Crystallography Open Database

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1000376 CIFF24 Fe3 Pb8C -120.118; 5.597; 9.44
89.75; 105.79; 89.38
1022.7Pierrard, A; de Kozak, A; Gredin, P; Renaudin, J
The crystal structure of Pb8 Fe(II) Fe(III)2 F24: an ordered fluorite- like compound
Zeitschrift fuer Anorganische und Allgemeine Chemie, 1995, 621, 1053-1057
1008743 CIFCa5 Ge3 O11C -110.855; 8.715; 10.998
90.6; 96.49; 90.17
1033.7Barbier, J; Levy, D
Crystal structures of Ca5 Ge3 O11 and wollastonite-type Ga Ge O3
Zeitschrift fuer Kristallographie (149,1979-), 1997, 212, 519-528
1008757 CIFAl1.52 Ca0.52 Na0.48 O8 Si2.48C -18.176; 12.841; 14.207
93.53; 116.27; 89.77
1334.5Klein, S; Korekawa, M
Die gemittelte Struktur des Labradorits
Neues Jahrbuch fuer Mineralogie. Monatshefte (Band=Jahr) (1950-), 1976, 1976, 66-69
1508971 CIFC9 Ca9 O27C -112.17; 7.12; 25.32
90; 99.22; 90
2165.64Mugnaioli, E.; Andrusenko, I.; Schüler, T.; Loges, N.; Panthöfer, M.; Dinnebier, R. E.; Tremel, W.; Kolb, U.
Ab Initio Structure Determination of Vaterite by Automated Electron Diffraction
Angewandte Chemie International Edition, 2012, 51, 7041-7045
1509238 CIFAg Al O8 Si3C -18.221; 12.968; 7.16
91.83; 116.8; 90.1
680.876Sternitzke, M.; Mueller, G.; Deubener, J.
Feldspars M Al Si3 O8 (M=H,Li,Ag) synthesized by low-temperature ion exchange
American Mineralogist, 1991, 76, 1620-1627
1517501 CIFC19 H24 Cl N OC -126.96214; 12.68483; 21.88641
90.4219; 104.544; 89.797
7245.32Lang, Simon B.; Locascio, Theresa M.; Tunge, Jon A.
Activation of alcohols with carbon dioxide: intermolecular allylation of weakly acidic pronucleophiles.
Organic letters, 2014, 16, 4308-4311
1520928 CIFLi O12 P3 Zr2C -115.0718; 8.8556; 9.1234
89.661; 123.912; 90.429
1010.53Catti, M.; Stramare, S.; Ibberson, R.
Lithium location in NASICON-type Li(+) conductors by neutron diffraction. I. Triclinic alpha'-Li Zr2 (P O4)3
Solid State Ionics, 1999, 123, 173-180
1521703 CIFAl K0.95 O8 Si3C -18.544; 12.998; 7.181
90; 116.16; 90
715.796Organova, N.I.; Zakharov, N.D.; Rozhdestvenskaya, I.V.; Ivanova, T.I.; Marsii, I.M.; Borisovskii, S.B.; Nasdekin, V.V.
Structures of the K- and Na-components of two-phase feldspar from Primor'e
Kristallografiya, 1999, 44, 829-834
1521764 CIFF24 Fe3 Pb8C -120.133; 5.6006; 9.4344
89.625; 105.583; 89.509
1024.61Pierrard, A.; Gredin, P.; Dupont, N.; de Kozak, A.; Bouree-Vigneron, F.; Rosenman, I.; Andre, G.
Magnetic structure and properties of Pb8 Fe(II) Fe(III)2 F24 : a 1-D ferrimagnetic chain compound exhibiting a spin-flop transition
Journal of Alloys Compd., 1999, 291, 44-51
1521883 CIFAl6.52 Ca3.54 H51.76 N2.24 Na0.78 O93.4 Si29.48C -117.668; 17.881; 7.413
90.26; 116.48; 89.61
2096.18Sani, A.; Ciambelli, P.; Vezzalini, G.; Rapacciuolo, M.T.
Crystal structure of hydrated and partially (N H4)-exchanged heulandite
Microporous and Mesoporous Materials, 1999, 31, 263-270
1522171 CIFLa5 Mn O16 Re3C -17.9885; 8.0322; 10.2413
90.2; 95.16; 89.92
654.468Wiebe, C.R.; Gourrier, A.; Langet, T.; Britten, J.F.; Greedan, J.E.
Synthesis, structure, and magnetic behavior of La5 Re3 Mn O16: a new perovskite-like material
Journal of Solid State Chemistry, 2000, 151, 31-39
1524339 CIFAl0.13 Be4 Ca2 Fe0.42 H16 Mn4.12 O34 P6C -115.921; 11.965; 6.741
91.07; 94.35; 89.99
1280.2Fanfani, L.; Zanazzi, P.F.; Zanzari, A.R.
The crystal structure of a triclinic roscherite
Tschermaks Mineralogische und Petrographische Mitteilungen (-1978), 1977, 24, 169-178
1527004 CIFAl K O8 Si3C -18.615; 13.03; 7.2
89.99; 116.01; 89.98
726.366Yamnova, N.A.; Khomyakov, A.P.; Zlykhenskaya, I.V.
Refinement of the crystal structure of sanidine-like feldspar
Kristallografiya, 2000, 45, 824-829
1529639 CIFAl K O8 Si3C -18.5732; 12.9668; 7.2227
90.658; 115.917; 87.626
721.535Blasi, A.; Brajkovic, A.; Martin, R.F.; Foord, E.E.; de Pol Blasi, C.; Zanazzi, P.F.
Structure refinement and genetic aspects of a microcline overgrowth on amazonite from Pikes Peak batholith Colorado,U.S.A.
Bulletin de Mineralogie (101,1978-), 1984, 107, 411-422
1529935 CIFMg0.49 Mn0.51 O3 SiC -19.585; 10.3589; 17.247
112.335; 102.797; 83.097
1543.41Finger, L.W.; Hazen, R.M.
Refined occupancy factors for synthetic Mn-Mg pyroxmangite and rhodonite
Carnegie Institution of Washington: Yearbook, 1978, 77, 850-853
1529936 CIFMg0.38 Mn0.62 O3 SiC -19.649; 10.389; 12.108
108.65; 102.32; 82.95
1121.58Finger, L.W.; Hazen, R.M.
Refined occupancy factors for synthetic Mn-Mg pyroxmangite and rhodonite
Carnegie Institution of Washington: Yearbook, 1978, 77, 850-853
1530328 CIFAl4 O22 Si8C -15.2; 9.15; 9.45
92; 98.83; 89.03
444.001MacKenzie, K.J.D.; Brown, I.W.M.; Meinhold, R.H.; Bowden, M.E.
Thermal reactions of pyrophyllite studied by high-resolution solid-state 27Al and 29Si nuclear magnetic resonance spectroscopy
Journal of the American Ceramic Society, 1985, 68, 266-272
1530405 CIFAl K0.5 Na0.5 O8 Si3C -18.529; 12.945; 7.189
90.36; 115.99; 88.8
713.294Mergoil-Daniel, J.; Chevalier, R.
Les feldspars potassiques partiellement ordonnes: Structure cristallographique et signification geologique
Bulletin de Mineralogie (101,1978-), 1984, 107, 401-410
1530587 CIFMg0.032 Mn0.97 O3 SiC -19.754; 10.617; 17.506
111.99; 102.56; 82.97
1639.09Pinckney, L.R.; Burnham, C.W.
High-temperature crystal structure of pyroxomangite
American Mineralogist, 1988, 73, 809-817
1531148 CIFLa5 Mg O16 Re3C -17.9359; 7.9963; 10.1683
90.196; 94.878; 89.966
642.917Chi Lisheng; Green, A.E.C.; Wiebe, C.R.; Hammond, R.; Greedan, J.E.
Synthesis, structure and magnetic properties of the pillared perovskites La5 Re3 M O16 (M = Mg, Fe, Co, Ni)
Journal of Solid State Chemistry, 2003, 170, 165-175
1531151 CIFFe La5 O16 Re3C -17.9553; 7.996; 10.1895
90.27; 95.082; 90.001
645.605Chi Lisheng; Greedan, J.E.; Green, A.E.C.; Wiebe, C.R.; Hammond, R.
Synthesis, structure and magnetic properties of the pillared perovskites La5 Re3 M O16 (M = Mg, Fe, Co, Ni)
Journal of Solid State Chemistry, 2003, 170, 165-175
1531154 CIFCo La5 O16 Re3C -17.9694; 8.0071; 10.182
90.248; 94.98; 89.983
647.273Chi Lisheng; Green, A.E.C.; Hammond, R.; Wiebe, C.R.; Greedan, J.E.
Synthesis, structure and magnetic properties of the pillared perovskites La5 Re3 M O16 (M = Mg, Fe, Co, Ni)
Journal of Solid State Chemistry, 2003, 170, 165-175
1531156 CIFLa5 Ni O16 Re3C -17.9383; 7.9983; 10.1732
90.287; 94.864; 89.968
643.592Chi Lisheng; Green, A.E.C.; Greedan, J.E.; Wiebe, C.R.; Hammond, R.
Synthesis, structure and magnetic properties of the pillared perovskites La5 Re3 M O16 (M = Mg, Fe, Co, Ni)
Journal of Solid State Chemistry, 2003, 170, 165-175
1531389 CIFLa5 Mn O16 Re3C -17.966; 8.0084; 10.2095
90.185; 95.193; 89.933
648.637Green, A.E.C.; Wiebe, C.R.; Greedan, J.E.
Magnetism and the magnetic structure of the pillared perovskite, La5 Re3 Mn O16
Solid State Sciences, 2002, 4, 305-310
1531396 CIFAl F0.77 H0.23 Li O4.23 PC -16.678; 7.717; 6.931
90.59; 117.65; 91.08
316.263Groat, L.A.; Chakoumakos, B.C.; Brouwer, D.H.; Hoffman, C.M.; Schultz, A.J.; Fyfe, C.A.; Morell, H.
The amblygonite (Li Al P O4 F) - montebrasite (Li Al P O4 (O H)) solid solution: a combined powder and single-crystal neutron diffraction and solid-state (6)Li MAS, CP MAS and REDOR NMR study
American Mineralogist, 2003, 88, 195-210
1532985 CIFAl Ca2 F8 H O PbC -17.722; 7.516; 12.206
98.86; 96.91; 90
694.757Kampf, A.R.; Merlino, S.; Pasero, M.
Order-disorder approach to calcioaravaipaite, (Pb Ca2 Al (F, O H)9) : the crystal structure of the triclinic MDO polytype
American Mineralogist, 2003, 88, 430-435
1537181 CIFNi O11 P4C -112.753; 12.957; 10.581
89.42; 116.96; 90.2
1558.32Funke, M.; Blum, M.; Glaum, R.; ElBali, B.
Darstellung, Kristallstruktur und spektroskopische Charakterisierung von Ni P4 O11 und Ca Ni P2 O7
Zeitschrift fuer Anorganische und Allgemeine Chemie, 2004, 630, 1040-1047
1540180 CIFAl0.92 Ca4.34 F0.96 H2.96 K0.68 Na3.93 O39.96 Si15.36C -19.65; 16.706; 13.153
93.42; 114.92; 90
1918.85Joswig, W.; Drits, V.A.; Sokolova, G.V.
Refinement of structure of fedorite
Kristallografiya, 1988, 33, 1284-1286
1540818 CIFC2 CaC -18.42; 11.84; 3.94
93.4; 92.5; 89.9
391.725Vannerberg, N.
The crystal structure of calcium carbide II and IV
Acta Chemica Scandinavica (1-27,1973-42,1988), 1962, 16, 1212-1220
1541658 CIFH4 K4 O18 S4 ThC -110.096; 16.752; 9.762
95.15; 95.22; 91
1637Arutyunyan, E.G.; Porai-Koshits, M.A.; Molodkin, A.K.
Structure of crystals of K4 (Th (S O4)4 (H2 O)2)
Zhurnal Strukturnoi Khimii (Issue-No. from 1981), 1966, 7, 733-737
1544902 CIFAl6.33 Ca1.16 H20.1 K1.68 Mg0.25 Na1.8 O92.1 Si29.81C -117.698; 17.511; 7.392
90.21; 116.76; 90.19
2045Kudoh, Y.; Takeuchi, Y.
Thermal stability of clinoptilolite: the crystal structure at 350C
Mineralogical Journal, 1983, 11, 392-406
1556998 CIFAl Ca0.01 K0.01 Na1.01 O8 Si2.98C -18.133; 12.81; 7.171
94.1; 116.59; 87.79
666.4Balic-Zunic, T.; Piazolo, S.; Katerinopoulou, A.; Schmith, J.H.
Full analysis of feldspar texture and crystal structure by combining X-ray and electron techniques : albite sample 16
American Mineralogist, 2013, 98, 41-52
1556999 CIFAl0.99 Fe0.01 K0.01 Na1.02 O8 Si2.99C -18.166; 12.845; 7.188
94.24; 116.59; 87.715
672.4Balic-Zunic, T.; Piazolo, S.; Katerinopoulou, A.; Schmith, J.H.
Full analysis of feldspar texture and crystal structure by combining X-ray and electron techniques : albite sample 45
American Mineralogist, 2013, 98, 41-52
1557000 CIFAl K0.86 Na0.17 O8 Si2.99C -18.598; 12.97; 7.2
90.029; 116.137; 89.498
720.8Balic-Zunic, T.; Piazolo, S.; Katerinopoulou, A.; Schmith, J.H.
Full analysis of feldspar texture and crystal structure by combining X-ray and electron techniques : K-feldspar sample 16
American Mineralogist, 2013, 98, 41-52
1557001 CIFAl0.99 K Na0.04 O8 Si3C -18.585; 12.979; 7.2282
90.512; 115.914; 87.711
723.8Balic-Zunic, T.; Piazolo, S.; Katerinopoulou, A.; Schmith, J.H.
Full analysis of feldspar texture and crystal structure by combining X-ray and electron techniques : K-feldspar sample 45
American Mineralogist, 2013, 98, 41-52
1557942 CIFAl2 Ca O8 Si2C -18.152; 12.917; 7.126
93.26; 116.37; 88.72
671.2Wadoski-Romeijn, E.; Armbruster, T.
Topotactic transformation and dehydration of the zeolite gismondine to a novel Ca feldspar structure
American Mineralogist, 2013, 98, 1988-1997
1559961 CIFC7 H4 N Na O4.875 SC -118.5729; 7.0819; 29.0233
89.9808; 93.511; 89.9763
3810.31Rekis, Toms; Schaller, Achim M.; Kotla, Surya Rohith; Schönleber, Andreas; Noohinejad, Leila; Tolkiehn, Martin; Paulmann, Carsten; van Smaalen, Sander
Single-crystal-to-single-crystal phase transitions of commensurately modulated sodium saccharinate 1.875-hydrate
IUCrJ, 2021, 8, 139-147
2000489 CIF
Paper
H13 N3 O8 Se2C -115.81; 6.052; 10.482
90.79; 102.31; 89.13
979.7Pietraszko, A.; Łukaszewicz, K.; Augustyniak, M. A.
Structure of phase III of (NH~4~)~3~H(SeO~4~)~2~
Acta Crystallographica Section C, 1992, 48, 2069-2071
2002939 CIF
Paper
C8 H2 Br2 O3C -112.923; 9.209; 7.628
105.08; 99.2; 81.29
859.5Ojala, Charles R.; Ojala, William H.; Britton, Doyle; Gougoutas, J. Z.
Packing similarities of three isosteric molecules: 4,5-dichlorophthalic anhydride, 4,5-dibromophthalic anhydride and 5,6-dichlorobenzfurazan 1-oxide, including three polymorphs of 5,6-dichlorobenzfurazan 1-oxide
Acta Crystallographica Section B, 1999, 55, 530-542
2012680 CIF
HKL
Paper
C3 H6 As NC -110.738; 6.253; 7.875
98.3; 108.39; 90.68
495.6Britton, Doyle; Young Jr, Victor G.; Schlemper, Elmer O.
Intermolecular interactions in cyanodimethylarsine and cyanodimethylstibine
Acta Crystallographica Section C, 2002, 58, m307-m309
2014635 CIF
HKL
Paper
C13 H9 N OC -112.936; 33.696; 10.604
90.35; 120.67; 89.6
3975.5Britton, Doyle
4'-Hydroxybiphenyl-4-carbonitrile
Acta Crystallographica Section C, 2005, 61, o35-o37
2100160 CIF
Paper
C12 H24 Cl Mn N6 O6C -130.5936; 18.8967; 12.8288
90.18; 111.561; 90.083
6897.5A. David Rae; Susanne Mossin; Henning O. Sørensen
Structure refinement of a twinned pseudo-symmetric crystal of [Mn(C~10~H~24~N~4~)(NCO)~2~]^+^·ClO_4^-
Acta Crystallographica Section B, 2005, 61, 407-417
2100612 CIF
Paper
Cu0.299 Pb0.951 S3.357 Sb0.406 Sn0.851C -13.6733; 6.312; 11.9039
92.484; 90.687; 89.941
275.72M. Evain; V. Petricek; Y. Moëlo; C. Maurel
First (3+2)-dimensional superspace approach to the structure of levyclaudite-(Sb), a member of the cylindrite-type minerals
Acta Crystallographica Section B, 2006, 62, 775-789
2100627 CIF
Paper
H8 O16 P4 Tl4C -128.483; 9.016; 6.502
90.09; 92.21; 90.49
1668.4Oh, I.H.; Merz, M.; Mattauch, S.; Heger, G.
Structural phase transition and hydrogen ordering of TlH~2~PO~4~ at low temperature
Acta Crystallographica, Section B, 2006, 62, 719-728
2104244 CIF
HKL
Paper
C10 H24 N2 Ni O13C -114.719; 28.041; 10.704
90.2; 125.99; 89.87
3574.6Siegler, Maxime A.; Hao, Xiang; Parkin, Sean; Brock, Carolyn Pratt
Five more phases of the structural family [<i>M</i>(H~2~O)~2~(15-crown-5)](NO~3~)~2~
Acta Crystallographica Section B, 2008, 64, 738-749
2104245 CIF
HKL
Paper
C10 H24 Cu N2 O13C -114.769; 27.924; 10.642
89.91; 125.88; 90.06
3556.1Siegler, Maxime A.; Hao, Xiang; Parkin, Sean; Brock, Carolyn Pratt
Five more phases of the structural family [<i>M</i>(H~2~O)~2~(15-crown-5)](NO~3~)~2~
Acta Crystallographica Section B, 2008, 64, 738-749
2105062 CIF
Paper
C24 H48 B2 F8 Fe N24C -116.1235; 16.045; 16.3134
83.583; 96.87; 95.663
4148.2Kusz, Joachim; Zubko, Maciej; Neder, Reinhard B.; Gütlich, Phillipp
Structural phase transition to disorder low-temperature phase in [Fe(ptz)~6~](BF~4~)~2~ spin-crossover compounds
Acta Crystallographica Section B, 2012, 68, 40-56
2105063 CIF
Paper
C24 H48 B2 F8 Fe N24C -116.3473; 16.3475; 16.3475
81.815; 98.175; 98.18
4246.89Kusz, Joachim; Zubko, Maciej; Neder, Reinhard B.; Gütlich, Phillipp
Structural phase transition to disorder low-temperature phase in [Fe(ptz)~6~](BF~4~)~2~ spin-crossover compounds
Acta Crystallographica Section B, 2012, 68, 40-56
2107372 CIFAl Na O8 Si3C -18.138; 12.789; 7.156
94.33; 116.57; 87.65
664.194Ribbe, P.H.; Megaw, H.D.; Ferguson, R.B.; Taylor, W.H.; Traill, R.J.
The albite structures
Acta Crystallographica B (24,1968-38,1982), 1969, 25, 1503-1518
2242212 CIF
HKL
Paper
C H O3 RbC -114.945; 5.8212; 3.9699
89.343; 104.096; 92.748
334.59Larvor, Carla; Stöger, Berthold
The phase transition of rubidium hydrogen carbonate, RbHCO~3~
Acta Crystallographica Section E, 2017, 73, 975-979
2300034 CIFFe2 O7 P2C -16.643; 8.447; 4.495
90.43; 103.8; 92.49
244.7Henry, Paul F.; Weller, Mark T.; Wilson, Chick C.
Determination of the cation distribution in Fe~2~Ni(PO~4~)~2~ using isotopic substitution and powder neutron diffraction
Journal of Applied Crystallography, 2003, 36, 1361-1367
2310531 CIFAl K O8 Si3C -18.56; 12.964; 7.215
90.65; 115.83; 87.7
720.071Brown, B.E.; Bailey, Y.W.
The structure of maximum microcline
Acta Crystallographica (1,1948-23,1967), 1964, 17, 1391-1400
2310574 CIFAl Na O8 Si3C -18.149; 12.88; 7.106
93.37; 116.3; 90.28
667.08Ferguson, R.B.; Traill, R.J.; Taylor, W.H.
The crystal structures of low-temperature and high-temperature albites
Acta Crystallographica (1,1948-23,1967), 1958, 11, 331-348
4030922 CIFFe O11 P4C -112.964; 13.139; 10.693
89.46; 117.03; 90.23
1622.4Weil, M.; Glaum, R.
Crystallization of ultraphosphates via the gas phase. The crystal structures of FeP~4~O~11~, ZnP~4~O~11~ and CdP~4~O~11~
European Journal of Solid State and Inorganic Chemistry, 1998, 35, 495-508
4030923 CIFO11 P4 ZnC -112.882; 13.049; 10.609
89.36; 117.19; 90.36
1586.2Weil, M.; Glaum, R.
Crystallization of ultraphosphates via the gas phase. The crystal structures of FeP~4~O~11~, ZnP~4~O~11~ and CdP~4~O~11~
European Journal of Solid State and Inorganic Chemistry, 1998, 35, 495-508
4030924 CIFCd O11 P4C -113.311; 13.334; 10.865
89.96; 117.12; 90.14
1716.4Weil, M.; Glaum, R.
Crystallization of ultraphosphates via the gas phase. The crystal structures of FeP~4~O~11~, ZnP~4~O~11~ and CdP~4~O~11~
European Journal of Solid State and Inorganic Chemistry, 1998, 35, 495-508
4113278 CIFSb10 Zn13C -132.536; 12.237; 10.852
90; 98.77; 90
4270.1Johanna Nylén; Magnus Andersson; Sven Lidin; Ulrich Häussermann
The Structure of α-Zn4Sb3: Ordering of the Phonon-Glass Thermoelectric Material β-Zn4Sb3
Journal of the American Chemical Society, 2004, 126, 16306-16307
4123989 CIFC9 Co3 O9 SeC -19.503; 13.9184; 14.1229
114.317; 117.752; 84.556
1495.55Strouse, C.E.; Dahl, L.F.
XXII. Syntheses and structural analyses by X-ray diffraction and electron spin resonance single-crystal methods of Co3 (C O)9 Se, Fe Co2 (C O)9 Se and Fe Co2 (C O)9 Te. The antibonding metallic nature of an unpaired electron in ...
Journal of the American Chemical Society, 1971, 93, 6032-6041
4123990 CIFC9 Co2 Fe O9 SeC -19.4595; 13.8419; 14.0908
114.005; 117.66; 84.608
1482.52Strouse, C.E.; Dahl, L.F.
XXII. Syntheses and structural analyses by x-ray diffraction and electron spin resonance single-crystal methods of Co3 (C O)9 Se, Fe Co2 (C O)9 Se and Fe Co2 (C O)9 Te. The antibonding metallic nature of an unpaired electron in ...
Journal of the American Chemical Society, 1971, 93, 6032-6041
4123991 CIFC9 Co2 Fe O9 TeC -18.773; 15.205; 14.578
117.29; 118.73; 78.42
1514.94Strouse, C.E.; Dahl, L.F.
XXII. Syntheses and structural analyses by x-ray diffraction and electron spin resonance single-crystal methods of Co3 (C O)9 Se, Fe Co2 (C O)9 Se and Fe Co2 (C O)9 Te. The antibonding metallic nature of an unpaired electron in ...
Journal of the American Chemical Society, 1971, 93, 6032-6041
4315313 CIFC204 H80 Cl4 Mn N10C -128.5037; 15.3623; 30.1121
90.173; 109.828; 89.514
12403.4Dmitri V. Konarev; Salavat S. Khasanov; Guzeliya R. Mukhamadieva; Leokadia V. Zorina; Akihiro Otsuka; Hideki Yamochi; Gunzi Saito; Rimma N. Lyubovskaya
Magnetic and Structural Transitions at Dimerization of C60. -in Ionic Fullerene Complexes with Metalloporphyrins: {(TMP+)2.MIITPP}.(C60-)2.(C6H4Cl2)2.(C6H5CN)2 (M = Zn and Mn)
Inorganic Chemistry, 2010, 49, 3881-3887
4325056 CIFC11 H14 Cl N O2C -113.5893; 13.6734; 25.0498
89.985; 99.204; 89.986
4594.6Ross S. Forgan; Benjamin D. Roach; Peter A. Wood; Fraser J. White; John Campbell; David K. Henderson; Eduardo Kamenetzky; Fiona E. McAllister; Simon Parsons; Elna Pidcock; Patricia Richardson; Ronald M. Swart; Peter A. Tasker
Using the Outer Coordination Sphere to Tune the Strength of Metal Extractants
Inorganic Chemistry, 2011, 50, 4515-4522
4325057 CIFC11 H14 Br N O2C -113.8459; 13.9486; 24.8103
90; 99.796; 90
4721.8Ross S. Forgan; Benjamin D. Roach; Peter A. Wood; Fraser J. White; John Campbell; David K. Henderson; Eduardo Kamenetzky; Fiona E. McAllister; Simon Parsons; Elna Pidcock; Patricia Richardson; Ronald M. Swart; Peter A. Tasker
Using the Outer Coordination Sphere to Tune the Strength of Metal Extractants
Inorganic Chemistry, 2011, 50, 4515-4522
4346001 CIFC87 H134 F30 N24 O35 Ru4 S10C -139.586; 9.3248; 24.118
90; 121.958; 90
7553Louise A. Berben; Mary C. Faia; Nathan R. M. Crawford; Jeffrey R. Long
Angle-Dependent Electronic Effects in 4,4'-Bipyridine-Bridged Ru3 Triangle and Ru4 Square Complexes
Inorganic Chemistry, 2006, 45, 6378-6386
4505241 CIFC10 H24 Mn N2 O13C -114.544; 28.47; 10.646
89.78; 126.43; 89.98
3547Hao, Xiang; Siegler, Maxime A.; Parkin, Sean; Brock, Carolyn Pratt
[M(H2O)2(15-crown-5)](NO3)2: A System Rich in Polymorphic and Modulated Phases†
Crystal Growth & Design, 2005, 5, 2225
4505242 CIFC10 H24 Mn N2 O13C -114.73; 28.329; 10.786
89.95; 126.05; 90.05
3639Hao, Xiang; Siegler, Maxime A.; Parkin, Sean; Brock, Carolyn Pratt
[M(H2O)2(15-crown-5)](NO3)2: A System Rich in Polymorphic and Modulated Phases†
Crystal Growth & Design, 2005, 5, 2225
7103506 CIFC22 H16 Fe N8 S2C -115.7337; 10.5731; 14.1664
93.971; 116.104; 90.375
2109.37Bonnet, Sylvestre; Siegler, Maxime A; Costa, José Sánchez; Molnár, Gábor; Bousseksou, Azzedine; Spek, Anthony L; Gamez, Patrick; Reedijk, Jan
A two-step spin crossover mononuclear iron(II) complex with a [HS-LS-LS] intermediate phase.
Chemical communications (Cambridge, England), 2008, 5619-5621
7206608 CIFC24 H22 Co N4 O12 V4C -115.4955; 12.1132; 7.9099
88.155; 95.227; 90.875
1477.63Fernández de Luis, Roberto; Urtiaga, M. Karmele; Mesa, José L.; Segura, Joseba Orive Gómez de; Rojo, Teófilo; Arriortua, María I.
{Co(HBpe)2}(V4O12): pedal motion induced order‒disorder P1̄\ρightarrow C1̄ transition and disrupted C1̄→C2/m displacive transition due to thermal instability
CrystEngComm, 2011, 13, 6488
7206609 CIFC24 H22 Co N4 O12 V4C -115.456; 12.141; 7.915
89.727; 95.358; 90.177
1478.7Fernández de Luis, Roberto; Urtiaga, M. Karmele; Mesa, José L.; Segura, Joseba Orive Gómez de; Rojo, Teófilo; Arriortua, María I.
{Co(HBpe)2}(V4O12): pedal motion induced order‒disorder P1̄\ρightarrow C1̄ transition and disrupted C1̄→C2/m displacive transition due to thermal instability
CrystEngComm, 2011, 13, 6488
8103542 CIFAl K0.58 Na0.42 O8 Si3C -18.434; 13.015; 7.1717
90; 116.09; 90
707.012Fenn, P.M.; Brown, G.E.
Crystal structure of a synthetic, compositionally intermediate, hypersolvus alkali felspar: evidence for Na, K site ordering
Zeitschrift fuer Kristallographie, Kristallgeometrie, Kristallphysik, Kristallchemie (145,1977-148,1979), 1977, 145, 124-145
8103560 CIFAl1.46 Ca0.347 Na0.685 O8 Si2.54C -18.178; 12.865; 7.109
93.53; 116.21; 89.92
669.485Horst, W.; Tagai, T.; Korekawa, M.; Jagodzinski, H.
Modulated structure of a plagioclase An52: Theory and structure determination
Zeitschrift fuer Kristallographie (149,1979-), 1981, 157, 233-250
8103645 CIFCa Ge2 O5C -16.53; 8.8; 7.4
90.75; 121.25; 91.05
363.349Aust, H.; Voellenkle, H.; Wittmann, A.
Die Kristallstruktur der Hoch- und der Tieftemperaturform von Ca Ge2 O5
Zeitschrift fuer Kristallographie, Kristallgeometrie, Kristallphysik, Kristallchemie (-144,1977), 1976, 144, 82-90
9000115 CIFAl1.2 Cr0.7 H8 Mg5.1 O18 Si3C -15.338; 9.247; 14.435
90; 97.08; 90
707.086Brown, B. E.; Bailey, S. W.
Chlorite polytypism: II. Crystal structure of a one-layer Cr-chlorite Note: variety called kammererite
American Mineralogist, 1963, 48, 42-61
9000135 CIFB Na O8 Si3C -17.833; 12.36; 6.803
93.308; 116.352; 92.055
587.819Appleman, D. E.; Clark, J. R.
Crystal structure of reedmergnerite, a boron albite, and its relation to feldspar crystal chemistry
American Mineralogist, 1965, 50, 1827-1850
9000189 CIFAl0.93 K O8 Si3.07C -18.5784; 12.96; 7.2112
90.3; 116.03; 89.125
720.306Bailey, S. W.
Refinement of an intermediate microcline structure
American Mineralogist, 1969, 54, 1540-1545
9000276 CIFAl H O6 Si2C -15.1614; 8.9576; 9.3511
91.03; 100.37; 89.75
425.206Wardle, R.; Brindley, G. W.
The crystal structures of pyrophyllite, 1Tc, and of its dehydroxylate
American Mineralogist, 1972, 57, 732-750
9000277 CIFAl2 O11 Si4C -15.1919; 9.1224; 9.499
91.17; 100.21; 88.62
442.585Wardle, R.; Brindley, G. W.
The crystal structures of pyrophyllite, 1Tc, and of its dehydroxylate
American Mineralogist, 1972, 57, 732-750
9000288 CIFFe1.088 O8 Rb Si2.912C -18.952; 13.127; 7.359
90.05; 116.47; 89.35
774.063Brunton, G. D.; Harris, L. A.; Kopp, O. C.
Crystal structure of a rubidium iron feldspar
American Mineralogist, 1972, 57, 1720-1728
9000525 CIFAl Na O8 Si3C -18.153; 12.8694; 7.107
93.521; 116.458; 90.257
665.91Prewitt, C. T.; Sueno, S.; Papike, J. J.
The crystal structures of high albite and monalbite at high temperatures T = 24 deg C feldspar
American Mineralogist, 1976, 61, 1213-1225
9000526 CIFAl Na O8 Si3C -18.1829; 12.8947; 7.119
93.041; 116.352; 90.172
671.866Prewitt, C. T.; Sueno, S.; Papike, J. J.
The crystal structures of high albite and monalbite at high temperatures T = 350 deg C feldspar
American Mineralogist, 1976, 61, 1213-1225
9000527 CIFAl Na O8 Si3C -18.2097; 12.9182; 7.1284
92.482; 116.282; 90.128
677.019Prewitt, C. T.; Sueno, S.; Papike, J. J.
The crystal structures of high albite and monalbite at high temperatures T = 600 deg C feldspar
American Mineralogist, 1976, 61, 1213-1225
9000528 CIFAl Na O8 Si3C -18.2296; 12.9336; 7.1357
91.956; 116.232; 90.078
680.78Prewitt, C. T.; Sueno, S.; Papike, J. J.
The crystal structures of high albite and monalbite at high temperatures T = 750 deg C feldspar
American Mineralogist, 1976, 61, 1213-1225
9000529 CIFAl Na O8 Si3C -18.2508; 12.9489; 7.1431
91.161; 116.169; 90.03
684.755Prewitt, C. T.; Sueno, S.; Papike, J. J.
The crystal structures of high albite and monalbite at high temperatures T = 950 deg C feldspar
American Mineralogist, 1976, 61, 1213-1225
9000530 CIFAl Na O8 Si3C -18.2763; 12.9593; 7.1463
90.097; 116.092; 89.988
688.363Prewitt, C. T.; Sueno, S.; Papike, J. J.
The crystal structures of high albite and monalbite at high temperatures T = 1090 deg C feldspar
American Mineralogist, 1976, 61, 1213-1225
9000531 CIFAl Na O8 Si3C -18.278; 12.959; 7.145
90.1; 116.1; 90
688.316Prewitt, C. T.; Sueno, S.; Papike, J. J.
The crystal structures of high albite and monalbite at high temperatures T = 1105 deg C feldspar
American Mineralogist, 1976, 61, 1213-1225
9000584 CIFAl Na O8 Si3C -18.206; 12.817; 7.169
94; 116.4; 87.7
673.694Winter, J. K.; Ghose, S.; Okamura, F. P.
A high-temperature study of the thermal expansion and the anisotropy of the sodium atom in low albite T = 500 deg C Note: this sample of feldspar is from Tiburon, Marin County, California, USA
American Mineralogist, 1977, 62, 921-931
9000585 CIFAl Na O8 Si3C -18.242; 12.841; 7.176
93.7; 116.3; 87.6
679.366Winter, J. K.; Ghose, S.; Okamura, F. P.
A high-temperature study of the thermal expansion and the anisotropy of the sodium atom in low albite T = 750 deg C Note: this sample of feldspar is from Tiburon, Marin County, California, USA
American Mineralogist, 1977, 62, 921-931
9000586 CIFAl Na O8 Si3C -18.277; 12.86; 7.181
93.3; 116.2; 87.6
684.577Winter, J. K.; Ghose, S.; Okamura, F. P.
A high-temperature study of the thermal expansion and the anisotropy of the sodium atom in low albite T = 970 deg C Note: this sample of feldspar is from Tiburon, Marin County, California, USA
American Mineralogist, 1977, 62, 921-931
9000609 CIFCa0.96 Mn0.04 O3 SiC -110.121; 11.07; 7.312
99.51; 100.51; 83.43
791.412Ohashi, Y.; Finger, L. W.
The role of octahedral cations in pyroxenoid crystal chemistry. I. Bustamite, wollastonite, and the pectolite-schizolite-serandite series sample Mn-WO, from Broken Hill, New South Wales, Australia
American Mineralogist, 1978, 63, 274-288
9000610 CIFCa0.957 Fe0.043 O3 SiC -110.104; 11.054; 7.305
99.53; 100.56; 83.44
788.037Ohashi, Y.; Finger, L. W.
The role of octahedral cations in pyroxenoid crystal chemistry. I. Bustamite, wollastonite, and the pectolite-schizolite-serandite series sample Fe-WO, from Scawt Hill, Antrim County, Ireland
American Mineralogist, 1978, 63, 274-288
9000611 CIFCa0.34 Mn1.66 Na O9 Si3C -19.909; 10.667; 6.913
99.1; 100.51; 82.49
705.483Ohashi, Y.; Finger, L. W.
The role of octahedral cations in pyroxenoid crystal chemistry. I. Bustamite, wollastonite, and the pectolite-schizolite-serandite series sample SRN, from Rouma, Island of Los, Guinea
American Mineralogist, 1978, 63, 274-288
9000612 CIFCa1.23 Mn0.77 Na O9 Si3C -110.059; 10.88; 6.978
98.84; 100.58; 82.64
737.853Ohashi, Y.; Finger, L. W.
The role of octahedral cations in pyroxenoid crystal chemistry. I. Bustamite, wollastonite, and the pectolite-schizolite-serandite series sample SCH, from Kangerdluarsuk, Julianehaab, Greenland
American Mineralogist, 1978, 63, 274-288
9000677 CIFCa0.6 Mg0.86 Mn3.54 O15 Si5C -19.797; 10.497; 12.185
108.55; 103.02; 82.49
1155.08Peacor, D. R.; Essene, E. J.; Brown, P. E.; Winter, G. A.
The crystal chemistry and petrogenesis of a magnesian rhodonite
American Mineralogist, 1978, 63, 1137-1142
9000681 CIFAl K0.2 Na0.8 O8 Si3C -18.144; 12.989; 7.16
92.1; 116.56; 90.21
676.846Keefer, K. D.; Brown, G. E.
Crystal structures and compositions of sanidine and high albite in cryptoperthitic intergrowth Note this sample of feldspar is from the Rabb Canyon pegmatite, Grant County, New Mexico, USA
American Mineralogist, 1978, 63, 1264-1273
9000701 CIFAl K O8 Si3C -18.643; 12.929; 7.19
90.1; 116.2; 89.6
720.883Ribbe, P. H.
The structure of a strained intermediate microcline in cryptoperthitic association with twinned plagioclase feldspar
American Mineralogist, 1979, 64, 402-408
9000702 CIFAl Na O8 Si3C -18.161; 12.875; 7.11
93.53; 116.46; 90.24
667.122Winter, J. K.; Okamura, F. P.; Ghose, S.
A high-temperature structural study of high albite, monalbite, and the analbite - monalbite phase transition T = 25 C Note: this sample of feldspar is from Tiburon, Marin County, California, USA
American Mineralogist, 1979, 64, 409-423
9000703 CIFAl Na O8 Si3C -18.208; 12.934; 7.134
92.65; 116.25; 90.12
678.316Winter, J. K.; Okamura, F. P.; Ghose, S.
A high-temperature structural study of high albite, monalbite, and the analbite - monalbite phase transition T = 500 C Note: this sample of feldspar is from Tiburon, Marin County, California, USA
American Mineralogist, 1979, 64, 409-423
9000704 CIFAl Na O8 Si3C -18.234; 12.955; 7.143
92; 116.17; 90.06
683.315Winter, J. K.; Okamura, F. P.; Ghose, S.
A high-temperature structural study of high albite, monalbite, and the analbite - monalbite phase transition T = 750 C Note: this sample of feldspar is from Tiburon, Marin County, California, USA
American Mineralogist, 1979, 64, 409-423
9000705 CIFAl Na O8 Si3C -18.259; 12.975; 7.151
90.8; 116.1; 90
688.08Winter, J. K.; Okamura, F. P.; Ghose, S.
A high-temperature structural study of high albite, monalbite, and the analbite - monalbite phase transition T = 980 C Note: this sample of feldspar is from Tiburon, Marin County, California, USA
American Mineralogist, 1979, 64, 409-423
9000706 CIFAl Na O8 Si3C -18.27; 12.978; 7.154
90.22; 116.05; 89.96
689.817Winter, J. K.; Okamura, F. P.; Ghose, S.
A high-temperature structural study of high albite, monalbite, and the analbite - monalbite phase transition T = 1040 C Note: this sample of feldspar is from Tiburon, Marin County, California, USA
American Mineralogist, 1979, 64, 409-423
9000744 CIFAl0.81 Ca0.325 Na0.16 O4 Si1.19C -18.1736; 12.8736; 7.1022
93.462; 116.054; 90.475
669.647Wenk, H. R.; Joswig, W.; Tagai, T.; Korekawa, M.; Smith, B. K.
The average structure of An 62-66 labradorite
American Mineralogist, 1980, 65, 81-95
9000745 CIFAl0.81 Ca0.325 Na0.16 O4 Si1.19C -18.1736; 12.8736; 7.1022
93.462; 116.054; 90.475
669.647Wenk, H. R.; Joswig, W.; Tagai, T.; Korekawa, M.; Smith, B. K.
The average structure of An 62-66 labradorite
American Mineralogist, 1980, 65, 81-95
9000746 CIFAl0.824 Ca0.317 Na0.183 O4 Si1.174C -18.1747; 12.8706; 7.1014
93.461; 116.086; 90.514
669.302Wenk, H. R.; Joswig, W.; Tagai, T.; Korekawa, M.; Smith, B. K.
The average structure of An 62-66 labradorite Lake County x-ray feldspar
American Mineralogist, 1980, 65, 81-95
9000747 CIFAl0.824 Ca0.325 Na0.175 O4 Si1.174C -18.1747; 12.8706; 7.1014
93.461; 116.086; 90.514
669.302Wenk, H. R.; Joswig, W.; Tagai, T.; Korekawa, M.; Smith, B. K.
The average structure of An 62-66 labradorite Lake County neutron feldspar
American Mineralogist, 1980, 65, 81-95
9000748 CIFAl0.814 Ca0.32 Na0.18 O4 Si1.184C -18.151; 12.829; 7.103
93.62; 116.21; 89.7
664.843Wenk, H. R.; Joswig, W.; Tagai, T.; Korekawa, M.; Smith, B. K.
The average structure of An 62-66 labradorite Verzasca x-ray feldspar
American Mineralogist, 1980, 65, 81-95
9000749 CIFAl0.83 Ca0.34 Na0.15 O4 Si1.17C -18.152; 12.834; 7.079
93.49; 116.13; 90.4
663.225Wenk, H. R.; Joswig, W.; Tagai, T.; Korekawa, M.; Smith, B. K.
The average structure of An 62-66 labradorite Sissone x-ray feldspar
American Mineralogist, 1980, 65, 81-95
9000757 CIFAl1.67 Cr0.28 H8 Mg5 O18 Si3.04C -15.327; 9.227; 14.356
90.45; 97.35; 89.98
699.81Phillips, T. L.; Loveless, J. K.; Bailey, S. W.
Cr3+ coordination in chlorites: a structural study of ten chromian chlorites Day Book Body, N. C.
American Mineralogist, 1980, 65, 112-122
9000758 CIFAl1.75 Cr0.25 H8 Mg5 O18 Si3C -15.334; 9.228; 14.371
90.53; 97.43; 89.9
701.402Phillips, T. L.; Loveless, J. K.; Bailey, S. W.
Cr3+ coordination in chlorites: a structural study of ten chromian chlorites Siskiyou Co., Calif.
American Mineralogist, 1980, 65, 112-122
9000766 CIFAl1.64 Fe0.3 H7.86 Mg4.9 O17.98 Si3.16C -15.3266; 9.232; 14.399
90; 97.16; 90
702.552Joswig, W.; Fuess, H.; Rothbauer, R.; Takeuchi, Y.; Mason, S. A.
A neutron diffraction study of a one-layer triclinic chlorite (penninite)
American Mineralogist, 1980, 65, 349-352
9000773 CIFAl3.84 Fe1.93 Mg0.15 O14 Si2C -19.46; 5.5; 9.15
97.05; 101.56; 90.1
462.721Hanscom, R.
The structure of triclinic chloritoid and chloritoid polymorphism
American Mineralogist, 1980, 65, 534-539
9000783 CIFAl1.005 Na0.986 O8 Si2.995C -18.142; 12.785; 7.159
94.19; 116.61; 87.68
664.477Harlow, G. E.; Brown, G. E.
Low albite: An X-Ray and neutron diffraction study Sample: X-ray single Na atom Note: this sample of feldspar is from Amelia, Virginia
American Mineralogist, 1980, 65, 986-995
9000784 CIFAl0.502 Na O4 Si1.497C -18.142; 12.785; 7.159
94.19; 116.61; 87.68
664.477Harlow, G. E.; Brown, G. E.
Low albite: An X-Ray and neutron diffraction study Sample: X-ray split Na site Note: this sample of feldspar is from Amelia, Virginia
American Mineralogist, 1980, 65, 986-995
9000785 CIFAl1.005 Na0.986 O8 Si2.995C -18.142; 12.785; 7.159
94.19; 116.61; 87.68
664.477Harlow, G. E.; Brown, G. E.
Low albite: An X-Ray and neutron diffraction study Sample: neutron single Na atom Note: this sample of feldspar is from Amelia, Virginia
American Mineralogist, 1980, 65, 986-995
9000786 CIFAl0.502 Na O4 Si1.497C -18.142; 12.785; 7.159
94.19; 116.61; 87.68
664.477Harlow, G. E.; Brown, G. E.
Low albite: An X-Ray and neutron diffraction study Sample: neutron split Na site Note: this sample of feldspar is from Amelia, Virginia
American Mineralogist, 1980, 65, 986-995
9000809 CIFAl H O6 Si2C -15.16; 8.966; 9.347
91.18; 100.46; 89.64
425.157Lee, J. H.; Guggenheim, S.
Single crystal X-ray refinement of pyrophyllite-1Tc
American Mineralogist, 1981, 66, 350-357
9000849 CIFCa H2 O9 Sc Si3C -19.791; 10.42; 7.076
98.91; 102.63; 84.17
694.221Mellini, M.; Merlino, S.
The crystal structure of cascandite, CaScSi3O8(OH)
American Mineralogist, 1982, 67, 604-609
9000855 CIFAl K0.333 Na0.667 O8 Si3C -18.29; 12.966; 7.151
91.18; 116.31; 90.14
688.819Harlow, G. E.
The anorthoclase structures: The effects of temperature and composition Grande Calderira, Or = 32.5, T = 23 deg C feldspar
American Mineralogist, 1982, 67, 975-996
9000857 CIFAl K0.25 Na0.75 O8 Si3C -18.252; 12.936; 7.139
92.11; 116.32; 90.22
682.434Harlow, G. E.
The anorthoclase structures: The effects of temperature and composition Mt. Gibele, Or = 22.3, T = 23 deg C feldspar
American Mineralogist, 1982, 67, 975-996
9000859 CIFAl K0.15 Na0.85 O8 Si3C -18.2168; 12.9166; 7.127
92.754; 116.357; 90.239
676.721Harlow, G. E.
The anorthoclase structures: The effects of temperature and composition Kakanui, Or = 13.8, T = 23 deg C feldspar
American Mineralogist, 1982, 67, 975-996
9000943 CIFAl K0.89 Na0.11 O8 Si3C -18.552; 12.975; 7.205
90.09; 115.92; 89.51
719.031Griffen, D. T.; Johnson, B. T.
Strain in triclinic alkali feldspars: a crystal structure study intermediate
American Mineralogist, 1984, 69, 1072-1077
9000993 CIFAl Na O8 Si3C -18.1151; 12.7621; 7.1576
94.218; 116.803; 87.707
659.829Smith, J. V.; Artioli, G.
Low albite, NaAlSi3O8: Neutron diffraction study of crystal structure at 13 K
American Mineralogist, 1986, 71, 727-733
9001030 CIFAl0.735 Ca0.24 Na0.26 O4 Si1.265C -18.179; 12.88; 7.112
93.44; 116.21; 90.23
670.583FitzGerald, J. D.; Parise, J. B.; Mackinnon, I. D. R.
Average structure of an An48 plagioclase from the Hogarth Ranges
American Mineralogist, 1986, 71, 1399-1408
9001031 CIFAl0.735 Ca0.24 Na0.26 O4 Si1.265C -18.179; 12.88; 7.112
93.44; 116.21; 90.23
670.583FitzGerald, J. D.; Parise, J. B.; Mackinnon, I. D. R.
Average structure of an An48 plagioclase from the Hogarth Ranges
American Mineralogist, 1986, 71, 1399-1408
9001145 CIFMg0.225 Mn6.775 O21 Si7C -19.712; 10.536; 17.438
112.15; 102.88; 82.95
1609.61Pinckney, L. R.; Burnham, C. W.
High-temperature crystal structure of pyroxmangite Sample: T = 24 C
American Mineralogist, 1988, 73, 809-817
9001146 CIFMg0.225 Mn6.775 O21 Si7C -19.715; 10.549; 17.424
112.05; 102.83; 82.94
1612.2Pinckney, L. R.; Burnham, C. W.
High-temperature crystal structure of pyroxmangite Sample: T = 200 C
American Mineralogist, 1988, 73, 809-817
9001147 CIFMg0.225 Mn6.775 O21 Si7C -19.739; 10.585; 17.482
112.02; 102.66; 82.97
1628.48Pinckney, L. R.; Burnham, C. W.
High-temperature crystal structure of pyroxmangite Sample: T = 400 C
American Mineralogist, 1988, 73, 809-817
9001148 CIFMg0.225 Mn6.775 O21 Si7C -19.754; 10.617; 17.506
111.99; 102.56; 82.97
1639.09Pinckney, L. R.; Burnham, C. W.
High-temperature crystal structure of pyrxomangite Sample: T = 600 C Note: Si1x changed to a more reasonable value.
American Mineralogist, 1988, 73, 809-817
9001257 CIFAl Na O8 Si3C -18.137; 12.785; 7.1583
94.26; 116.6; 87.71
664.008Armbruster, T.; Burgi, H. B.; Kunz, M.; Gnos, E.; Bronnimann, S.; Lienert, C.
Variation of displacement parameters in structure refinements of low albite Note: this sample of feldspar is from Roc Tourne, France
American Mineralogist, 1990, 75, 135-140
9001290 CIFAl H Li O5 PC -16.713; 7.708; 7.0194
91.31; 117.93; 91.77
320.464Groat, L. A.; Raudsepp, M.; Hawthorne, F. C.; Ercit, T. S.; Sherriff, B. L.; Hartman, J. S.
The amblygonite-montebrasite series: Characterization by single-crystal structure refinement, infrared spectroscopy and multinuclear MAS-NMR spectroscopy sample AF-47
American Mineralogist, 1990, 75, 992-1008
9001291 CIFAl F0.089 H0.911 Li O4.911 PC -16.713; 7.711; 7.0102
91.22; 117.91; 91.67
320.28Groat, L. A.; Raudsepp, M.; Hawthorne, F. C.; Ercit, T. S.; Sherriff, B. L.; Hartman, J. S.
The amblygonite-montebrasite series: Characterization by single-crystal structure refinement, infrared spectroscopy and multinuclear MAS-NMR spectroscopy sample AF-43
American Mineralogist, 1990, 75, 992-1008
9001292 CIFAl F0.294 H0.706 Li O4.706 PC -16.6984; 7.71; 6.983
91.06; 117.81; 91.49
318.682Groat, L. A.; Raudsepp, M.; Hawthorne, F. C.; Ercit, T. S.; Sherriff, B. L.; Hartman, J. S.
The amblygonite-montebrasite series: Characterization by single-crystal structure refinement, infrared spectroscopy and multinuclear MAS-NMR spectroscopy sample A-2
American Mineralogist, 1990, 75, 992-1008
9001293 CIFAl F0.433 H0.567 Li O4.567 PC -16.6837; 7.708; 6.9671
90.94; 117.75; 91.36
317.407Groat, L. A.; Raudsepp, M.; Hawthorne, F. C.; Ercit, T. S.; Sherriff, B. L.; Hartman, J. S.
The amblygonite-montebrasite series: Characterization by single-crystal structure refinement, infrared spectroscopy and multinuclear MAS-NMR spectroscopy sample A-1
American Mineralogist, 1990, 75, 992-1008
9001294 CIFAl F0.5 H0.5 Li O4.5 PC -16.6782; 7.7159; 6.949
90.82; 117.66; 91.22
316.959Groat, L. A.; Raudsepp, M.; Hawthorne, F. C.; Ercit, T. S.; Sherriff, B. L.; Hartman, J. S.
The amblygonite-montebrasite series: Characterization by single-crystal structure refinement, infrared spectroscopy and multinuclear MAS-NMR spectroscopy sample AF-46
American Mineralogist, 1990, 75, 992-1008
9001295 CIFAl F Li O4 PC -16.644; 7.744; 6.91
90.35; 117.33; 91.01
315.753Groat, L. A.; Raudsepp, M.; Hawthorne, F. C.; Ercit, T. S.; Sherriff, B. L.; Hartman, J. S.
The amblygonite-montebrasite series: Characterization by single-crystal structure refinement, infrared spectroscopy and multinuclear MAS-NMR spectroscopy sample M6116
American Mineralogist, 1990, 75, 992-1008
9001296 CIFAl F0.881 H0.119 Li O4.119 PC -16.6452; 7.733; 6.9193
90.35; 117.44; 91.2
315.442Groat, L. A.; Raudsepp, M.; Hawthorne, F. C.; Ercit, T. S.; Sherriff, B. L.; Hartman, J. S.
The amblygonite-montebrasite series: Characterization by single-crystal structure refinement, infrared spectroscopy and multinuclear MAS-NMR spectroscopy sample AF-65
American Mineralogist, 1990, 75, 992-1008
9001312 CIFAl Ge3 Na O8C -18.419; 13.298; 7.354
94.49; 116.25; 90.88
734.999Fleet, M. E.
Structures of low gallium albite (NaGaSi3O8) and intermediate germanium albite (NaAlGe3O8): Tetrahedral-site ordering in sodium feldspar Sample: synthetic NaAlGe3O8
American Mineralogist, 1991, 76, 92-99
9001313 CIFGa1.001 Na O8 Si2.999C -18.161; 12.851; 7.191
94.39; 116.52; 87.38
672.78Fleet, M. E.
Structures of low gallium albite (NaGaSi3O8) and intermediate germanium albite (NaAlGe3O8): Tetrahedral-site ordering in sodium feldspar Sample: synthetic NaGaSi3O8
American Mineralogist, 1991, 76, 92-99
9001401 CIFB Na O8 Si3C -17.8388; 12.373; 6.8082
93.324; 116.381; 92.014
589.191Fleet, M. E.
Tetrahedral-site occupancies in reedmergnerite and synthetic boron albite (NaBSi3O8) sample from Utah
American Mineralogist, 1992, 77, 76-84
9001402 CIFB Na O8 Si2.9C -17.852; 12.35; 6.806
93.37; 116.3; 91.58
589.59Fleet, M. E.
Tetrahedral-site occupancies in reedmergnerite and synthetic boron albite (NaBSi3O8) sample low boron albite Gb100
American Mineralogist, 1992, 77, 76-84
9001403 CIFB Na O8 Si3C -17.91; 12.336; 6.82
93.54; 116.13; 90.6
595.799Fleet, M. E.
Tetrahedral-site occupancies in reedmergnerite and synthetic boron albite (NaBSi3O8) sample high boron albite Gb87
American Mineralogist, 1992, 77, 76-84
9001568 CIFAl1.7 Fe0.33 H8 Mg4.95 O18 Si3.02C -15.3437; 9.256; 14.422
90.25; 97.28; 89.99
707.574Nelson, D. O.; Guggenheim, S.
Inferred limitations to the oxidation of Fe in chlorite: a high-temperature single-crystal X-ray study T = 550 C
American Mineralogist, 1993, 78, 1197-1207
9001630 CIFAl Na O8 Si3C -18.1372; 12.787; 7.1574
94.245; 116.605; 87.809
664.037Downs, R. T.; Hazen, R. M.; Finger, L. W.
The high-pressure crystal chemistry of low albite and the origin of the pressure dependency of Al-Si ordering P = 0, complete data set Note: sample is from Crete
American Mineralogist, 1994, 79, 1042-1052
9001631 CIFAl Na O8 Si3C -18.1372; 12.787; 7.1574
94.245; 116.605; 87.809
664.037Downs, R. T.; Hazen, R. M.; Finger, L. W.
The high-pressure crystal chemistry of low albite and the origin of the pressure dependency of Al-Si ordering P = 0, constrained data set Note: sample is from Crete
American Mineralogist, 1994, 79, 1042-1052
9001632 CIFAl Na O8 Si3C -18.1104; 12.771; 7.1482
94.244; 116.667; 87.835
659.817Downs, R. T.; Hazen, R. M.; Finger, L. W.
The high-pressure crystal chemistry of low albite and the origin of the pressure dependency of Al-Si ordering P = .44 GPa Note: sample is from Crete
American Mineralogist, 1994, 79, 1042-1052
9001633 CIFAl Na O8 Si3C -18.051; 12.7336; 7.1242
94.252; 116.784; 87.909
650.203Downs, R. T.; Hazen, R. M.; Finger, L. W.
The high-pressure crystal chemistry of low albite and the origin of the pressure dependency of Al-Si ordering P = 1.22 GPa Note: sample is from Crete
American Mineralogist, 1994, 79, 1042-1052
9001634 CIFAl Na O8 Si3C -17.9567; 12.6784; 7.0897
94.217; 116.992; 88.025
635.564Downs, R. T.; Hazen, R. M.; Finger, L. W.
The high-pressure crystal chemistry of low albite and the origin of the pressure dependency of Al-Si ordering P = 2.68 GPa Note: sample is from Crete
American Mineralogist, 1994, 79, 1042-1052
9001635 CIFAl Na O8 Si3C -17.8925; 12.64; 7.0667
94.177; 117.074; 88.128
626.063Downs, R. T.; Hazen, R. M.; Finger, L. W.
The high-pressure crystal chemistry of low albite and the origin of the pressure dependency of Al-Si ordering P = 3.78 GPa Note: sample is from Crete
American Mineralogist, 1994, 79, 1042-1052
9002146 CIFB Na O8 Si3C -17.8386; 12.3733; 6.8074
93.319; 116.368; 92.04
589.172Downs, R. T.; Yang, H.; Hazen, R. M.; Finger, L. W.; Prewitt, C. T.
Compressibility mechanisms of alkali feldspars: New data from reedmergnerite Sample from Joseph Smith #1 mine, Duchesne Co., Utah, NMNH 140 P = 0, in air
American Mineralogist, 1999, 84, 333-340
9002147 CIFB Na O8 Si3C -17.8389; 12.3715; 6.8065
93.311; 116.363; 92.043
589.062Downs, R. T.; Yang, H.; Hazen, R. M.; Finger, L. W.; Prewitt, C. T.
Compressibility mechanisms of alkali feldspars: New data from reedmergnerite Sample from Joseph Smith #1 mine, Duchesne Co., Utah, NMNH 140 P = 0.00 GPa, in cell
American Mineralogist, 1999, 84, 333-340
9002148 CIFB Na O8 Si3C -17.7852; 12.3419; 6.7917
93.332; 116.347; 92.094
582.38Downs, R. T.; Yang, H.; Hazen, R. M.; Finger, L. W.; Prewitt, C. T.
Compressibility mechanisms of alkali feldspars: New data from reedmergnerite Sample from Joseph Smith #1 mine, Duchesne Co., Utah, NMNH 140 P = 0.88 GPa
American Mineralogist, 1999, 84, 333-340
9002149 CIFB Na O8 Si3C -17.7231; 12.3038; 6.7719
93.364; 116.316; 92.145
574.357Downs, R. T.; Yang, H.; Hazen, R. M.; Finger, L. W.; Prewitt, C. T.
Compressibility mechanisms of alkali feldspars: New data from reedmergnerite Sample from Joseph Smith #1 mine, Duchesne Co., Utah, NMNH 140 P = 1.89 GPa
American Mineralogist, 1999, 84, 333-340
9002150 CIFB Na O8 Si3C -17.6589; 12.2675; 6.7512
93.374; 116.256; 92.222
566.393Downs, R. T.; Yang, H.; Hazen, R. M.; Finger, L. W.; Prewitt, C. T.
Compressibility mechanisms of alkali feldspars: New data from reedmergnerite Sample from Joseph Smith #1 mine, Duchesne Co., Utah, NMNH 140 P = 3.00 GPa
American Mineralogist, 1999, 84, 333-340
9002151 CIFB Na O8 Si3C -17.6194; 12.2465; 6.7389
93.392; 116.222; 92.263
561.599Downs, R. T.; Yang, H.; Hazen, R. M.; Finger, L. W.; Prewitt, C. T.
Compressibility mechanisms of alkali feldspars: New data from reedmergnerite Sample from Joseph Smith #1 mine, Duchesne Co., Utah, NMNH 140 P = 3.64 GPa
American Mineralogist, 1999, 84, 333-340
9002152 CIFB Na O8 Si3C -17.579; 12.22; 6.7141
93.373; 116.303; 92.345
554.92Downs, R. T.; Yang, H.; Hazen, R. M.; Finger, L. W.; Prewitt, C. T.
Compressibility mechanisms of alkali feldspars: New data from reedmergnerite Sample from Joseph Smith #1 mine, Duchesne Co., Utah, NMNH 140 P = 4.68 GPa
American Mineralogist, 1999, 84, 333-340
9002196 CIFAl Na O8 Si3C -18.133; 12.773; 7.159
94.23; 116.64; 87.72
662.918Meneghinello, E.; Alberti, A.; Cruciani, G.
Order-disorder process in the tetrahedral sites af albite Sample: untreated Note: this sample of feldspar is from Stintino, Sardinia, Italy
American Mineralogist, 1999, 84, 1144-1151
9002197 CIFAl Na O8 Si3C -18.141; 12.795; 7.145
94.04; 116.56; 87.98
664.049Meneghinello, E.; Alberti, A.; Cruciani, G.
Order-disorder process in the tetrahedral sites af albite Sample: 1050-3d Note: this sample of feldspar is from Stintino, Sardinia, Italy
American Mineralogist, 1999, 84, 1144-1151
9002198 CIFAl Na O8 Si3C -18.17; 12.811; 7.141
93.79; 116.53; 88.09
667.248Meneghinello, E.; Alberti, A.; Cruciani, G.
Order-disorder process in the tetrahedral sites af albite Sample: 1060-6d Note: this sample of feldspar is from Stintino, Sardinia, Italy
American Mineralogist, 1999, 84, 1144-1151
9002199 CIFAl Na O8 Si3C -18.14; 12.791; 7.132
93.94; 116.54; 88.46
662.748Meneghinello, E.; Alberti, A.; Cruciani, G.
Order-disorder process in the tetrahedral sites af albite Sample: 1070-7d Note: this sample of feldspar is from Stintino, Sardinia, Italy
American Mineralogist, 1999, 84, 1144-1151
9002200 CIFAl Na O8 Si3C -18.142; 12.782; 7.136
94; 116.51; 88.13
662.946Meneghinello, E.; Alberti, A.; Cruciani, G.
Order-disorder process in the tetrahedral sites af albite Sample: 1080-7d Note: this sample of feldspar is from Stintino, Sardinia, Italy
American Mineralogist, 1999, 84, 1144-1151
9002201 CIFAl Na O8 Si3C -18.154; 12.794; 7.129
93.81; 116.54; 88.48
663.868Meneghinello, E.; Alberti, A.; Cruciani, G.
Order-disorder process in the tetrahedral sites af albite Sample: 1080-10d Note: this sample of feldspar is from Stintino, Sardinia, Italy
American Mineralogist, 1999, 84, 1144-1151
9002202 CIFAl Na O8 Si3C -18.16; 12.802; 7.13
93.72; 116.42; 88.61
665.624Meneghinello, E.; Alberti, A.; Cruciani, G.
Order-disorder process in the tetrahedral sites af albite Sample: 1090-7d Note: this sample of feldspar is from Stintino, Sardinia, Italy
American Mineralogist, 1999, 84, 1144-1151
9002203 CIFAl Na O8 Si3C -18.152; 12.831; 7.11
93.46; 116.52; 89.72
664.026Meneghinello, E.; Alberti, A.; Cruciani, G.
Order-disorder process in the tetrahedral sites af albite Sample: 1090-12d Note: this sample of feldspar is from Stintino, Sardinia, Italy
American Mineralogist, 1999, 84, 1144-1151
9002229 CIFAl0.99 H2 I12 Mg2.97 O12 Si3.04C -15.368; 9.297; 14.215
89.86; 97.15; 89.98
703.899Guggenheim, S.; Zhan, W.
Crystal structures of two partially dehydrated chlorites: The "modified" chlorite structure
American Mineralogist, 1999, 84, 1415-1421
9002245 CIFCa3 H O9 Si3C -111.156; 7.303; 9.566
101.08; 92.83; 89.98
763.87Merlino, S.; Bonaccorsi, E.; Armbruster, T.
Tobermorites: Their real structure and order-disorder (OD) character Sample: 9 Angstrom
American Mineralogist, 1999, 84, 1613-1621
9002867 CIFAl F0.04 H0.96 Li O4.96 PC -16.7114; 7.7048; 7.0187
91.32; 117.949; 91.784
320.159Groat, L. A.; Chakoumakos, B. C.; Brouwer, D. H.; Hoffman, C. M.; Fyfe, C. A.; Morell, H.; Schultz, A. J.
The amblygonite (LiAlPO4F) - montebrasite (LiAlPO4OH) solid solution: A combined powder and single-crystal neutron diffraction and solid-state Li MAS, CP MAS, and REDOR NMR study Sample: from Dunton Gem Min, Oxford County, Maine at T = 15 K
American Mineralogist, 2003, 88, 195-210
9002868 CIFAl F0.05 H0.95 Li O4.95 PC -16.7129; 7.7095; 7.0231
91.359; 117.96; 91.781
320.585Groat, L. A.; Chakoumakos, B. C.; Brouwer, D. H.; Hoffman, C. M.; Fyfe, C. A.; Morell, H.; Schultz, A. J.
The amblygonite (LiAlPO4F) - montebrasite (LiAlPO4OH) solid solution: A combined powder and single-crystal neutron diffraction and solid-state Li MAS, CP MAS, and REDOR NMR study Sample: from Dunton Gem Min, Oxford County, Maine at T = 75 K
American Mineralogist, 2003, 88, 195-210
9002869 CIFAl F0.04 H0.96 Li O4.96 PC -16.7158; 7.7113; 7.0232
91.343; 117.953; 91.778
320.829Groat, L. A.; Chakoumakos, B. C.; Brouwer, D. H.; Hoffman, C. M.; Fyfe, C. A.; Morell, H.; Schultz, A. J.
The amblygonite (LiAlPO4F) - montebrasite (LiAlPO4OH) solid solution: A combined powder and single-crystal neutron diffraction and solid-state Li MAS, CP MAS, and REDOR NMR study Sample: from Dunton Gem Min, Oxford County, Maine at T = 150 K
American Mineralogist, 2003, 88, 195-210
9002870 CIFAl F0.02 H0.98 Li O4.98 PC -16.7198; 7.7149; 7.0249
91.32; 117.953; 91.778
321.254Groat, L. A.; Chakoumakos, B. C.; Brouwer, D. H.; Hoffman, C. M.; Fyfe, C. A.; Morell, H.; Schultz, A. J.
The amblygonite (LiAlPO4F) - montebrasite (LiAlPO4OH) solid solution: A combined powder and single-crystal neutron diffraction and solid-state Li MAS, CP MAS, and REDOR NMR study Sample: from Dunton Gem Min, Oxford County, Maine at T = 225 K
American Mineralogist, 2003, 88, 195-210
9002871 CIFAl F0.04 H0.96 Li O4.96 PC -16.7234; 7.7181; 7.0258
91.302; 117.953; 91.773
321.607Groat, L. A.; Chakoumakos, B. C.; Brouwer, D. H.; Hoffman, C. M.; Fyfe, C. A.; Morell, H.; Schultz, A. J.
The amblygonite (LiAlPO4F) - montebrasite (LiAlPO4OH) solid solution: A combined powder and single-crystal neutron diffraction and solid-state Li MAS, CP MAS, and REDOR NMR study Sample: from Dunton Gem Min, Oxford County, Maine at T = 295 K
American Mineralogist, 2003, 88, 195-210
9002872 CIFAl F0.45 H0.55 Li O4.55 PC -16.6861; 7.7004; 6.961
91.013; 117.787; 91.383
316.802Groat, L. A.; Chakoumakos, B. C.; Brouwer, D. H.; Hoffman, C. M.; Fyfe, C. A.; Morell, H.; Schultz, A. J.
The amblygonite (LiAlPO4F) - montebrasite (LiAlPO4OH) solid solution: A combined powder and single-crystal neutron diffraction and solid-state Li MAS, CP MAS, and REDOR NMR study Sample: from Tanco Pegmatite, Bernic Lake, Manitoba at T = 15 K
American Mineralogist, 2003, 88, 195-210
9002873 CIFAl F0.45 H0.55 Li0.99 O4.55 PC -16.6871; 7.7085; 6.966
90.983; 117.76; 91.387
317.495Groat, L. A.; Chakoumakos, B. C.; Brouwer, D. H.; Hoffman, C. M.; Fyfe, C. A.; Morell, H.; Schultz, A. J.
The amblygonite (LiAlPO4F) - montebrasite (LiAlPO4OH) solid solution: A combined powder and single-crystal neutron diffraction and solid-state Li MAS, CP MAS, and REDOR NMR study Sample: from Tanco Pegmatite, Bernic Lake, Manitoba at T = 75 K
American Mineralogist, 2003, 88, 195-210
9002874 CIFAl F0.42 H0.58 Li O4.58 PC -16.6891; 7.7111; 6.9648
90.958; 117.76; 91.382
317.648Groat, L. A.; Chakoumakos, B. C.; Brouwer, D. H.; Hoffman, C. M.; Fyfe, C. A.; Morell, H.; Schultz, A. J.
The amblygonite (LiAlPO4F) - montebrasite (LiAlPO4OH) solid solution: A combined powder and single-crystal neutron diffraction and solid-state Li MAS, CP MAS, and REDOR NMR study Sample: from Tanco Pegmatite, Bernic Lake, Manitoba at T = 150 K
American Mineralogist, 2003, 88, 195-210
9002875 CIFAl F0.45 H0.55 Li O4.55 PC -16.6914; 7.715; 6.9697
90.939; 117.76; 91.377
318.147Groat, L. A.; Chakoumakos, B. C.; Brouwer, D. H.; Hoffman, C. M.; Fyfe, C. A.; Morell, H.; Schultz, A. J.
The amblygonite (LiAlPO4F) - montebrasite (LiAlPO4OH) solid solution: A combined powder and single-crystal neutron diffraction and solid-state Li MAS, CP MAS, and REDOR NMR study Sample: from Tanco Pegmatite, Bernic Lake, Manitoba at T = 225 K
American Mineralogist, 2003, 88, 195-210
9002876 CIFAl F0.45 H0.55 Li O4.55 PC -16.6941; 7.7204; 6.9728
90.919; 117.75; 91.369
318.675Groat, L. A.; Chakoumakos, B. C.; Brouwer, D. H.; Hoffman, C. M.; Fyfe, C. A.; Morell, H.; Schultz, A. J.
The amblygonite (LiAlPO4F) - montebrasite (LiAlPO4OH) solid solution: A combined powder and single-crystal neutron diffraction and solid-state Li MAS, CP MAS, and REDOR NMR study Sample: from Tanco Pegmatite, Bernic Lake, Manitoba at T = 295 K Note: O3-x coordinate modified
American Mineralogist, 2003, 88, 195-210
9002877 CIFAl F0.54 H0.44 Li0.99 O4.44 PC -16.6778; 7.7036; 6.9503
90.861; 117.687; 91.293
316.394Groat, L. A.; Chakoumakos, B. C.; Brouwer, D. H.; Hoffman, C. M.; Fyfe, C. A.; Morell, H.; Schultz, A. J.
The amblygonite (LiAlPO4F) - montebrasite (LiAlPO4OH) solid solution: A combined powder and single-crystal neutron diffraction and solid-state Li MAS, CP MAS, and REDOR NMR study Sample AF-46: from Karibib, South Africa at T = 12 K Natural Museum of Natural History, Washington D.C. #105914
American Mineralogist, 2003, 88, 195-210
9002878 CIFAl F0.54 H0.44 Li1.02 O4.44 PC -16.6774; 7.7086; 6.9513
90.812; 117.697; 91.294
316.605Groat, L. A.; Chakoumakos, B. C.; Brouwer, D. H.; Hoffman, C. M.; Fyfe, C. A.; Morell, H.; Schultz, A. J.
The amblygonite (LiAlPO4F) - montebrasite (LiAlPO4OH) solid solution: A combined powder and single-crystal neutron diffraction and solid-state Li MAS, CP MAS, and REDOR NMR study Sample AF-46: from Karibib, South Africa at T = 100 K Natural Museum of Natural History, Washington D.C. #105914
American Mineralogist, 2003, 88, 195-210
9002879 CIFAl F0.54 H0.44 Li O4.44 PC -16.6803; 7.7098; 6.9549
90.793; 117.693; 91.285
316.973Groat, L. A.; Chakoumakos, B. C.; Brouwer, D. H.; Hoffman, C. M.; Fyfe, C. A.; Morell, H.; Schultz, A. J.
The amblygonite (LiAlPO4F) - montebrasite (LiAlPO4OH) solid solution: A combined powder and single-crystal neutron diffraction and solid-state Li MAS, CP MAS, and REDOR NMR study Sample AF-46: from Karibib, South Africa at T = 200 K Natural Museum of Natural History, Washington D.C. #105914
American Mineralogist, 2003, 88, 195-210
9002880 CIFAl F0.54 H0.44 Li O4.44 PC -16.6815; 7.716; 6.9565
90.777; 117.617; 91.275
317.583Groat, L. A.; Chakoumakos, B. C.; Brouwer, D. H.; Hoffman, C. M.; Fyfe, C. A.; Morell, H.; Schultz, A. J.
The amblygonite (LiAlPO4F) - montebrasite (LiAlPO4OH) solid solution: A combined powder and single-crystal neutron diffraction and solid-state Li MAS, CP MAS, and REDOR NMR study Sample AF-46: from Karibib, South Africa at T = 295 K Natural Museum of Natural History, Washington D.C. #105914
American Mineralogist, 2003, 88, 195-210
9002881 CIFAl F0.05 H0.23 Li O4.23 PC -16.678; 7.717; 6.931
90.59; 117.65; 91.08
316.263Groat, L. A.; Chakoumakos, B. C.; Brouwer, D. H.; Hoffman, C. M.; Fyfe, C. A.; Morell, H.; Schultz, A. J.
The amblygonite (LiAlPO4F) - montebrasite (LiAlPO4OH) solid solution: A combined powder and single-crystal neutron diffraction and solid-state Li MAS, CP MAS, and REDOR NMR study Sample: from Chursdorf, near Penig, Saxony, Germany at T = 20 K
American Mineralogist, 2003, 88, 195-210
9002898 CIFAl Ca2 F9 PbC -17.722; 7.516; 12.206
98.86; 96.91; 90
694.757Kampf, A. R.; Merlino, S.; Pasero, M.
Order-disorder approach to calcioaravaipaite, [PbCa2Al(F,OH)9]: The crystal structure of the triclinic MDO polytype
American Mineralogist, 2003, 88, 430-435
9003556 CIFH3 Mg5 Na3 O24 Si8C -19.883; 54.082; 5.277
90.045; 103.068; 89.96
2747.47Camara, F.; Oberti, R.; Della Ventura, G.; Welch, M. D.; Maresch, W. V.
The crystal structure of synthetic NaNa2Mg5Si8O21(OH)3, a triclinic C-1 amphibole with a triple-cell and H excess Note: occupancies unreported, so calculated formula has an extra OH
American Mineralogist, 2004, 89, 1464-1473
9003671 CIFAl1.27 Fe0.42 K0.09 Mg2.13 Na0.46 O12 Si3.12C -15.31; 9.18; 9.754
96.2; 96.5; 89.9
469.621Kogure, T.; Miyawaki, R.; Banno, Y.
The true structure of wonesite, an interlayer-deficient trioctahedral sodium mica
American Mineralogist, 2005, 90, 725-731
9003676 CIFMn5 O15 Si5C -19.8381; 10.5361; 12.2381
108.697; 103.335; 82.191
1166.56Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4018 Note: see samples 15-4029 and 15-4024 for plausible typical "fowlerite" and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003677 CIFCa1.001 Fe0.209 Mg0.13 Mn3.275 O15 Si5 Zn0.41C -19.7718; 10.5084; 12.2256
108.606; 103.017; 82.482
1156.84Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4024 Note: this is a plausible typical cation distribution for "fowlerite"
American Mineralogist, 2005, 90, 969-983
9003678 CIFMn5 O15 Si5C -19.7999; 10.5176; 12.2365
108.587; 103.185; 82.32
1161.4Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4025 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003679 CIFMn5 O15 Si5C -19.7902; 10.5184; 12.223
108.644; 103.159; 82.308
1158.78Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4026 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003680 CIFMn5 O15 Si5C -19.8451; 10.5389; 12.2414
108.692; 103.299; 82.184
1168.19Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4030 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003681 CIFMn5 O15 Si5C -19.8121; 10.5187; 12.218
108.651; 103.217; 82.308
1160.63Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4031 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003682 CIFMn5 O15 Si5C -19.7834; 10.5023; 12.2338
108.682; 103.273; 82.213
1156.34Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4033 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003683 CIFMn5 O15 Si5C -19.7648; 10.4912; 12.2228
108.671; 103.177; 82.284
1152.47Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4034 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003684 CIFCa Mn3 O15 Si5 ZnC -19.8456; 10.4992; 12.2005
108.726; 103.724; 82.113
1157.76Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4006 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003685 CIFCa Mn3 O15 Si5 ZnC -19.8768; 10.5222; 12.218
108.748; 103.781; 82.037
1165.12Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4014 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003686 CIFCa Mn3 O15 Si5 ZnC -19.8393; 10.4941; 12.1977
108.751; 103.751; 82.091
1155.87Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4020 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003687 CIFCa Mn3 O15 Si5 ZnC -19.8337; 10.4987; 12.1966
108.699; 103.597; 82.221
1156.83Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4027 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003688 CIFCa Mn3 O15 Si5 ZnC -19.864; 10.5237; 12.218
108.727; 103.705; 82.082
1164.33Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4028 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003689 CIFCa0.3 Fe0.4 Mg0.1 Mn4.292 O15 Si5 Zn0.005C -19.8793; 10.5298; 12.2257
108.744; 103.752; 82.03
1167.14Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4029 Note: this is a plausible typical cation distribution for rhodonite
American Mineralogist, 2005, 90, 969-983
9003690 CIFCa Mn3 O15 Si5 ZnC -19.8719; 10.5262; 12.2214
108.743; 103.728; 82.049
1165.6Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4040 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003691 CIFCa Mn3 O15 Si5 ZnC -19.8905; 10.5423; 12.2294
108.739; 103.773; 82.05
1170.18Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4041 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003700 CIFAl Na O8 Si3C -17.7176; 12.5592; 7.0113
93.963; 117.177; 88.132
603.111Benusa, M. D.; Angel, R. J.; Ross, N. L.
Compression of albite, NaAlSi3O8 Sample: Amelia Court House, Virginia locality P = 6.489 GPa
American Mineralogist, 2005, 90, 1115-1120
9003701 CIFAl Na O8 Si3C -17.5713; 12.517; 6.9697
93.797; 117.448; 87.508
584.814Benusa, M. D.; Angel, R. J.; Ross, N. L.
Compression of albite, NaAlSi3O8 Sample: Amelia Court House, Virginia locality P = 8.411 GPa
American Mineralogist, 2005, 90, 1115-1120

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