Crystallography Open Database

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9017847 CIFBR -3 m :H4.9179; 4.9179; 12.5805
90; 90; 120
263.504Will, G.; Kiefer, B.
Electron deformation density in alpha-boron Note: alpha-phase
Zeitschrift fur Anorganische und Allgemeine Chemie, 2001, 627, 2100-2104
9017774 CIFAl F5 MgI m m m7.268; 6.123; 3.543
90; 90; 90
157.67Weil, M.; Werner, F.
The thermal dehydration of magnesium aluminum pentafluoride dihydrate: crystal structures of MgAlF5(H2O)2 and MgAlF5
Monatshefte fur Chemie, 2001, 132, 769-777
9017492 CIFFe0.23 Mg1.77 O4 SiP b n m4.762; 10.235; 5.998
90; 90; 90
292.337Heuer, M.
The determination of site occupancies using a new strategy in Rietveld refinements Note: results of the conventional refinement on single-crystal data
Journal of Applied Crystallography, 2001, 34, 271-279
9017491 CIFFe0.23 Mg1.77 O4 SiP b n m4.7645; 10.23467; 5.99727
90; 90; 90
292.445Heuer, M.
The determination of site occupancies using a new strategy in Rietveld refinements Note: results of the conventional Rietveld refinement on the whole data set
Journal of Applied Crystallography, 2001, 34, 271-279
9017490 CIFFe0.23 Mg1.77 O4 SiP b n m4.764; 10.229; 5.996
90; 90; 90
292.191Heuer, M.
The determination of site occupancies using a new strategy in Rietveld refinements Note: for calculation of powder patterns
Journal of Applied Crystallography, 2001, 34, 271-279
9017417 CIFFe H O2C m c m3.072; 12.516; 3.873
90; 90; 90
148.914Zhukhlistov, A. P.
Crystal structure of lepidocrocite FeO(OH) from the electron-diffractometry data
Crystallography Reports, 2001, 46, 730-733
9017416 CIFBa0.1 Ca0.6 H9.8 K1.55 Mn0.89 Nb0.1 O32.9 Si8 Ti3.9C 1 m 114.365; 13.887; 7.814
90; 117.36; 90
1384.42Rastsvetaeva, R. K.; Pekov, I. V.; Nekrasov, Y. V.
Crystal structure and microtwinning of a calcium-rich analogue of labuntsovite
Crystallography Reports, 2001, 46, 365-367
9017209 CIFCa2 H2 O9 S2I 1 2 112.035; 6.9294; 12.6705
90; 90.266; 90
1056.65Ballirano, P.; Maras, A.; Meloni, S.; Caminiti, R.
The monoclinic I2 structure of bassanite, calcium sulphate hemihydrate
European Journal of Mineralogy, 2001, 13, 985-993
9016722 CIFAl2 Ca H4 O10 Si2P 1 21/m 15.178; 12.787; 5.634
90; 124.67; 90
306.798Pawley, A. R.; Allan, D. R.
A high-pressure study of lawsonite using angle-dispersive powder-diffraction methods with synchrotron radiation Note: Run #BN97, P = 16.5 GPa
Mineralogical Magazine, 2001, 65, 41-58
9015900 CIFAl2 Ca H4 O10 Si2C m c m5.714; 8.592; 12.871
90; 90; 90
631.898Pawley, A. R.; Allan, D. R.
A high-pressure study of lawsonite using angle-dispersive powder-diffraction methods with synchrotron radiation Note: Run #BN89, P = 9.8 GPa
Mineralogical Magazine, 2001, 65, 41-58
9015476 CIFAl2 Ca H4 O10 Si2P 1 21/m 15.197; 12.863; 5.681
90; 124.48; 90
313.053Pawley, A. R.; Allan, D. R.
A high-pressure study of lawsonite using angle-dispersive powder-diffraction methods with synchrotron radiation Note: Run #BN90, P = 11.9 GPa
Mineralogical Magazine, 2001, 65, 41-58
9015174 CIFFe Nb1.2 O6 Ta0.8P b c n14.2737; 5.73543; 5.0554
90; 90; 90
413.864dos Santos, C. A.; Zawislak, L. I.; Kinast, E. J.; Antonietti, V.; da Cunha, J. B. M.
Crystal chemistry and structure of the orthorhombic (Fe,Mn)(Ta,Nb)2O6 family of compounds Note: Sample Fe(Ta0.4Nb0.6)2O6
Brazilian Journal of Physics, 2001, 31, 616-631
9015070 CIFBa Cu2 Ge2 O7P n m a7.04765; 13.407; 7.02755
90; 90; 90
664.018Yamada, T.; Hiroi, Z.; Takano, M.
Spin-1/2 quantum antiferromagnetic chains with tunable superexchange interactions found in BaCu2(Si1-xGex)2O7
Journal of Solid State Chemistry, 2001, 156, 101-109
9014892 CIFBa Cu2 O7 Si2P n m a6.86058; 13.17507; 6.89589
90; 90; 90
623.31Yamada, T.; Hiroi, Z.; Takano, M.
Spin-1/2 quantum antiferromagnetic chains with tunable superexchange interactions found in BaCu2(Si1-xGex)2O7
Journal of Solid State Chemistry, 2001, 156, 101-109
9014401 CIFSP 32 2 17.0897; 7.0897; 4.30238
90; 90; 120
187.282Crichton, W. A.; Vaughan, G. B. M.; Mezouar, M.
In situ structure solution of helical sulphur at 3 GPa and 400 deg C P = 3 GPa, T = 400 C
Zeitschrift fur Kristallographie, 2001, 216, 417-419
9014279 CIFFe0.09 Mn0.88 Nb0.28 O6 Ta1.72P b c n14.3196; 5.7413; 5.0624
90; 90; 90
416.196dos Santos, C. A.; Zawislak, L. I.; Kinast, E. J.; Antonietti, V.; da Cunha, J. B. M.
Crystal chemistry and structure of the orthorhombic (Fe,Mn)(Ta,Nb)2O6 family of compounds Note: Sample Mn0.88Fe0.09Ta1.72Nb0.28O6
Brazilian Journal of Physics, 2001, 31, 616-631
9014088 CIFAl2 Ca H4 O10 Si2C m c m5.849; 8.79; 13.132
90; 90; 90
675.152Pawley, A. R.; Allan, D. R.
A high-pressure study of lawsonite using angle-dispersive powder-diffraction methods with synchrotron radiation Note: Run #BN82, P = 0 GPa
Mineralogical Magazine, 2001, 65, 41-58
9013109 CIFGeC m c e7.886; 4.656; 4.667
90; 90; 90
171.359Takemura, K.; Schwarz, U.; Syassen, K.; Christensen, N. E.; Hanfland, M.; Novikov, D. L.; Loa, I.
High-pressure structures of Ge above 100 GPa Locality: sytnthetic Sample: at P = 135 GPa Note: structure theoretically calculated based on experimental data
Physica Status Solidi B, 2001, 223, 385-390
9013065 CIFC2 H24 Al Ce0.54 La0.09 Nd0.26 O24 Pr0.07 S2 Sm0.04C 1 2/c 18.718; 18.313; 13.128
90; 93.9; 90
2091.07Rouse, R. C.; Peacor, D. R.; Essene, E. J.; Coskren, T. D.; Lauf, R. J.
The new minerals levinsonite-(Y) [(Y,Nd,Ce)Al(SO4)2(C2O4)*12H2O] and zugshunstite-(Ce) [(Ce,Nd,La)Al(SO4)2(C2O4)*12H2O]: coexisting oxalates with different structures and differentiation of LREE and HREE
Geochimica et Cosmochimica Acta, 2001, 65, 1101-1115
9013064 CIFC2 H24 Al Ce0.12 Dy0.04 Eu0.02 Gd0.08 La0.03 Nd0.23 O24 Pr0.03 S2 Sm0.12 Y0.33P 1 2/n 110.289; 9.234; 11.015
90; 108.5; 90
992.44Rouse, R. C.; Peacor, D. R.; Essene, E. J.; Coskren, T. D.; Lauf, R. J.
The new minerals levinsonite-(Y) [(Y,Nd,Ce)Al(SO4)2(C2O4)*12H2O] and zugshunstite-(Ce) [(Ce,Nd,La)Al(SO4)2(C2O4)*12H2O]: coexisting oxalates with different structures and differentiation of LREE and HREE
Geochimica et Cosmochimica Acta, 2001, 65, 1101-1115
9012799 CIFBa3 Fe0.526 H6 In0.475 O24 P6R -3 c :H9.502; 9.502; 37.116
90; 90; 120
2902.16Tang, X.; Gentiletti, M. J.; Lachgar, A.; Morozov, V. A.; Lazoryak, B. I.
The pillared layered framework of Ba3(In1-xMx)2(HXO4)6(0<=x<=1; M=Fe,Cr; X=P, As): synthesis, crystal structure, thermal stability and Mossbauer spectroscopy
Solid State Sciences, 2001, 3, 143-153
9012773 CIFAs3 Cu4 Na O12C 1 2/c 112.053; 12.432; 7.2529
90; 117.793; 90
961.421Krivovichev, S. V.; Filatov, S. K.; Burns, P. C.
The Jahn-Teller distortion of copper coordination polyhedra in the alluaudite structural type: Crystal structure of bradaczekite, NaCu4(AsO4)3
Zapiski Vserossijskogo Mineralogicheskogo Obshchestva, 2001, 2001, 1-8
9012751 CIFCa H12 O17 Si2 U2P 1 1 21/b6.67; 15.92; 6.985
90; 90; 97.3
735.7Barinova, A. V.; Rastsvetaeva, R. K.; Sidorenko, G. A.; Pushcharovsky, D. Y.
Crystal structure of high-symmetry alpha-uranophane
Doklady Chemistry, 2001, 378, 122-124
9012718 CIFK2 O8 Pb S2R -3 m :H5.497; 5.497; 20.864
90; 90; 120
545.984Tissot, R. G.; Rodriguez, M. A.; Sipola, D. L.; Voigt, J. A.
X-ray powder diffraction study of synthetic palmierite, K2Pb(SO4)2
Powder Diffraction, 2001, 16, 92-97
9012647 CIFCa0.35 Fe0.14 H10.8 Hf0.03 K0.09 Mn0.08 Na2.39 O18.9 Si6 Ti0.03 Zr0.8R 3 :H10.18; 10.18; 13.13
90; 90; 120
1178.4Yamnova, N. A.; Egorov-Tismenko Y K; Pekov, I. V.
Refined crystal structure of lovozerite Na2CaZr[Si6O12(OH,O)6]*H2O
Crystallography Reports, 2001, 46, 937-941
9012646 CIFC5 Ba0.501 Ca1.437 Ce0.438 La0.243 Na2.667 Nd0.099 O15 Sr0.549P 63 m c10.4974; 10.4974; 6.4309
90; 90; 120
613.714Belovitskaya, Y. V.; Pekov, I. V.; Gobechiya, E. R.; Kabalov, Y. K.; Subbotin, V. V.
Crystal structure of calcioburbankite and the characteristic features of the burbankite structure type
Crystallography Reports, 2001, 46, 927-931
9012645 CIFCa12 Ce0.102 Cl2.68 F0.68 Fe2.19 H11.56 K1.452 Mn0.81 Na34.53 O151.54 Si51.2 Sr0.735 Ti0.52 Zr6R 3 :H14.239; 14.239; 60.733
90; 90; 120
10663.9Rastsvetaeva, R. K.; Khomyakov, A. P.
Modular structure of a sodium-rich analogue of eudialyte with the doubled c-parameter and the R3 symmetry
Crystallography Reports, 2001, 46, 752-757
9012644 CIFCa0.89 Ce0.11 Nb1.3 O6 Ti0.7P c a n5.762; 14.988; 5.246
90; 90; 90
453.049Gurbanova, O. A.; Rastsvetaeva, R. K.; Kashaev, A. A.; Smolin, A. S.
Refined crystal structure of TR-fersmite (TR = Ce)
Crystallography Reports, 2001, 46, 194-195
9012643 CIFAl0.18 Ca0.01 Fe0.01 H10 Hf0.01 K0.01 Mn0.14 Na2.51 O18.45 Si5.82 Ti0.01 Zr0.96C 1 m 110.589; 10.217; 7.355
90; 92.91; 90
794.695Yamnova, N. A.; Egorov-Tismenko Y K; Pekov, I. V.; Ekimenkova, I. A.
Crystal structure of litvinskite: A new natural member of the lovozerite group Locality: Alluaiv mountain, Lovozero massif, Kola Peninsula, Russia
Crystallography Reports, 2001, 46, 190-193
9012370 CIFAs Br Hg3 O4P 21 38.4611; 8.4611; 8.4611
90; 90; 90
605.732Weil, M.
Preparation and crystal structures of (Hg3)(PO4)Cl, (Hg3)(AsO4)Cl and (Hg3)(AsO4)Br - mercury compounds with the triangular Hg4+3 cluster
Zeitschrift fur Naturforschung B, 2001, 56, 753-758
9012369 CIFAs Cl Hg3 O4P 21 38.3983; 8.3983; 8.3983
90; 90; 90
592.344Weil, M.
Preparation and crystal structures of (Hg3)(PO4)Cl, (Hg3)(AsO4)Cl and (Hg3)(AsO4)Br - mercury compounds with the triangular Hg4+3 cluster
Zeitschrift fur Naturforschung B, 2001, 56, 753-758
9012368 CIFCl Hg3 O4 PP 21 38.2912; 8.2912; 8.2912
90; 90; 90
569.97Weil, M.
Preparation and crystal structures of (Hg3)(PO4)Cl, (Hg3)(AsO4)Cl and (Hg3)(AsO4)Br - mercury compounds with the triangular Hg4+3 cluster
Zeitschrift fur Naturforschung B, 2001, 56, 753-758
9012269 CIFP Pd SeP b c n13.594; 5.8317; 5.8583
90; 90; 90
464.423Foecker, A. J.; Jeitschko, W.
The atomic order of the pnictogen and chalcogen atoms in equiatomic ternary compounds TPnCh (T = Ni, Pd; Pn = P, As, Sb; Ch = S, Se, Te)
Journal of Solid State Chemistry, 2001, 162, 69-78
9012268 CIFNi0.766 Sb0.5 Te0.5P 63/m m c3.9158; 3.9158; 5.2011
90; 90; 120
69.066Foecker, A. J.; Jeitschko, W.
The atomic order of the pnictogen and chalcogen atoms in equiatomic ternary compounds TPnCh (T = Ni, Pd; Pn = P, As, Sb; Ch = S, Se, Te)
Journal of Solid State Chemistry, 2001, 162, 69-78
9012267 CIFNi P0.24 Se1.76P a -35.901; 5.901; 5.901
90; 90; 90
205.483Foecker, A. J.; Jeitschko, W.
The atomic order of the pnictogen and chalcogen atoms in equiatomic ternary compounds TPnCh (T = Ni, Pd; Pn = P, As, Sb; Ch = S, Se, Te)
Journal of Solid State Chemistry, 2001, 162, 69-78
9012266 CIFNi P1.86 Se0.14P a -35.479; 5.479; 5.479
90; 90; 90
164.477Foecker, A. J.; Jeitschko, W.
The atomic order of the pnictogen and chalcogen atoms in equiatomic ternary compounds TPnCh (T = Ni, Pd; Pn = P, As, Sb; Ch = S, Se, Te)
Journal of Solid State Chemistry, 2001, 162, 69-78
9012265 CIFPd Sb TeP 21 36.5362; 6.5362; 6.5362
90; 90; 90
279.239Foecker, A. J.; Jeitschko, W.
The atomic order of the pnictogen and chalcogen atoms in equiatomic ternary compounds TPnCh (T = Ni, Pd; Pn = P, As, Sb; Ch = S, Se, Te)
Journal of Solid State Chemistry, 2001, 162, 69-78
9012264 CIFPd Sb SeP 21 36.324; 6.324; 6.324
90; 90; 90
252.916Foecker, A. J.; Jeitschko, W.
The atomic order of the pnictogen and chalcogen atoms in equiatomic ternary compounds TPnCh (T = Ni, Pd; Pn = P, As, Sb; Ch = S, Se, Te)
Journal of Solid State Chemistry, 2001, 162, 69-78
9012263 CIFAs Pd SeP 21 36.0948; 6.0948; 6.0948
90; 90; 90
226.401Foecker, A. J.; Jeitschko, W.
The atomic order of the pnictogen and chalcogen atoms in equiatomic ternary compounds TPnCh (T = Ni, Pd; Pn = P, As, Sb; Ch = S, Se, Te)
Journal of Solid State Chemistry, 2001, 162, 69-78
9012262 CIFAs Pd SP 21 35.9507; 5.9507; 5.9507
90; 90; 90
210.719Foecker, A. J.; Jeitschko, W.
The atomic order of the pnictogen and chalcogen atoms in equiatomic ternary compounds TPnCh (T = Ni, Pd; Pn = P, As, Sb; Ch = S, Se, Te)
Journal of Solid State Chemistry, 2001, 162, 69-78
9012261 CIFNi Sb SeP 21 36.0868; 6.0868; 6.0868
90; 90; 90
225.511Foecker, A. J.; Jeitschko, W.
The atomic order of the pnictogen and chalcogen atoms in equiatomic ternary compounds TPnCh (T = Ni, Pd; Pn = P, As, Sb; Ch = S, Se, Te)
Journal of Solid State Chemistry, 2001, 162, 69-78
9012260 CIFAs Ni SeP 21 35.8469; 5.8469; 5.8469
90; 90; 90
199.884Foecker, A. J.; Jeitschko, W.
The atomic order of the pnictogen and chalcogen atoms in equiatomic ternary compounds TPnCh (T = Ni, Pd; Pn = P, As, Sb; Ch = S, Se, Te)
Journal of Solid State Chemistry, 2001, 162, 69-78
9012259 CIFNi S SbP 21 35.9341; 5.9341; 5.9341
90; 90; 90
208.961Foecker, A. J.; Jeitschko, W.
The atomic order of the pnictogen and chalcogen atoms in equiatomic ternary compounds TPnCh (T = Ni, Pd; Pn = P, As, Sb; Ch = S, Se, Te)
Journal of Solid State Chemistry, 2001, 162, 69-78
9012258 CIFAs Ni SP 21 35.6888; 5.6888; 5.6888
90; 90; 90
184.103Foecker, A. J.; Jeitschko, W.
The atomic order of the pnictogen and chalcogen atoms in equiatomic ternary compounds TPnCh (T = Ni, Pd; Pn = P, As, Sb; Ch = S, Se, Te)
Journal of Solid State Chemistry, 2001, 162, 69-78
9012257 CIFNi P SP 21 35.5386; 5.5386; 5.5386
90; 90; 90
169.903Foecker, A. J.; Jeitschko, W.
The atomic order of the pnictogen and chalcogen atoms in equiatomic ternary compounds TPnCh (T = Ni, Pd; Pn = P, As, Sb; Ch = S, Se, Te)
Journal of Solid State Chemistry, 2001, 162, 69-78
9012256 CIFCa Mn2 O4P b c m3.14685; 9.9528; 9.67166
90; 90; 90
302.916Ling, C. D.; Neumeier, J. J.; Argyriou, D. N.
Observation of antiferromagnetism in marokite CaMn2O4 Sample: T = 20 K
Journal of Solid State Chemistry, 2001, 160, 167-173
9012255 CIFCa Mn2 O4P b c m3.15886; 9.9958; 9.6776
90; 90; 90
305.573Ling, C. D.; Neumeier, J. J.; Argyriou, D. N.
Observation of antiferromagnetism in marokite CaMn2O4 Sample: T = 300 K
Journal of Solid State Chemistry, 2001, 160, 167-173
9012254 CIFF7 In Mg Na2P n m a10.435; 7.345; 7.553
90; 90; 90
578.9Caramanian, A.; Souron, J. P.; Gredin, P.; de Kozak, A.
The crystal structure of the weberite Na2MgInF7
Journal of Solid State Chemistry, 2001, 159, 234-238
9012253 CIFAl H O2C m c m2.8678; 12.2188; 3.6941
90; 90; 90
129.445Bokhimi, X.; Toledo-Antonio J A; Guzman-Castillo M L; Hernandez-Beltran F
Relationship between crystallite size and bond lengths in boehmite Sample: preparation T = 240 C
Journal of Solid State Chemistry, 2001, 159, 32-40
9012252 CIFAl H O2C m c m2.8681; 12.2256; 3.6941
90; 90; 90
129.531Bokhimi, X.; Toledo-Antonio J A; Guzman-Castillo M L; Hernandez-Beltran F
Relationship between crystallite size and bond lengths in boehmite Sample: preparation T = 180 C
Journal of Solid State Chemistry, 2001, 159, 32-40
9012251 CIFAl H O2C m c m2.8695; 12.232; 3.6945
90; 90; 90
129.676Bokhimi, X.; Toledo-Antonio J A; Guzman-Castillo M L; Hernandez-Beltran F
Relationship between crystallite size and bond lengths in boehmite Sample: preparation T = 140 C
Journal of Solid State Chemistry, 2001, 159, 32-40
9012250 CIFAl H O2C m c m2.8686; 12.265; 3.715
90; 90; 90
130.706Bokhimi, X.; Toledo-Antonio J A; Guzman-Castillo M L; Hernandez-Beltran F
Relationship between crystallite size and bond lengths in boehmite Sample: preparation T = 100 C
Journal of Solid State Chemistry, 2001, 159, 32-40
9012249 CIFAl H O2C m c m2.8675; 12.274; 3.733
90; 90; 90
131.386Bokhimi, X.; Toledo-Antonio J A; Guzman-Castillo M L; Hernandez-Beltran F
Relationship between crystallite size and bond lengths in boehmite Sample: preparation T = 50 C
Journal of Solid State Chemistry, 2001, 159, 32-40
9012248 CIFAl H O2C m c m2.8796; 12.205; 3.761
90; 90; 90
132.182Bokhimi, X.; Toledo-Antonio J A; Guzman-Castillo M L; Hernandez-Beltran F
Relationship between crystallite size and bond lengths in boehmite Sample: preparation T = 30 C
Journal of Solid State Chemistry, 2001, 159, 32-40
9012247 CIFAl H O2C m c m2.851; 12.12; 3.736
90; 90; 90
129.094Bokhimi, X.; Toledo-Antonio J A; Guzman-Castillo M L; Hernandez-Beltran F
Relationship between crystallite size and bond lengths in boehmite Sample: preparation T = 23 C
Journal of Solid State Chemistry, 2001, 159, 32-40
9012246 CIFH6 In2 Na2 O17 P4P -19.30131; 9.4976; 9.2685
98.71; 98.953; 60.228
699.418Mi, J. X.; Huang, Y. X.; Mao, S. Y.; Huang, X. D.; Wei, Z. B.; Huang, Z. L.; Zhao, J. T.
Hydrothermal synthesis and crystal structure of Na2In2[PO3(OH)]4*H2O with a new structure type
Journal of Solid State Chemistry, 2001, 157, 213-219
9012245 CIFGa H8 N2 O12 P3 Zn2I 21 313.456; 13.456; 13.456
90; 90; 90
2436.4Logar, N. Z.; Mrak, M.; Kaucic, V.
Syntheses and structures of two ammonium zinc gallophosphates: analcime and paracelsian analogs Sample: analcime analog Note: changed O1(x,y) and O3(x,y,z) to match reported bond distances
Journal of Solid State Chemistry, 2001, 156, 480-486
9012244 CIFGa H4 N O8 P2 ZnP 1 21/a 19.406; 9.881; 8.612
90; 90.58; 90
800.364Logar, N. Z.; Mrak, M.; Kaucic, V.
Syntheses and structures of two ammonium zinc gallophosphates: analcime and paracelsian analogs Sample: Paracelsian analog
Journal of Solid State Chemistry, 2001, 156, 480-486
9011940 CIFC H2 Ca Cl O3I 1 2/m 16.936; 7.382; 7.443
90; 94.3; 90
380.02Rastsvetaeva, R. K.; Chukanov, N. V.; Nekrasov, Y. V.
Crystal structure of novgorodovaite, Ca2(C2O4)Cl2*2H2O
Doklady Akademii Nauk SSSR, 2001, 381, 353-355
9011817 CIFAl1.062 O8 Rb0.811 Si3C 1 2/m 18.839; 13.035; 7.175
90; 116.11; 90
742.316Kyono, A.; Kimata, M.
Refinement of the crystal structure of a synthetic non-stoichiometric Rb-feldspar
Mineralogical Magazine, 2001, 65, 523-531
9011816 CIFC3 Na4 O11 UP -3 c 19.3417; 9.3417; 12.824
90; 90; 120
969.183Yaping, L.; Krivichev, S. V.; Burns, P. C.
The crystal structure of Na4(UO2)(CO3)3 and its relationship to schrockingerite Locality: synthetic
Mineralogical Magazine, 2001, 65, 297-304
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
9010718 CIFCl O0.5 Pb9.167 S23 Sb9.833C 1 2/m 149.49; 4.1259; 21.828
90; 99.62; 90
4394.4Meerschaut, A.; Palvadeau, P.; Moello, Y.; Orlandi, P.
Lead-antimony sulfosalts from Tuscany (Italy). IV. Crystal structure of pillaite, Pb9Sb10S23ClO0.5, an expanded monoclinic derivative of hexagonal Bi(Bi2S3)9I3, from the zinkenite group Locality: Buca della Vena mine, Tuscany, Italy Note: changed Pb2(z) to 0.2572 to match reported bond distances
European Journal of Mineralogy, 2001, 13, 779-790
9009986 CIFAs0.667 Cu H2.752 O3P m m a8.3212; 2.9377; 4.6644
90; 90; 90
114.022Sarp H; Cerny R
Theoparacelsite, Cu3(OH)2As2O7, a new mineral: its description and crystal structure
Archives des Sciences, Geneve, 2001, 54, 7-14
9009953 CIFAl1.88 B Ca1.42 Fe0.21 H0.5 Mg0.03 Mn1.46 O16 Si4P -17.154; 9.126; 8.949
91.88; 98.8; 77.05
562.694Belokoneva E L; Goryunova A N; Pletnev P A; Spiridonov E M
Crystal structure of high-manganese tinzenite from the Falotta deposit in Switzerland
Crystallography Reports, 2001, 46, 30-32
9009848 CIFBa0.84 Fe9.363 K0.05 Mg0.305 Na0.06 O19 Sr0.05 Ti2.328P 63/m m c5.909; 5.909; 23.369
90; 90; 120
706.641Lengauer, C. L.; Tillmanns, E.; Hentschel, G.
Batiferrite, Ba[Ti2Fe10]O19, a new ferrimagnetic magnetoplumbite-type mineral from the Quaternary volcanic rocks of the western Eifel area, Germany Note: z-coordinate of A-site altered because it was obviously a typo Locality: Quaternary volcanic rocks of the western Eifel area, Germany
Mineralogy and Petrology, 2001, 71, 1-19
9009815 CIFO4 Pb WI 41/a :25.45565; 5.45565; 11.9923
90; 90; 90
356.94Chipaux, R.; Andre, G.; Cousson, A.
Crystal structure of lead tungstate at 1.4 and 300 K Sample: Bottom, T = 1.4 K Note: Scheelite structure
Journal of Alloys and Compounds, 2001, 325, 91-94
9009814 CIFO4 Pb WI 41/a :25.45961; 5.45961; 12.00222
90; 90; 90
357.754Chipaux, R.; Andre, G.; Cousson, A.
Crystal structure of lead tungstate at 1.4 and 300 K Sample: Top, T = 1.4 K Note: Scheelite structure
Journal of Alloys and Compounds, 2001, 325, 91-94
9009813 CIFO4 Pb WI 41/a :25.43241; 5.43241; 12.04817
90; 90; 90
355.554Chipaux, R.; Andre, G.; Cousson, A.
Crystal structure of lead tungstate at 1.4 and 300 K Sample: Yellow, T = 290 K Note: Scheelite structure
Journal of Alloys and Compounds, 2001, 325, 91-94
9009812 CIFO4 Pb WI 41/a :25.46462; 5.46462; 12.04787
90; 90; 90
359.774Chipaux, R.; Andre, G.; Cousson, A.
Crystal structure of lead tungstate at 1.4 and 300 K Sample: Bottom, T = 290 K Note: Scheelite structure
Journal of Alloys and Compounds, 2001, 325, 91-94
9009811 CIFO4 Pb WI 41/a :25.46979; 5.46979; 12.06339
90; 90; 90
360.92Chipaux, R.; Andre, G.; Cousson, A.
Crystal structure of lead tungstate at 1.4 and 300 K Sample: .Top. at T = 290 K Note: Scheelite structure
Journal of Alloys and Compounds, 2001, 325, 91-94
9009810 CIFO4 Rh2 Sr0.375I 1 2/m 110.4399; 3.0626; 9.2135
90; 95.262; 90
293.344Plaisier, J. R.; Van Vliet, A. A. C.; IJdo D J W
Synthesis, structure and magnetic properties of a new hollandite: Sr0.75Rh4O8 Note: Hollandite-type structure
Journal of Alloys and Compounds, 2001, 314, 56-61
9009746 CIFMg2 O7 V2P 1 21/c 16.599; 8.406; 9.472
90; 100.608; 90
516.443Nielsen, U. G.; Jakobsen, H. J.; Skibsted, J.; Norby, P.
Crystal structure of alpha-Mg2V2O7 from synchrotron X-ray powder diffraction and characterization by 51V MAS NMR spectroscopy Note: z-coordinate of V1 changed as directed by the author, Aug 2005.
Dalton Transactions, 2001, 2001, 3214-3218
9009521 CIFCa Cu H8 O14 P2 UP 1 21/c 112.784; 6.996; 13.007
90; 91.92; 90
1162.65Kolitsch, U.; Giester, G.
Revision of the crystal structure of ulrichite, CaCu2+(UO2)(PO4)2*4(H2O)
Mineralogical Magazine, 2001, 65, 717-724
9009520 CIFFe2 Ge O4F d -3 m :28.4127; 8.4127; 8.4127
90; 90; 90
595.396Welch, M. D.; Cooper, M. A.; Hawthorne, F. C.
The crystal structure of brunogeierite, Fe2GeO4 spinel
Mineralogical Magazine, 2001, 65, 441-444
9009417 CIFAs2 Bi0.031 Ca0.969 Co0.2 Fe0.7 H5 Ni1.1 O10C 1 2/m 19.04; 6.229; 7.397
90; 115.32; 90
376.512Krause, W.; Bernhardt, H. J.; Effenberger, H.; Martin, M.
Cobalttsumcorite and nickellotharmeyerite, two new minerals from Schneeberg, Germany: description and crystal structure
Neues Jahrbuch fur Mineralogie, Monatshefte, 2001, 2001, 588-576
9009416 CIFAl0.04 As2 Co0.79 Fe0.73 H6 Ni0.4 O10.2 Pb Zn0.04C 1 2/m 19.107; 6.316; 7.571
90; 115.02; 90
394.617Krause W; Bernhardt H J; Effenberger H; Martin M
Cobalttsumcorite and nickellotharmeyerite, two new minerals from Schneeberg, Germany: description and crystal structure
Neues Jahrbuch fur Mineralogie, Monatshefte, 2001, 2001, 588-576
9009415 CIFAl0.44 B2 Fe1.11 Mg3.91 Mn0.54 O10P b a m9.24; 12.362; 2.9869
90; 90; 90
341.178Holtstam, D.
Crystal chemistry of a manganian ludwigite Note: z-coordinate has been altered through personal communication with the author Locality: Jakobsberg Fe-Mn oxide deposit, Filipstad, Varmland, Sweden
Neues Jahrbuch fur Mineralogie, Monatshefte, 2001, 2001, 520-528
9009414 CIFC H3 Ca0.05 Ce0.04 F0.075 La0.27 Nd0.205 O3.925 Pr0.07 Sm0.01 Sr0.31P m c n5.044; 8.541; 7.292
90; 90; 90
314.145Petersen O V; Niedermayr G; Gault R A; Brandstatter F; Micheelsen H I; Giester G
Ancylite-(La) from the Ilimaussaq alkaline complex, South Greenland
Neues Jahrbuch fur Mineralogie, Monatshefte, 2001, 2001, 493-504
9009413 CIFCl H O3 Pb3P m c 215.813; 6.921; 15.192
90; 90; 90
611.201Keller, P.; Lissner, F.; Schleid, T.
Damaraite, Pb3O2(OH)Cl: crystal structure and new chemical formula
Neues Jahrbuch fur Mineralogie, Monatshefte, 2001, 2001, 326-336
9009412 CIFBe Ca2 O7 Si2P -4 21 m7.433; 7.433; 4.997
90; 90; 90
276.082Yang, Z.; Fleck, M.; Pertlik, F.; Tillmanns, E.; Tao, K.
The crystal structure of natural gugiaite, Ca2BeSi2O7 Locality: skarn rocks in the Gugia alkaline complex, Liaoning Province, China Note, z coordinate of Ca is altered to reproduce reported Ca-O bond lengths
Neues Jahrbuch fur Mineralogie, Monatshefte, 2001, 2001, 186-192
9009411 CIFAs2 FeP n n m5.2684; 5.9631; 2.9007
90; 90; 90
91.128Ondrus, P.; Vavrin, I.; Skala, R.; Veselovsky, F.
Low-temperature Ni-rich lollingite from Haje, Pibram, Czech Republic. Rietveld crystal structure refinement
Neues Jahrbuch fur Mineralogie, Monatshefte, 2001, 2001, 169-185
9009410 CIFAs1.94 Co0.03 Fe0.61 Ni0.36 S0.02 Sb0.04P n n m5.243; 5.978; 2.9783
90; 90; 90
93.348Ondrus, P.; Vavrin, I.; Skala, R.; Veselovsky, F.
Low-temperature Ni-rich lollingite from Haje, Pibram, Czech Republic. Rietveld crystal structure refinement
Neues Jahrbuch fur Mineralogie, Monatshefte, 2001, 2001, 169-185
9009238 CIFO2 SiP 1 21/c 17.66; 4.1; 5.03
90; 117.9; 90
139.61Haines, J.; Leger, J. M.; Gorelli, F.; Hanfland, M.
Crystalline post-quartz phase in silica at high pressure Sample at ambient conditions
Physical Review Letters, 2001, 87, 155503-155503
9009228 CIFFe1.807 Mg1.039 O4 Os0.056 Rh0.1F d -3 m :28.3955; 8.3955; 8.3955
90; 90; 90
591.752Righter, K.; Downs, R. T.
The crystal structures of synthetic Re- and PGE-bearing magnesioferrite spinels: Implications for impacts, accretion and the mantle Sample: 117
Geophysical Research Letters, 2001, 28, 619-622
9009227 CIFFe1.665 Ir0.042 Mg1.063 O4 Ru0.23F d -3 m :28.4034; 8.4034; 8.4034
90; 90; 90
593.424Righter, K.; Downs, R. T.
The crystal structures of synthetic Re- and PGE-bearing magnesioferrite spinels: Implications for impacts, accretion and the mantle Sample: 115
Geophysical Research Letters, 2001, 28, 619-622
9009226 CIFFe2.144 Mg0.78 O4 Re0.076F d -3 m :28.4055; 8.4055; 8.4055
90; 90; 90
593.869Righter, K.; Downs, R. T.
The crystal structures of synthetic Re- and PGE-bearing magnesioferrite spinels: Implications for impacts, accretion and the mantle Sample: 116
Geophysical Research Letters, 2001, 28, 619-622
9009225 CIFFe1.98 Mg0.854 O4 Re0.166F d -3 m :28.4158; 8.4158; 8.4158
90; 90; 90
596.055Righter, K.; Downs, R. T.
The crystal structures of synthetic Re- and PGE-bearing magnesioferrite spinels: Implications for impacts, accretion and the mantle Sample: 111
Geophysical Research Letters, 2001, 28, 619-622
9008439 CIFCa6 O19 Si6P 1 2/a 117.032; 7.363; 7.012
90; 90.36; 90
879.334Hejny, C.; Armbruster, T.
Polytypism in xonotlite Ca6Si6O17(OH)2 Note: polytype derived from structure in Kudoh and Takeuchi (1979)
Zeitschrift fur Kristallographie, 2001, 216, 396-408
9008438 CIFCa6 O19 Si6P -18.712; 7.363; 7.012
89.99; 90.36; 102.18
439.661Hejny, C.; Armbruster, T.
Polytypism in xonotlite Ca6Si6O17(OH)2 Note: polytype derived from structure in Kudoh and Takeuchi (1979)
Zeitschrift fur Kristallographie, 2001, 216, 396-408
9008437 CIFCa6 O19 Si6A 1 2/a 117.032; 7.363; 14.023
90; 90.36; 90
1758.54Hejny, C.; Armbruster, T.
Polytypism in xonotlite Ca6Si6O17(OH)2 Note: polytype derived from structure in Kudoh and Takeuchi (1979)
Zeitschrift fur Kristallographie, 2001, 216, 396-408
9007913 CIFH Mn O5 Pb VP n m a7.646; 6.179; 9.507
90; 90; 90
449.155Kolitsch, U.
Refinement of pyrobelonite, PbMnIIVO4(OH), a member of the descloizite group
Acta Crystallographica, Section E, 2001, 57, i119-i121
9007910 CIFCu H10 O9 SeP -16.083; 6.226; 10.867
77.14; 82.2; 72.91
382.43Kolitsch, U.
Copper(II) selenate pentahydrate, CuSeO4*5H2O
Acta Crystallographica, Section E, 2001, 57, i104-i105
9007909 CIFLu Mn O3P 63 c m6.038; 6.038; 11.361
90; 90; 120
358.702Van Aken, B. B.; Meetsma, A.; Palstra, T. T. M.
Hexagonal LuMnO3 revisited
Acta Crystallographica, Section E, 2001, 57, i101-i103
9007907 CIFC2 H6 K4 O9C 1 2/c 111.8175; 13.7466; 7.1093
90; 120.769; 90
992.34Skakle, J. M. S.; Wilson, M.; Feldman, J.
Dipotassium carbonate sesquihydrate: rerefinement against new intensity data
Acta Crystallographica, Section E, 2001, 57, i94-i97
9007906 CIFFe0.05 Mn0.95 SP 63 m c3.982; 3.982; 6.445
90; 90; 120
88.503Eriksson, L.; Kalinowski, M. P.
Mn1-xFexS, x=0.05, an example of an anti-wurtzite structure
Acta Crystallographica, Section E, 2001, 57, i92-i93
9007905 CIFMn O3 YbP 63 c m6.0584; 6.0584; 11.3561
90; 90; 120
360.974Van Aken, B. B.; Meetsma, A.; Palstra, T. T. M.
Hexagonal YbMnO3 revisited
Acta Crystallographica, Section E, 2001, 57, i87-i89
9007904 CIFB Ga O4 PbP n m a6.9944; 5.8925; 8.2495
90; 90; 90
339.999Park, H.; Barbier, J.
PbGaBO4, an orthoborate with a new structure-type
Acta Crystallographica, Section E, 2001, 57, i82-i84
9007902 CIFH10 Na2 O8 S2P 1 21/c 15.947; 21.574; 7.526
90; 103.82; 90
937.637Prasad S M Rani A
Rerefinement of sodium thiosulfate pentahydrate
Acta Crystallographica, Section E, 2001, 57, i67-i69
9007898 CIFC3 Na4 O11 UP -3 c 19.338; 9.338; 12.817
90; 90; 120
967.887Cisarova, I.; Skala, R.; Ondrus, P.; Drabek, M.
Trigonal Na4[UO2(CO3)3] Note: synthetic polymorph of cejkaite
Acta Crystallographica, Section E, 2001, 57, i32-i34

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