Crystallography Open Database

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2017382 CIF
HKL
Paper
Ag Bi1.998 Pb S6 Sb0.911P 1 21/c 17.0455; 19.5294; 8.3412
90; 107.446; 90
1094.9Pažout, Richard; Dušek, Michal
Natural monoclinic AgPb(Bi~2~Sb)~3~S~6~, an Sb-rich gustavite
Acta Crystallographica Section C, 2009, 65, i77-i80
4303821 CIFAg Cs Np S3C m c m4.0769; 15.1444; 10.4415
90; 90; 90
644.68Daniel M. Wells; Geng Bang Jin; S. Skanthakumar; Richard G. Haire; L. Soderholm; James A. Ibers
Quaternary Neptunium Compounds: Syntheses and Characterization of KCuNpS3, RbCuNpS3, CsCuNpS3, KAgNpS3, and CsAgNpS3
Inorganic Chemistry, 2009, 48, 11513-11517
2220992 CIF
HKL
Paper
Ag Eu O12 P4P 1 21/n 19.9654; 13.1445; 7.2321
90; 90.42; 90
947.31Ayadi, Mounir; Férid, Mokhtar; Moine, Bernard
Silver europium(III) polyphosphate
Acta Crystallographica Section E, 2009, 65, i13
7200990 CIFAg F3 KP n m a6.2689; 8.3015; 6.1844
90; 90; 90
321.844Mazej, Zoran; Goreshnik, Evgeny; Jagličić, Zvonko; Gaweł, Bartłomiej; Łasocha, Wiesław; Grzybowska, Dorota; Jaroń, Tomasz; Kurzydłowski, Dominik; Malinowski, Przemysław; Koźminski, Wiktor; Szydłowska, Jadwiga; Leszczyński, Piotr; Grochala, Wojciech
KAgF3, K2AgF4 and K3Ag2F7: important steps towards a layered antiferromagnetic fluoroargentate(II),
CrystEngComm, 2009, 11, 1702
7200988 CIFAg F4 K2C m c a6.182; 12.632; 6.436
90; 90; 90
502.6Mazej, Zoran; Goreshnik, Evgeny; Jagličić, Zvonko; Gaweł, Bartłomiej; Łasocha, Wiesław; Grzybowska, Dorota; Jaroń, Tomasz; Kurzydłowski, Dominik; Malinowski, Przemysław; Koźminski, Wiktor; Szydłowska, Jadwiga; Leszczyński, Piotr; Grochala, Wojciech
KAgF3, K2AgF4 and K3Ag2F7: important steps towards a layered antiferromagnetic fluoroargentate(II),
CrystEngComm, 2009, 11, 1702
9013697 CIFAg Fe2 S3P 1 1 21/n6.6902; 11.4497; 6.4525
90; 90; 90.242
494.262Yang, H.; Pinch, W. W.; Downs, R. T.
Crystal structure of argentopyrite, AgFe2S3, and its relationship with cubanite Locality: Joachimstal, Bohemia, Czech Republic, type sample
American Mineralogist, 2009, 94, 1727-1730
4303825 CIFAg K Np S3C m c m4.0575; 13.989; 10.422
90; 90; 90
591.6Daniel M. Wells; Geng Bang Jin; S. Skanthakumar; Richard G. Haire; L. Soderholm; James A. Ibers
Quaternary Neptunium Compounds: Syntheses and Characterization of KCuNpS3, RbCuNpS3, CsCuNpS3, KAgNpS3, and CsAgNpS3
Inorganic Chemistry, 2009, 48, 11513-11517
2224241 CIF
HKL
Paper
Ag0.13 Ca Ge Mg0.87P n m a7.5128; 4.4573; 8.3911
90; 90; 90
280.991Banenzoué, Charles; Ponou, Siméon; Lambi, John Ngolui
Non-isovalent substitution in a Zintl phase with the TiNiSi type structure, CaMg~1{‒~<i>x</i>}Ag~<i>x~</i>Ge [<i>x</i> = 0.13(3)]
Acta Crystallographica Section E, 2009, 65, i90
7000755 CIFAg0.24 Sb10.76 Te4P -3 m 14.282; 4.282; 28.636
90; 90; 120
454.71Schneider, Matthias N.; Seibald, Markus; Oeckler, Oliver
A new series of long-range ordered metastable phases in the system M‒Sb‒Te (M = Ge, Ag)
Dalton Transactions, 2009, 2004-2011
1509120 CIFAg0.45 Cu0.43 O5 V2C 1 2/m 111.757; 3.6942; 9.463
90; 114.62; 90
373.64Dolle, M.; Galy, J.; Rozier, P.
Ionic diffusion mastering using crystal-chemistry parameters: tau-Cu1/2 Ag1/2 V2 O5 structure determination and comparison with refined delta-Ag(x) V2 O5 and epsilon-Cu(x) V2 O5 ones
Journal of Solid State Chemistry, 2009, 182, 1481-1491
2104312 CIF
HKL
Paper
Ag0.5 Er3 Ge S7P 639.6921; 9.6921; 5.8308
90; 90; 120
474.35Daszkiewicz, Marek; Gulay, Lubomir D.; Lychmanyuk, Olga S.
Ln~3~<i>M</i>~1{-~δ}<i>TX</i>~7~ ‒ quasi-isostructural compounds: stereochemistry and silver-ion motion in the Ln~3~Ag~1{-~δ}GeS~7~ (Ln = La‒Nd, Sm, Gd‒Er and Y; δ = 0.11‒0.50) compounds
Acta Crystallographica Section B, 2009, 65, 126-133
2104311 CIF
HKL
Paper
Ag0.5 Ge Ho3 S7P 639.7401; 9.7401; 5.7994
90; 90; 120
476.48Daszkiewicz, Marek; Gulay, Lubomir D.; Lychmanyuk, Olga S.
Ln~3~<i>M</i>~1{-~δ}<i>TX</i>~7~ ‒ quasi-isostructural compounds: stereochemistry and silver-ion motion in the Ln~3~Ag~1{-~δ}GeS~7~ (Ln = La‒Nd, Sm, Gd‒Er and Y; δ = 0.11‒0.50) compounds
Acta Crystallographica Section B, 2009, 65, 126-133
2104313 CIF
HKL
Paper
Ag0.5 Ge S7 Y3P 639.809; 9.809; 5.8059
90; 90; 120
483.78Daszkiewicz, Marek; Gulay, Lubomir D.; Lychmanyuk, Olga S.
Ln~3~<i>M</i>~1{-~δ}<i>TX</i>~7~ ‒ quasi-isostructural compounds: stereochemistry and silver-ion motion in the Ln~3~Ag~1{-~δ}GeS~7~ (Ln = La‒Nd, Sm, Gd‒Er and Y; δ = 0.11‒0.50) compounds
Acta Crystallographica Section B, 2009, 65, 126-133
2104310 CIF
HKL
Paper
Ag0.51 Dy3 Ge S7P 639.8003; 9.8003; 5.7879
90; 90; 120
481.43Daszkiewicz, Marek; Gulay, Lubomir D.; Lychmanyuk, Olga S.
Ln~3~<i>M</i>~1{-~δ}<i>TX</i>~7~ ‒ quasi-isostructural compounds: stereochemistry and silver-ion motion in the Ln~3~Ag~1{-~δ}GeS~7~ (Ln = La‒Nd, Sm, Gd‒Er and Y; δ = 0.11‒0.50) compounds
Acta Crystallographica Section B, 2009, 65, 126-133
2104309 CIF
HKL
Paper
Ag0.59 Ge S7 Tb3P 639.9003; 9.9003; 5.7654
90; 90; 120
489.39Daszkiewicz, Marek; Gulay, Lubomir D.; Lychmanyuk, Olga S.
Ln~3~<i>M</i>~1{-~δ}<i>TX</i>~7~ ‒ quasi-isostructural compounds: stereochemistry and silver-ion motion in the Ln~3~Ag~1{-~δ}GeS~7~ (Ln = La‒Nd, Sm, Gd‒Er and Y; δ = 0.11‒0.50) compounds
Acta Crystallographica Section B, 2009, 65, 126-133
2104308 CIF
HKL
Paper
Ag0.63 Gd3 Ge S7P 639.9637; 9.9637; 5.766
90; 90; 120
495.73Daszkiewicz, Marek; Gulay, Lubomir D.; Lychmanyuk, Olga S.
Ln~3~<i>M</i>~1{-~δ}<i>TX</i>~7~ ‒ quasi-isostructural compounds: stereochemistry and silver-ion motion in the Ln~3~Ag~1{-~δ}GeS~7~ (Ln = La‒Nd, Sm, Gd‒Er and Y; δ = 0.11‒0.50) compounds
Acta Crystallographica Section B, 2009, 65, 126-133
2104307 CIF
HKL
Paper
Ag0.74 Ge S7 Sm3P 6310.0809; 10.0809; 5.7604
90; 90; 120
506.97Daszkiewicz, Marek; Gulay, Lubomir D.; Lychmanyuk, Olga S.
Ln~3~<i>M</i>~1{-~δ}<i>TX</i>~7~ ‒ quasi-isostructural compounds: stereochemistry and silver-ion motion in the Ln~3~Ag~1{-~δ}GeS~7~ (Ln = La‒Nd, Sm, Gd‒Er and Y; δ = 0.11‒0.50) compounds
Acta Crystallographica Section B, 2009, 65, 126-133
2104303 CIF
HKL
Paper
Ag0.82 Ge La3 S7P 6310.4056; 10.4056; 5.828
90; 90; 120
546.49Daszkiewicz, Marek; Gulay, Lubomir D.; Lychmanyuk, Olga S.
Ln~3~<i>M</i>~1{-~δ}<i>TX</i>~7~ ‒ quasi-isostructural compounds: stereochemistry and silver-ion motion in the Ln~3~Ag~1{-~δ}GeS~7~ (Ln = La‒Nd, Sm, Gd‒Er and Y; δ = 0.11‒0.50) compounds
Acta Crystallographica Section B, 2009, 65, 126-133
2104306 CIF
HKL
Paper
Ag0.84 Ge Nd3 S7P 6310.193; 10.193; 5.7693
90; 90; 120
519.11Daszkiewicz, Marek; Gulay, Lubomir D.; Lychmanyuk, Olga S.
Ln~3~<i>M</i>~1{-~δ}<i>TX</i>~7~ ‒ quasi-isostructural compounds: stereochemistry and silver-ion motion in the Ln~3~Ag~1{-~δ}GeS~7~ (Ln = La‒Nd, Sm, Gd‒Er and Y; δ = 0.11‒0.50) compounds
Acta Crystallographica Section B, 2009, 65, 126-133
1509049 CIFAg0.84 O5 V2C 1 2/m 111.77; 3.6748; 8.7394
90; 90.537; 90
377.983Dolle, M.; Galy, J.; Rozier, P.
Ionic diffusion mastering using crystal-chemistry parameters: tau-Cu1/2 Ag1/2 V2 O5 structure determination and comparison with refined delta-Ag(x) V2 O5 and epsilon-Cu(x) V2 O5 ones
Journal of Solid State Chemistry, 2009, 182, 1481-1491
2104304 CIF
HKL
Paper
Ag0.88 Ce3 Ge S7P 6310.3902; 10.3902; 5.8425
90; 90; 120
546.23Daszkiewicz, Marek; Gulay, Lubomir D.; Lychmanyuk, Olga S.
Ln~3~<i>M</i>~1{-~δ}<i>TX</i>~7~ ‒ quasi-isostructural compounds: stereochemistry and silver-ion motion in the Ln~3~Ag~1{-~δ}GeS~7~ (Ln = La‒Nd, Sm, Gd‒Er and Y; δ = 0.11‒0.50) compounds
Acta Crystallographica Section B, 2009, 65, 126-133
2222912 CIF
HKL
Paper
Ag0.88 Nb2 P S10C 1 2/c 124.001; 7.7711; 12.96
90; 94.833; 90
2408.6Do, Junghwan; Yun, Hoseop
Redetermination of AgNb~2~PS~10~ revealing a silver deficiency
Acta Crystallographica Section E, 2009, 65, i56-i57
2104305 CIF
Paper
Ag0.89 Ge Pr3 S7P 6310.229; 10.229; 5.776
90; 90; 120
523.39Daszkiewicz, Marek; Gulay, Lubomir D.; Lychmanyuk, Olga S.
Ln~3~<i>M</i>~1{-~δ}<i>TX</i>~7~ ‒ quasi-isostructural compounds: stereochemistry and silver-ion motion in the Ln~3~Ag~1{-~δ}GeS~7~ (Ln = La‒Nd, Sm, Gd‒Er and Y; δ = 0.11‒0.50) compounds
Acta Crystallographica Section B, 2009, 65, 126-133
9013806 CIFAg1.486 Pb3.436 S12 Sb5.215P 1 21/n 119.2767; 13.2345; 8.723
90; 90.401; 90
2225.33Yang, H.; Downs, R. T.; Burt, J. B.; Costin, G.
Structure refinement of an untwinned single crystal of Ag-excess fizelyite, Ag5.94Pb13.74Sb20.84S48
The Canadian Mineralogist, 2009, 47, 1257-1264
9013992 CIFAg10.332 As1.602 Cu5.668 S11 Sb0.398P -3 m 17.2567; 7.2567; 11.8193
90; 90; 120
539.015Bindi, L.; Pekov, I. V.
Crystal chemistry of extremely Cu-rich cupropearceite from the Sarbay mine, Northern Kazakhstan Location: Sarbay mine, Northern Kazakhstan
Zapiski Rossiiskogo Mineralogicheskogo Obshchetstva, 2009, 138, 44-50
9013616 CIFAg16 As3.596 Hg S15 Sb0.403C 1 2 126.0388; 15.0651; 15.5361
90; 90.48; 90
6094.24Bindi, L.; Keutsch, F. N.; Francis, C. A.; Menchetti, S.
Fettelite, [Ag6As2S7][Ag10HgAs2S8] from Chanarcillo, Chile: Crystal structure, pseudosymmetry, twinning, and revised chemical formula
American Mineralogist, 2009, 94, 609-615
7200989 CIFAg2 F7 K3C c c a :220.8119; 6.3402; 6.2134
90; 90; 90
819.87Mazej, Zoran; Goreshnik, Evgeny; Jagličić, Zvonko; Gaweł, Bartłomiej; Łasocha, Wiesław; Grzybowska, Dorota; Jaroń, Tomasz; Kurzydłowski, Dominik; Malinowski, Przemysław; Koźminski, Wiktor; Szydłowska, Jadwiga; Leszczyński, Piotr; Grochala, Wojciech
KAgF3, K2AgF4 and K3Ag2F7: important steps towards a layered antiferromagnetic fluoroargentate(II),
CrystEngComm, 2009, 11, 1702
1509658 CIFAg2 K P S4I -4 2 m6.6471; 6.6471; 8.1693
90; 90; 90
360.952Wu Yuandong; Bensch, W.
Syntheses, crystal structures and spectroscopic properties of Ag2 Nb [P2 S6] [S2] and K Ag2 [P S4]
Journal of Solid State Chemistry, 2009, 182, 471-478
4509432 CIFAg2 K S3 SbP -16.7406; 9.4172; 10.9115
90.697; 92.804; 90.732
691.69Yao, Hua-Gang; Ji, Min; Ji, Shou-Hua; Zhang, Ren-Chun; An, Yong-Lin; Ning, Gui-ling
Solvothermal Syntheses of Two Novel Layered Quaternary Silver−Antimony(III) Sulfides with Different Strategies
Crystal Growth & Design, 2009, 9, 3821
7001697 CIFAg2 Mo O12 Te4C 1 2/c 117.598; 5.8063; 11.3908
90; 104.276; 90
1128Zhou, Yong; Hu, Chun-Li; Hu, Ting; Kong, Fang; Mao, Jiang-Gao
Explorations of new second-order NLO materials in the AgI-MoVI/WVI-TeIV-O systems
Dalton Transactions, 2009, 5747
7001696 CIFAg2 Mo3 O16 Te3I 1 2 17.398; 11.296; 8.245
90; 97.73; 90
682.8Zhou, Yong; Hu, Chun-Li; Hu, Ting; Kong, Fang; Mao, Jiang-Gao
Explorations of new second-order NLO materials in the AgI-MoVI/WVI-TeIV-O systems
Dalton Transactions, 2009, 5747
1509676 CIFAg2 Nb P2 S8P n m a12.2188; 26.3725; 6.7517
90; 90; 90
2175.67Bensch, W.; Wu Yuandong
Syntheses, crystal structures and spectroscopic properties of Ag2 Nb [P2 S6] [S2] and K Ag2 [P S4]
Journal of Solid State Chemistry, 2009, 182, 471-478
1509751 CIFAg2.913 As S3R 3 c :H10.913; 10.913; 8.762
90; 90; 120
903.696Pawlowski, A.; Gagor, A.; Pietraszko, A.
Silver transfer in proustite Ag3 As S3 at high temperatures: Conductivity and single-crystal X-ray studies
Journal of Solid State Chemistry, 2009, 182, 451-456
8103014 CIFAg20 Cl4 O16 Si4P 1 21/c 112.8931; 19.0916; 12.7599
90; 118.356; 90
2764Wilhelm Klein; Martin Jansen
Crystal structure of pentasilver chloride silicate, Ag5[SiO4]Cl
Zeitschrift für Kristallographie - New Crystal Structures, 2009, 224, 165
4509431 CIFAg3 K2 S7 Sb3C m c 2124.8053; 9.0346; 6.7517
90; 90; 90
1513.1Yao, Hua-Gang; Ji, Min; Ji, Shou-Hua; Zhang, Ren-Chun; An, Yong-Lin; Ning, Gui-ling
Solvothermal Syntheses of Two Novel Layered Quaternary Silver−Antimony(III) Sulfides with Different Strategies
Crystal Growth & Design, 2009, 9, 3821
1510024 CIFAg3 O35 U7 V5P -4 m 27.2373; 7.2373; 14.7973
90; 90; 90
775.061Obbade, S.; Abraham, F.; Renard, C.
New open-framework in the uranyl vanadates A3 (U O2)7 (V O4)5 O (A = Li, Ag) with intergrowth structure between A (U O2)4 (V O4)3 and A2 (U O2)3 (V O4)2 O
Journal of Solid State Chemistry, 2009, 182, 413-420
4338546 CIFAg3.95 Ba4 Ge2 Te9P b a m8.6835; 13.6421; 10.2612
90; 90; 90
1215.55Cui, Yanjie; Assoud, Abdeljalil; Kleinke, Holger
Synthesis and Structural and Physical Properties of New Semiconducting Quaternary Tellurides: Ba~4~Ag~3.95~Ge~2~Te~9~ and Ba~4~Cu~3.71~Ge~2~Te~9~
Inorganic chemistry, 2009, 48, 5313-5319
9013299 CIFAg31 As0.203 Cu S22 Sb3.797C 1 2/c 126.2625; 15.1623; 24.1061
90; 90.045; 90
9599.04Bindi, L.; Menchetti, S.
Adding further complexity to the polybasite structure: The role of Ag in the B layer of the -M2a2b2c polytype
American Mineralogist, 2009, 94, 151-155
9013429 CIFAg5 S4 SbC m c 217.8329; 12.458; 8.5272
90; 90; 90
832.104Leitl, M.; Pfitzner, A.; Bindi, L.
Preferred ion diffusion pathways and activation energies for Ag in the crystal structure of stephanite, Ag5SbS4 Note: y-coordinate of Sb altered by Bindi, June 2009
Mineralogical Magazine, 2009, 73, 17-26
7200608 CIFAg6 As4 O19 U2P -111.218; 11.729; 14.146
108.69; 91.94; 97.63
1741.7Alekseev, Evgeny V.; Krivovichev, Sergey V.; Depmeier, Wulf
Novel layered uranyl arsenates, Ag6[(UO2)2(As2O7)(As4O13)] and AI6[(UO2)2(AsO4)2(As2O7)] (AI–Ag and Na): first observation of a linear As4O136− anion and structure type evolution
Journal of Materials Chemistry, 2009, 19, 2583
7200607 CIFAg6 As6 O24 U2P 1 21/n 18.963; 27.576; 9.207
90; 105.04; 90
2197.7Alekseev, Evgeny V.; Krivovichev, Sergey V.; Depmeier, Wulf
Novel layered uranyl arsenates, Ag6[(UO2)2(As2O7)(As4O13)] and AI6[(UO2)2(AsO4)2(As2O7)] (AI–Ag and Na): first observation of a linear As4O136− anion and structure type evolution
Journal of Materials Chemistry, 2009, 19, 2583
7001698 CIFAg6 O20 Te4 W3C 1 2/c 129.792; 6.7016; 9.534
90; 91.745; 90
1902.6Zhou, Yong; Hu, Chun-Li; Hu, Ting; Kong, Fang; Mao, Jiang-Gao
Explorations of new second-order NLO materials in the AgI-MoVI/WVI-TeIV-O systems
Dalton Transactions, 2009, 5747
7051673 CIFAg7 As8 Fe3 O28P 1 21/c 19.9139; 8.6068; 28.904
90; 93.317; 90
2462.2Quarez, Eric; Mentré, Olivier; Oumellal, Yassine; Masquelier, Christian
Crystal structures of new silver ion conductors Ag7Fe3(X2O7)4 (X = P, As)
New Journal of Chemistry, 2009, 33, 998
7051674 CIFAg7 As8 Fe3 O28C 1 2/c 19.9285; 8.6101; 29.039
90; 93.5228; 90
2477.72Quarez, Eric; Mentré, Olivier; Oumellal, Yassine; Masquelier, Christian
Crystal structures of new silver ion conductors Ag7Fe3(X2O7)4 (X = P, As)
New Journal of Chemistry, 2009, 33, 998
7051671 CIFAg7 Fe3 O28 P8P 1 21/c 19.532; 8.421; 28.021
90; 93.225; 90
2245.7Quarez, Eric; Mentré, Olivier; Oumellal, Yassine; Masquelier, Christian
Crystal structures of new silver ion conductors Ag7Fe3(X2O7)4 (X = P, As)
New Journal of Chemistry, 2009, 33, 998
7051672 CIFAg7 Fe3 O28 P8C 1 2/c 19.5561; 8.4417; 28.2257
90; 93.465; 90
2272.8Quarez, Eric; Mentré, Olivier; Oumellal, Yassine; Masquelier, Christian
Crystal structures of new silver ion conductors Ag7Fe3(X2O7)4 (X = P, As)
New Journal of Chemistry, 2009, 33, 998
2300250 CIFAlF m -3 m4.03702; 4.03702; 4.03702
90; 90; 90
65.793Fortes, A. D.; Wood, I. G.; Vočadlo, L.; Knight, K. S.; Marshall, W. G.; Tucker, M. G.; Fernandez-Alonso, F.
Phase behaviour and thermoelastic properties of perdeuterated ammonia hydrate and ice polymorphs from 0 to 2GPa
Journal of Applied Crystallography, 2009, 42, 846-866
2220995 CIF
HKL
Paper
Al As2 Li3 Mo2 O14P -15.213; 5.426; 9.474
95.98; 102.25; 105.3
248.92Hajji, Mounir; Zid, Mohamed Faouzi; Driss, Ahmed
Li~3~Al(MoO~2~)~2~O~2~(AsO~4~)~2~
Acta Crystallographica Section E, 2009, 65, i21
4301956 CIFAl B5 H16 N2 O14C 2 2 219.335; 10.487; 14.165
90; 90; 90
1386.7Cheng Rong; Zhiwu Yu; Qiang Wang; Shou-Tian Zheng; Chun-Yang Pan; Feng Deng; Guo-Yu Yang
Aluminoborates with Open Frameworks: Syntheses, Structures, and Properties
Inorganic Chemistry, 2009, 48, 3650-3659
4301955 CIFAl B5 H8 K2 O14C 2 2 219.34; 10.308; 13.777
90; 90; 90
1326.4Cheng Rong; Zhiwu Yu; Qiang Wang; Shou-Tian Zheng; Chun-Yang Pan; Feng Deng; Guo-Yu Yang
Aluminoborates with Open Frameworks: Syntheses, Structures, and Properties
Inorganic Chemistry, 2009, 48, 3650-3659
4302558 CIFAl Ba D GeP 3 m 14.34484; 4.34484; 5.21606
90; 90; 120
85.275Michael J. Evans; Verina F. Kranak; Francisco J. Garcia-Garcia; Gregory P. Holland; Luke L. Daemen; Thomas Proffen; Myeong H. Lee; Otto F. Sankey; Ulrich Häussermann
Structural and Dynamic Properties of BaInGeH: A Rare Solid-State Indium Hydride
Inorganic Chemistry, 2009, 48, 5602-5604
9016086 CIFAl Cu F H5 O4C 1 2/m 112.346; 2.907; 10.369
90; 97.9; 90
368.61Hager, S. L.; Leverett, P.; Williams, P. A.
Possible structural and chemical relationships in the cyanotrichite group
The Canadian Mineralogist, 2009, 47, 635-648
2221284 CIF
HKL
Paper
Al Cu2 F8 H21 O10P -16.6119; 7.341; 8.3174
107.336; 106.715; 94.454
363.15Weil, Matthias
[Cu~2~(HF~2~)(H~2~O)~8~][AlF~6~]·2H~2~O
Acta Crystallographica Section E, 2009, 65, i29
4302811 CIFAl Dy3 S7 Si0.5P 639.6361; 9.6361; 5.9439
90; 90; 120
477.97Sheng-Ping Guo; Guo-Cong Guo; Ming-Sheng Wang; Jian-Ping Zou; Gang Xu; Guo-Jian Wang; Xi-Fa Long; Jin-Shun Huang
A Series of New Infrared NLO Semiconductors, ZnY6Si2S14, AlxDy3(SiyAl1-y)S7, and Al0.33Sm3SiS7
Inorganic Chemistry, 2009, 48, 7059-7065
2017074 CIF
HKL
Paper
Al F OP n m a8.825; 8.408; 4.669
90; 90; 90
346.44Vasiliev, Alexander D.; Melnikova, Svetlana V.; Isaenko, Lyudmila I.
Orthorhombic aluminium oxyfluoride, AlOF
Acta Crystallographica Section C, 2009, 65, i20-i22
1507761 CIFAl F4 KP n m a8.3242; 7.2502; 11.8875
90; 90; 90
717.44Le Bail, A
Ab initio structure determination of theta-KAlF4 with edge-sharing AlF6 octahedra
Powder Diffraction, 2009, 24, 185-190
1507767 CIFAl F4 NaC m c m3.6121; 14.952; 5.2692
90; 90; 90
284.58Le Bail, A
Crystal structure of NaAlF4, a new aristotype
Powder Diffraction, 2009, 24, 301-305
4303319 CIFAl F6 K3I 41/a :218.8385; 18.8385; 33.9644
90; 90; 90
12053.6Artem M. Abakumov; Graham King; Veronika K. Laurinavichute; Marina G. Rozova; Patrick M. Woodward; Evgeny V. Antipov
The Crystal Structure of α-K3AlF6: Elpasolites and Double Perovskites with Broken Corner-Sharing Connectivity of the Octahedral Framework
Inorganic Chemistry, 2009, 48, 9336-9344
9013783 CIFAl H7 O11 Pb3 SR 3 c :H7.742; 7.742; 32.082
90; 90; 120
1665.32Krivovichev, S. V.; Armbruster, T.; Yakovenchuk, V. N.
The crystal structure of krivovichevite, Pb3[Al(OH)6](SO4)(OH)
The Canadian Mineralogist, 2009, 47, 153-158
1544370 CIFAl Na O8 Si3P m n n8.24; 8.68; 4.84
90; 90; 90
346.172Hwang, S.-L.; Shen, P.; Chu, H.-T.; Yui, T.-F.; Liou, J.G.; Sobolev, N.V.
Kumdykolite, an orthorhombic polymorph of albite, from the Kokchetav ultrahigh-pressure massif, Kazakhstan Note: Na positon from Nemeth et al., Am. Mineral., 98, 1070-1073, 2013
Europian Journal of Mineralogy, 2009, 21, 1325-1334
9013884 CIFAl0.006 Cr0.61 Mg0.004 O5 Ti0.758 V1.622C 1 2/c 110.033; 5.039; 6.988
90; 111.5; 90
328.705Armbruster, T.; Galuskin, E. V.; Reznitsky, L. Z.; Sklyarov, E. V.
X-ray structural investigation of the oxyvanite (V3O5) - berdesinskiite (V2TiO5) series: V4+ substituting for octahedrally coordinated Ti4+ Locality: Pereval marble quarry, Sludyanka complex, south of Lake Baikal, Russia Sample: III-7-22
European Journal of Mineralogy, 2009, 21, 885-891
9013885 CIFAl0.006 Cr0.61 Mg0.004 O5 Ti0.758 V1.622C 1 2/c 110.0448; 5.0393; 6.989
90; 111.486; 90
329.19Armbruster, T.; Galuskin, E. V.; Reznitsky, L. Z.; Sklyarov, E. V.
X-ray structural investigation of the oxyvanite (V3O5) - berdesinskiite (V2TiO5) series: V4+ substituting for octahedrally coordinated Ti4+ Locality: Pereval marble quarry, Sludyanka complex, south of Lake Baikal, Russia Sample: III-9-11
European Journal of Mineralogy, 2009, 21, 885-891
9013785 CIFAl0.01 Ca0.04 Fe0.43 H5 Mn0.6 Na0.89 O7 PC m c e6.2499; 8.7479; 19.9554
90; 90; 90
1091.03Cooper, M. A.; Hawthorne, F. C.; Cerny, P.
The crystal structure of ercitite, Na2(H2O)4[Mn3+2(OH)2(PO4)2], and its relation to bermanite, Mn2+(H2O)4[Mn3+2(OH)2(PO4)2] Locality: Tanco granitic pegmatite, Bernic Lake, southeastern Manitoba, Canada
The Canadian Mineralogist, 2009, 47, 173-180
9013536 CIFAl0.028 Fe2.387 O4 Ti0.585F d -3 m :28.4716; 8.4716; 8.4716
90; 90; 90
607.99Bosi, F.; Halenius, U.; Skogby, H.
Crystal chemistry of the magnetite-ulvospinel series Note: FeTi50Bd
American Mineralogist, 2009, 94, 181-189
9013431 CIFAl0.03 Fe0.82 K0.01 Mg0.08 Mn0.01 Na0.77 O8 P0.06 S2 Ti0.02C 1 2/m 18.043; 5.139; 7.115
90; 92.13; 90
293.881Balic-Zunic T; Garavelli, A.; Acquafredda, P.; Leonardsen, E.; Jakobsson, S. P.
Eldfellite, NaFe(SO4)2, a new fumarolic mineral from Eldfell volcano, Iceland
Mineralogical Magazine, 2009, 73, 51-57
9013950 CIFAl0.04 As2.98 Ca0.02 Cd2.89 Cu0.44 H8.68 Mn0.52 O20 P1.02 Pb0.04 Zn1.05C 1 2/c 118.062; 9.341; 9.844
90; 96.17; 90
1651.23Elliott, P.; Turner, P.; Jensen, P.; Kolitsch, U.; Pring, A.
Description and crystal structure of nyholmite, a new mineral related to hureaulite, from Broken Hill,New South Wales, Australia Locality: Broken Hill, New South Wales, Australia
Mineralogical Magazine, 2009, 73, 723-735
9013951 CIFAl0.04 Ba1.28 Ca0.4 Fe0.06 H20 K0.3 Mn1.44 Na4.2 Nb1.43 O42 Si8 Sr0.5 Ti4.14P -15.447; 7.157; 47.259
97.759; 92.136; 89.978
1824.2Camara, F.; Sokolova, E.
From structure topology to chemical composition. X. Titanium silicates: the crystal structure and crystal chemistry of nechelyustovite, a group III Ti-disilicate mineral Locality: hydrothermally altered pegmatite, Kirovskii mine, Mt Kukisvumchorr, Khibina alkaline massif, Kola peninsula, Russia
Mineralogical Magazine, 2009, 73, 753-775
9013953 CIFAl0.08 Ba5.22 Ca0.58 F6.02 Fe10.08 H7.98 K0.68 Mg0.16 Mn5.12 Na2.58 Nb0.48 O71.98 Si16 Ti7.44 Zr0.16C -110.6965; 13.7861; 21.478
99.345; 92.315; 89.993
3122.56Camara, F.; Sokolova, E.; Nieto, F.
Camaraite, Ba3NaTi4(Fe2+,Mn)8(Si2O7)4O4(OH,F)7. II. The crystal structure and crystal chemistry of a new group-II Ti-disilicate mineral Locality: the Verkhnee Espe alkaline deposit, Akjailyautas Mountains, Kazakhstan
Mineralogical Magazine, 2009, 73, 855-870
9013664 CIFAl0.19 Cr1.75 Fe0.479 Mg0.567 Mn0.009 O4 Ti0.004F d -3 m :28.33273; 8.33273; 8.33273
90; 90; 90
578.578Lenaz, D.; Logvinova, A. M.; Princivalle, F.; Sobolev, N. V.
Structural parameters of chromite included in diamond and kimberlites from Siberia: A new tool for discriminating ultramafic source Locality: Udachnaya mine, Daldyn kimberlitic field, close to Arctic Circle, Russia Note: sample UDK1
American Mineralogists, 2009, 94, 1067-1070
9013666 CIFAl0.218 Cr1.72 Fe0.452 Mg0.589 Mn0.008 O4 Ti0.012F d -3 m :28.3266; 8.3266; 8.3266
90; 90; 90
577.302Lenaz, D.; Logvinova, A. M.; Princivalle, F.; Sobolev, N. V.
Structural parameters of chromite included in diamond and kimberlites from Siberia: A new tool for discriminating ultramafic source Locality: Udachnaya mine, Daldyn kimberlitic field, close to Arctic Circle, Russia Note: sample UDK4
American Mineralogists, 2009, 94, 1067-1070
9013669 CIFAl0.219 Cr1.56 Fe0.597 Mg0.574 Mn0.009 Ni0.002 O4 Ti0.036F d -3 m :28.339; 8.339; 8.339
90; 90; 90
579.885Lenaz, D.; Logvinova, A. M.; Princivalle, F.; Sobolev, N. V.
Structural parameters of chromite included in diamond and kimberlites from Siberia: A new tool for discriminating ultramafic source Note: sample Mr-1a
American Mineralogists, 2009, 94, 1067-1070
9013665 CIFAl0.223 Cr1.722 Fe0.444 Mg0.601 Mn0.007 O4 Ti0.002F d -3 m :28.3264; 8.3264; 8.3264
90; 90; 90
577.26Lenaz, D.; Logvinova, A. M.; Princivalle, F.; Sobolev, N. V.
Structural parameters of chromite included in diamond and kimberlites from Siberia: A new tool for discriminating ultramafic source Locality: Udachnaya mine, Daldyn kimberlitic field, close to Arctic Circle, Russia Note: sample UDK3
American Mineralogists, 2009, 94, 1067-1070
9013668 CIFAl0.228 Cr1.7 Fe0.509 Mg0.547 Mn0.009 Ni0.002 O4 Ti0.004F d -3 m :28.3293; 8.3293; 8.3293
90; 90; 90
577.864Lenaz, D.; Logvinova, A. M.; Princivalle, F.; Sobolev, N. V.
Structural parameters of chromite included in diamond and kimberlites from Siberia: A new tool for discriminating ultramafic source Note: sample Inter-1
American Mineralogists, 2009, 94, 1067-1070
9013434 CIFAl0.24 Fe5.6 H6 O18 P3 Zn1.16B b m m13.865; 16.798; 5.151
90; 90; 90
1199.69Elliot, P.; Kolitsch, U.; Giester, G.; Libowitzky, E.; McCammon, C.; Pring, A.; Birch, W. D.; Brugger, J.
Description and crystal structure of a new mineral - plimerite, ZnFe3+4(PO4)3(OH)5 - the Zn-analogue of rockbridgeite and frondelite, from Broken Hill, New South Wales, Australia Locality: Broken Hill, New South Wales, Australia
Mineralogical Magazine, 2009, 73, 131-148
9013667 CIFAl0.246 Cr1.702 Fe0.431 Mg0.609 Mn0.008 Ni0.004 O4F d -3 m :28.3249; 8.3249; 8.3249
90; 90; 90
576.949Lenaz, D.; Logvinova, A. M.; Princivalle, F.; Sobolev, N. V.
Structural parameters of chromite included in diamond and kimberlites from Siberia: A new tool for discriminating ultramafic source Locality: Udachnaya mine, Daldyn kimberlitic field, close to Arctic Circle, Russia Note: sample UDK5
American Mineralogists, 2009, 94, 1067-1070
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
9013655 CIFAl0.3 Mg0.4 Na0.97 O6 Si2.33C 1 2/c 19.441; 8.6038; 5.2547
90; 107.833; 90
406.323Yang, H.; Konzett, J.; Frost, D. J.; Downs, R. T.
X-ray diffraction and Raman spectroscopic study of clinopyroxenes with six-coordinated Si in the Na(Mg0.5Si0.5)Si2O6 - NaAlSi2O6 system Note: Sample J3
American Mineralogist, 2009, 94, 942-949
9013678 CIFAl0.32 Ca1.28 Fe0.66 K0.21 Mg4.5 Mn0.08 Na1.27 O24 Si7.68C 1 2/m 19.8056; 18.0105; 5.2725
90; 104.406; 90
901.865Andreozzi, G. B.; Ballirano, P.; Gianfagna, A.; Mazziotti-Tagliani S; Pacella, A.
Structural and spectroscopic characterization of a suite of fibrous amphiboles with high environmental and health relevance from Biancaville (Sicily, Italy) Locality: Biancaville, Sicily, Italy Sample Name: Sample 1
American Mineralogist, 2009, 94, 1333-1340
1528923 CIFAl0.33 Cs O6 W1.67F d -3 m :210.207; 10.207; 10.207
90; 90; 90
1063.39Thorogood, G.J.; Luca, V.; Peterson, V.K.; Kennedy, B.J.; Kearley, G.J.; Elcombe, M.M.; Hanna, J.V.
Anomalous lattice parameter increase in alkali earth aluminium substituted tungsten defect pyrochlores
Journal of Solid State Chemistry, 2009, 182, 457-464
1528921 CIFAl0.33 K O6 W1.67F d -3 m :210.1808; 10.1808; 10.1808
90; 90; 90
1055.23Thorogood, G.J.; Peterson, V.K.; Kennedy, B.J.; Kearley, G.J.; Elcombe, M.M.; Hanna, J.V.; Luca, V.
Anomalous lattice parameter increase in alkali earth aluminium substituted tungsten defect pyrochlores
Journal of Solid State Chemistry, 2009, 182, 457-464
1528922 CIFAl0.33 O6 Rb W1.67F d -3 m :210.1726; 10.1726; 10.1726
90; 90; 90
1052.68Thorogood, G.J.; Hanna, J.V.; Peterson, V.K.; Kennedy, B.J.; Kearley, G.J.; Elcombe, M.M.; Luca, V.
Anomalous lattice parameter increase in alkali earth aluminium substituted tungsten defect pyrochlores
Journal of Solid State Chemistry, 2009, 182, 457-464
4302813 CIFAl0.33 S7 Si Sm3P 639.9791; 9.9791; 5.6793
90; 90; 120
489.79Sheng-Ping Guo; Guo-Cong Guo; Ming-Sheng Wang; Jian-Ping Zou; Gang Xu; Guo-Jian Wang; Xi-Fa Long; Jin-Shun Huang
A Series of New Infrared NLO Semiconductors, ZnY6Si2S14, AlxDy3(SiyAl1-y)S7, and Al0.33Sm3SiS7
Inorganic Chemistry, 2009, 48, 7059-7065
9013670 CIFAl0.396 Cr1.6 Fe0.416 Mg0.607 Mn0.008 O4 Ti0.002F d -3 m :28.3055; 8.3055; 8.3055
90; 90; 90
572.924Lenaz, D.; Logvinova, A. M.; Princivalle, F.; Sobolev, N. V.
Structural parameters of chromite included in diamond and kimberlites from Siberia: A new tool for discriminating ultramafic source Note: sample UV-170
American Mineralogists, 2009, 94, 1067-1070
9013681 CIFAl0.4 Ca1.3 Fe0.6 K0.24 Mg4.6 Mn0.06 Na1.2 O24 Si7.6C 1 2/m 19.7935; 17.9728; 5.2746
90; 104.403; 90
899.237Andreozzi, G. B.; Ballirano, P.; Gianfagna, A.; Mazziotti-Tagliani S; Pacella, A.
Structural and spectroscopic characterization of a suite of fibrous amphiboles with high environmental and health relevance from Biancaville (Sicily, Italy) Locality: Biancaville, Sicily, Italy Sample Name: Sample 4
American Mineralogist, 2009, 94, 1333-1340
9013680 CIFAl0.4 Ca1.4 Fe0.42 K0.1 Mg4.74 Mn0.06 Na1.32 O24 Si7.6C 1 2/m 19.8272; 17.9899; 5.2756
90; 104.596; 90
902.575Andreozzi, G. B.; Ballirano, P.; Gianfagna, A.; Mazziotti-Tagliani S; Pacella, A.
Structural and spectroscopic characterization of a suite of fibrous amphiboles with high environmental and health relevance from Biancaville (Sicily, Italy) Locality: Biancaville, Sicily, Italy Sample Name: Sample 3
American Mineralogist, 2009, 94, 1333-1340
9013679 CIFAl0.4 Ca1.56 Fe0.73 K0.09 Mg4.35 Mn0.04 Na0.94 O24 Si7.6C 1 2/m 19.8112; 18.0162; 5.2774
90; 104.624; 90
902.615Andreozzi, G. B.; Ballirano, P.; Gianfagna, A.; Mazziotti-Tagliani S; Pacella, A.
Structural and spectroscopic characterization of a suite of fibrous amphiboles with high environmental and health relevance from Biancaville (Sicily, Italy) Locality: Biancaville, Sicily, Italy Sample Name: Sample 2
American Mineralogist, 2009, 94, 1333-1340
9013795 CIFAl0.468 Ca1.902 F1.98 Fe2.818 K0.746 Mg2.182 O22.02 Si7.492C 1 2/m 19.948; 18.1777; 5.3302
90; 105.14; 90
930.414Lupulescu, M. V.; Rakovan, J.; Dyar, M. D.; Robinson, G. W.; Hughes, J. M.
Fluoro-potassichastingsite from the Greenwood mine, Orange County, New York: A new end-member calcic amphibole
The Canadian Mineralogist, 2009, 47, 909-916
9017542 CIFAl0.5 Ca1.52 Fe0.3 Mg0.2 Na0.48 O7 Si2P -4 21 m7.7661; 7.7661; 5.0297
90; 90; 90
303.353Wiedenmann, D.; Zaitsev, A. N.; Britvin, S. N.; Krivovichev, S. V.; Keller, J.
Alumoakermanite, (Ca,Na)2(Al,Mg,Fe2+)(Si2O7), a new mineral from the active carbonatite-nephelinite-phonolite volcano Oldoinyo Lengai, northern Tanzania
Mineralogical Magazine, 2009, 73, 373-384
4302812 CIFAl0.53 Dy3 S7 Si0.85P 639.7755; 9.7755; 5.6821
90; 90; 120
470.24Sheng-Ping Guo; Guo-Cong Guo; Ming-Sheng Wang; Jian-Ping Zou; Gang Xu; Guo-Jian Wang; Xi-Fa Long; Jin-Shun Huang
A Series of New Infrared NLO Semiconductors, ZnY6Si2S14, AlxDy3(SiyAl1-y)S7, and Al0.33Sm3SiS7
Inorganic Chemistry, 2009, 48, 7059-7065
9013656 CIFAl0.55 Mg0.27 Na0.97 O6 Si2.21C 1 2/c 19.4429; 8.5946; 5.2437
90; 107.741; 90
405.329Yang, H.; Konzett, J.; Frost, D. J.; Downs, R. T.
X-ray diffraction and Raman spectroscopic study of clinopyroxenes with six-coordinated Si in the Na(Mg0.5Si0.5)Si2O6 - NaAlSi2O6 system Note: Sample J4
American Mineralogist, 2009, 94, 942-949
9013606 CIFAl0.61 Ca2.31 Ce3.21 Dy0.03 Fe0.39 Gd0.06 H7 La1.35 Nd1.14 O31 Pr0.42 Si7 Sm0.15 Yb0.009R 3 c :H10.645; 10.645; 38.019
90; 90; 120
3730.98Nestola, F.; Guastoni, A.; Camara, F.; Secco, L.; Dal Negro, A.; Pedron, D.; Beran, A.
Aluminocerite-Ce: A new species from Baveno, Italy: Descriptions and crystal-structure determination
American Mineralogist, 2009, 94, 487-493
9014802 CIFAl0.64 Cu3 Fe0.36 K3 O18 S4I 1 2 118.772; 4.967; 18.468
90; 101.66; 90
1686.43Krivovichev, S. V.; Filatov, S. K.; Cherepansky, P. N.
The crystal structure of alumoklyuchevskite, K3Cu3AlO2(SO4)4 Kamchatka Peninsula, Russia, 1975-1976
Geology of Ore Deposits, 2009, 51, 656-662
9013657 CIFAl0.7 Mg0.17 Na0.99 O6 Si2.14C 1 2/c 19.4373; 8.5804; 5.2348
90; 107.647; 90
403.945Yang, H.; Konzett, J.; Frost, D. J.; Downs, R. T.
X-ray diffraction and Raman spectroscopic study of clinopyroxenes with six-coordinated Si in the Na(Mg0.5Si0.5)Si2O6 - NaAlSi2O6 system Note: Sample J5
American Mineralogist, 2009, 94, 942-949
9013852 CIFAl0.721 Fe0.219 H4 Mg2.782 O9 Si1.279C -15.327; 9.233; 14.381
90.2; 97.2; 89.97
701.736Zanazzi, P. F.; Comodi, P.; Nazzareni, S.; Andreozzi, G. B.
Thermal behaviour of chlorite: an in situ single-crystal and powder diffraction study Note: T = 25 C
European Journal of Mineralogy, 2009, 21, 581-589
9013853 CIFAl0.721 Fe0.219 H4 Mg2.782 O9 Si1.279C -15.3454; 9.2584; 14.435
90.29; 97.28; 90
708.618Zanazzi, P. F.; Comodi, P.; Nazzareni, S.; Andreozzi, G. B.
Thermal behaviour of chlorite: an in situ single-crystal and powder diffraction study Note: T = 301 C
European Journal of Mineralogy, 2009, 21, 581-589
9013854 CIFAl0.721 Fe0.219 H4 Mg2.782 O9 Si1.279C -15.3504; 9.2661; 14.447
90.31; 97.29; 90
710.444Zanazzi, P. F.; Comodi, P.; Nazzareni, S.; Andreozzi, G. B.
Thermal behaviour of chlorite: an in situ single-crystal and powder diffraction study Note: T = 399 C
European Journal of Mineralogy, 2009, 21, 581-589
9013855 CIFAl0.721 Fe0.219 H4 Mg2.782 O9 Si1.279C -15.3533; 9.2778; 14.464
90.3; 97.27; 90
712.596Zanazzi, P. F.; Comodi, P.; Nazzareni, S.; Andreozzi, G. B.
Thermal behaviour of chlorite: an in situ single-crystal and powder diffraction study Note: T = 502 C
European Journal of Mineralogy, 2009, 21, 581-589
1544503 CIFAl0.91 Ca0.88 N2.85 O0.15 Si1.09C m c 219.802; 5.6506; 5.0633
90; 90; 90
280.442Uheda, K.; Yamamoto, H.; Yamane, H.; Inami, W.; Tsuda, K.; Yamamoto, Y.; Hirosaki, N.
An analysis of crystal structure of Ca-deficient oxonitridoaluminosilicate, Ca0.88Al0.91Si1.09N2.85O0.15
Journal of the Ceramic Society of Japan, 2009, 117, 94-98
2220936 CIF
Paper
Al0.95 As Co0.05 H4 O6P b c a8.79263; 9.79795; 10.08393
90; 90; 90
868.728Zoppi, Matteo; Pratesi, Giovanni
Rietveld refinement of a natural cobaltian mansfieldite from synchrotron data
Acta Crystallographica Section E, 2009, 65, i6-i7
9013297 CIFAl1.059 Ca1.43 Ce0.188 Fe0.265 Mn2.059 O13 Si3P 1 21/m 18.891; 5.696; 10.35
90; 115.35; 90
473.685Bonazzi, P.; Holtstam, D.; Bindi, L.; Nysten, P.; Capitani, G.
Multi-analytical approach to solve the puzzle of an allanite-subgroup mineral from Kesebol, Vastra Gotaland, Sweden Locality: Kesebol, Vastra Gotaland, Sweden Note: K3-700 sample
American Mineralogist, 2009, 94, 121-134
9013298 CIFAl1.064 Ca0.888 Ce0.834 Fe0.391 Mn1.822 O13 Si3P 1 21/m 18.894; 5.699; 10.368
90; 115.69; 90
473.575Bonazzi, P.; Holtstam, D.; Bindi, L.; Nysten, P.; Capitani, G.
Multi-analytical approach to solve the puzzle of an allanite-subgroup mineral from Kesebol, Vastra Gotaland, Sweden Locality: Kesebol, Vastra Gotaland, Sweden Note: K3-800 sample
American Mineralogist, 2009, 94, 121-134
9013289 CIFAl1.078 Ca0.606 Ce0.774 Fe0.159 Mn2.383 O13 Si3P 1 21/m 18.971; 5.766; 10.224
90; 114.53; 90
481.122Bonazzi, P.; Holtstam, D.; Bindi, L.; Nysten, P.; Capitani, G.
Multi-analytical approach to solve the puzzle of an allanite-subgroup mineral from Kesebol, Vastra Gotaland, Sweden Locality: Kesebol, Vastra Gotaland, Sweden Note: K1 sample
American Mineralogist, 2009, 94, 121-134
9013294 CIFAl1.08 Ca0.7 Ce0.78 Fe0.14 H Mn2.3 O13 Si3P 1 21/m 18.925; 5.744; 10.158
90; 114.46; 90
474.015Bonazzi, P.; Holtstam, D.; Bindi, L.; Nysten, P.; Capitani, G.
Multi-analytical approach to solve the puzzle of an allanite-subgroup mineral from Kesebol, Vastra Gotaland, Sweden Locality: Kesebol, Vastra Gotaland, Sweden Note: K5-700 sample, annealing ex situ under inert atmosphere
American Mineralogist, 2009, 94, 121-134
9013292 CIFAl1.08 Ca0.7 Ce0.78 Fe0.14 Mn2.3 O13 Si3P 1 21/m 18.953; 5.763; 10.186
90; 114.42; 90
478.542Bonazzi, P.; Holtstam, D.; Bindi, L.; Nysten, P.; Capitani, G.
Multi-analytical approach to solve the puzzle of an allanite-subgroup mineral from Kesebol, Vastra Gotaland, Sweden Locality: Kesebol, Vastra Gotaland, Sweden Note: K5 sample
American Mineralogist, 2009, 94, 121-134
9013293 CIFAl1.081 Ca0.701 Ce0.787 Fe0.123 Mn2.308 O13 Si3P 1 21/m 18.95; 5.77; 10.194
90; 114.42; 90
479.338Bonazzi, P.; Holtstam, D.; Bindi, L.; Nysten, P.; Capitani, G.
Multi-analytical approach to solve the puzzle of an allanite-subgroup mineral from Kesebol, Vastra Gotaland, Sweden Locality: Kesebol, Vastra Gotaland, Sweden Note: K5-600 sample, annealing under inert temperature
American Mineralogist, 2009, 94, 121-134
9013295 CIFAl1.113 Ca1.151 Ce0.241 Fe0.172 Mn2.323 O13 Si3P 1 21/m 18.922; 5.717; 10.272
90; 115.24; 90
473.923Bonazzi, P.; Holtstam, D.; Bindi, L.; Nysten, P.; Capitani, G.
Multi-analytical approach to solve the puzzle of an allanite-subgroup mineral from Kesebol, Vastra Gotaland, Sweden Locality: Kesebol, Vastra Gotaland, Sweden Note: K3-550 sample
American Mineralogist, 2009, 94, 121-134
9013291 CIFAl1.116 Ca0.604 Ce0.747 Fe0.143 Mn2.391 O13 Si3P 1 21/m 18.958; 5.764; 10.205
90; 114.5; 90
479.48Bonazzi, P.; Holtstam, D.; Bindi, L.; Nysten, P.; Capitani, G.
Multi-analytical approach to solve the puzzle of an allanite-subgroup mineral from Kesebol, Vastra Gotaland, Sweden Locality: Kesebol, Vastra Gotaland, Sweden Note: K4 sample
American Mineralogist, 2009, 94, 121-134
9013296 CIFAl1.118 Ca1.221 Ce0.233 Fe0.186 Mn2.242 O13 Si3P 1 21/m 18.908; 5.711; 10.314
90; 115.38; 90
474.068Bonazzi, P.; Holtstam, D.; Bindi, L.; Nysten, P.; Capitani, G.
Multi-analytical approach to solve the puzzle of an allanite-subgroup mineral from Kesebol, Vastra Gotaland, Sweden Locality: Kesebol, Vastra Gotaland, Sweden Note: K3-600 sample
American Mineralogist, 2009, 94, 121-134
9013290 CIFAl1.138 Ca0.646 Ce0.735 Fe0.153 Mn2.326 O13 Si3P 1 21/m 18.943; 5.768; 10.195
90; 114.42; 90
478.844Bonazzi, P.; Holtstam, D.; Bindi, L.; Nysten, P.; Capitani, G.
Multi-analytical approach to solve the puzzle of an allanite-subgroup mineral from Kesebol, Vastra Gotaland, Sweden Locality: Kesebol, Vastra Gotaland, Sweden Note: K2 sample
American Mineralogist, 2009, 94, 121-134
9013952 CIFAl1.18 Ca0.02 F1.4 Fe1.04 H0.6 K0.86 Li0.91 Mg1.76 Mn0.09 Na3.12 O22.6 Si7.96 Ti0.02 Zn0.04C 1 2/m 19.7043; 17.7341; 5.2833
90; 104.067; 90
881.974Oberti, R.; Camara, F.; Hawthorne, F. C.; Ball, N. A.
Fluoro-aluminoleakeite, NaNa2(Mg2Al2Li)Si8O22F2, a new mineral of the amphibole group from Norra Karr, Sweden: description and crystal structure
Mineralogical Magazine, 2009, 73, 817-824
9013671 CIFAl1.284 Cr0.632 Fe0.416 Mg0.649 Ni0.006 O4 Ti0.006F d -3 m :28.1821; 8.1821; 8.1821
90; 90; 90
547.765Lenaz, D.; Logvinova, A. M.; Princivalle, F.; Sobolev, N. V.
Structural parameters of chromite included in diamond and kimberlites from Siberia: A new tool for discriminating ultramafic source Note: sample O-119
American Mineralogists, 2009, 94, 1067-1070
9013672 CIFAl1.448 Cr0.544 Fe0.251 Mg0.744 Mn0.003 Ni0.006 O4 Ti0.004F d -3 m :28.17149; 8.17149; 8.17149
90; 90; 90
545.637Lenaz, D.; Logvinova, A. M.; Princivalle, F.; Sobolev, N. V.
Structural parameters of chromite included in diamond and kimberlites from Siberia: A new tool for discriminating ultramafic source Note: sample O-601
American Mineralogists, 2009, 94, 1067-1070
9013828 CIFAl1.45 Ba0.04 F0.12 Fe0.67 H1.2 K0.86 Mg1.97 Mn0.01 Na0.08 O11.88 Si2.72 Ti0.18C 1 2/m 15.3187; 9.2104; 10.1967
90; 100.148; 90
491.695Ventruti, G.; Levy, D.; Pavese, A.; Scordari, F.; Suard, E.
High-temperature treatment, hydrogen behaviour and cation partitioning of a Fe-Ti bearing volcanic phlogopite by in situ neutron powder diffraction and FTIR spectroscopy Note: Phlogopite-1M Note: T = 10 K
European Journal of Mineralogy, 2009, 21, 385-396
9013829 CIFAl1.45 Ba0.04 F0.12 Fe0.67 H1.2 K0.86 Mg1.97 Mn0.01 Na0.08 O11.88 Si2.72 Ti0.18C 1 2/m 15.3291; 9.2281; 10.2279
90; 100.078; 90
495.221Ventruti, G.; Levy, D.; Pavese, A.; Scordari, F.; Suard, E.
High-temperature treatment, hydrogen behaviour and cation partitioning of a Fe-Ti bearing volcanic phlogopite by in situ neutron powder diffraction and FTIR spectroscopy Note: Phlogopite-1M Note: T = 298 K, neutron
European Journal of Mineralogy, 2009, 21, 385-396
9013830 CIFAl1.45 Ba0.04 F0.12 Fe0.67 H1.2 K0.86 Mg1.97 Mn0.01 Na0.08 O11.88 Si2.72 Ti0.18C 1 2/m 15.3582; 9.2816; 10.2972
90; 100.157; 90
504.082Ventruti, G.; Levy, D.; Pavese, A.; Scordari, F.; Suard, E.
High-temperature treatment, hydrogen behaviour and cation partitioning of a Fe-Ti bearing volcanic phlogopite by in situ neutron powder diffraction and FTIR spectroscopy Note: Phlogopite-1M Note: T = 673 K, neutron
European Journal of Mineralogy, 2009, 21, 385-396
9013831 CIFAl1.45 Ba0.04 F0.12 Fe0.67 H1.2 K0.86 Mg1.97 Mn0.01 Na0.08 O11.88 Si2.72 Ti0.18C 1 2/m 15.3729; 9.3057; 10.3469
90; 100.148; 90
509.237Ventruti, G.; Levy, D.; Pavese, A.; Scordari, F.; Suard, E.
High-temperature treatment, hydrogen behaviour and cation partitioning of a Fe-Ti bearing volcanic phlogopite by in situ neutron powder diffraction and FTIR spectroscopy Note: Phlogopite-1M Note: T = 873 K, neutron
European Journal of Mineralogy, 2009, 21, 385-396
9013832 CIFAl1.45 Ba0.04 F0.12 Fe0.67 H1.2 K0.86 Mg1.97 Mn0.01 Na0.08 O11.88 Si2.72 Ti0.18C 1 2/m 15.3305; 9.2301; 10.2241
90; 100.018; 90
495.367Ventruti, G.; Levy, D.; Pavese, A.; Scordari, F.; Suard, E.
High-temperature treatment, hydrogen behaviour and cation partitioning of a Fe-Ti bearing volcanic phlogopite by in situ neutron powder diffraction and FTIR spectroscopy Note: Phlogopite-1M Note: T = 298 K, X-Ray
European Journal of Mineralogy, 2009, 21, 385-396
1528735 CIFAl1.48 Be2.7 Cr0.52 Mg0.3 O18 Si6P 6/m c c9.28; 9.28; 9.198
90; 90; 120
685.993Mikhailov, M.A.; Rozhdestvenskaya, I.V.; Demina, T.V.; Bannova, I.I.; Matveeva, L.M.
Structural features and isomorphous substitutions in chromium- and magnesium-containing beryls and chromium-containing beryllian indialite grown by the flux method
Kristallografiya, 2009, 54, 231-238
9013300 CIFAl1.5 Ca0.16 H8 K0.44 Na0.36 O10.962 Si2.5P 1 21/m 19.9238; 14.3145; 8.7416
90; 124.92; 90
1018.2Gatta, G. D.; Cappelletti, P.; Rotiroti, N.; Slebodnick, C.; Rinaldi, R.
New insights into the crystal structure and crystal chemistry of the zeolite phillipsite Note: T = 298 K Note: Chemistry and structural occupancy are not consistent
American Mineralogist, 2009, 94, 190-199
9013301 CIFAl1.5 Ca0.175 H6 K0.435 Na0.395 O10.743 Si2.5P 1 21/m 19.8511; 14.2476; 8.6422
90; 124.319; 90
1001.81Gatta, G. D.; Cappelletti, P.; Rotiroti, N.; Slebodnick, C.; Rinaldi, R.
New insights into the crystal structure and crystal chemistry of the zeolite phillipsite Note: T = 100 K Note: Chemistry and structural occupancy are not consistent
American Mineralogist, 2009, 94, 190-199
9013674 CIFAl1.536 Cs1.34 H4 Na0.204 O12.66 Si4.434I a -3 d13.667; 13.667; 13.667
90; 90; 90
2552.82Gatta, G. D.; Rotiroti, N.; Boffa Ballaran, T.; Sanchez-Valle C; Pavese, A.
Elastic behavior and phase stability of pollucite, a potential host for nuclear waste Locality: Greenwood, Oxford County, Maine, USA
American Mineralogist, 2009, 94, 1137-1143
1528736 CIFAl1.72 Be2.76 Cr0.2 K0.08 Mg0.32 O18 Si6P 6/m c c9.263; 9.263; 9.199
90; 90; 120
683.557Mikhailov, M.A.; Rozhdestvenskaya, I.V.; Demina, T.V.; Matveeva, L.M.; Bannova, I.I.
Structural features and isomorphous substitutions in chromium- and magnesium-containing beryls and chromium-containing beryllian indialite grown by the flux method
Kristallografiya, 2009, 54, 231-238
2104447 CIF
HKL
Paper
Al1.778 Eu2 N14.222 O1.111 Si8.889Pm21n(\a00)0004.899; 9.036; 7.4677
90; 90; 90
330.58Michiue, Yuichi; Shioi, Kousuke; Hirosaki, Naoto; Takeda, Takashi; Xie, Rong-Jun; Sato, Akira; Onoda, Mitsuko; Matsushita, Yoshitaka
Eu~3~Si~15{-~<i>x</i>}Al~1+<i>x~</i>O~<i>x~</i>N~23{-~<i>x</i>} (<i>x</i> ≃5/3) as a commensurate composite crystal
Acta Crystallographica Section B, 2009, 65, 567-575
9013622 CIFAl1.906 Fe0.934 Mg0.146 O4 Ti0.004F d -3 m :28.1517; 8.1517; 8.1517
90; 90; 90
541.682Lavina, B.; Cesare, B.; Alvarez-Valero A M; Uchida, H.; Downs, R. T.; Koneva, A.; Dera, P.
Closure temperatures of intracrystalline ordering in anatectic and metamorphic hercynite, Fe2+Al2O4 Note: Sample AVHz20 Locality: El Hoyazo, lavas of the Neogene Volcanic Province of SE Spain
American Mineralogist, 2009, 94, 657-665
9013624 CIFAl1.922 Fe0.892 Mg0.164 Mn0.006 O4 Ti0.004 Zn0.002F d -3 m :28.1474; 8.1474; 8.1474
90; 90; 90
540.825Lavina, B.; Cesare, B.; Alvarez-Valero A M; Uchida, H.; Downs, R. T.; Koneva, A.; Dera, P.
Closure temperatures of intracrystalline ordering in anatectic and metamorphic hercynite, Fe2+Al2O4 Note: Sample HO27BC Locality: El Hoyazo, lavas of the Neogene Volcanic Province of SE Spain
American Mineralogist, 2009, 94, 657-665
9013623 CIFAl1.93 Fe0.898 Mg0.15 Mn0.006 O4 Ti0.006F d -3 m :28.1504; 8.1504; 8.1504
90; 90; 90
541.423Lavina, B.; Cesare, B.; Alvarez-Valero A M; Uchida, H.; Downs, R. T.; Koneva, A.; Dera, P.
Closure temperatures of intracrystalline ordering in anatectic and metamorphic hercynite, Fe2+Al2O4 Note: Sample HO15 Locality: El Hoyazo, lavas of the Neogene Volcanic Province of SE Spain
American Mineralogist, 2009, 94, 657-665
9013626 CIFAl1.944 Fe0.838 Mg0.206 O4 Ti0.008 V0.004F d -3 m :28.1451; 8.1451; 8.1451
90; 90; 90
540.368Lavina, B.; Cesare, B.; Alvarez-Valero A M; Uchida, H.; Downs, R. T.; Koneva, A.; Dera, P.
Closure temperatures of intracrystalline ordering in anatectic and metamorphic hercynite, Fe2+Al2O4 Note: Sample 441B Locality: the Anga metamorphic complex, Lake Baikal, Russia
American Mineralogist, 2009, 94, 657-665
9013621 CIFAl1.948 Fe0.924 Mg0.116 O4F d -3 m :28.1511; 8.1511; 8.1511
90; 90; 90
541.563Lavina, B.; Cesare, B.; Alvarez-Valero A M; Uchida, H.; Downs, R. T.; Koneva, A.; Dera, P.
Closure temperatures of intracrystalline ordering in anatectic and metamorphic hercynite, Fe2+Al2O4 Note: Sample AVMa8.9 Locality: El Hoyazo, lavas of the Neogene Volcanic Province of SE Spain
American Mineralogist, 2009, 94, 657-665
9013620 CIFAl1.964 Fe0.878 Mg0.138 O4F d -3 m :28.1584; 8.1584; 8.1584
90; 90; 90
543.019Lavina, B.; Cesare, B.; Alvarez-Valero A M; Uchida, H.; Downs, R. T.; Koneva, A.; Dera, P.
Closure temperatures of intracrystalline ordering in anatectic and metamorphic hercynite, Fe2+Al2O4 Note: Sample HO19 Locality: El Hoyazo, lavas of the Neogene Volcanic Province of SE Spain
American Mineralogist, 2009, 94, 657-665
9013625 CIFAl1.966 Fe0.84 Mg0.19 O4F d -3 m :28.146; 8.146; 8.146
90; 90; 90
540.547Lavina, B.; Cesare, B.; Alvarez-Valero A M; Uchida, H.; Downs, R. T.; Koneva, A.; Dera, P.
Closure temperatures of intracrystalline ordering in anatectic and metamorphic hercynite, Fe2+Al2O4 Note: Sample 441A Locality: the Anga metamorphic complex, Lake Baikal, Russia
American Mineralogist, 2009, 94, 657-665
9014636 CIFAl1.98 Ca0.04 F1.02 Fe1.16 H0.98 Li2.56 Mg1.1 Mn0.08 Na0.73 O22.98 Si8 Zn0.02C 1 2/m 19.372; 17.6312; 5.2732
90; 102.247; 90
851.512Oberti, R.; Boiocchi, M.; Ball, N. A.; Hawthorne, F. C.
Fluoro-sodic-ferropedrizite, NaLi2(Fe2+2Al2Li)Si8O22F2, a new mineral of the amphibole group from the Sutlug River, Tuva Republic, Russia: description and crystal structure
Mineralogical Magazine, 2009, 73, 487-494
2104375 CIF
HKL
Paper
Al12827.56 Cu1244.05 Ta9063F -4 3 m71.49; 71.49; 71.49
90; 90; 90
365373Weber, Thomas; Dshemuchadse, Julia; Kobas, Miroslav; Conrad, Matthias; Harbrecht, Bernd; Steurer, Walter
Large, larger, largest ‒ a family of cluster-based tantalum copper aluminides with giant unit cells. I. Structure solution and refinement
Acta Crystallographica Section B, 2009, 65, 308-317
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
1529014 CIFAl2 Be2.34 Cs0.079 Li0.66 Na0.419 O24.19 Si6P 6/m c c9.2102; 9.2102; 9.2179
90; 90; 120
677.175Yakubovich, 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
Kristallografiya, 2009, 54, 432-445
9013842 CIFAl2 Ca2 H2 O12 Si3P n c m4.6248; 5.4825; 18.475
90; 90; 90
468.442Detrie, T. A.; Ross, N. L.; Angel, R. J.; Gatta, G. D.
Equation of state and structure of prehnite to 9.8 GPa Note: P = 0.0001 GPa
European Journal of Mineralogy, 2009, 21, 561-570
9013843 CIFAl2 Ca2 H2 O12 Si3P n c m4.5905; 5.4508; 18.397
90; 90; 90
460.328Detrie, T. A.; Ross, N. L.; Angel, R. J.; Gatta, G. D.
Equation of state and structure of prehnite to 9.8 GPa Note: P = 1.952 GPa
European Journal of Mineralogy, 2009, 21, 561-570
9013844 CIFAl2 Ca2 H2 O12 Si3P n c m4.5539; 5.4148; 18.317
90; 90; 90
451.669Detrie, T. A.; Ross, N. L.; Angel, R. J.; Gatta, G. D.
Equation of state and structure of prehnite to 9.8 GPa Note: P = 4.279 GPa
European Journal of Mineralogy, 2009, 21, 561-570
9013845 CIFAl2 Ca2 H2 O12 Si3P n c m4.5414; 5.4023; 18.2913
90; 90; 90
448.759Detrie, T. A.; Ross, N. L.; Angel, R. J.; Gatta, G. D.
Equation of state and structure of prehnite to 9.8 GPa Note: P = 5.111 GPa
European Journal of Mineralogy, 2009, 21, 561-570
9013846 CIFAl2 Ca2 H2 O12 Si3P n c m4.5236; 5.3828; 18.2482
90; 90; 90
444.337Detrie, T. A.; Ross, N. L.; Angel, R. J.; Gatta, G. D.
Equation of state and structure of prehnite to 9.8 GPa Note: P = 6.408 GPa
European Journal of Mineralogy, 2009, 21, 561-570
9013847 CIFAl2 Ca2 H2 O12 Si3P n c m4.5058; 5.3618; 18.208
90; 90; 90
439.891Detrie, T. A.; Ross, N. L.; Angel, R. J.; Gatta, G. D.
Equation of state and structure of prehnite to 9.8 GPa Note: P = 7.818 GPa
European Journal of Mineralogy, 2009, 21, 561-570
9013848 CIFAl2 Ca2 H2 O12 Si3P n c m4.5008; 5.356; 18.196
90; 90; 90
438.638Detrie, T. A.; Ross, N. L.; Angel, R. J.; Gatta, G. D.
Equation of state and structure of prehnite to 9.8 GPa Note: P = 8.207 GPa
European Journal of Mineralogy, 2009, 21, 561-570
9013849 CIFAl2 Ca2 H2 O12 Si3P n c m4.4904; 5.342; 18.174
90; 90; 90
435.953Detrie, T. A.; Ross, N. L.; Angel, R. J.; Gatta, G. D.
Equation of state and structure of prehnite to 9.8 GPa Note: P = 9.03 GPa
European Journal of Mineralogy, 2009, 21, 561-570
9013850 CIFAl2 Ca2 H2 O12 Si3P n c m4.4868; 5.335; 18.168
90; 90; 90
434.889Detrie, T. A.; Ross, N. L.; Angel, R. J.; Gatta, G. D.
Equation of state and structure of prehnite to 9.8 GPa Note: P = 9.345 GPa
European Journal of Mineralogy, 2009, 21, 561-570
9013851 CIFAl2 Ca2 H2 O12 Si3P n c m4.482; 5.3201; 18.161
90; 90; 90
433.043Detrie, T. A.; Ross, N. L.; Angel, R. J.; Gatta, G. D.
Equation of state and structure of prehnite to 9.8 GPa Note: P = 9.75 GPa
European Journal of Mineralogy, 2009, 21, 561-570
9013649 CIFAl2 Co O4F d -3 m :28.1005; 8.1005; 8.1005
90; 90; 90
531.539Popovic, J.; Tkalcec, E.; Grzeta, B.; Kurajica, S.; Rakvin, B.
Inverse spinel structure of Co-doped gahnite Note: Sample S10, inversion parameter = .248, CoAl2O4
American Mineralogists, 2009, 94, 771-776
9013643 CIFAl2 Co0.04 O4 Zn0.96F d -3 m :28.0863; 8.0863; 8.0863
90; 90; 90
528.749Popovic, J.; Tkalcec, E.; Grzeta, B.; Kurajica, S.; Rakvin, B.
Inverse spinel structure of Co-doped gahnite Note: Sample S1, inversion parameter = .037, (Zn.96Co.04)Al2O4
American Mineralogists, 2009, 94, 771-776
9013644 CIFAl2 Co0.08 O4 Zn0.92F d -3 m :28.0883; 8.0883; 8.0883
90; 90; 90
529.141Popovic, J.; Tkalcec, E.; Grzeta, B.; Kurajica, S.; Rakvin, B.
Inverse spinel structure of Co-doped gahnite Note: Sample S2, inversion parameter = .051, (Zn.92Co.08)Al2O4
American Mineralogists, 2009, 94, 771-776
9013645 CIFAl2 Co0.12 O4 Zn0.88F d -3 m :28.0897; 8.0897; 8.0897
90; 90; 90
529.416Popovic, J.; Tkalcec, E.; Grzeta, B.; Kurajica, S.; Rakvin, B.
Inverse spinel structure of Co-doped gahnite Note: Sample S3, inversion parameter = .054, (Zn.88Co.12)Al2O4
American Mineralogists, 2009, 94, 771-776
9013646 CIFAl2 Co0.25 O4 Zn0.75F d -3 m :28.0914; 8.0914; 8.0914
90; 90; 90
529.75Popovic, J.; Tkalcec, E.; Grzeta, B.; Kurajica, S.; Rakvin, B.
Inverse spinel structure of Co-doped gahnite Note: Sample S4, inversion parameter = .070, (Zn.75Co.25)Al2O4
American Mineralogists, 2009, 94, 771-776
9013647 CIFAl2 Co0.5 O4 Zn0.5F d -3 m :28.0928; 8.0928; 8.0928
90; 90; 90
530.025Popovic, J.; Tkalcec, E.; Grzeta, B.; Kurajica, S.; Rakvin, B.
Inverse spinel structure of Co-doped gahnite Note: Sample S6, inversion parameter = .095, (Zn.5Co.5)Al2O4
American Mineralogists, 2009, 94, 771-776
9013648 CIFAl2 Co0.75 O4 Zn0.25F d -3 m :28.0945; 8.0945; 8.0945
90; 90; 90
530.359Popovic, J.; Tkalcec, E.; Grzeta, B.; Kurajica, S.; Rakvin, B.
Inverse spinel structure of Co-doped gahnite Note: Sample S8, inversion parameter = .150, (Zn.25Co.75)Al2O4
American Mineralogists, 2009, 94, 771-776
9013990 CIFAl2 H5 O18 Si3.882 Tm0.935 Y2.115P 1 21/n 15.7551; 14.752; 15.906
90; 96.046; 90
1342.9Yakbovich, O. V.; Steele, I. M.
The crystal structure of vyuntspakhite: a redetermination
Crystallography Reports, 2009, 54, 822-830
1544373 CIFAl2 Mg2 O5P b a m9.371; 12.1952; 2.7916
90; 90; 90
319.03Enomoto, A.; Kojitani, H.; Akaogi, M.; Miura, H.; Yusa, H.
High-pressure transitions in MgAl2O4 and a new high-pressure phase of Mg2Al2O5
Journal of Solid State Chemistry, 2009, 395, 182-389
9013642 CIFAl2 O4 ZnF d -3 m :28.0854; 8.0854; 8.0854
90; 90; 90
528.572Popovic, J.; Tkalcec, E.; Grzeta, B.; Kurajica, S.; Rakvin, B.
Inverse spinel structure of Co-doped gahnite Note: Sample S0, inversion parameter = 0, ZnAl2O4
American Mineralogists, 2009, 94, 771-776
4302188 CIFAl2 Sb6 Sr0.85 Yb4.15P b a m7.3313; 23.118; 4.4497
90; 90; 90
754.2Iliya Todorov; Duck Young Chung; Linhui Ye; Arthur J. Freeman; Mercouri G. Kanatzidis
Synthesis, Structure and Charge Transport Properties of Yb5Al2Sb6: A Zintl Phase with Incomplete Electron Transfer
Inorganic Chemistry, 2009, 48, 4768-4776
4302187 CIFAl2 Sb6 Yb5P b a m7.2971; 22.78; 4.4115
90; 90; 90
733.3Iliya Todorov; Duck Young Chung; Linhui Ye; Arthur J. Freeman; Mercouri G. Kanatzidis
Synthesis, Structure and Charge Transport Properties of Yb5Al2Sb6: A Zintl Phase with Incomplete Electron Transfer
Inorganic Chemistry, 2009, 48, 4768-4776
8103017 CIFAl2 Sb6 Yb5P b a m7.321; 22.878; 4.4061
90; 90; 90
738Maria L. Fornasini; Pietro Manfrinetti
Crystal structure of ytterbium aluminium antimonide, Yb5Al2Sb6
Zeitschrift für Kristallographie - New Crystal Structures, 2009, 224, 345
9013287 CIFAl2.079 Ca0.246 H8.28 K0.398 Mg0.035 Na0.986 O20.38 Si6.921A m m a13.6744; 17.8937; 17.5723
90; 90; 90
4299.69Ori, S.; Mazzucato, E.; Vezzalini, G.
Dehydration dynamics of barrerite: An in situ synchrotron XRPD study Note: BAR-A, T = 482 K
American Mineralogist, 2009, 94, 64-73
9013796 CIFAl2.37 Ca1.8 Cr0.2 Fe0.47 H2 K0.1 Mg3.66 Na0.88 O24 Si6.44C 1 2/m 19.8059; 17.9721; 5.3012
90; 105.063; 90
902.144Abdu, Y. A.; Hawthorne, F. C.
Crystal structure and Mossbauer spectroscopy of tschermakite from the ruby locality at Fiskenaesset, Greenland
The Canadian Mineralogist, 2009, 47, 917-926
1528734 CIFAl2.38 Be1.05 Cr0.18 K0.05 Mg1.68 Na0.09 O18 Si5.7 Ti0.01P 6/m c c9.606; 9.606; 9.279
90; 90; 120
741.51Mikhailov, M.A.; Rozhdestvenskaya, I.V.; Bannova, I.I.; Demina, T.V.; Matveeva, L.M.
Structural features and isomorphous substitutions in chromium- and magnesium-containing beryls and chromium-containing beryllian indialite grown by the flux method
Kristallografiya, 2009, 54, 231-238
9013682 CIFAl2.38 Ca2 Cr0.62 O13 Si3P 1 21/m 18.8889; 5.6058; 10.1513
90; 115.284; 90
457.375Nagashima, M.; Geiger, C. A.; Akasaka, M.
A crystal-chemical investigation of clinozoisite synthesized along the join Ca2Al3Si3O12(OH)-Ca2Al2CrSi3O12(OH)
American Mineralogist, 2009, 94, 1351-1360
9013683 CIFAl2.5 Ca2 Cr0.5 O13 Si3P 1 21/m 18.8859; 5.6006; 10.15
90; 115.322; 90
456.595Nagashima, M.; Geiger, C. A.; Akasaka, M.
A crystal-chemical investigation of clinozoisite synthesized along the join Ca2Al3Si3O12(OH)-Ca2Al2CrSi3O12(OH) Note: T = 700 C, P = 1.2 GPa
American Mineralogist, 2009, 94, 1351-1360
9013684 CIFAl2.51 Ca2 Cr0.49 O13 Si3P 1 21/m 18.8814; 5.6022; 10.148
90; 115.32; 90
456.412Nagashima, M.; Geiger, C. A.; Akasaka, M.
A crystal-chemical investigation of clinozoisite synthesized along the join Ca2Al3Si3O12(OH)-Ca2Al2CrSi3O12(OH)
American Mineralogist, 2009, 94, 1351-1360
2104446 CIF
HKL
Paper
Al2.667 Eu3 N21.333 O1.667 Si13.333P 1 21 114.697; 9.036; 7.4677
90; 90.224; 90
991.7Michiue, Yuichi; Shioi, Kousuke; Hirosaki, Naoto; Takeda, Takashi; Xie, Rong-Jun; Sato, Akira; Onoda, Mitsuko; Matsushita, Yoshitaka
Eu~3~Si~15{-~<i>x</i>}Al~1+<i>x~</i>O~<i>x~</i>N~23{-~<i>x</i>} (<i>x</i> ≃5/3) as a commensurate composite crystal
Acta Crystallographica Section B, 2009, 65, 567-575
9013685 CIFAl2.72 Ca2 Cr0.28 O13 Si3P 1 21/m 18.8806; 5.5973; 10.1465
90; 115.312; 90
455.934Nagashima, M.; Geiger, C. A.; Akasaka, M.
A crystal-chemical investigation of clinozoisite synthesized along the join Ca2Al3Si3O12(OH)-Ca2Al2CrSi3O12(OH)
American Mineralogist, 2009, 94, 1351-1360
9015826 CIFAl2.729 Ca1.95 Cr0.052 F0.06 Fe2.65 K0.54 Mg1.393 Mn0.03 Na0.47 O23.94 Si5.92 Ti0.226C 1 2/m 19.937; 18.108; 5.335
90; 105.3; 90
925.952Banno, Y.; Miyawaki, R.; Matsubara, S.; Sato, E.; Nakai, I.; Matsuo, G.; Yamada, S.
Potassic-ferropargasite, a new member of the amphibole group, from Kabutoichiba, Mie Prefecture, central Japan
Journal of Mineralogical and Petrological Sciences, 2009, 104, 374-382
4301388 CIFAl24.08 Au7.86 Nb Sr3P m -3 m8.7168; 8.7168; 8.7168
90; 90; 90
662.33Susan E. Latturner; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
R3Au6+xAl26T (R = Ca, Sr, Eu, Yb; T = Early Transition Metal): a Large Family of Compounds with a Stuffed BaHg11 Structure Type Grown from Aluminum Flux
Inorganic Chemistry, 2009, 48, 1346-1355
4301374 CIFAl24.88 Au7.46 Ca3 MoP m -3 m8.6056; 8.6056; 8.6056
90; 90; 90
637.3Susan E. Latturner; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
R3Au6+xAl26T (R = Ca, Sr, Eu, Yb; T = Early Transition Metal): a Large Family of Compounds with a Stuffed BaHg11 Structure Type Grown from Aluminum Flux
Inorganic Chemistry, 2009, 48, 1346-1355
4301383 CIFAl24.9 Au7.1 Eu3 ReP m -3 m8.5836; 8.5836; 8.5836
90; 90; 90
632.42Susan E. Latturner; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
R3Au6+xAl26T (R = Ca, Sr, Eu, Yb; T = Early Transition Metal): a Large Family of Compounds with a Stuffed BaHg11 Structure Type Grown from Aluminum Flux
Inorganic Chemistry, 2009, 48, 1346-1355
4301378 CIFAl24.98 Au7.33 Ca3 WP m -3 m8.6047; 8.6047; 8.6047
90; 90; 90
637.1Susan E. Latturner; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
R3Au6+xAl26T (R = Ca, Sr, Eu, Yb; T = Early Transition Metal): a Large Family of Compounds with a Stuffed BaHg11 Structure Type Grown from Aluminum Flux
Inorganic Chemistry, 2009, 48, 1346-1355
4301395 CIFAl25.11 Au7.87 Yb3 ZrP m -3 m8.6903; 8.6903; 8.6903
90; 90; 90
656.3Susan E. Latturner; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
R3Au6+xAl26T (R = Ca, Sr, Eu, Yb; T = Early Transition Metal): a Large Family of Compounds with a Stuffed BaHg11 Structure Type Grown from Aluminum Flux
Inorganic Chemistry, 2009, 48, 1346-1355
4301390 CIFAl25.2 Au7.8 Hf Yb3P m -3 m8.6834; 8.6834; 8.6834
90; 90; 90
654.74Susan E. Latturner; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
R3Au6+xAl26T (R = Ca, Sr, Eu, Yb; T = Early Transition Metal): a Large Family of Compounds with a Stuffed BaHg11 Structure Type Grown from Aluminum Flux
Inorganic Chemistry, 2009, 48, 1346-1355
4301387 CIFAl25.26 Au7.71 Mn Sr3P m -3 m8.6851; 8.6851; 8.6851
90; 90; 90
655.13Susan E. Latturner; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
R3Au6+xAl26T (R = Ca, Sr, Eu, Yb; T = Early Transition Metal): a Large Family of Compounds with a Stuffed BaHg11 Structure Type Grown from Aluminum Flux
Inorganic Chemistry, 2009, 48, 1346-1355
4301389 CIFAl25.5 Au7.5 Sr3 TiP m -3 m8.7367; 8.7367; 8.7367
90; 90; 90
666.87Susan E. Latturner; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
R3Au6+xAl26T (R = Ca, Sr, Eu, Yb; T = Early Transition Metal): a Large Family of Compounds with a Stuffed BaHg11 Structure Type Grown from Aluminum Flux
Inorganic Chemistry, 2009, 48, 1346-1355
4301373 CIFAl25.58 Au7.42 Ca3 HfP m -3 m8.7005; 8.7005; 8.7005
90; 90; 90
658.62Susan E. Latturner; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
R3Au6+xAl26T (R = Ca, Sr, Eu, Yb; T = Early Transition Metal): a Large Family of Compounds with a Stuffed BaHg11 Structure Type Grown from Aluminum Flux
Inorganic Chemistry, 2009, 48, 1346-1355
4301391 CIFAl25.6 Au7.2 Nb Yb3P m -3 m8.6552; 8.6552; 8.6552
90; 90; 90
648.38Susan E. Latturner; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
R3Au6+xAl26T (R = Ca, Sr, Eu, Yb; T = Early Transition Metal): a Large Family of Compounds with a Stuffed BaHg11 Structure Type Grown from Aluminum Flux
Inorganic Chemistry, 2009, 48, 1346-1355
4301379 CIFAl25.6 Au7.4 Ca3 ZrP m -3 m8.709; 8.709; 8.709
90; 90; 90
660.55Susan E. Latturner; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
R3Au6+xAl26T (R = Ca, Sr, Eu, Yb; T = Early Transition Metal): a Large Family of Compounds with a Stuffed BaHg11 Structure Type Grown from Aluminum Flux
Inorganic Chemistry, 2009, 48, 1346-1355
4301386 CIFAl25.64 Au7.38 Eu3 ZrP m -3 m8.7289; 8.7289; 8.7289
90; 90; 90
665.09Susan E. Latturner; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
R3Au6+xAl26T (R = Ca, Sr, Eu, Yb; T = Early Transition Metal): a Large Family of Compounds with a Stuffed BaHg11 Structure Type Grown from Aluminum Flux
Inorganic Chemistry, 2009, 48, 1346-1355
4301375 CIFAl25.66 Au7.08 Ca3 NbP m -3 m8.6606; 8.6606; 8.6606
90; 90; 90
649.6Susan E. Latturner; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
R3Au6+xAl26T (R = Ca, Sr, Eu, Yb; T = Early Transition Metal): a Large Family of Compounds with a Stuffed BaHg11 Structure Type Grown from Aluminum Flux
Inorganic Chemistry, 2009, 48, 1346-1355
4301392 CIFAl25.7 Au6.7 Ta Yb3P m -3 m8.629; 8.629; 8.629
90; 90; 90
642.51Susan E. Latturner; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
R3Au6+xAl26T (R = Ca, Sr, Eu, Yb; T = Early Transition Metal): a Large Family of Compounds with a Stuffed BaHg11 Structure Type Grown from Aluminum Flux
Inorganic Chemistry, 2009, 48, 1346-1355
4301382 CIFAl25.7 Au7.2 Eu3 MnP m -3 m8.6623; 8.6623; 8.6623
90; 90; 90
649.98Susan E. Latturner; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
R3Au6+xAl26T (R = Ca, Sr, Eu, Yb; T = Early Transition Metal): a Large Family of Compounds with a Stuffed BaHg11 Structure Type Grown from Aluminum Flux
Inorganic Chemistry, 2009, 48, 1346-1355
4301384 CIFAl25.74 Au7.24 Eu3 TiP m -3 m8.7094; 8.7094; 8.7094
90; 90; 90
660.64Susan E. Latturner; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
R3Au6+xAl26T (R = Ca, Sr, Eu, Yb; T = Early Transition Metal): a Large Family of Compounds with a Stuffed BaHg11 Structure Type Grown from Aluminum Flux
Inorganic Chemistry, 2009, 48, 1346-1355
4301394 CIFAl25.8 Au6.8 V Yb3P m -3 m8.6145; 8.6145; 8.6145
90; 90; 90
639.28Susan E. Latturner; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
R3Au6+xAl26T (R = Ca, Sr, Eu, Yb; T = Early Transition Metal): a Large Family of Compounds with a Stuffed BaHg11 Structure Type Grown from Aluminum Flux
Inorganic Chemistry, 2009, 48, 1346-1355
4301393 CIFAl25.8 Au7 Ti Yb3P m -3 m8.6509; 8.6509; 8.6509
90; 90; 90
647.42Susan E. Latturner; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
R3Au6+xAl26T (R = Ca, Sr, Eu, Yb; T = Early Transition Metal): a Large Family of Compounds with a Stuffed BaHg11 Structure Type Grown from Aluminum Flux
Inorganic Chemistry, 2009, 48, 1346-1355
4301381 CIFAl25.86 Au7.14 Eu3 HfP m -3 m8.7429; 8.7429; 8.7429
90; 90; 90
668.29Susan E. Latturner; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
R3Au6+xAl26T (R = Ca, Sr, Eu, Yb; T = Early Transition Metal): a Large Family of Compounds with a Stuffed BaHg11 Structure Type Grown from Aluminum Flux
Inorganic Chemistry, 2009, 48, 1346-1355
4301377 CIFAl25.9 Au6.6 Ca3 VP m -3 m8.635; 8.635; 8.635
90; 90; 90
643.85Susan E. Latturner; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
R3Au6+xAl26T (R = Ca, Sr, Eu, Yb; T = Early Transition Metal): a Large Family of Compounds with a Stuffed BaHg11 Structure Type Grown from Aluminum Flux
Inorganic Chemistry, 2009, 48, 1346-1355
4301380 CIFAl25.95 Au6.59 Cr Eu3P m -3 m8.6433; 8.6433; 8.6433
90; 90; 90
645.71Susan E. Latturner; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
R3Au6+xAl26T (R = Ca, Sr, Eu, Yb; T = Early Transition Metal): a Large Family of Compounds with a Stuffed BaHg11 Structure Type Grown from Aluminum Flux
Inorganic Chemistry, 2009, 48, 1346-1355
4301372 CIFAl26 Au5.9 Ca3 CrP m -3 m8.5768; 8.5768; 8.5768
90; 90; 90
630.92Susan E. Latturner; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
R3Au6+xAl26T (R = Ca, Sr, Eu, Yb; T = Early Transition Metal): a Large Family of Compounds with a Stuffed BaHg11 Structure Type Grown from Aluminum Flux
Inorganic Chemistry, 2009, 48, 1346-1355
4301376 CIFAl26 Au6.8 Ca3 TiP m -3 m8.6631; 8.6631; 8.6631
90; 90; 90
650.16Susan E. Latturner; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
R3Au6+xAl26T (R = Ca, Sr, Eu, Yb; T = Early Transition Metal): a Large Family of Compounds with a Stuffed BaHg11 Structure Type Grown from Aluminum Flux
Inorganic Chemistry, 2009, 48, 1346-1355
4301385 CIFAl26 Au7 Eu3 VP m -3 m8.6775; 8.6775; 8.6775
90; 90; 90
653.41Susan E. Latturner; Daniel Bilc; S. D. Mahanti; Mercouri G. Kanatzidis
R3Au6+xAl26T (R = Ca, Sr, Eu, Yb; T = Early Transition Metal): a Large Family of Compounds with a Stuffed BaHg11 Structure Type Grown from Aluminum Flux
Inorganic Chemistry, 2009, 48, 1346-1355
2104373 CIF
HKL
Paper
Al282.23 Ta161.77F -4 3 m19.1663; 19.1663; 19.1663
90; 90; 90
7040.68Weber, Thomas; Dshemuchadse, Julia; Kobas, Miroslav; Conrad, Matthias; Harbrecht, Bernd; Steurer, Walter
Large, larger, largest ‒ a family of cluster-based tantalum copper aluminides with giant unit cells. I. Structure solution and refinement
Acta Crystallographica Section B, 2009, 65, 308-317
4104728 CIFAl3 Br2 Cl12 S8 Sb7P 21 21 2111.989; 16.896; 17.378
90; 90; 90
3520.2Qichun Zhang; In Chung; Joon I. Jang; John B. Ketterson; Mercouri G. Kanatzidis
Chalcogenide Chemistry in Ionic Liquids: Nonlinear Optical Wave-Mixing Properties of the Double-Cubane Compound [Sb7S8Br2](AlCl4)3
Journal of the American Chemical Society, 2009, 131, 9896-9897
9013989 CIFAl3 Ca Cl K0.39 Na2.61 O14 S0.5 Si3P 6312.773; 12.773; 5.334
90; 90; 120
753.65Rozenberg, K. A.; Rastsvetaeva, R. K.; Chukanov, N. V.
Crystal structures of oxalate-bearing cancrinite with an unusual arrangement of CO3 groups and sulfate-rich davyne
Crystallography Reports, 2009, 54, 793-799
1507769 CIFAl3 F12 H2 K3 OP m m n :27.0523; 12.1005; 6.7057
90; 90; 90
572.24Le Bail, A
Thermodiffractometry and crystal structures of the hexagonal-tungsten-bronze-related K3Al3F12.nH2O (n=2,1)
Powder Diffraction, 2009, 24, 292-300
1507768 CIFAl3 F12 H4 K3 O2P n m a13.5135; 7.04327; 12.2253
90; 90; 90
1163.59Le Bail, A
Thermodiffractometry and crystal structures of the hexagonal-tungsten-bronze-related K3Al3F12.nH2O (n=2,1)
Powder Diffraction, 2009, 24, 292-300
9013689 CIFAl3 H3 Mn2 O14 Si3P 1 21/m 18.7201; 5.8053; 9.8075
90; 109.011; 90
469.403Nagashima, M.; Akasaka, M.; Minakawa, T.; Libowitzky, E.; Armbruster, T.
Sursassite: hydrogen bonding, cation order, and pumpellyite intergrowth Sample Number: 1
American Mineralogist, 2009, 94, 1440-1449
9013690 CIFAl3 H3 Mn2 O14 Si3P 1 21/m 18.709; 5.7939; 9.779
90; 108.953; 90
466.688Nagashima, M.; Akasaka, M.; Minakawa, T.; Libowitzky, E.; Armbruster, T.
Sursassite: hydrogen bonding, cation order, and pumpellyite intergrowth Sample Number: 2
American Mineralogist, 2009, 94, 1440-1449
9013691 CIFAl3 H3 Mn2 O14 Si3P 1 21/m 18.7278; 5.8065; 9.8121
90; 109.06; 90
469.996Nagashima, M.; Akasaka, M.; Minakawa, T.; Libowitzky, E.; Armbruster, T.
Sursassite: hydrogen bonding, cation order, and pumpellyite intergrowth Sample Number: 3
American Mineralogist, 2009, 94, 1440-1449
9013692 CIFAl3 H3 Mn2 O14 Si3P 1 21/m 18.7065; 5.7978; 9.7946
90; 108.938; 90
467.655Nagashima, M.; Akasaka, M.; Minakawa, T.; Libowitzky, E.; Armbruster, T.
Sursassite: hydrogen bonding, cation order, and pumpellyite intergrowth Sample Number: 4
American Mineralogist, 2009, 94, 1440-1449

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