125, 65-70
1545192 CIFLa2 O7 Zr2F d -3 m10.816; 10.816; 10.816
90; 90; 90
1265.3Hagiwara, T.; Nomura, K.; Kageyama, H.
Crystal structure analysis of Ln2Zr2O7 (Ln = Eu and La) with a pyrochlore composition by high-temperature powder X-ray diffraction Note: La2Zr2O7 at 298 K
Journal of the Ceramic Society of Japan, 2017, 125, 65-70
1545193 CIFLa2 O7 Zr2F d -3 m10.904; 10.904; 10.904
90; 90; 90
1296.5Hagiwara, T.; Nomura, K.; Kageyama, H.
Crystal structure analysis of Ln2Zr2O7 (Ln = Eu and La) with a pyrochlore composition by high-temperature powder X-ray diffraction Note: La2Zr2O7 at 1173 K
Journal of the Ceramic Society of Japan, 2017, 125, 65-70
1546834 CIFC12 H6 Hf3 O16F d -3 m34.9801; 34.9801; 34.9801
90; 90; 90
42802Nguyen, Linh H. T.; Nguyen, The T.; Nguyen, Ha L.; Doan, Tan L. H.; Tran, Phuong Hoang
A new superacid hafnium-based metal–organic framework as a highly active heterogeneous catalyst for the synthesis of benzoxazoles under solvent-free conditions
Catalysis Science & Technology, 2017, 7, 4346-4350
1546835 CIFC9 H3 Hf3 O13 S6F d -3 m34.901; 34.901; 34.901
90; 90; 90
42512Nguyen, Linh H. T.; Nguyen, The T.; Nguyen, Ha L.; Doan, Tan L. H.; Tran, Phuong Hoang
A new superacid hafnium-based metal–organic framework as a highly active heterogeneous catalyst for the synthesis of benzoxazoles under solvent-free conditions
Catalysis Science & Technology, 2017, 7, 4346-4350
1547849 CIFAg0.93 H1.88 O3.91 TaF d -3 m10.45; 10.45; 10.45
90; 90; 90
1141.17Withanage, I.; Kumada, N.; Takei, T.; Yanagida, S.; Kuroiwa, Y.; Moriyoshi, C.
Synthesis and crystal structure of pyrochlore-type silver niobate and tantalate
Journal of the Ceramic Society of Japan, 2017, 125, 776-778
1549365 CIFO7 Ti2 Yb2F d -3 m10.133798; 10.133798; 10.133798
90; 90; 90
1040.68Uno, W.; Fujii, K.; Niwa, E.; Torii, S.; Miao, P.; Kamiyama, T.; Yashima, M.
Experimental visualization of oxide-ion diffusion paths in pyrochlore-type Yb2Ti2O7 : sample at 1173 K
Journal of the Ceramic Society of Japan, 2018, 126, 341-345
1549366 CIFO7 Ti2 Yb2F d -3 m10.03441; 10.03441; 10.03441
90; 90; 90
1010.36Uno, W.; Fujii, K.; Niwa, E.; Torii, S.; Miao, P.; Kamiyama, T.; Yashima, M.
Experimental visualization of oxide-ion diffusion paths in pyrochlore-type Yb2Ti2O7
Journal of the Ceramic Society of Japan, 2018, 126, 341-345
1549722 CIFMg2 O4 SiF d -3 m8.0649; 8.0649; 8.0649
90; 90; 90
524.562Sasaki, S.; Prewitt, C.T.; Sato, Y.; Ito, E.
Single-crystal X Ray study of gamma Mg2SiO4 : partially disordered model (final result)
Journal of Geophysical Research: Solid Earth, 1982, 87, 7829-7832
1550917 CIFO4 S20 Sn10F d -3 m27.248; 27.248; 27.248
90; 90; 90
20230Dehnen, Stefanie Susanne; Peters, Bertram; Santner, Silke; Donsbach, Carsten; Smarsly, Bernd; Voepel, Pascal
Ionic liquid cations as methylation agent for extremely weak chalcogenido metalate nucleophiles
Chemical Science, 2019
1550918 CIFO4 S20 Sn10F d -3 m73.616; 73.616; 73.616
90; 90; 90
398948Dehnen, Stefanie Susanne; Peters, Bertram; Santner, Silke; Donsbach, Carsten; Smarsly, Bernd; Voepel, Pascal
Ionic liquid cations as methylation agent for extremely weak chalcogenido metalate nucleophiles
Chemical Science, 2019

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