Crystallography Open Database

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Searching journal of publication like 'American Mineralogist'

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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
9000870 CIFAg As Hg S3A 1 a 17.732; 11.285; 6.643
90; 115.16; 90
524.645Nakai, I.; Appleman, D. E.
Laffittite, AgHgAsS3: crystal structure and second occurrence from the Getchell mine, Nevada
American Mineralogist, 1983, 68, 235-244
9014926 CIFAg As Mn S3P 43 2 25.4496; 5.4496; 32.949
90; 90; 90
978.524Bonazzi, P.; Keutsch, F. N.; Bindi, L.
Manganoquadratite, AgMnAsS3, a new manganese-bearing sulfosalt from the Uchucchacua polymetallic deposit, Lima Department, Peru: Description and crystal structure
American Mineralogist, 2012, 97, 1199-1205
9015141 CIFAg As1.89 Mn1.6 Pb2.28 S12 Sb3.15P 1 21/n 119.233; 12.633; 8.476
90; 90.08; 90
2059.42Bindi, L.; Keutsch, F. N.; Bonazzi, P.
Menchettiite, AgPb2.40Mn1.60Sb3As2S12, a new sulfosalt, belonging to the lillianite series from the Uchucchacua polymetallic deposit, Lima Department, Peru Note site occupancy model II
American Mineralogist, 2012, 97, 440-446
9015852 CIFAg As1.89 Mn1.76 Pb2.12 S12 Sb3.23P 1 21/n 119.233; 12.633; 8.476
90; 90.08; 90
2059.42Bindi, L.; Keutsch, F. N.; Bonazzi, P.
Menchettiite, AgPb2.40Mn1.60Sb3As2S12, a new sulfosalt, belonging to the lillianite series from the Uchucchacua polymetallic deposit, Lima Department, Peru Note site occupancy model I
American Mineralogist, 2012, 97, 440-446
9003557 CIFAg Au Te2P 1 2/m 15.124; 4.419; 7.437
90; 89.96; 90
168.396Bindi, L.; Cipriani, C.
Ordered distribution of Au and Ag in the crystal structure of muthmannite, AuAgTe2, a rare telluride from Sacarimb, Western Romania
American Mineralogist, 2004, 89, 1505-1509
9000026 CIFAg Au Te4P 1 2/c 18.94; 4.48; 14.59
90; 145.43; 90
331.566Tunell, G.
The atomic arrangement of sylvanite
American Mineralogist, 1941, 26, 457-477
9001316 CIFAg Bi Te2P -3 m 14.468; 4.468; 20.75
90; 90; 120
358.736Bayliss, P.
Crystal chemistry and crystallography of some minerals in the tetradymite group
American Mineralogist, 1991, 76, 257-265
9002732 CIFAg Bi0.334 S2 Sb0.666P -17.813; 8.268; 8.88
100.32; 104.07; 90.18
546.763Effenberger, H.; Paar, W. H.; Topa, D.; Criddle, A. J.; Fleck, M.
The new mineral baumstarkite and a structural reinvestigation of aramayoite and miargyrite
American Mineralogist, 2002, 87, 753-764
9016920 CIFAg Bi1.47 Pb S6 Sb1.53P 1 21/c 16.9764; 19.3507; 8.387
90; 107.519; 90
1079.71Yang, H.; Downs, R. T.; Evans, S. H.; Pinch, W. W.
Terrywallaceite, AgPb(Sb,Bi)3S6, isotypic with gustavite, a new mineral from Mina Herminia, Julcani Mining District, Huancavelica, Peru
American Mineralogist, 2013, 98, 1310-1131
9001406 CIFAg Br0.18 Cl0.82 Hg SP 21 21 26.803; 12.87; 4.528
90; 90; 90
396.447Mason, B.; Mumme, W. G.; Sarp, H.
Capgaronnite, HgSAg(Cl,Br,I), a new sulfide-halide mineral from Var, France
American Mineralogist, 1992, 77, 197-200
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
1509521 CIFAg S2 SbF m -3 m5.602; 5.602; 5.602
90; 90; 90
175.804Chang, L.L.Y.; Hoda, S.N.
Phase relations inthe systems PbS-Ag2S-Ag2S3 and PbS-Ag2S-Bi2S3
American Mineralogist, 1975, 60, 621-633
9002733 CIFAg S2 SbC 1 2/c 112.862; 4.409; 13.218
90; 98.48; 90
741.379Effenberger, H.; Paar, W. H.; Topa, D.; Criddle, A. J.; Fleck, M.
The new mineral baumstarkite and a structural reinvestigation of aramayoite and miargyrite
American Mineralogist, 2002, 87, 753-764
9003495 CIFAg TeP m n b8.882; 20.1; 4.614
90; 90; 90
823.729Bindi, L.; Spry, P. G.; Cipriani, C.
Empressite, AgTe, from the Empress-Josephine Mine, Colorado, USA: Composition, physical properties, and determination of the crystal structure
American Mineralogist, 2004, 89, 1043-1047
9017060 CIFAg0.002 Bi3.95 Cd0.018 Cu0.085 Fe0.65 Mn1.102 Pb0.142 S8 Sb0.036 Se0.024 Te0.014C 1 2/m 112.677; 3.914; 14.758
90; 115.31; 90
661.968Ciobanu, C. L.; Brugger, J.; Cook, N. J.; Mills, S. J.; Elliott, P.; Damian, G.; Damian, F.
Gratianite, MnBi2S4, a new mineral from the Baita Bihor skarn, Romania
American Mineralogist, 2014, 99, 1163-1170
9004019 CIFAg0.18 Al6.981 B3 F0.47 H6.53 Mg2.121 Na0.58 O30.53 Si5.898R 3 m :H15.8995; 15.8995; 7.1577
90; 90; 120
1567.01London, D.; Ertl, A.; Hughes, J. M.; Morgan VI G B; Fritz, E. A.; Harms, B. S.
Synthetic Ag-rich tourmaline: Structure and chemistry Note: Y(B) adjusted to satisfy symmetry constraint
American Mineralogist, 2006, 91, 680-684
9000049 CIFAg0.2 Au0.8 Te2P m a 216.54; 8.82; 4.46
90; 90; 90
650.637Tunell, G.; Murata, K. J.
The atomic arrangement and chemical composition of krennerite
American Mineralogist, 1950, 35, 959-984
9002344 CIFAg0.24 Cl0.84 Cu3 H6 O18 Pb0.3 Te2 Zn6P -3 1 m10.145; 10.145; 4.9925
90; 90; 120
444.993Burns, P. C.; Pluth, J. J.; Smith, J. V.; Eng, P.; Steele, I. M.; Housley, R. M.
Quetzalcoatlite: New octahedral-tetrahedral structure from 2x2x40 micron crystal at the Advanced Photon Source-GSE-CARS Facility
American Mineralogist, 2000, 85, 604-607
1509098 CIFAg0.33 Pb0.34 S Sb0.33F m -3 m5.785; 5.785; 5.785
90; 90; 90
193.602Hoda, S.N.; Chang, L.L.Y.
Phase relations in the systems Pb S - Ag2 S - Ag2 S3 and Pb S - Ag2 S - Bi2 S3
American Mineralogist, 1975, 60, 621-633
1557015 CIFAg1.02 As0.06 Bi1.47 Pb0.87 S5.94 Sb1.54P 1 21/c 16.9764; 19.351; 8.387
90; 107.519; 90
1079.73Yang, H.; Downs, R.T.; Evans, S.H.; Pinch, W.W.
Terrywallaceite, AgPb(Sb,Bi)3S6, isotypic with gustavite, a new mineral from in a Herminia, Julcani Mining District, Huancavelica, Peru
American Mineralogist, 2013, 98, 1310-1314
9015631 CIFAg1.041 Mn0.919 Pb3 S12 Sb5.041P 1 21/n 119.3462; 12.7251; 8.7472
90; 90.017; 90
2153.41Yang, H.; Downs, R. T.; Evans, S. H.; Feinglos, M. N.; Tait, K. T.
Crystal structure of uchucchacuaite, AgMnPb3Sb5S12, and its relationship with ramdohrite and fizelyite Note: Sample ID R070760
American Mineralogist, 2011, 96, 1186-1189
9016727 CIFAg1.049 Mn0.901 Pb3 S12 Sb5.049P 1 21/n 119.3645; 12.7287; 8.7571
90; 90.059; 90
2158.49Yang, H.; Downs, R. T.; Evans, S. H.; Feinglos, M. N.; Tait, K. T.
Crystal structure of uchucchacuaite, AgMnPb3Sb5S12, and its relationship with ramdohrite and fizelyite Note: Sample ID R100213
American Mineralogist, 2011, 96, 1186-1189
9016686 CIFAg1.994 As2 Cd1.58 Pb0.426 S6P 43 2 25.5229; 5.5229; 33.399
90; 90; 90
1018.75Bindi, L.; Spry, P. G.; Bonazzi, P.; Makovicky, E.; Balic-Zunic T
Quadratite, AgCdAsS3:Chemical composition, crystal structure and OD character
American Mineralogist, 2013, 98, 242-247
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
9016074 CIFAg17.742 As3.552 S15 Sb0.448P -3 m 17.5984; 7.5984; 15.557
90; 90; 120
777.859Bindi, L.; Menchetti, S.
Fast ion conduction character and ionic phase-transition in silver sulfosalts: The case of fettelite [Ag6As2S7][Ag10HgAs2S8] Note: T = 400 K
American Mineralogist, 2011, 96, 792-796
9002584 CIFAg2 As2.03 S6 Sb0.97 TlP m n b12.418; 15.427; 5.6895
90; 90; 90
1089.95Graeser, S.; Berlepsch, P.; Makovicky, E.; Balic-Zunic T
Sicherite, TlAg2(As,Sb)3S6 - a new sulfosalt from Lengenbach (Binntal, Switzerland): Description and structure determination Locality: Legenbach quarry, Binnatal, Switzerland
American Mineralogist, 2001, 86, 1087-1093
9000253 CIFAg2 SP 1 21/n 14.229; 6.931; 7.862
90; 99.61; 90
227.211Wiegers, G. A.
The crystal structure of the low-temperature form of silver selenide
American Mineralogist, 1971, 56, 1882-1888
9000252 CIFAg2 SeP 21 21 214.333; 7.062; 7.764
90; 90; 90
237.576Wiegers, G. A.
The crystal structure of the low-temperature form of silver selenide
American Mineralogist, 1971, 56, 1882-1888
9000945 CIFAg2.118 As1.3 Cu7.68 Fe1.44 S13 Sb2.7I -4 3 m10.53; 10.53; 10.53
90; 90; 90
1167.58Johnson, M. L.; Burnham, C. W.
Crystal structure refinement of an arsenic-bearing argentian tetrahedrite
American Mineralogist, 1985, 70, 165-170
9002731 CIFAg3 As0.04 Bi0.026 S6 Sb2.934P -17.766; 8.322; 8.814
100.62; 104.03; 90.22
542.474Effenberger, H.; Paar, W. H.; Topa, D.; Criddle, A. J.; Fleck, M.
The new mineral baumstarkite and a structural reinvestigation of aramayoite and miargyrite
American Mineralogist, 2002, 87, 753-764
9000084 CIFAg3 Au Te2I 41 3 210.38; 10.38; 10.38
90; 90; 90
1118.39Frueh, A. J.
The crystallography of petzite, Ag3AuTe2
American Mineralogist, 1959, 44, 693-701
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
9010235 CIFAg4 Mn S6 Sb2P 1 21/n 110.3702; 8.0647; 6.64
90; 92.676; 90
554.715Bindi, L.; Evain, M.
Gram-Charlier development of the atomic displacement factors into mineral structures: The case of samsonite, Ag4MnSb2S6 Sample: T = 100 K
American Mineralogist, 2007, 92, 886-891
9010236 CIFAg4 Mn S6 Sb2P 1 21/n 110.3861; 8.1108; 6.663
90; 92.639; 90
560.693Bindi, L.; Evain, M.
Gram-Charlier development of the atomic displacement factors into mineral structures: The case of samsonite, Ag4MnSb2S6 Sample: T = 300 K
American Mineralogist, 2007, 92, 886-891
9010237 CIFAg4 Mn S6 Sb2P 1 21/n 110.3861; 8.1108; 6.663
90; 92.639; 90
560.693Bindi, L.; Evain, M.
Gram-Charlier development of the atomic displacement factors into mineral structures: The case of samsonite, Ag4MnSb2S6 Sample: T = 300 K, refined using Gram-Charlier displacement factors
American Mineralogist, 2007, 92, 886-891
9010238 CIFAg4 Mn S6 Sb2P 1 21/n 110.3838; 8.1364; 6.6737
90; 92.64; 90
563.241Bindi, L.; Evain, M.
Gram-Charlier development of the atomic displacement factors into mineral structures: The case of samsonite, Ag4MnSb2S6 Sample: T = 400 K
American Mineralogist, 2007, 92, 886-891
9010239 CIFAg4 Mn S6 Sb2P 1 21/n 110.3838; 8.1364; 6.6737
90; 92.64; 90
563.241Bindi, L.; Evain, M.
Gram-Charlier development of the atomic displacement factors into mineral structures: The case of samsonite, Ag4MnSb2S6 Sample: T = 400 K, refined using Gram-Charlier displacement factors
American Mineralogist, 2007, 92, 886-891
9001113 CIFAg4.4 Br0.8 Cl2 Hg4.1 I1.6 S4.1P 21 21 217.43; 12.24; 4.35
90; 90; 90
928.043Mumme, W. G.; Nickel, E. H.
Crystal structure and crystal chemistry of perroudite: A mineral from Coppin Pool, Western Australia
American Mineralogist, 1987, 72, 1257-1262
1509896 CIFAg4.4 Br0.8 Cl2 Hg4.6 I1.6 S4.6P 21 21 217.43; 12.24; 4.35
90; 90; 90
928.043Mumme, W.G.; Nickel, E.H.
Crystal structure and crystal chemistry of perroudite: A mineral from Coppin Pool, Western Australia
American Mineralogist, 1987, 72, 1257-1262
9010071 CIFAl Ba0.01 Ca0.51 F0.03 Fe3.8 H1.97 K0.5 Li0.3 Mn9.7 Na4.92 O50 P12 Pb0.01 Sr0.05C 1 c 116.69; 10.1013; 24.8752
90; 105.616; 90
4038.93Camara, F.; Oberti, R.; Chopin, C.; Medenbach, O.
The arrojadite enigma: I. A new formula and a new model for the arrojadite structure Sample: Branchville, Connecticut, USA
American Mineralogist, 2006, 91, 1249-1259
9010070 CIFAl Ba0.2 Ca0.59 F0.9 Fe6.61 H2.1 K0.03 Mg3.6 Mn3.39 Na2.94 O49.1 P12 Pb0.03 Sr0.93C 1 c 116.3992; 9.94; 24.4434
90; 105.489; 90
3839.76Camara, F.; Oberti, R.; Chopin, C.; Medenbach, O.
The arrojadite enigma: I. A new formula and a new model for the arrojadite structure Sample: Horrsjoberg, Varmland, Sweden
American Mineralogist, 2006, 91, 1249-1259
9003361 CIFAl Be Cl Na4 O12 Si4I -48.64; 8.64; 8.873
90; 90; 90
662.366Antao, S. M.; Hassan, I.; Parise, J. B.
Tugtupite: High-temperature structures obtained from in situ synchrotron diffraction and Rietveld refinements T = 20 C, data from Hassan and Grundy (1991)
American Mineralogist, 2004, 89, 492-497
9003362 CIFAl Be Cl Na4 O12 Si4I -48.62597; 8.62597; 8.8564
90; 90; 90
658.981Antao, S. M.; Hassan, I.; Parise, J. B.
Tugtupite: High-temperature structures obtained from in situ synchrotron diffraction and Rietveld refinements T = 33 C
American Mineralogist, 2004, 89, 492-497
9003363 CIFAl Be Cl Na4 O12 Si4I -48.62591; 8.62591; 8.8562
90; 90; 90
658.957Antao, S. M.; Hassan, I.; Parise, J. B.
Tugtupite: High-temperature structures obtained from in situ synchrotron diffraction and Rietveld refinements T = 65 C
American Mineralogist, 2004, 89, 492-497
9003364 CIFAl Be Cl Na4 O12 Si4I -48.63144; 8.63144; 8.8598
90; 90; 90
660.071Antao, S. M.; Hassan, I.; Parise, J. B.
Tugtupite: High-temperature structures obtained from in situ synchrotron diffraction and Rietveld refinements T = 113 C
American Mineralogist, 2004, 89, 492-497
9003365 CIFAl Be Cl Na4 O12 Si4I -48.63812; 8.63812; 8.8644
90; 90; 90
661.436Antao, S. M.; Hassan, I.; Parise, J. B.
Tugtupite: High-temperature structures obtained from in situ synchrotron diffraction and Rietveld refinements T = 210 C
American Mineralogist, 2004, 89, 492-497
9003366 CIFAl Be Cl Na4 O12 Si4I -48.64804; 8.64804; 8.8715
90; 90; 90
663.487Antao, S. M.; Hassan, I.; Parise, J. B.
Tugtupite: High-temperature structures obtained from in situ synchrotron diffraction and Rietveld refinements T = 306 C
American Mineralogist, 2004, 89, 492-497
9003367 CIFAl Be Cl Na4 O12 Si4I -48.65669; 8.65669; 8.8778
90; 90; 90
665.287Antao, S. M.; Hassan, I.; Parise, J. B.
Tugtupite: High-temperature structures obtained from in situ synchrotron diffraction and Rietveld refinements T = 419 C
American Mineralogist, 2004, 89, 492-497
9003368 CIFAl Be Cl Na4 O12 Si4I -48.6671; 8.6671; 8.8857
90; 90; 90
667.482Antao, S. M.; Hassan, I.; Parise, J. B.
Tugtupite: High-temperature structures obtained from in situ synchrotron diffraction and Rietveld refinements T = 516 C
American Mineralogist, 2004, 89, 492-497
9003369 CIFAl Be Cl Na4 O12 Si4I -48.67339; 8.67339; 8.8904
90; 90; 90
668.804Antao, S. M.; Hassan, I.; Parise, J. B.
Tugtupite: High-temperature structures obtained from in situ synchrotron diffraction and Rietveld refinements T = 596 C
American Mineralogist, 2004, 89, 492-497
9003370 CIFAl Be Cl Na4 O12 Si4I -48.67908; 8.67908; 8.895
90; 90; 90
670.029Antao, S. M.; Hassan, I.; Parise, J. B.
Tugtupite: High-temperature structures obtained from in situ synchrotron diffraction and Rietveld refinements T = 644 C
American Mineralogist, 2004, 89, 492-497
9003371 CIFAl Be Cl Na4 O12 Si4I -48.68613; 8.68613; 8.9006
90; 90; 90
671.54Antao, S. M.; Hassan, I.; Parise, J. B.
Tugtupite: High-temperature structures obtained from in situ synchrotron diffraction and Rietveld refinements T = 709 C
American Mineralogist, 2004, 89, 492-497
9003372 CIFAl Be Cl Na4 O12 Si4I -48.69349; 8.69349; 8.9064
90; 90; 90
673.117Antao, S. M.; Hassan, I.; Parise, J. B.
Tugtupite: High-temperature structures obtained from in situ synchrotron diffraction and Rietveld refinements T = 773 C
American Mineralogist, 2004, 89, 492-497
9003373 CIFAl Be Cl Na4 O12 Si4I -48.69872; 8.69872; 8.9107
90; 90; 90
674.252Antao, S. M.; Hassan, I.; Parise, J. B.
Tugtupite: High-temperature structures obtained from in situ synchrotron diffraction and Rietveld refinements T = 821 C
American Mineralogist, 2004, 89, 492-497
9003374 CIFAl Be Cl Na4 O12 Si4I -48.70359; 8.70359; 8.9147
90; 90; 90
675.311Antao, S. M.; Hassan, I.; Parise, J. B.
Tugtupite: High-temperature structures obtained from in situ synchrotron diffraction and Rietveld refinements T = 869 C
American Mineralogist, 2004, 89, 492-497
9003375 CIFAl Be Cl Na4 O12 Si4I -48.70633; 8.70633; 8.9169
90; 90; 90
675.903Antao, S. M.; Hassan, I.; Parise, J. B.
Tugtupite: High-temperature structures obtained from in situ synchrotron diffraction and Rietveld refinements T = 902 C
American Mineralogist, 2004, 89, 492-497
9003376 CIFAl Be Cl Na4 O12 Si4I -48.71168; 8.71168; 8.9214
90; 90; 90
677.075Antao, S. M.; Hassan, I.; Parise, J. B.
Tugtupite: High-temperature structures obtained from in situ synchrotron diffraction and Rietveld refinements T = 934 C
American Mineralogist, 2004, 89, 492-497
9003377 CIFAl Be Cl Na4 O12 Si4I -48.71853; 8.71853; 8.9269
90; 90; 90
678.558Antao, S. M.; Hassan, I.; Parise, J. B.
Tugtupite: High-temperature structures obtained from in situ synchrotron diffraction and Rietveld refinements T = 982 C
American Mineralogist, 2004, 89, 492-497
9001014 CIFAl Be H O5 SiP 1 21/a 14.78; 14.322; 4.6335
90; 100.31; 90
312.084Hazen, R. M.; Au, A. Y.; Finger, L. W.
High-pressure crystal chemistry of beryl (Be3Al2Si6O18) and euclase (BeAlSiO4OH) Sample: Pressure = .001 kbar
American Mineralogist, 1986, 71, 977-984
9001015 CIFAl Be O5 SiP 1 21/a 14.759; 14.255; 4.612
90; 100.24; 90
307.892Hazen, R. M.; Au, A. Y.; Finger, L. W.
High-pressure crystal chemistry of beryl (Be3Al2Si6O18) and euclase (BeAlSiO4OH) Sample: Pressure = 21 kbar
American Mineralogist, 1986, 71, 977-984
9001016 CIFAl Be O5 SiP 1 21/a 14.746; 14.189; 4.599
90; 100.18; 90
304.826Hazen, R. M.; Au, A. Y.; Finger, L. W.
High-pressure crystal chemistry of beryl (Be3Al2Si6O18) and euclase (BeAlSiO4OH) Sample: Pressure = 42 kbar
American Mineralogist, 1986, 71, 977-984
9001017 CIFAl Be O5 SiP 1 21/a 14.73; 14.136; 4.58
90; 100.16; 90
301.432Hazen, R. M.; Au, A. Y.; Finger, L. W.
High-pressure crystal chemistry of beryl (Be3Al2Si6O18) and euclase (BeAlSiO4OH) Sample: Pressure = 62 kbar
American Mineralogist, 1986, 71, 977-984
9016164 CIFAl Be3 Ca4 H3 O28 Si9C m c m23.1965; 4.9741; 19.4221
90; 90; 90
2240.96Armstrong, J. A.; Friis, H.; Lieb, A.; Finch, A. A.; Weller, M. T.
Combined single-crystal X-ray and neutron powder diffraction structure analysis exemplified through full structure determinations of framework and layer beryllate minerals
American Mineralogist, 2010, 95, 519-526
1524952 CIFAl Ca F Fe8.5 H K Mn4.5 Na5 O49 P12A 1 2/a 124.73; 10.057; 16.526
90; 105.78; 90
3955.27Moore, P.B.; Araki, T.; Zanazzi, P.F.; Merlino, S.; Mellini, M.
The arrojadite - dickinsonite series, K Na4 Ca (Fe, Mn)14 Al (O H)2 (P O4)12: crystal structure and crystal chemistry
American Mineralogist, 1981, 66, 1034-1049
9002205 CIFAl Ca F O4 SiA 1 2/a 16.9149; 8.5064; 6.4384
90; 114.684; 90
344.108Troitzsch, U.; Ellis, D. J.
The synthesis and crystal structure of CaAlFSiO4, the Al-F analog of titanite
American Mineralogist, 1999, 84, 1162-1169
9016799 CIFAl Ca F14 Mg3 Na3R -3 m :R7.1756; 7.1756; 7.1756
59.867; 59.867; 59.867
260.464Mumme, W. G.; Grey, I. E.; Birch, W. D.; Pring, A.; Bougerol, C.; Wilson, N. C.
Coulsellite, CaNa3AlMg3F14, a rhombohedral pyrochlore with 1:3 ordering in both A and B sites, from the Cleveland mine, Tasmania, Australia
American Mineralogist, 2010, 95, 736-740
1524951 CIFAl Ca F2 Fe10 K Mn3 Na5 O48 P12A 1 2/a 124.693; 10.031; 16.453
90; 105.72; 90
3922.91Moore, P.B.; Zanazzi, P.F.; Araki, T.; Merlino, S.; Mellini, M.
The Arrojdite - Dickinsonite series, K Na4 Ca (Fe, Mn)14 Al (O H)2 (P O4)12: crystal structure and crystal chemistry
American Mineralogist, 1981, 66, 1034-1049
9000829 CIFAl Ca F2 Fe14 K Na4 O48 P12A 1 2/a 124.692; 10.031; 16.453
90; 105.78; 90
3921.59Moore, P. B.; Araki, T.; Merlino, S.; Mellini, M.; Zanazzi, P. F.
The arrojadite-dickinsonite series, KNa4Ca(Fe,Mn)14Al(OH)2(PO4)12: Crystal structure and crystal chemistry sample NM
American Mineralogist, 1981, 66, 1034-1049
9000830 CIFAl Ca F2 Fe14 K Na4 O48 P12A 1 2/a 124.73; 10.057; 16.526
90; 105.78; 90
3955.27Moore, P. B.; Araki, T.; Merlino, S.; Mellini, M.; Zanazzi, P. F.
The arrojadite-dickinsonite series, KNa4Ca(Fe,Mn)14Al(OH)2(PO4)12: Crystal structure and crystal chemistry sample NP
American Mineralogist, 1981, 66, 1034-1049
9000831 CIFAl Ca F2 Fe14 K Na4 O48 P12A 1 2/a 124.94; 10.131; 16.722
90; 105.6; 90
4069.46Moore, P. B.; Araki, T.; Merlino, S.; Mellini, M.; Zanazzi, P. F.
The arrojadite-dickinsonite series, KNa4Ca(Fe,Mn)14Al(OH)2(PO4)12: crystal structure and crystal chemistry sample BR
American Mineralogist, 1981, 66, 1034-1049
9002262 CIFAl Ca F4 O2P -14.94; 6.81; 6.978
101.12; 94.86; 110.07
213.435Marchetti, F.; Perchiazzi, N.
The crystal structure of gearksutite, CaAlF4(OH).H2O
American Mineralogist, 2000, 85, 231-235
1524950 CIFAl Ca Fe4.1 H2 K Mn9.9 Na4 O50 P12A 1 2/a 124.94; 10.131; 16.7219
90; 105.6; 90
4069.43Moore, P.B.; Araki, T.; Merlino, S.; Zanazzi, P.F.; Mellini, M.
The arrojadite - dickinsonite series, K Na4 Ca (Fe, Mn)14 Al (O H)2 (P O4)12: crystal structure and crystal chemistry
American Mineralogist, 1981, 66, 1034-1049
9000514 CIFAl Ca H O5 SiP 21 21 217.055; 8.542; 5.683
90; 90; 90
342.479McNear, E.; Vincent, M. G.; Parthe, E.
The crystal structure of vuagnatite, CaAl(OH)SiO4
American Mineralogist, 1976, 61, 831-838
9000571 CIFAl Ca H9 Mg O13 P2P b c a14.723; 18.746; 7.107
90; 90; 90
1961.51Moore, P. B.; Araki, T.
Overite, segelerite, and jahnsite: a study in combinatorial polymorphism
American Mineralogist, 1977, 62, 692-702
9001171 CIFAl Ca O4 SiI -18.175; 12.873; 14.17
93.11; 115.89; 91.28
1337.8Angel, R. J.
High-pressure structure of anorthite Sample: P = 1 bar
American Mineralogist, 1988, 73, 1114-1119
9001172 CIFAl Ca O4 SiI -18.082; 12.767; 14.032
92.79; 115.77; 91.68
1300.27Angel, R. J.
High-pressure structure of anorthite Sample: P = 25 kbar
American Mineralogist, 1988, 73, 1114-1119
9001260 CIFAl Ca O4 SiI -18.1796; 12.8747; 14.172
93.134; 115.885; 91.236
1338.99Angel, R. J.; Carpenter, M. A.; Finger, L. W.
Structural variation associated with compositional variation and order-disorder behavior in anorthite-rich feldspars sample from Monte Somma
American Mineralogist, 1990, 75, 150-162
9001261 CIFAl Ca O4 SiI -18.178; 12.87; 14.175
93.17; 115.97; 91.15
1337.6Angel, R. J.; Carpenter, M. A.; Finger, L. W.
Structural variation associated with compositional variation and order-disorder behavior in anorthite-rich feldspars sample #115082a
American Mineralogist, 1990, 75, 150-162
9016731 CIFAl Ca0.008 K0.334 Na0.686 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 Sample: Or = 32.5, T = 23 C
American Mineralogist, 1982, 67, 975-996
9016771 CIFAl Ca0.01 K0.004 Na0.996 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
American Mineralogist, 1999, 84, 1144-1151
9016772 CIFAl Ca0.01 K0.004 Na0.996 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
American Mineralogist, 1999, 84, 1144-1151
9016773 CIFAl Ca0.01 K0.004 Na0.996 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
American Mineralogist, 1999, 84, 1144-1151
9016774 CIFAl Ca0.01 K0.004 Na0.996 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
American Mineralogist, 1999, 84, 1144-1151
9016775 CIFAl Ca0.01 K0.004 Na0.996 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
American Mineralogist, 1999, 84, 1144-1151
9016776 CIFAl Ca0.01 K0.004 Na0.996 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
American Mineralogist, 1999, 84, 1144-1151
9016777 CIFAl Ca0.01 K0.004 Na0.996 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
American Mineralogist, 1999, 84, 1144-1151
9016778 CIFAl Ca0.01 K0.004 Na0.996 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
American Mineralogist, 1999, 84, 1144-1151
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
9016747 CIFAl Ca0.012 K0.005 Na0.983 O8 Si3C -18.1535; 12.8694; 7.107
93.521; 116.458; 90.257
665.95Prewitt, 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
9016748 CIFAl Ca0.012 K0.005 Na0.983 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
9016749 CIFAl Ca0.012 K0.005 Na0.983 O8 Si3C -18.2096; 12.9182; 7.1284
92.482; 116.282; 90.128
677.011Prewitt, 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
9016750 CIFAl Ca0.012 K0.005 Na0.983 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
9016751 CIFAl Ca0.012 K0.005 Na0.983 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
9016752 CIFAl Ca0.012 K0.005 Na0.983 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
9016753 CIFAl Ca0.012 K0.005 Na0.983 O8 Si3C -18.2783; 12.9592; 7.1452
90.056; 116.087; 89.997
688.448Prewitt, 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
9016735 CIFAl Ca0.026 K0.141 Na0.856 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 Note: Or = 13.8, T = 23 C
American Mineralogist, 1982, 67, 975-996
9016733 CIFAl Ca0.069 K0.224 Na0.71 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 Note: Or = 22.3, T = 23 C
American Mineralogist, 1982, 67, 975-996
9016734 CIFAl Ca0.069 K0.224 Na0.71 O8 Si3C 1 2/m 18.314; 12.973; 7.15
90; 116.135; 90
692.335Harlow, G. E.
The anorthoclase structures: The effects of temperature and composition Note: Or = 22.3, T = 510 C
American Mineralogist, 1982, 67, 975-996
9016970 CIFAl Ca0.44 H4.09 O6.045 SiI 1 2/a 19.79; 10.437; 9.79
90; 90.97; 90
1000.18Wadoski-Romeijn E; Armbruster, T.
Topotactic transformation and dehydration of the zeolite gismondine to a novel Ca feldspar structure Note: T = 75 C, Path 2
American Mineralogist, 2013, 98, 1988-1997
9016764 CIFAl Ca0.5 O4 SiI -18.175; 12.873; 14.17
93.11; 115.89; 91.28
1337.8Angel, R. J.
High-pressure structure of anorthite Sample: P = 1 bar
American Mineralogist, 1988, 73, 1114-1119
9016765 CIFAl Ca0.5 O4 SiI -18.082; 12.767; 14.032
92.79; 115.77; 91.68
1300.27Angel, R. J.
High-pressure structure of anorthite Sample: P = 25 kbar
American Mineralogist, 1988, 73, 1114-1119
9016972 CIFAl Ca0.5 O4 SiC -18.152; 12.917; 7.126
93.26; 116.37; 88.72
671.192Wadoski-Romeijn E; Armbruster, T.
Topotactic transformation and dehydration of the zeolite gismondine to a novel Ca feldspar structure Note: T = 350 C, Path 2, synthesised from gismondine
American Mineralogist, 2013, 98, 1988-1997
9000942 CIFAl Ca0.592 F2 H Mn0.401 Na O5 PP 1 21/m 15.457; 7.151; 6.836
90; 109.36; 90
251.677Pajunen, A.; Lahti, S. I.
The crystal structure of viitaniemiite
American Mineralogist, 1984, 69, 961-966
9002901 CIFAl Ca0.61 Fe0.13 K0.17 Mg0.43 Mn0.01 Na0.05 O6 Si1.61C 1 2/c 19.773; 8.926; 5.269
90; 105.75; 90
442.378Bindi, L.; Safonov, O. G.; Yapaskurt, V. O.; Perchuk, L. L.; Menchetti, S.
Ultrapotassic clinopyroxene from the Kumdy-Kol microdiamond mine, Kokchetav Complex, Kazakhstan: Occurrence, composition and crystal-chemical characterization
American Mineralogist, 2003, 88, 464-468
9001741 CIFAl Ca0.64 Ce0.25 Cu0.01 Fe0.1 H La0.25 Mn2.49 Nd0.17 O13 Pr0.05 Si3 Sr0.04P 1 21/m 18.896; 5.706; 10.083
90; 113.88; 90
468.005Bonazzi, P.; Menchetti, S.; Reinecke, T.
Solid solution between piemontite and androsite-(La), a new mineral of the epidote group from Andros Island, Greece Sample: AND-517 Note: Mineral name changed from androsite-(La)
American Mineralogist, 1996, 81, 735-742
9010069 CIFAl Ca0.91 F0.03 Fe9.18 H2.97 K0.83 Mg2.8 Mn1.02 Na5.01 O50 P12 Sr0.01C 1 c 116.552; 10.0529; 24.6477
90; 106.509; 90
3932.19Camara, F.; Oberti, R.; Chopin, C.; Medenbach, O.
The arrojadite enigma: I. A new formula and a new model for the arrojadite structure Sample: Rapid Creek, Yukon, Canada
American Mineralogist, 2006, 91, 1249-1259
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
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
9015424 CIFAl Ca2 F9 PbP -15.3815; 5.3846; 12.2034
91.364; 101.11; 91.525
346.72Kampf, A. R.; Yang, H.; Downs, R. T.; Pinch, W. W.
The crystal structures and Raman spectra of aravaipaite and calcioaravaipaite
American Mineralogist, 2011, 96, 402-407
9000672 CIFAl Ca2 O40 V14I 41/a m d :228.06; 28.06; 13.56
90; 90; 90
10676.7Evans, H. T.; Konnert, J. A.
The crystal chemistry of sherwoodite, a calcium 14-vanadoaluminate heteropoly complex
American Mineralogist, 1978, 63, 863-868
9000812 CIFAl Ca4 F13 H24 O16 S SiF d -3 :216.71; 16.71; 16.71
90; 90; 90
4665.83Mathew M; Takagi S; Waerstad K R; Frazier A W
The crystal structure of synthetic chukhrovite, Ca4AlSi(SO4)F13*12H2O
American Mineralogist, 1981, 66, 392-397
9000862 CIFAl Ce2 H O9 Si2P 1 21/c 17.383; 5.673; 16.937
90; 112.04; 90
657.545Shen, J.; Moore, P. B.
Tornebohmite, RE2Al(OH)[SiO4]2: Crystal structure and genealogy of RE(III)Si(IV) <—> Ca(II)P(V) isomorphisms
American Mineralogist, 1982, 67, 1021-1028
9001547 CIFAl Cl Cu6 H15 O19 SP 3 1 c8.254; 8.254; 14.354
90; 90; 120
846.901Hawthorne, F. C.; Kimata, M.; Eby, R. K.
The crystal structure of spangolite, a complex copper sulfate sheet mineral
American Mineralogist, 1993, 78, 649-652
9010466 CIFAl Cs O4 SiP c 21 n9.414; 5.435; 8.875
90; 90; 90
454.09Gatta, G. D.; Rotiroti, N.; Zanazzi, P. F.; Rieder, M.; Drabek, M.; Weiss, Z.; Klaska, R.
Synthesis and crystal structure of the feldspathoid CsAlSiO4: An open-framework silicate and potential nuclear waste disposal phase
American Mineralogist, 2008, 93, 988-995
9001797 CIFAl Cs O6 Si2I 41/a :213.6524; 13.6524; 13.7216
90; 90; 90
2557.54Palmer, D. C.; Dove, M. T.; Ibberson, R. M.; Powell, B. M.
Structural behavior, crystal chemistry and phase transitions in substituted leucites: High-resolution neutron powder diffraction studies Sample: Expt. no. 2828, T = 298 K, CsAlSi2O6
American Mineralogist, 1997, 82, 16-29
9010151 CIFAl Cu2 H12 O12 SbP -39.15; 9.15; 9.745
90; 90; 120
706.569Bonaccorsi, E.; Merlino, S.; Orlandi, P.
Zincalstibite, a new mineral, and cualstibite: Crystal chemical and structural relationships
American Mineralogist, 2007, 92, 198-203
9013175 CIFAl D0.744 H0.256 O2P 21 n m4.7179; 4.2361; 2.8323
90; 90; 90
56.605Furukawa, A. S.; Komatsu, K.; Vanpeteghem, C. B.; Ohtani, E.
Neutron diffraction study of delta-AlOOD at high pressure and its implication for symmetrization of the hydrogen bond Note: P = 0.0001 GPa Locality: synthetic
American Mineralogist, 2008, 93, 1558-1567
9013176 CIFAl D0.744 H0.256 O2P 21 n m4.7112; 4.2284; 2.8296
90; 90; 90
56.368Furukawa, A. S.; Komatsu, K.; Vanpeteghem, C. B.; Ohtani, E.
Neutron diffraction study of delta-AlOOD at high pressure and its implication for symmetrization of the hydrogen bond Note: P = 0.6 GPa Locality: synthetic
American Mineralogist, 2008, 93, 1558-1567
9013177 CIFAl D0.744 H0.256 O2P 21 n m4.6969; 4.2133; 2.8243
90; 90; 90
55.891Furukawa, A. S.; Komatsu, K.; Vanpeteghem, C. B.; Ohtani, E.
Neutron diffraction study of delta-AlOOD at high pressure and its implication for symmetrization of the hydrogen bond Note: P = 2.0 GPa Locality: synthetic
American Mineralogist, 2008, 93, 1558-1567
9013178 CIFAl D0.744 H0.256 O2P 21 n m4.6827; 4.1962; 2.8181
90; 90; 90
55.374Furukawa, A. S.; Komatsu, K.; Vanpeteghem, C. B.; Ohtani, E.
Neutron diffraction study of delta-AlOOD at high pressure and its implication for symmetrization of the hydrogen bond Note: P = 3.5 GPa Locality: synthetic
American Mineralogist, 2008, 93, 1558-1567
9013179 CIFAl D0.744 H0.256 O2P 21 n m4.6706; 4.1836; 2.8129
90; 90; 90
54.964Furukawa, A. S.; Komatsu, K.; Vanpeteghem, C. B.; Ohtani, E.
Neutron diffraction study of delta-AlOOD at high pressure and its implication for symmetrization of the hydrogen bond Note: P = 4.7 GPa Locality: synthetic
American Mineralogist, 2008, 93, 1558-1567
9013180 CIFAl D0.744 H0.256 O2P 21 n m4.6601; 4.1711; 2.8076
90; 90; 90
54.573Furukawa, A. S.; Komatsu, K.; Vanpeteghem, C. B.; Ohtani, E.
Neutron diffraction study of delta-AlOOD at high pressure and its implication for symmetrization of the hydrogen bond Note: P = 6.0 GPa Locality: synthetic
American Mineralogist, 2008, 93, 1558-1567
9013181 CIFAl D0.744 H0.256 O2P 21 n m4.6506; 4.161; 2.8033
90; 90; 90
54.247Furukawa, A. S.; Komatsu, K.; Vanpeteghem, C. B.; Ohtani, E.
Neutron diffraction study of delta-AlOOD at high pressure and its implication for symmetrization of the hydrogen bond Note: P = 7.0 GPa Locality: synthetic
American Mineralogist, 2008, 93, 1558-1567
9013182 CIFAl D0.744 H0.256 O2P 21 n m4.6432; 4.1529; 2.8
90; 90; 90
53.992Furukawa, A. S.; Komatsu, K.; Vanpeteghem, C. B.; Ohtani, E.
Neutron diffraction study of delta-AlOOD at high pressure and its implication for symmetrization of the hydrogen bond Note: P = 7. 9 GPa Locality: synthetic
American Mineralogist, 2008, 93, 1558-1567
9013183 CIFAl D0.744 H0.256 O2P 21 n m4.6393; 4.1477; 2.7978
90; 90; 90
53.836Furukawa, A. S.; Komatsu, K.; Vanpeteghem, C. B.; Ohtani, E.
Neutron diffraction study of delta-AlOOD at high pressure and its implication for symmetrization of the hydrogen bond Note: P = 8.4 GPa Locality: synthetic
American Mineralogist, 2008, 93, 1558-1567
9013184 CIFAl D0.744 H0.256 O2P 21 n m4.6357; 4.1434; 2.7961
90; 90; 90
53.706Furukawa, A. S.; Komatsu, K.; Vanpeteghem, C. B.; Ohtani, E.
Neutron diffraction study of delta-AlOOD at high pressure and its implication for symmetrization of the hydrogen bond Note: P = 8.9 GPa Locality: synthetic
American Mineralogist, 2008, 93, 1558-1567
9013185 CIFAl D0.744 H0.256 O2P 21 n m4.6328; 4.1401; 2.7947
90; 90; 90
53.603Furukawa, A. S.; Komatsu, K.; Vanpeteghem, C. B.; Ohtani, E.
Neutron diffraction study of delta-AlOOD at high pressure and its implication for symmetrization of the hydrogen bond Note: P = 9.2 GPa Locality: synthetic
American Mineralogist, 2008, 93, 1558-1567
9000021 CIFAl F H K Mg3 O11 Si3C 1 m 15.32; 9.21; 10.16
90; 100.03; 90
490.203Hendricks, S. B.; Jefferson, M. E.
Polymorphism of the micas with optical measurements Note: Biotite group
American Mineralogist, 1939, 24, 729-771
9000022 CIFAl F H K Mg3 O11 Si3C 1 2/c 15.32; 9.21; 20.08
90; 95; 90
980.12Hendricks, S. B.; Jefferson, M. E.
Polymorphism of the micas with optical measurements Note: data is reproduced from Jackson and West (1930) Note: Biotite group
American Mineralogist, 1939, 24, 729-771
9000023 CIFAl F H K Mg3 O11 Si3P 31 1 25.3; 5.3; 30
90; 90; 120
729.8Hendricks, S. B.; Jefferson, M. E.
Polymorphism of the micas with optical measurements Note: Biotite group
American Mineralogist, 1939, 24, 729-771
9000024 CIFAl F H K Mg3 O11 Si3C 1 c 19.2; 5.3; 60
90; 90; 90
2925.6Hendricks, S. B.; Jefferson, M. E.
Polymorphism of the micas with optical measurements
American Mineralogist, 1939, 24, 729-771
9000025 CIFAl F H K Mg3 O11 Si3P -15.3; 5.3; 60
90; 90; 120
1459.6Hendricks, S. B.; Jefferson, M. E.
Polymorphism of the micas with optical measurements
American Mineralogist, 1939, 24, 729-771
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
9000976 CIFAl F Na O4 PC 1 2/c 16.414; 8.207; 6.885
90; 115.47; 90
327.201Lahti, S. I.; Pajunen, A.
New data on lacroixite, NaAlFPO4
American Mineralogist, 1985, 70, 849-855
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
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
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
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
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
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
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
9002840 CIFAl F0.14 Fe2.68 H1.84 K0.93 Mg0.06 Mn0.18 Na0.07 O11.86 Si2.84 Ti0.09C 1 2/m 15.4059; 9.3639; 10.3235
90; 100.2; 90
514.32Redhammer, G. J.; Roth, G.
Single-crystal structure refinements and crystal chemistry of synthetic trioctahedral micas KM3(Al,Si)4O10(OH)2, where M = Ni, Mg, Co, Fe, Al Sample: Ann#1
American Mineralogist, 2002, 87, 1464-1476
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
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
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
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
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
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
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
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
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
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
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
9000302 CIFAl F2 K Mg3 O10 Si3C 1 2/m 15.308; 9.183; 10.139
90; 100.07; 90
486.596McCauley, J. W.; Newnham, R. E.; Gibbs, G. V.
Crystal structure analysis of synthetic fluorophlogopite
American Mineralogist, 1973, 58, 249-254
9001095 CIFAl F2 Mg3.214 Na3 O22 Sc1.786 Si7C 1 2/m 19.8425; 18.157; 5.3381
90; 103.979; 90
925.721Raudsepp, M.; Turnock, A. C.; Hawthorne, F. C.
Characterization of cation ordering in synthetic scandium-fluor-eckermannite, indium-fluor-eckermannite, and scandium-fluor-nyboite by Rietveld structure refinement Sample: FScNY-A3
American Mineralogist, 1987, 72, 959-964
9001665 CIFAl F3 H2 O2 PbP -16.27; 6.821; 5.057
90.68; 107.69; 104.46
198.618Kampf, A. R.; Foord, E. E.
Artroeite, PbAlF3(OH)2, a new mineral from the Grand Reef mine, Graham County, Arizona: Description and crystal structure
American Mineralogist, 1995, 80, 179-183
9014374 CIFAl F9 H2 O Pb3P -15.6637; 5.8659; 12.7041
98.725; 94.02; 90.683
416.045Kampf, A. R.; Yang, H.; Downs, R. T.; Pinch, W. W.
The crystal structures and Raman spectra of aravaipaite and calcioaravaipaite
American Mineralogist, 2011, 96, 402-407
9002570 CIFAl F9 O Pb3P 1 21/n 125.048; 5.8459; 5.6805
90; 94.013; 90
829.745Kampf, A. R.
The crystal structure of aravaipaite
American Mineralogist, 2001, 86, 927-931
1000038 CIFAl Fe H2 K Mg2 O12 Si3C 1 2/m 15.345; 9.258; 10.222
90; 100.23; 90
497.8Brigatti, M F; Davoli, P
Crystal structure refinement of 1M plutonic biotites
American Mineralogist, 1990, 75, 305-313
9001264 CIFAl Fe H2 K Mg2 O12 Si3C 1 2/m 15.343; 9.258; 10.227
90; 100.26; 90
497.794Brigatti, M. F.; Davoli, P.
Crystal-structure refinement of 1M plutonic biotites sample M14 from a monzonite in the Valle del Cervo pluton
American Mineralogist, 1990, 75, 305-313
9001265 CIFAl Fe H2 K Mg2 O12 Si3C 1 2/m 15.346; 9.252; 10.238
90; 100.02; 90
498.66Brigatti, M. F.; Davoli, P.
Crystal-structure refinement of 1M plutonic biotites sample M32 from a syenite in the Valle del Cervo pluton
American Mineralogist, 1990, 75, 305-313
9001268 CIFAl Fe H2 K Mg2 O12 Si3C 1 2/m 15.337; 9.242; 10.211
90; 100.15; 90
495.771Brigatti, M. F.; Davoli, P.
Crystal-structure refinement of 1M plutonic biotites sample M62 from a rock transitional between granitic and monzonitic in the Valle del Cervo pluton
American Mineralogist, 1990, 75, 305-313
9001266 CIFAl Fe K Mg2 O12 Si3C 1 2/m 15.355; 9.251; 10.246
90; 100.15; 90
499.634Brigatti, M. F.; Davoli, P.
Crystal-structure refinement of 1M plutonic biotites sample M13 from a granite in the Valle del Cervo pluton
American Mineralogist, 1990, 75, 305-313
9016935 CIFAl Fe0.056 H3.994 Mn0.943 O7 PC m c e6.9263; 10.4356; 13.5234
90; 90; 90
977.473Diego Gatta, G.; Nenert, G.; Vignola, P.
Coexisting hydroxyl groups and H2O molecules in minerals: A single-crystal neutron diffraction study of eosphorite, MnAlPO4(OH)2*H2O Note: T = 20 K
American Mineralogist, 2013, 98, 1297-1301
9002308 CIFAl Fe3 K0.956 O12 Si3C 1 2/m 15.3899; 9.3367; 10.3086
90; 100.16; 90
510.634Redhammer, G. J.; Beran, A.; Schneider, J.; Amthauer, G.; Lottermoser, W.
Spectroscopic and structural properties of synthetic micas on the annite-siderophyllite binary: Synthesis, crystal structure refinement, Mossbauer, and infrared spectroscopy Sample: A44
American Mineralogist, 2000, 85, 449-465
9017148 CIFAl Fe6.44 H24 K1.872 Mg1.56 O66 S12 Tl0.128F d -3 c :227.2635; 27.2635; 27.2635
90; 90; 90
20264.9Biagioni, C.; Mauro, D.; Pasero, M.; Bonaccorsi, E.; Lepore, G. O.; Zaccarini, F.; Skogby, H.
Crystal-chemistry of sulfates from the Apuan Alps (Tuscany, Italy). VI. Tl-bearing alum-(K) and voltaite from the Fornovolasco mining complex
American Mineralogist, 2020, 105, 1088-1098
9016110 CIFAl Ge2 Li O6P 1 21/n 19.8986; 8.4008; 5.4016
90; 110.648; 90
420.323Redhammer, G. J.; Nestola, F.; Miletich, R.
Synthetic LiAlGe2O6: The first pyroxene with P2_1/n symmetry Note: Sample #LA2n_L_tr
American Mineralogist, 2012, 97, 1213-1218
9016270 CIFAl Ge2 Li O6P 1 21/n 19.8976; 8.3985; 5.402
90; 110.64; 90
420.219Redhammer, G. J.; Nestola, F.; Miletich, R.
Synthetic LiAlGe2O6: The first pyroxene with P2_1/n symmetry Note: Sample #LAF_L_tr
American Mineralogist, 2012, 97, 1213-1218
9016596 CIFAl Ge2 Li O6P 1 21/n 19.9015; 8.4047; 5.4036
90; 110.637; 90
420.828Redhammer, G. J.; Nestola, F.; Miletich, R.
Synthetic LiAlGe2O6: The first pyroxene with P2_1/n symmetry Note: Sample #LAG
American Mineralogist, 2012, 97, 1213-1218
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
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
9000390 CIFAl H Na2 O9 Si3P -17.256; 7.686; 8.683
90.75; 99.75; 122.48
399.436Rossi, G.; Tazzoli, V.; Ungaretti, L.
The crystal structure of ussingite
American Mineralogist, 1974, 59, 335-340
9015515 CIFAl H O12 Pb2 Si4I 1 2/m 17.8356; 13.9132; 10.2775
90; 92.925; 90
1118.98Yang, H.; Downs, R. T.; Evans, S. H.; Jenkins, R. A.; Bloch, E. M.
Rongibbsite, Pb2(Si4Al)O11(OH), a new zeolitic aluminosilicate mineral with an interrupted framework from Maricopa County, Arizona, U.S.A.
American Mineralogist, 2013, 98, 236-241
9001966 CIFAl H O4 SiP 1 21/n 17.14409; 4.33462; 6.95253
90; 98.369; 90
213.006Schmidt, M. W.; Finger, L. W.; Angel, R. J.; Dinnebier, R. E.
Synthesis, crystal structure, and phase relations of AlSiO3OH, a high-pressure hydrous phase
American Mineralogist, 1998, 83, 881-888
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
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
9000181 CIFAl H12 Na O14 S2P 1 21/a 17.353; 25.225; 6.097
90; 95.2; 90
1126.21Robinson, P. D.; Fang, J. H.
Crystal structures and mineral chemistry of double-salt hydrates: I. Direct determination of the crystal structure of tamarugite
American Mineralogist, 1969, 54, 19-30
9001688 CIFAl H15 Mn O15 P2P -19.59; 9.818; 6.86
108.04; 99.63; 98.87
590.694Burns, P. C.; Hawthorne, F. C.
The crystal structure of sinkankasite, a complex heteropolyhedral sheet mineral Locality: Barker pegmatite, near Keystone, Pennington County, South Dakota, USA
American Mineralogist, 1995, 80, 620-627
9000074 CIFAl H2 K Mg3 O12 Si3C 1 2/m 15.32; 9.21; 10.16
90; 100.03; 90
490.203Pabst, A.
Redescription of the single layer structure of the micas
American Mineralogist, 1955, 40, 967-974
9003101 CIFAl H2 Li O6.385 Si2P 18.6269; 4.9871; 7.5718
89.765; 114.097; 90.16
297.372Ferro, O.; Quartieri, S.; Vezzalini, G.; Ceriani, C.; Fois, E.; Gamba, A.; Cruciani, G.
Dehydration dynamics of bikitaite: I. In situ synchrotron powder X-ray diffraction study Sample: T = 400
American Mineralogist, 2004, 89, 94-101
9003100 CIFAl H2 Li O6.715 Si2P 18.614; 4.9721; 7.551
89.753; 114.273; 90.154
294.814Ferro, O.; Quartieri, S.; Vezzalini, G.; Ceriani, C.; Fois, E.; Gamba, A.; Cruciani, G.
Dehydration dynamics of bikitaite: I. In situ synchrotron powder X-ray diffraction study Sample: T = 280 C
American Mineralogist, 2004, 89, 94-101
9000385 CIFAl H2 Li O7 Si2P 1 21 18.613; 4.962; 7.6
90; 114.45; 90
295.679Kocman, V.; Gait, R. I.; Rucklidge, J. C.
The crystal structure of bikitaite, Li[AlSi2O6].H2O
American Mineralogist, 1974, 59, 71-78
9003099 CIFAl H2 Li O7 Si2P 18.6121; 4.9579; 7.604
89.892; 114.423; 89.955
295.621Ferro, O.; Quartieri, S.; Vezzalini, G.; Ceriani, C.; Fois, E.; Gamba, A.; Cruciani, G.
Dehydration dynamics of bikitaite: I. In situ synchrotron powder X-ray diffraction study Sample: T = 30 C
American Mineralogist, 2004, 89, 94-101
9016779 CIFAl H2 Li O7 Si2P 18.6061; 4.9573; 7.597
89.94; 114.407; 89.98
295.146Ferro, O.; Quartieri, S.; Vezzalini, G.; Fois, E.; Gamba, A.; Tabacchi, G.
High-pressure behaviour of bikitaite: An integrated theoretical and experimental approach Sample at P = 0 GPa
American Mineralogist, 2002, 87, 1415-1425
9000280 CIFAl H22 Na O19 S2C 1 2/c 121.75; 9.11; 8.3
90; 92.47; 90
1643.06Fang, J. H.; Robinson, P. D.
Crystal structures and mineral chemistry of double-salt hydrates: II. The crystal structure of mendozite, NaAl(SO4)2.11H2O
American Mineralogist, 1972, 57, 1081-1088
1544549 CIFAl H3 O3P 21 21 215.13972; 7.2556; 5.06349
90; 90; 90
188.826Matsui, M.; Komatsu, K.; Ikeda, E.; Sano-Furukawa, A.; Gotou, H.; Yagi, T.
The crystal structure of delta-Al(OH)3: Neutron diffraction measurements and ab initio calculations
American Mineralogist, 2011, 96, 854-859
9003874 CIFAl H3 O3P 1 21/n 18.742; 5.112; 9.801
90; 94.54; 90
436.624Balan, E.; Lazzeri, M.; Morin, G.; Mauri, F.
First-principles study of the OH-stretching modes of gibbsite
American Mineralogist, 2006, 91, 115-119
1557416 CIFAl H4 Mn O7 PC m c e6.9263; 10.4356; 13.523
90; 90; 90
977.44Gatta, G.D.; Nenert, G.; Vignola, P.
Coexisting hydroxyl gourd and H2O molecules in minerals: A single-crystal neutron diffraction study of eosphorite, MnAlPO4(OH)2*H2O
American Mineralogist, 2013, 98, 1297-1301
9000563 CIFAl K O3.996 SiP 63 m c5.153; 5.153; 8.682
90; 90; 120
199.651Dollase, W. A.; Freeborn, W. P.
The structure of KAlSiO4 with P6_3mc symmetry Note: natural sample of kalsilite was mixed with powdered KCl and heated, it tranformed to this phase
American Mineralogist, 1977, 62, 336-340
9001818 CIFAl K O4 SiP 3 1 c5.157; 5.157; 8.706
90; 90; 120
200.513Cellai, D.; Bonazzi, P.; Carpenter, M. A.
Natural kalsilite, KAlSiO4, with P31c symmetry: Crystal structure and twinning
American Mineralogist, 1997, 82, 276-279
9002252 CIFAl K O4 SiP 635.1627; 5.1627; 8.706
90; 90; 120
200.957Cellai, D.; Gesing, T. M.; Wruck, B.; Carpenter, M. A.
X-ray study of the trigonal-hexagonal phase transition in metamorphic kalsilite
American Mineralogist, 1999, 84, 1950-1955
1537809 CIFAl K O6 Si2I a -3 d13.536; 13.536; 13.536
90; 90; 90
2480.11Dove, M.T.; Cool, T.; Putnis, A.; Palmer, D.C.; Salje, E.K.H.; Winkler, B.
On the role of Al-Si ordering in the cubic-tetragonal phase transition of leucite
American Mineralogist, 1993, 78, 486-492
9001518 CIFAl K O6 Si2I 41/a :212.988; 12.988; 13.8
90; 90; 90
2327.9Dove, M. T.; Cool, T.; Palmer, D. C.; Putnis, A.; Salje, E. K. H.; Winkler, B.
On the role of Al-Si ordering in the cubic-tetragonal phase transition of leucite Sample is Disordered
American Mineralogist, 1993, 78, 486-492
9001519 CIFAl K O6 Si2I 41/a :212.931; 12.931; 13.812
90; 90; 90
2309.51Dove, M. T.; Cool, T.; Palmer, D. C.; Putnis, A.; Salje, E. K. H.; Winkler, B.
On the role of Al-Si ordering in the cubic-tetragonal phase transition of leucite Sample is Order model 1
American Mineralogist, 1993, 78, 486-492
9001520 CIFAl K O6 Si2I 41/a :213.005; 13.005; 13.765
90; 90; 90
2328.07Dove, M. T.; Cool, T.; Palmer, D. C.; Putnis, A.; Salje, E. K. H.; Winkler, B.
On the role of Al-Si ordering in the cubic-tetragonal phase transition of leucite Sample is Order model 2
American Mineralogist, 1993, 78, 486-492
9001795 CIFAl K O6 Si2I 41/a :213.05476; 13.05476; 13.75182
90; 90; 90
2343.68Palmer, D. C.; Dove, M. T.; Ibberson, R. M.; Powell, B. M.
Structural behavior, crystal chemistry and phase transitions in substituted leucites: High-resolution neutron powder diffraction studies Sample: Natural, Expt. no. 3003, T = 298 K, KAlSi2O6
American Mineralogist, 1997, 82, 16-29
9000161 CIFAl K O8 Si3C 1 2/m 18.554; 12.97; 7.207
90; 116.01; 90
718.6Colville, A. A.; Ribbe, P. H.
The crystal structure of an adularia and a refinement of the structure of orthoclase Note: Spencer B, variety adularia
American Mineralogist, 1968, 53, 25-37
9000162 CIFAl K O8 Si3C 1 2/m 18.561; 12.996; 7.192
90; 116.01; 90
719.129Colville, A. A.; Ribbe, P. H.
The crystal structure of an adularia and a refinement of the structure of orthoclase Spencer C
American Mineralogist, 1968, 53, 25-37
9000303 CIFAl K O8 Si3C 1 2/m 18.539; 13.015; 7.179
90; 115.99; 90
717.154Phillips, M. W.; Ribbe, P. H.
The structures of monoclinic potassium-rich feldspars
American Mineralogist, 1973, 58, 263-270
9000311 CIFAl K O8 Si3C 1 2/m 18.5632; 12.963; 7.2099
90; 116.073; 90
718.887Prince, E.; Donnay, G.; Martin, R. F.
Neutron diffraction refinement of an ordered orthoclase structure
American Mineralogist, 1973, 58, 500-507
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
9001103 CIFAl K O8 Si3C 1 2/m 18.595; 13.028; 7.175
90; 115.94; 90
722.482Scambos, T. A.; Smyth, J. R.; McCormick, T. C.
Crystal-structure refinement of high sanidine from the upper mantle
American Mineralogist, 1987, 72, 973-978
9001521 CIFAl K O8 Si3I 4/m9.315; 9.315; 2.723
90; 90; 90
236.273Zhang, J.; Ko, J.; Hazen, R. M.; Prewitt, C. T.
High-pressure crystal chemistry of KAlSi3O8 hollandite Pressure = 0.00 GPa
American Mineralogist, 1993, 78, 493-499
9001522 CIFAl K O8 Si3I 4/m9.285; 9.285; 2.717
90; 90; 90
234.236Zhang, J.; Ko, J.; Hazen, R. M.; Prewitt, C. T.
High-pressure crystal chemistry of KAlSi3O8 hollandite Pressure = 1.64 GPa
American Mineralogist, 1993, 78, 493-499
9001523 CIFAl K O8 Si3I 4/m9.261; 9.261; 2.712
90; 90; 90
232.598Zhang, J.; Ko, J.; Hazen, R. M.; Prewitt, C. T.
High-pressure crystal chemistry of KAlSi3O8 hollandite Pressure = 2.95 GPa
American Mineralogist, 1993, 78, 493-499
9001524 CIFAl K O8 Si3I 4/m9.247; 9.247; 2.71
90; 90; 90
231.724Zhang, J.; Ko, J.; Hazen, R. M.; Prewitt, C. T.
High-pressure crystal chemistry of KAlSi3O8 hollandite Pressure = 3.60 GPa
American Mineralogist, 1993, 78, 493-499
9001525 CIFAl K O8 Si3I 4/m9.237; 9.237; 2.706
90; 90; 90
230.882Zhang, J.; Ko, J.; Hazen, R. M.; Prewitt, C. T.
High-pressure crystal chemistry of KAlSi3O8 hollandite Pressure = 4.47 GPa
American Mineralogist, 1993, 78, 493-499
9016739 CIFAl K O8 Si3C 1 2/m 18.544; 13.01; 7.194
90; 115.99; 90
718.797Deubener, J.; Sternitzke, M.; Mueller, G.
Feldspars MAlSi3O8 (M=H,Li,Ag) synthesized by low-temperature ion exchange
American Mineralogist, 1991, 76, 1620-1627
9016754 CIFAl K0.002 Na0.998 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
American Mineralogist, 1979, 64, 409-423
9016755 CIFAl K0.002 Na0.998 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
American Mineralogist, 1979, 64, 409-423
9016756 CIFAl K0.002 Na0.998 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
American Mineralogist, 1979, 64, 409-423
9016757 CIFAl K0.002 Na0.998 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
American Mineralogist, 1979, 64, 409-423
9016758 CIFAl K0.002 Na0.998 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
American Mineralogist, 1979, 64, 409-423
9016759 CIFAl K0.002 Na0.998 O8 Si3C 1 2/m 18.274; 12.991; 7.144
90; 116.13; 90
689.41Winter, 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, sample = monalbite
American Mineralogist, 1979, 64, 409-423
9016760 CIFAl K0.002 Na0.998 O8 Si3C 1 2/m 18.297; 12.994; 7.144
90; 116.01; 90
692.195Winter, J. K.; Okamura, F. P.; Ghose, S.
A high-temperature structural study of high albite, monalbite, and the analbite - monalbite phase transition T = 1060 deg C, sample = monalbite
American Mineralogist, 1979, 64, 409-423
9016736 CIFAl K0.141 Na0.882 O8 Si3C 1 2/m 18.321; 12.969; 7.148
90; 116.05; 90
693.013Harlow, G. E.
The anorthoclase structures: The effects of temperature and composition Note: Or = 13.8, T = 750 C
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
9000860 CIFAl K0.15 Na0.85 O8 Si3C 1 2/m 18.321; 12.969; 7.148
90; 116.05; 90
693.013Harlow, G. E.
The anorthoclase structures: The effects of temperature and composition Kakanui, Or = 13.8, T = 750 deg C feldspar
American Mineralogist, 1982, 67, 975-996
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
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
9000858 CIFAl K0.25 Na0.75 O8 Si3C 1 2/m 18.314; 12.973; 7.15
90; 116.135; 90
692.335Harlow, G. E.
The anorthoclase structures: The effects of temperature and composition Mt. Gibele, Or = 22.3, T = 510 deg C feldspar
American Mineralogist, 1982, 67, 975-996
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
9000856 CIFAl K0.333 Na0.667 O8 Si3C 1 2/m 18.3482; 12.98; 7.1582
90; 116.109; 90
696.51Harlow, G. E.
The anorthoclase structures: The effects of temperature and composition Grande Caldeira, Or = 32.5, T = 400 deg C feldspar
American Mineralogist, 1982, 67, 975-996
9016732 CIFAl K0.334 Na0.694 O8 Si3C 1 2/m 18.3482; 12.98; 7.1582
90; 116.109; 90
696.51Harlow, G. E.
The anorthoclase structures: The effects of temperature and composition Note: Or = 32.5, T = 400 C
American Mineralogist, 1982, 67, 975-996
9000682 CIFAl K0.65 Na0.35 O8 Si3C 1 2/m 18.558; 12.997; 7.179
90; 116.07; 90
717.266Keefer, K. D.; Brown, G. E.
Crystal structure and composition 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
9016742 CIFAl K0.85 Na0.15 O8 Si3C 1 2/m 18.539; 13.015; 7.179
90; 115.99; 90
717.154Phillips, M. W.; Ribbe, P. H.
The structures of monoclinic potassium-rich feldspars
American Mineralogist, 1973, 58, 263-270
9016744 CIFAl K0.86 Na0.1 O8 Si3C 1 2/m 18.5632; 12.963; 7.2099
90; 116.073; 90
718.887Prince, E.; Donnay, G.; Martin, R. F.
Neutron diffraction refinement of an ordered orthoclase structure
American Mineralogist, 1973, 58, 500-507
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
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
9016484 CIFAl K0.98 O4 SiP 3 1 c5.1589; 5.1589; 8.7438
90; 90; 120
201.532Gatta, G. D.; Angel, R. J.; Carpenter, M. A.
Low-temperature behavior of natural kalsilite with P31c symmetry: An in situ single-crystal X-ray diffraction study T = 175 K
American Mineralogist, 2010, 95, 1027-1034
9016430 CIFAl K0.982 O4 SiP 3 1 c5.1627; 5.1627; 8.7352
90; 90; 120
201.631Gatta, G. D.; Angel, R. J.; Carpenter, M. A.
Low-temperature behavior of natural kalsilite with P31c symmetry: An in situ single-crystal X-ray diffraction study T = 250 K
American Mineralogist, 2010, 95, 1027-1034
9014995 CIFAl K0.983 O4 SiP 3 1 c5.156; 5.156; 8.745
90; 90; 120
201.334Gatta, G. D.; Angel, R. J.; Carpenter, M. A.
Low-temperature behavior of natural kalsilite with P31c symmetry: An in situ single-crystal X-ray diffraction study T = 150 K
American Mineralogist, 2010, 95, 1027-1034
9015536 CIFAl K0.984 O4 SiP 3 1 c5.1531; 5.1531; 8.7523
90; 90; 120
201.275Gatta, G. D.; Angel, R. J.; Carpenter, M. A.
Low-temperature behavior of natural kalsilite with P31c symmetry: An in situ single-crystal X-ray diffraction study T = 100 K
American Mineralogist, 2010, 95, 1027-1034
9014830 CIFAl K0.985 O4 SiP 3 1 c5.1665; 5.1665; 8.7248
90; 90; 120
201.687Gatta, G. D.; Angel, R. J.; Carpenter, M. A.
Low-temperature behavior of natural kalsilite with P31c symmetry: An in situ single-crystal X-ray diffraction study T = 298 K
American Mineralogist, 2010, 95, 1027-1034
9015139 CIFAl K0.985 O4 SiP 3 1 c5.1627; 5.1627; 8.7392
90; 90; 120
201.723Gatta, G. D.; Angel, R. J.; Carpenter, M. A.
Low-temperature behavior of natural kalsilite with P31c symmetry: An in situ single-crystal X-ray diffraction study T = 225 K
American Mineralogist, 2010, 95, 1027-1034
9016619 CIFAl K0.986 O4 SiP 3 1 c5.1652; 5.1652; 8.7326
90; 90; 120
201.766Gatta, G. D.; Angel, R. J.; Carpenter, M. A.
Low-temperature behavior of natural kalsilite with P31c symmetry: An in situ single-crystal X-ray diffraction study T = 275 K
American Mineralogist, 2010, 95, 1027-1034
9016271 CIFAl K0.987 O4 SiP 3 1 c5.1588; 5.1588; 8.7383
90; 90; 120
201.398Gatta, G. D.; Angel, R. J.; Carpenter, M. A.
Low-temperature behavior of natural kalsilite with P31c symmetry: An in situ single-crystal X-ray diffraction study T = 200 K
American Mineralogist, 2010, 95, 1027-1034
9017093 CIFAl Li O10 Si4P 1 2/c 111.22955; 5.1396; 11.7514
90; 141.312; 90
423.952Ross, N. L.; Zhao, J.; Slebodnick, C.; Spencer, E. C.; Chakoumakos, B. C.
Petalite under pressure: Elastic behavior and phase stability Note: P = 0.0001 GPa
American Mineralogist, 2015, 100, 714-721
9017094 CIFAl Li O10 Si4P 1 2/c 111.2067; 5.1228; 11.716
90; 141.243; 90
421.069Ross, N. L.; Zhao, J.; Slebodnick, C.; Spencer, E. C.; Chakoumakos, B. C.
Petalite under pressure: Elastic behavior and phase stability Note: P = 0.32 GPa
American Mineralogist, 2015, 100, 714-721
9017095 CIFAl Li O10 Si4P 1 2/c 111.1895; 5.11; 11.6872
90; 141.19; 90
418.826Ross, N. L.; Zhao, J.; Slebodnick, C.; Spencer, E. C.; Chakoumakos, B. C.
Petalite under pressure: Elastic behavior and phase stability Note: P = 0.56 GPa
American Mineralogist, 2015, 100, 714-721
9017096 CIFAl Li O10 Si4P 1 2/c 111.1705; 5.0963; 11.6569
90; 141.134; 90
416.413Ross, N. L.; Zhao, J.; Slebodnick, C.; Spencer, E. C.; Chakoumakos, B. C.
Petalite under pressure: Elastic behavior and phase stability Note: P = 0.89 GPa
American Mineralogist, 2015, 100, 714-721
9017097 CIFAl Li O10 Si4P 1 2/c 111.1425; 5.0723; 11.6092
90; 141.074; 90
412.257Ross, N. L.; Zhao, J.; Slebodnick, C.; Spencer, E. C.; Chakoumakos, B. C.
Petalite under pressure: Elastic behavior and phase stability Note: P = 1.25 GPa
American Mineralogist, 2015, 100, 714-721
9000367 CIFAl Li O4 SiP 64 2 210.497; 10.497; 11.2
90; 90; 120
1068.76Pillars, W. W.; Peacor, D. R.
The crystal structure of beta eucryptite as a function of temperature T = 23C
American Mineralogist, 1973, 58, 681-690
9000368 CIFAl Li O4 SiP 64 2 210.499; 10.499; 11.197
90; 90; 120
1068.88Pillars, W. W.; Peacor, D. R.
The crystal structure of beta eucryptite as a function of temperature T = 200 C
American Mineralogist, 1973, 58, 681-690
9000369 CIFAl Li O4 SiP 64 2 210.5; 10.5; 11.194
90; 90; 120
1068.8Pillars, W. W.; Peacor, D. R.
The crystal structure of beta eucryptite as a function of temperature T = 335 C
American Mineralogist, 1973, 58, 681-690
9000370 CIFAl Li O4 SiP 64 2 210.501; 10.501; 11.194
90; 90; 120
1069Pillars, W. W.; Peacor, D. R.
The crystal structure of beta eucryptite as a function of temperature T = 440 C
American Mineralogist, 1973, 58, 681-690
9000371 CIFAl Li O4 SiP 64 2 25.251; 5.251; 11.192
90; 90; 120
267.253Pillars, W. W.; Peacor, D. R.
The crystal structure of beta eucryptite as a function of temperature T = 484 C
American Mineralogist, 1973, 58, 681-690
9000372 CIFAl Li O4 SiP 64 2 25.251; 5.251; 11.189
90; 90; 120
267.181Pillars, W. W.; Peacor, D. R.
The crystal structure of beta eucryptite as a function of temperature T = 647 C
American Mineralogist, 1973, 58, 681-690
9002378 CIFAl Li O4 SiP 62 2 210.4971; 10.4971; 11.19513
90; 90; 120
1068.31Xu, H.; Heaney, P. J.; Beall, G. H.
Phase transitions induced by solid solution in stuffed derivatives of quartz: A powder synchrotron XRD study of the LiAlSiO4-SiO2 join Sample: x=0, ordered LiAlSiO4, beta eucryptite structure
American Mineralogist, 2000, 85, 971-979
9002379 CIFAl Li O4 SiP 62 2 210.4949; 10.4949; 10.965
90; 90; 120
1045.91Xu, H.; Heaney, P. J.; Beall, G. H.
Phase transitions induced by solid solution in stuffed derivatives of quartz: A powder synchrotron XRD study of the LiAlSiO4-SiO2 join Sample: x=.2, Li.8Al.8Si1.2O4, beta eucryptite structure
American Mineralogist, 2000, 85, 971-979
9002541 CIFAl Li O4 SiR 3 :H13.532; 13.532; 9.044
90; 90; 120
1434.22Daniels, P.; Fyfe, C. A.
Al, Si order in the crystal structure of alpha-eucryptite (LiAlSiO4)
American Mineralogist, 2001, 86, 279-283
9002542 CIFAl Li O4 SiR -3 :H13.532; 13.532; 9.044
90; 90; 120
1434.22Daniels, P.; Fyfe, C. A.
Al, Si order in the crystal structure of alpha-eucryptite (LiAlSiO4) Not the correct model
American Mineralogist, 2001, 86, 279-283
9000346 CIFAl Li O6 Si2C 1 2/c 19.463; 8.392; 5.218
90; 110.15; 90
389.017Cameron, M.; Sueno, S.; Prewitt, C. T.; Papike, J. J.
High-temperature crystal chemistry of acmite, diopside, hedenbergite, jadeite, spodumene, and ureyite T = 24 C pyroxene
American Mineralogist, 1973, 58, 594-618
9000347 CIFAl Li O6 Si2C 1 2/c 19.468; 8.412; 5.224
90; 110.05; 90
390.848Cameron, M.; Sueno, S.; Prewitt, C. T.; Papike, J. J.
High-temperature crystal chemistry of acmite, diopside, hedenbergite, jadeite, spodumene, and ureyite T = 300 C pyroxene
American Mineralogist, 1973, 58, 594-618
9000348 CIFAl Li O6 Si2C 1 2/c 19.473; 8.43; 5.229
90; 109.99; 90
392.416Cameron, M.; Sueno, S.; Prewitt, C. T.; Papike, J. J.
High-temperature crystal chemistry of acmite, diopside, hedenbergite, jadeite, spodumene, and ureyite T = 460 C pyroxene
American Mineralogist, 1973, 58, 594-618
9000349 CIFAl Li O6 Si2C 1 2/c 19.489; 8.46; 5.236
90; 109.88; 90
395.281Cameron, M.; Sueno, S.; Prewitt, C. T.; Papike, J. J.
High-temperature crystal chemistry of acmite, diopside, hedenbergite, jadeite, spodumene, and ureyite T = 760 C pyroxene
American Mineralogist, 1973, 58, 594-618
9003102 CIFAl Li O6 Si2P 18.6274; 4.9898; 7.5729
89.737; 114.072; 90.169
297.651Ferro, O.; Quartieri, S.; Vezzalini, G.; Ceriani, C.; Fois, E.; Gamba, A.; Cruciani, G.
Dehydration dynamics of bikitaite: I. In situ synchrotron powder X-ray diffraction study Sample: T = 468
American Mineralogist, 2004, 89, 94-101
9003398 CIFAl Li O6 Si2C 1 2/c 19.57; 8.717; 5.033
90; 112.1; 90
389.014Thompson, R. M.; Downs, R. T.
Model pyroxenes II: Structural variation as a function of tetrahedral rotation model spodumene after Cameron et al. (1973) with O3-O3-O3 angle = 189.5 and model oxygen radius = 1.263
American Mineralogist, 2004, 89, 614-628
9003399 CIFAl Li O6 Si2C 1 2/c 19.589; 8.766; 5.061
90; 111.7; 90
395.265Thompson, R. M.; Downs, R. T.
Model pyroxenes II: Structural variation as a function of tetrahedral rotation model spodumene at 760C after Cameron et al. (1973) with O3-O3-O3 angle = 186.6 and model oxygen radius = 1.267
American Mineralogist, 2004, 89, 614-628
9003400 CIFAl Li O6 Si2C 1 2/c 19.572; 8.715; 5.032
90; 112.1; 90
388.928Thompson, R. M.; Downs, R. T.
Model pyroxenes II: Structural variation as a function of tetrahedral rotation model spodumene after Arlt and Angel (2003) with O3-O3-O3 angle = 189.9 and model oxygen radius = 1.263
American Mineralogist, 2004, 89, 614-628
9003401 CIFAl Li O6 Si2C 1 2/c 19.503; 8.655; 4.997
90; 112.1; 90
380.799Thompson, R. M.; Downs, R. T.
Model pyroxenes II: Structural variation as a function of tetrahedral rotation model spodumene at 3.164 GPa after Arlt and Angel (2003) with O3-O3-O3 angle = 189.5 and model oxygen radius = 1.254
American Mineralogist, 2004, 89, 614-628
9003423 CIFAl Li O6 Si2P 1 21/c 19.402; 8.587; 4.958
90; 110.2; 90
375.664Thompson, R. M.; Downs, R. T.
Model pyroxenes II: Structural variation as a function of tetrahedral rotation model low clinospodumene at P = 3.342 GPa after Arlt and Angel (2000) with O3A-O3A-O3A angle = 203.2, O3B-O3B-O3B angle = 152.5, and model oxygen radius = 1.265
American Mineralogist, 2004, 89, 614-628
9003424 CIFAl Li O6 Si2P 1 21/c 19.292; 8.459; 4.884
90; 109.6; 90
361.644Thompson, R. M.; Downs, R. T.
Model pyroxenes II: Structural variation as a function of tetrahedral rotation model low clinospodumene at P = 8.835 GPa after Arlt and Angel (2000) with O3A-O3A-O3A angle = 206.4, O3B-O3B-O3B angle = 143.5, and model oxygen radius = 1.254
American Mineralogist, 2004, 89, 614-628
9010433 CIFAl Mg O10.4 Si4P 1 21/a 110.755; 15.353; 5.281
90; 96.17; 90
866.956Post, J. E.; Heaney, P. J.
Synchotron powder X-ray diffraction study of the structure and dehydration behavior of palygorskite Sample: T = 1160 K
American Mineralogist, 2008, 93, 667-675
9001950 CIFAl Na O4 SiP 619.995; 9.995; 24.797
90; 90; 120
2145.34Kahlenberg, V.; Bohm, H.
Crystal structure of hexagonal trinepheline - A new synthetic NaAlSiO4 modification
American Mineralogist, 1998, 83, 631-637
9000143 CIFAl Na O6 Si2C 1 2/c 19.418; 8.562; 5.219
90; 107.58; 90
401.189Prewitt, C. T.; Burnham, C. W.
The crystal structure of jadeite, NaAlSi2O6
American Mineralogist, 1966, 51, 956-975
9000342 CIFAl Na O6 Si2C 1 2/c 19.423; 8.564; 5.223
90; 107.56; 90
401.848Cameron, M.; Sueno, S.; Prewitt, C. T.; Papike, J. J.
High-temperature crystal chemistry of acmite, diopside, hedenbergite, jadeite, spodumene, and ureyite T = 24 C pyroxene
American Mineralogist, 1973, 58, 594-618
9000343 CIFAl Na O6 Si2C 1 2/c 19.45; 8.594; 5.233
90; 107.57; 90
405.163Cameron, M.; Sueno, S.; Prewitt, C. T.; Papike, J. J.
High-temperature crystal chemistry of acmite, diopside, hedenbergite, jadeite, spodumene, and ureyite T = 400 C pyroxene
American Mineralogist, 1973, 58, 594-618
9000344 CIFAl Na O6 Si2C 1 2/c 19.469; 8.614; 5.24
90; 107.57; 90
407.467Cameron, M.; Sueno, S.; Prewitt, C. T.; Papike, J. J.
High-temperature crystal chemistry of acmite, diopside, hedenbergite, jadeite, spodumene, and ureyite T = 600 C pyroxene
American Mineralogist, 1973, 58, 594-618
9000345 CIFAl Na O6 Si2C 1 2/c 19.483; 8.63; 5.249
90; 107.59; 90
409.484Cameron, M.; Sueno, S.; Prewitt, C. T.; Papike, J. J.
High-temperature crystal chemistry of acmite, diopside, hedenbergite, jadeite, spodumene, and ureyite T = 800 C pyroxene
American Mineralogist, 1973, 58, 594-618
9003406 CIFAl Na O6 Si2C 1 2/c 19.527; 8.81; 5.087
90; 110; 90
401.217Thompson, R. M.; Downs, R. T.
Model pyroxenes II: Structural variation as a function of tetrahedral rotation model jadeite after Clark et al. (1969) with O3-O3-O3 angle = 174.7 and model oxygen radius = 1.273
American Mineralogist, 2004, 89, 614-628
9010323 CIFAl Na O6 Si2C 1 2/c 19.4278; 8.5651; 5.2262
90; 107.624; 90
402.208Nestola, F.; Tribaudino, M.; Ballaran, T. B.; Liebske, C.; Bruno, M.
The crystal structures of pyroxenes along the jadeite - hedenbergite and jadeite - aegirine joins Sample: Jd100Ae0
American Mineralogist, 2007, 92, 1492-1501
9010373 CIFAl Na O6 Si2C 1 2/c 19.4242; 8.5657; 5.2242
90; 107.578; 90
402.031McCarthy, A. C.; Downs, R. T.; Thompson, R. M.
Compressibility trends of the clinopyroxenes, and in-situ high-pressure single-crystal X-ray diffraction study of jadeite Sample: Room Conditions, P = 0.0001 GPa
American Mineralogist, 2008, 93, 198-209
9010374 CIFAl Na O6 Si2C 1 2/c 19.3718; 8.524; 5.1985
90; 107.399; 90
396.282McCarthy, A. C.; Downs, R. T.; Thompson, R. M.
Compressibility trends of the clinopyroxenes, and in-situ high-pressure single-crystal X-ray diffraction study of jadeite Sample: P = 2.07 GPa
American Mineralogist, 2008, 93, 198-209
9010375 CIFAl Na O6 Si2C 1 2/c 19.3372; 8.4966; 5.1805
90; 107.285; 90
392.431McCarthy, A. C.; Downs, R. T.; Thompson, R. M.
Compressibility trends of the clinopyroxenes, and in-situ high-pressure single-crystal X-ray diffraction study of jadeite Sample: P = 3.40 GPa
American Mineralogist, 2008, 93, 198-209
9010376 CIFAl Na O6 Si2C 1 2/c 19.303; 8.4666; 5.1609
90; 107.14; 90
388.444McCarthy, A. C.; Downs, R. T.; Thompson, R. M.
Compressibility trends of the clinopyroxenes, and in-situ high-pressure single-crystal X-ray diffraction study of jadeite Sample: P = 4.92 GPa
American Mineralogist, 2008, 93, 198-209
9010377 CIFAl Na O6 Si2C 1 2/c 19.2793; 8.4446; 5.1474
90; 107.054; 90
385.614McCarthy, A. C.; Downs, R. T.; Thompson, R. M.
Compressibility trends of the clinopyroxenes, and in-situ high-pressure single-crystal X-ray diffraction study of jadeite Sample: P = 6.12 GPa
American Mineralogist, 2008, 93, 198-209
9010378 CIFAl Na O6 Si2C 1 2/c 19.2593; 8.4268; 5.1354
90; 106.979; 90
383.231McCarthy, A. C.; Downs, R. T.; Thompson, R. M.
Compressibility trends of the clinopyroxenes, and in-situ high-pressure single-crystal X-ray diffraction study of jadeite Sample: P = 7.17 GPa
American Mineralogist, 2008, 93, 198-209
9010379 CIFAl Na O6 Si2C 1 2/c 19.2455; 8.4137; 5.1269
90; 106.91; 90
381.572McCarthy, A. C.; Downs, R. T.; Thompson, R. M.
Compressibility trends of the clinopyroxenes, and in-situ high-pressure single-crystal X-ray diffraction study of jadeite Sample: P = 7.83 GPa
American Mineralogist, 2008, 93, 198-209
9010380 CIFAl Na O6 Si2C 1 2/c 19.2305; 8.3999; 5.1178
90; 106.854; 90
379.766McCarthy, A. C.; Downs, R. T.; Thompson, R. M.
Compressibility trends of the clinopyroxenes, and in-situ high-pressure single-crystal X-ray diffraction study of jadeite Sample: P = 8.54 GPa
American Mineralogist, 2008, 93, 198-209
9010381 CIFAl Na O6 Si2C 1 2/c 19.2185; 8.3871; 5.1099
90; 106.794; 90
378.229McCarthy, A. C.; Downs, R. T.; Thompson, R. M.
Compressibility trends of the clinopyroxenes, and in-situ high-pressure single-crystal X-ray diffraction study of jadeite Sample: P = 9.17 GPa
American Mineralogist, 2008, 93, 198-209
9010470 CIFAl Na O6 Si2C 1 2/c 19.4278; 8.5651; 5.2262
90; 107.624; 90
402.208Nestola, F.; Ballaran, T. B.; Liebske, C.; Thompson, R.; Downs, R. T.
The effect of the hedenbergitic substitution on the compressibility of jadeite Sample: Jd100Hd0, P = 0 GPa
American Mineralogist, 2008, 93, 1005-1013
9010471 CIFAl Na O6 Si2C 1 2/c 19.3488; 8.5013; 5.1856
90; 107.345; 90
393.395Nestola, F.; Ballaran, T. B.; Liebske, C.; Thompson, R.; Downs, R. T.
The effect of the hedenbergitic substitution on the compressibility of jadeite Sample: Jd100Hd0, P = 3.14 GPa
American Mineralogist, 2008, 93, 1005-1013
9010472 CIFAl Na O6 Si2C 1 2/c 19.2411; 8.4053; 5.1236
90; 106.906; 90
380.773Nestola, F.; Ballaran, T. B.; Liebske, C.; Thompson, R.; Downs, R. T.
The effect of the hedenbergitic substitution on the compressibility of jadeite Sample: Jd100Hd0, P = 8.31 GPa
American Mineralogist, 2008, 93, 1005-1013
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
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
9000707 CIFAl Na O8 Si3C 1 2/m 18.274; 12.991; 7.144
90; 116.13; 90
689.41Winter, 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, sample = monalbite Note: this sample of feldspar is from Tiburon, Marin County, California, USA
American Mineralogist, 1979, 64, 409-423
9000708 CIFAl Na O8 Si3C 1 2/m 18.297; 12.994; 7.144
90; 116.01; 90
692.195Winter, J. K.; Okamura, F. P.; Ghose, S.
A high-temperature structural study of high albite, monalbite, and the analbite - monalbite phase transition T = 1060 deg C, sample = monalbite Note: this sample of feldspar is from Tiburon, Marin County, California, USA
American Mineralogist, 1979, 64, 409-423
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
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
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
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
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
9003702 CIFAl Na O8 Si3C -17.5028; 12.4933; 6.9463
93.903; 117.791; 86.786
574.453Benusa, M. D.; Angel, R. J.; Ross, N. L.
Compression of albite, NaAlSi3O8 Sample: Amelia Court House, Virginia locality P = 9.431 GPa
American Mineralogist, 2005, 90, 1115-1120
9010480 CIFAl Na0.981 O4 SiP 1 1 219.9897; 9.9622; 24.979
90; 90; 119.788
2157.43Vulic, P.; Kahlenberg, V.; Konzett, J.
On the existence of a Na-deficient monoclinic trinepheline with composition Na7.85Al7.85Si8.15O32
American Mineralogist, 2008, 93, 1072-1079
9010367 CIFAl O4 PP 31 2 14.9458; 4.9458; 10.9526
90; 90; 120
232.018Onac, B. P.; Effenberger, H. S.
Re-examination of berlinite (AlPO4) from the Cioclovina Cave, Romania
American Mineralogist, 2007, 92, 1998-2001
9001783 CIFAl O4 Pb0.5 SiC 1 2/m 18.428; 13.054; 7.174
90; 115.32; 90
713.454Benna, P.; Tribaudino, M.; Bruno, E.
The structure of ordered and disordered lead feldspar (PbAl2Si2O8) Sample: disordered
American Mineralogist, 1996, 81, 1337-1343
9001894 CIFAl O4 Pb0.5 SiI 1 2/c 18.395; 13.081; 14.343
90; 115.27; 90
1424.35Tribaudino, M.; Benna, P.; Bruno, E.
Structural variations induced by thermal treatment in lead feldspar (PbAl2Si2O8) Sample: PbF_L1h, split Pb site
American Mineralogist, 1998, 83, 159-166
9001896 CIFAl O4 Pb0.5 SiI 1 2/c 18.399; 13.061; 14.334
90; 115.28; 90
1421.84Tribaudino, M.; Benna, P.; Bruno, E.
Structural variations induced by thermal treatment in lead feldspar (PbAl2Si2O8) Sample: PbF_L16h, split Pb site
American Mineralogist, 1998, 83, 159-166
9001898 CIFAl O4 Pb0.5 SiI 1 2/c 18.405; 13.063; 14.344
90; 115.29; 90
1423.95Tribaudino, M.; Benna, P.; Bruno, E.
Structural variations induced by thermal treatment in lead feldspar (PbAl2Si2O8) Sample: PbF_L64h, split Pb site
American Mineralogist, 1998, 83, 159-166
9001900 CIFAl O4 Pb0.5 SiI 1 2/c 18.418; 13.076; 14.365
90; 115.28; 90
1429.78Tribaudino, M.; Benna, P.; Bruno, E.
Structural variations induced by thermal treatment in lead feldspar (PbAl2Si2O8) Sample: PbF_H136h, split Pb site
American Mineralogist, 1998, 83, 159-166
9002425 CIFAl O4 Si TlP 1 1 21/n5.4095; 9.4232; 8.2629
90; 90; 90.01
421.2Kyono, A.; Kimata, M.; Shimizu, M.
The crystal structure of TlAlSiO4: The role of inert pairs in exclusion of Tl from silicate minerals
American Mineralogist, 2000, 85, 1287-1293
9001796 CIFAl O6 Rb Si2I 41/a :213.2918; 13.2918; 13.74118
90; 90; 90
2427.68Palmer, D. C.; Dove, M. T.; Ibberson, R. M.; Powell, B. M.
Structural behavior, crystal chemistry and phase transitions in substituted leucites: High-resolution neutron powder diffraction studies Sample: Expt. no. 2830, T = 298 K, RbAlSi2O6
American Mineralogist, 1997, 82, 16-29
1537789 CIFAl O8 Rb Si3C 1 2/m 18.82; 12.992; 7.161
90; 116.24; 90
736.015Deubener, J.; Sternitzke, M.; Mueller, G.
Feldspars M Al Si3 O8 (M= H, Li, Ag) synthesized by low-temperature ion exchange
American Mineralogist, 1991, 76, 1620-1627
9003577 CIFAl0.003 Ca0.024 Mg1.433 Mn0.509 O6 Si1.997 Ti0.002P b c a18.3718; 8.8836; 5.2334
90; 90; 90
854.131Stimpfl, M.
The Mn, Mg-intracrystalline exchange reaction in donpeacorite (Mn0.54Ca0.03Mg1.43Si2O6) and its relation to the fractionation behavior of Mn in Fe, Mg-orthopyroxene Sample: quenched from 904 deg C ORD
American Mineralogist, 2005, 90, 155-161
9003574 CIFAl0.003 Ca0.024 Mg1.433 Mn0.541 O6 Si1.997 Ti0.002P b c a18.3668; 8.8725; 5.2289
90; 90; 90
852.099Stimpfl, M.
The Mn, Mg-intracrystalline exchange reaction in donpeacorite (Mn0.54Ca0.03Mg1.43Si2O6) and its relation to the fractionation behavior of Mn in Fe, Mg-orthopyroxene Sample: untreated
American Mineralogist, 2005, 90, 155-161
9003575 CIFAl0.003 Ca0.024 Mg1.433 Mn0.541 O6 Si1.997 Ti0.002P b c a18.3653; 8.8819; 5.2305
90; 90; 90
853.193Stimpfl, M.
The Mn, Mg-intracrystalline exchange reaction in donpeacorite (Mn0.54Ca0.03Mg1.43Si2O6) and its relation to the fractionation behavior of Mn in Fe, Mg-orthopyroxene Sample: quenched from 980 deg C DIS
American Mineralogist, 2005, 90, 155-161
9003578 CIFAl0.003 Ca0.024 Mg1.433 Mn0.541 O6 Si1.997 Ti0.002P b c a18.3645; 8.881; 5.2284
90; 90; 90
852.727Stimpfl, M.
The Mn, Mg-intracrystalline exchange reaction in donpeacorite (Mn0.54Ca0.03Mg1.43Si2O6) and its relation to the fractionation behavior of Mn in Fe, Mg-orthopyroxene Sample: quenched from 856 deg C ORD
American Mineralogist, 2005, 90, 155-161
9003579 CIFAl0.003 Ca0.024 Mg1.433 Mn0.541 O6 Si1.997 Ti0.002P b c a18.3559; 8.8741; 5.2256
90; 90; 90
851.209Stimpfl, M.
The Mn, Mg-intracrystalline exchange reaction in donpeacorite (Mn0.54Ca0.03Mg1.43Si2O6) and its relation to the fractionation behavior of Mn in Fe, Mg-orthopyroxene Sample: quenched from 806 deg C ORD
American Mineralogist, 2005, 90, 155-161
9003576 CIFAl0.003 Ca0.024 Mg1.433 Mn0.542 O6 Si1.997 Ti0.002P b c a18.3686; 8.8828; 5.2287
90; 90; 90
853.139Stimpfl, M.
The Mn, Mg-intracrystalline exchange reaction in donpeacorite (Mn0.54Ca0.03Mg1.43Si2O6) and its relation to the fractionation behavior of Mn in Fe, Mg-orthopyroxene Sample: quenched from 900 deg C DIS
American Mineralogist, 2005, 90, 155-161
1531226 CIFAl0.003 Mg0.001 Mn2.98 O4 Zn0.018I 41/a m d :25.7632; 5.7632; 9.4547
90; 90; 90
314.033Bosi, F.; Lucchesi, S.; della Giusta, A.
Structural relationships in (Mn1-x Znx) Mn2 O4 (0 <= x <= 0.26): the "dragging effect" of the tetrahedron on the octahedron
American Mineralogist, 2002, 87, 1121-1127
1532700 CIFAl0.004 As0.016 Ba0.018 Ca0.007 Cu0.034 Fe0.965 H1.494 O9 P0.003 Pb1.924 Si0.085 V1.836 Zn0.009P 1 21/m 17.649; 6.101; 8.904
90; 112.23; 90
384.635del Tanago, J.G.; La Iglesia, A.; Rius, J.; Fernandez Santin, S.
Calderonite, a new lead-iron-vanadate of the brackebuschite group
American Mineralogist, 2003, 88, 1703-1708
9001910 CIFAl0.008 Ca0.076 Fe3.471 Mg3.445 O24 Si8C 1 2/m 19.522; 18.1833; 5.3184
90; 102.02; 90
900.646Yang, H.; Hazen, R. M.; Prewitt, C. T.; Finger, L. W.; Lu, R.; Hemley, R. J.
High-pressure single-crystal X-ray diffraction and infrared spectroscopic studies of the C2/m-P2_1/m phase transition in cummingtonite Sample: P = 0.00 GPa, in air
American Mineralogist, 1998, 83, 288-299
9001911 CIFAl0.008 Ca0.076 Fe3.471 Mg3.445 O24 Si8C 1 2/m 19.489; 18.1508; 5.3102
90; 102.21; 90
893.902Yang, H.; Hazen, R. M.; Prewitt, C. T.; Finger, L. W.; Lu, R.; Hemley, R. J.
High-pressure single-crystal X-ray diffraction and infrared spectroscopic studies of the C2/m-P2_1/m phase transition in cummingtonite Sample: P = 0.60 GPa
American Mineralogist, 1998, 83, 288-299
9001912 CIFAl0.008 Ca0.076 Fe3.471 Mg3.445 O24 Si8C 1 2/m 19.4638; 18.1333; 5.3022
90; 102.372; 90
888.779Yang, H.; Hazen, R. M.; Prewitt, C. T.; Finger, L. W.; Lu, R.; Hemley, R. J.
High-pressure single-crystal X-ray diffraction and infrared spectroscopic studies of the C2/m-P2_1/m phase transition in cummingtonite Sample: P = 1.10 GPa
American Mineralogist, 1998, 83, 288-299
9001913 CIFAl0.008 Ca0.076 Fe3.471 Mg3.445 O24 Si8P 1 21/m 19.4498; 18.1083; 5.2978
90; 102.417; 90
885.353Yang, H.; Hazen, R. M.; Prewitt, C. T.; Finger, L. W.; Lu, R.; Hemley, R. J.
High-pressure single-crystal X-ray diffraction and infrared spectroscopic studies of the C2/m-P2_1/m phase transition in cummingtonite Sample: P = 1.32 GPa
American Mineralogist, 1998, 83, 288-299
9001914 CIFAl0.008 Ca0.076 Fe3.471 Mg3.445 O24 Si8P 1 21/m 19.3798; 18.0078; 5.2659
90; 102.723; 90
867.621Yang, H.; Hazen, R. M.; Prewitt, C. T.; Finger, L. W.; Lu, R.; Hemley, R. J.
High-pressure single-crystal X-ray diffraction and infrared spectroscopic studies of the C2/m-P2_1/m phase transition in cummingtonite Sample: P = 2.97 GPa
American Mineralogist, 1998, 83, 288-299
9001915 CIFAl0.008 Ca0.076 Fe3.471 Mg3.445 O24 Si8P 1 21/m 19.2993; 17.89; 5.2321
90; 102.979; 90
848.198Yang, H.; Hazen, R. M.; Prewitt, C. T.; Finger, L. W.; Lu, R.; Hemley, R. J.
High-pressure single-crystal X-ray diffraction and infrared spectroscopic studies of the C2/m-P2_1/m phase transition in cummingtonite Sample: P = 5.09 GPa
American Mineralogist, 1998, 83, 288-299
9001916 CIFAl0.008 Ca0.076 Fe3.471 Mg3.445 O24 Si8P 1 21/m 19.2099; 17.7605; 5.193
90; 103.173; 90
827.08Yang, H.; Hazen, R. M.; Prewitt, C. T.; Finger, L. W.; Lu, R.; Hemley, R. J.
High-pressure single-crystal X-ray diffraction and infrared spectroscopic studies of the C2/m-P2_1/m phase transition in cummingtonite Sample: P = 7.90 GPa
American Mineralogist, 1998, 83, 288-299
9001928 CIFAl0.008 Ca1.838 Cl0.036 F0.038 Fe2.762 H1.854 Mg2.336 Mn0.024 Na0.036 O23.926 Si8C 1 2/m 19.891; 18.19; 5.297
90; 104.54; 90
922.499Evans, B. W.; Yang, H.
Fe-Mg order-disorder in tremolite-actinolite-ferro-actinolite at ambient and high temperature Sample: 11B, from Luce Lake, Labrador, Canada in an iron formation
American Mineralogist, 1998, 83, 458-475
9001355 CIFAl0.01 B Cr0.23 Fe0.5 Mg1.14 O4 Ti0.12P n m a9.226; 3.086; 9.369
90; 90; 90
266.749Bigi, S.; Brigatti, M. F.; Capedri, S.
Crystal chemistry of Fe- and Cr-rich warwickite sample S2
American Mineralogist, 1991, 76, 1380-1388
9001360 CIFAl0.01 B Cr0.23 Fe0.54 Mg1.12 O4 Ti0.1P n m a9.255; 3.0941; 9.402
90; 90; 90
269.235Bigi, S.; Brigatti, M. F.; Capedri, S.
Crystal chemistry of Fe- and Cr-rich warwickite sample S7
American Mineralogist, 1991, 76, 1380-1388
1565134 CIFAl0.01 Ba0.09 Ce0.08 Cr0.19 Fe0.05 K0.5 La0.15 Mg0.04 Nb0.7 O3 Sr0.13 Ti0.01P m -3 m3.9876; 3.9876; 3.9876
90; 90; 90
63.407Meyer, N.A.; Wenz, M.D.; Walsh, J.P.S.; Jacobsen, S.D.; Locock, A.J.; Harris, J.W.
Goldschmidtite, (K,REE,Sr)(Nb,Cr)O3: A new perovskite supergroup mineral found in diamond from Koffefontein, South Africa
American Mineralogist, 2019, 104, 1345-1350
1537910 CIFAl0.01 Ca0.01 Fe0.35 Mg1.64 O4 Si0.99P b n m4.771; 10.274; 6.011
90; 90; 90
294.643Brown, G.E.; Prewitt, C.T.
High-temperature crystal chemistry of hortonolite
American Mineralogist, 1973, 58, 577-587
9010497 CIFAl0.01 Ca1.94 Cl0.01 F0.03 Fe0.12 H1.96 K0.01 Mg4.85 Mn0.02 Na0.05 O23.96 Si8C 1 2/m 19.84174; 18.05932; 5.27876
90; 104.732; 90
907.378Ballirano, P.; Andreozzi, G. B.; Belardi, G.
Crystal chemical and structural characterization of fibrous tremolite from Susa Valley, Italy, with comments on potential harmful effects on human health Locality: Condove, Susa Valley, Italy
American Mineralogist, 2008, 93, 1349-1355
1537912 CIFAl0.01 Fe0.58 Mg1.42 O4 Si0.99P b n m4.775; 10.28; 6.016
90; 90; 90
295.307Brown, G.E.; Prewitt, C.T.
High-temperature crystal chemistry of hortonolite
American Mineralogist, 1973, 58, 577-587
9001679 CIFAl0.011 Cr0.012 Fe0.008 H0.108 Nb0.011 O2 Ti0.96P 42/m n m4.587; 4.587; 2.954
90; 90; 90
62.154Swope, R. J.; Smyth, J. R.; Larson, A. C.
H in rutile-type compounds: I. Single-crystal neutron and X-ray diffraction study of H in rutile Sample: neutron; natural, T = 24 K
American Mineralogist, 1995, 80, 448-453
9016767 CIFAl0.012 Ca0.008 Fe0.008 H4 Mg0.106 Mn1.85 O6 SiP c a 2112.672; 7.217; 5.341
90; 90; 90
488.455Nyfeler, D.; Armbruster, T.; Dixon, R.; Bermanec, V.
Nchwaningite, Mn2SiO3(OH)2.H2O, a new pyroxene-related chain silicate from the N'chwaning mine, Kalahari manganese field, South Africa
American Mineralogist, 1995, 80, 377-386
9001696 CIFAl0.012 Ca0.086 Fe2.558 Mg4.344 O24 Si8C 1 2/m 19.5015; 18.1289; 5.3089
90; 102.09; 90
894.184Yang, H.; Hirschmann, M. M.
Crystal structure of P2_1/m ferromagnesian amphibole and the role of cation ordering and composition in the P2_1/m - C2/m transition in cummingtonite Sample: UH1, untreated
American Mineralogist, 1995, 80, 916-922
9001698 CIFAl0.014 Ca0.1 Fe2.473 Mg4.423 O24 Si8P 1 21/m 19.5057; 18.1187; 5.3059
90; 102.031; 90
893.768Yang, H.; Hirschmann, M. M.
Crystal structure of P2_1/m ferromagnesian amphibole and the role of cation ordering and composition in the P2_1/m - C2/m transition in cummingtonite Sample: 1c, heat treated at 700 C
American Mineralogist, 1995, 80, 916-922
9001697 CIFAl0.014 Ca0.11 Fe2.622 Mg4.254 O24 Si8P 1 21/m 19.5048; 18.1343; 5.3077
90; 102.009; 90
894.829Yang, H.; Hirschmann, M. M.
Crystal structure of P2_1/m ferromagnesian amphibole and the role of cation ordering and composition in the P2_1/m - C2/m transition in cummingtonite Sample: 11a, heat treated at 600 C
American Mineralogist, 1995, 80, 916-922
9017058 CIFAl0.015 Ca Cr0.011 Fe1.957 Mg0.003 O4 Ti0.004P n m a9.2183; 3.0175; 10.6934
90; 90; 90
297.45Galuskina, I. O.; Vapnik, Y.; Lazic, B.; Armbruster, T.; Murashko, M.; Galuskin, E. V.
Harmunite CaFe2O4: A new mineral from the Jabel Harmun, West Bank, Palestinian Autonomy, Israel
American Mineralogist, 2014, 99, 965-975
9003855 CIFAl0.016 Ca0.19 Fe0.852 Mg0.915 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7096; 8.9413; 5.2473
90; 108.515; 90
431.973Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.13, annealed at T = 650 C for t = 80 min
American Mineralogist, 2005, 90, 1816-1823
9003842 CIFAl0.016 Ca0.191 Fe0.847 Mg0.919 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7114; 8.9473; 5.2513
90; 108.475; 90
432.773Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.35, annealed at T = 700 C for t = 50 min
American Mineralogist, 2005, 90, 1816-1823
9003864 CIFAl0.016 Ca0.191 Fe0.847 Mg0.919 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.71; 8.9425; 5.247
90; 108.495; 90
432.074Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.13, annealed at T = 750 C for t = 15 min
American Mineralogist, 2005, 90, 1816-1823
9003838 CIFAl0.016 Ca0.191 Fe0.847 Mg0.92 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7071; 8.9435; 5.2481
90; 108.483; 90
432.114Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.35, untreated
American Mineralogist, 2005, 90, 1816-1823
9003843 CIFAl0.016 Ca0.191 Fe0.847 Mg0.92 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7087; 8.9405; 5.2468
90; 108.496; 90
431.901Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.35, annealed at T = 700 C for t = 90 min
American Mineralogist, 2005, 90, 1816-1823
9003853 CIFAl0.016 Ca0.191 Fe0.847 Mg0.92 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7075; 8.9444; 5.2461
90; 108.485; 90
432.006Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.13, annealed at T = 800 C for t = 60 min
American Mineralogist, 2005, 90, 1816-1823
9003840 CIFAl0.016 Ca0.191 Fe0.848 Mg0.919 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7057; 8.9396; 5.2453
90; 108.478; 90
431.646Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.35, annealed at T = 700 C for t = 20 min
American Mineralogist, 2005, 90, 1816-1823
9003846 CIFAl0.016 Ca0.191 Fe0.848 Mg0.919 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7132; 8.9469; 5.25
90; 108.484; 90
432.704Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.35, annealed at T = 700 C for t = 600 min
American Mineralogist, 2005, 90, 1816-1823
9003854 CIFAl0.016 Ca0.191 Fe0.848 Mg0.919 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.706; 8.94; 5.246
90; 108.504; 90
431.671Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.13, untreated
American Mineralogist, 2005, 90, 1816-1823
9003859 CIFAl0.016 Ca0.191 Fe0.848 Mg0.919 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7083; 8.9419; 5.2481
90; 108.496; 90
432.058Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.13, annealed at T = 650 C for t = 840 min
American Mineralogist, 2005, 90, 1816-1823
9003861 CIFAl0.016 Ca0.191 Fe0.848 Mg0.919 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7096; 8.9413; 5.247
90; 108.499; 90
431.989Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.13, annealed at T = 650 C for t = 3120 min
American Mineralogist, 2005, 90, 1816-1823
9003857 CIFAl0.016 Ca0.191 Fe0.849 Mg0.918 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7086; 8.9421; 5.2473
90; 108.503; 90
431.997Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.13, annealed at T = 650 C for t = 240 min
American Mineralogist, 2005, 90, 1816-1823
9003858 CIFAl0.016 Ca0.191 Fe0.849 Mg0.918 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7074; 8.9415; 5.2468
90; 108.485; 90
431.919Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.13, annealed at T = 650 C for t = 360 min
American Mineralogist, 2005, 90, 1816-1823
9003862 CIFAl0.016 Ca0.191 Fe0.849 Mg0.918 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7079; 8.9442; 5.2463
90; 108.485; 90
432.031Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.13, annealed at T = 650 C for t = 7440 min
American Mineralogist, 2005, 90, 1816-1823
9003865 CIFAl0.016 Ca0.191 Fe0.849 Mg0.919 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7086; 8.9436; 5.2464
90; 108.491; 90
432.026Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.13, annealed at T = 750 C for t = 25 min
American Mineralogist, 2005, 90, 1816-1823
9003841 CIFAl0.016 Ca0.191 Fe0.85 Mg0.916 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7118; 8.9442; 5.2484
90; 108.496; 90
432.349Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.35, annealed at T = 700 C for t = 30 min
American Mineralogist, 2005, 90, 1816-1823
9003845 CIFAl0.016 Ca0.191 Fe0.85 Mg0.917 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.712; 8.9434; 5.2492
90; 108.479; 90
432.428Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.35, annealed at T = 700 C for t = 300 min
American Mineralogist, 2005, 90, 1816-1823
9003847 CIFAl0.016 Ca0.191 Fe0.85 Mg0.917 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7096; 8.9421; 5.2464
90; 108.476; 90
432.036Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.35, annealed at T = 700 C for t = 1000 min
American Mineralogist, 2005, 90, 1816-1823
9003860 CIFAl0.016 Ca0.191 Fe0.85 Mg0.917 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.705; 8.9419; 5.2454
90; 108.485; 90
431.716Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.13, annealed at T = 650 C for t = 1680 min
American Mineralogist, 2005, 90, 1816-1823
9003868 CIFAl0.016 Ca0.191 Fe0.85 Mg0.917 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7109; 8.9437; 5.2477
90; 108.469; 90
432.296Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.13, annealed at T = 750 C for t = 250 min
American Mineralogist, 2005, 90, 1816-1823
9003851 CIFAl0.016 Ca0.191 Fe0.85 Mg0.918 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7113; 8.9455; 5.2504
90; 108.478; 90
432.6Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.35, annealed at T = 800 C for t = 10 min
American Mineralogist, 2005, 90, 1816-1823
9003866 CIFAl0.016 Ca0.191 Fe0.85 Mg0.918 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.71; 8.9462; 5.248
90; 108.494; 90
432.338Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.13, annealed at T = 750 C for t = 50 min
American Mineralogist, 2005, 90, 1816-1823
9003867 CIFAl0.016 Ca0.191 Fe0.851 Mg0.915 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7103; 8.9444; 5.249
90; 108.468; 90
432.412Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.13, annealed at T = 750 C for t = 100 min
American Mineralogist, 2005, 90, 1816-1823
9003849 CIFAl0.016 Ca0.191 Fe0.851 Mg0.916 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7088; 8.9429; 5.2473
90; 108.471; 90
432.126Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.35, annealed at T = 800 C for t = 3.5 min
American Mineralogist, 2005, 90, 1816-1823
9003852 CIFAl0.016 Ca0.191 Fe0.851 Mg0.916 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7134; 8.9482; 5.2485
90; 108.463; 90
432.706Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.35, annealed at T = 800 C for t = 18 min
American Mineralogist, 2005, 90, 1816-1823
9003856 CIFAl0.016 Ca0.191 Fe0.851 Mg0.916 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7084; 8.9414; 5.2476
90; 108.505; 90
431.974Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.13, annealed at T = 650 C for t = 120 min
American Mineralogist, 2005, 90, 1816-1823
9003863 CIFAl0.016 Ca0.191 Fe0.851 Mg0.916 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7071; 8.9425; 5.2463
90; 108.484; 90
431.915Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.13, annealed at T = 750 C for t = 9 min
American Mineralogist, 2005, 90, 1816-1823
9003844 CIFAl0.016 Ca0.191 Fe0.851 Mg0.917 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7104; 8.9417; 5.2476
90; 108.479; 90
432.143Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.35, annealed at T = 700 C for t = 180 min
American Mineralogist, 2005, 90, 1816-1823
9003850 CIFAl0.016 Ca0.191 Fe0.852 Mg0.915 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7094; 8.9457; 5.2478
90; 108.468; 90
432.336Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.35, annealed at T = 800 C for t = 6 min
American Mineralogist, 2005, 90, 1816-1823
9003839 CIFAl0.016 Ca0.192 Fe0.844 Mg0.922 Mn0.028 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7093; 8.9417; 5.2479
90; 108.507; 90
432.048Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.35, annealed at T = 700 C for t = 10 min
American Mineralogist, 2005, 90, 1816-1823
9003848 CIFAl0.016 Ca0.192 Fe0.847 Mg0.919 Mn0.029 Na0.003 O6 Si1.984 Ti0.01P 1 21/c 19.7069; 8.9427; 5.247
90; 108.458; 90
432.039Domeneghetti, M. C.; Zema, M.; Tazzoli, V.
Kinetics of Fe2±Mg order-disorder in P2_1/c pigeonite Sample: N.35, annealed at T = 800 C for t = 1.5 min
American Mineralogist, 2005, 90, 1816-1823
9001929 CIFAl0.016 Ca1.77 Cl0.036 F0.046 Fe2.711 H1.878 K0.004 Mg2.423 Mn0.026 Na0.112 O23.918 Si7.984C 1 2/m 19.89; 18.198; 5.296
90; 104.57; 90
922.512Evans, B. W.; Yang, H.
Fe-Mg order-disorder in tremolite-actinolite-ferro-actinolite at ambient and high temperature Sample: C46, 11B, from Luce Lake, Labrador, Canada in an iron formation after heating at 600 C
American Mineralogist, 1998, 83, 458-475
9001931 CIFAl0.016 Ca1.782 Cl0.04 F0.048 Fe2.757 H1.876 K0.004 Mg2.385 Mn0.026 Na0.074 O23.912 Si7.988C 1 2/m 19.89; 18.192; 5.294
90; 104.53; 90
922.026Evans, B. W.; Yang, H.
Fe-Mg order-disorder in tremolite-actinolite-ferro-actinolite at ambient and high temperature Sample: C41, 11B, from Luce Lake, Labrador, Canada in an iron formation after heating at 800 C
American Mineralogist, 1998, 83, 458-475
9003816 CIFAl0.018 Ba Cr0.336 Fe0.48 Mg0.03 O27 Si2 Ti1.31 V11.748P -37.601; 7.601; 9.219
90; 90; 120
461.271Bartholomew, P. R.; Mancini, F.; Cahill, C. L.; Harlow, G. E.; Bernhardt, H. J.
Zoltaiite, a new barium-vanadium nesosubsilicate mineral from British Columbia: Description and crystal structure Sample: Wigwam Pb-Zn deposit, southeast of Revelstoke, British Columbia, Canada
American Mineralogist, 2005, 90, 1655-1660
9001359 CIFAl0.02 B Cr0.02 Fe0.61 Mg1.18 O4 Ti0.17P n m a9.242; 3.098; 9.383
90; 90; 90
268.651Bigi, S.; Brigatti, M. F.; Capedri, S.
Crystal chemistry of Fe- and Cr-rich warwickite sample S6
American Mineralogist, 1991, 76, 1380-1388
9001354 CIFAl0.02 B Cr0.02 Fe0.85 Mg1.07 O4 Ti0.04P n m a9.246; 3.0927; 9.384
90; 90; 90
268.336Bigi, S.; Brigatti, M. F.; Capedri, S.
Crystal chemistry of Fe- and Cr-rich warwickite sample S1
American Mineralogist, 1991, 76, 1380-1388
9001357 CIFAl0.02 B Cr0.17 Fe0.47 Mg1.18 O4 Ti0.16P n m a9.228; 3.084; 9.371
90; 90; 90
266.691Bigi, S.; Brigatti, M. F.; Capedri, S.
Crystal chemistry of Fe- and Cr-rich warwickite sample S4
American Mineralogist, 1991, 76, 1380-1388
9013706 CIFAl0.02 Ca0.121 Fe1.008 Mg0.871 O6 Si1.98P 1 21/c 19.749; 8.937; 5.246
90; 108.49; 90
433.473Alvaro, M.; Nestola, F.; Ballaran, T. B.; Camara, F.; Domeneghetti, M. C.; Tazzoli, V.
High-pressure phase transition of a natural pigeonite Note: P = 0.0001 GPa
American Mineralogist, 2010, 95, 300-311
9013707 CIFAl0.02 Ca0.121 Fe1.008 Mg0.871 O6 Si1.98P 1 21/c 19.722; 8.941; 5.247
90; 108.5; 90
432.523Alvaro, M.; Nestola, F.; Ballaran, T. B.; Camara, F.; Domeneghetti, M. C.; Tazzoli, V.
High-pressure phase transition of a natural pigeonite Note: P = 0.047 GPa
American Mineralogist, 2010, 95, 300-311
9013708 CIFAl0.02 Ca0.121 Fe1.008 Mg0.871 O6 Si1.98P 1 21/c 19.701; 8.887; 5.226
90; 108.38; 90
427.564Alvaro, M.; Nestola, F.; Ballaran, T. B.; Camara, F.; Domeneghetti, M. C.; Tazzoli, V.
High-pressure phase transition of a natural pigeonite Note: P = 0.984 GPa
American Mineralogist, 2010, 95, 300-311
9013709 CIFAl0.02 Ca0.121 Fe1.008 Mg0.871 O6 Si1.98P 1 21/c 19.659; 8.877; 5.218
90; 108.09; 90
425.291Alvaro, M.; Nestola, F.; Ballaran, T. B.; Camara, F.; Domeneghetti, M. C.; Tazzoli, V.
High-pressure phase transition of a natural pigeonite Note: P = 1.794 GPa
American Mineralogist, 2010, 95, 300-311
9013710 CIFAl0.02 Ca0.121 Fe1.008 Mg0.871 O6 Si1.98P 1 21/c 19.621; 8.827; 5.199
90; 107.82; 90
420.34Alvaro, M.; Nestola, F.; Ballaran, T. B.; Camara, F.; Domeneghetti, M. C.; Tazzoli, V.
High-pressure phase transition of a natural pigeonite Note: P = 3.167 GPa
American Mineralogist, 2010, 95, 300-311
9013711 CIFAl0.02 Ca0.121 Fe1.008 Mg0.871 O6 Si1.98P 1 21/c 19.622; 8.861; 5.181
90; 107.92; 90
420.305Alvaro, M.; Nestola, F.; Ballaran, T. B.; Camara, F.; Domeneghetti, M. C.; Tazzoli, V.
High-pressure phase transition of a natural pigeonite Note: P = 3.172 GPa
American Mineralogist, 2010, 95, 300-311
9013713 CIFAl0.02 Ca0.121 Fe1.008 Mg0.871 O6 Si1.98C 1 2/c 19.494; 8.818; 5.06
90; 104.11; 90
410.833Alvaro, M.; Nestola, F.; Ballaran, T. B.; Camara, F.; Domeneghetti, M. C.; Tazzoli, V.
High-pressure phase transition of a natural pigeonite Note: P = 3.649 GPa
American Mineralogist, 2010, 95, 300-311
9013714 CIFAl0.02 Ca0.121 Fe1.008 Mg0.871 O6 Si1.98C 1 2/c 19.434; 8.745; 5.014
90; 103.44; 90
402.328Alvaro, M.; Nestola, F.; Ballaran, T. B.; Camara, F.; Domeneghetti, M. C.; Tazzoli, V.
High-pressure phase transition of a natural pigeonite Note: P = 6.409 GPa
American Mineralogist, 2010, 95, 300-311
9013715 CIFAl0.02 Ca0.121 Fe1.008 Mg0.871 O6 Si1.98C 1 2/c 19.402; 8.716; 4.996
90; 103.28; 90
398.463Alvaro, M.; Nestola, F.; Ballaran, T. B.; Camara, F.; Domeneghetti, M. C.; Tazzoli, V.
High-pressure phase transition of a natural pigeonite Note: P = 7.762 GPa
American Mineralogist, 2010, 95, 300-311
9013716 CIFAl0.02 Ca0.121 Fe1.008 Mg0.871 O6 Si1.98C 1 2/c 19.366; 8.682; 4.974
90; 103.09; 90
393.954Alvaro, M.; Nestola, F.; Ballaran, T. B.; Camara, F.; Domeneghetti, M. C.; Tazzoli, V.
High-pressure phase transition of a natural pigeonite Note: P = 9.405 GPa
American Mineralogist, 2010, 95, 300-311
9001930 CIFAl0.02 Ca1.78 Cl0.036 F0.046 Fe2.755 H1.88 K0.012 Mg2.395 Mn0.03 Na0.076 O23.918 Si7.98C 1 2/m 19.891; 18.2; 5.296
90; 104.55; 90
922.79Evans, B. W.; Yang, H.
Fe-Mg order-disorder in tremolite-actinolite-ferro-actinolite at ambient and high temperature Sample: C28, 11B, from Luce Lake, Labrador, Canada in an iron formation after heating at 700 C
American Mineralogist, 1998, 83, 458-475
9001939 CIFAl0.02 Ca1.952 Cl0.006 F0.01 Fe4.104 H1.868 K0.048 Mg0.742 Mn0.18 Na0.024 O24 Si7.98 Ti0.004C 1 2/m 19.986; 18.296; 5.306
90; 104.79; 90
937.308Evans, B. W.; Yang, H.
Fe-Mg order-disorder in tremolite-actinolite-ferro-actinolite at ambient and high temperature Sample: C80, NMNH 168215, from Goose Creek Quarry, Leesburg, Virginia, in an alteration of hornblende, after heating at 700 C
American Mineralogist, 1998, 83, 458-475
9001938 CIFAl0.02 Ca1.97 Fe3.98 H1.88 K0.044 Mg0.88 Mn0.196 Na0.028 O24 Si7.98 Ti0.002C 1 2/m 19.977; 18.287; 5.308
90; 104.81; 90
936.269Evans, B. W.; Yang, H.
Fe-Mg order-disorder in tremolite-actinolite-ferro-actinolite at ambient and high temperature Sample: NMNH 168215, from Goose Creek Quarry, Leesburg, Virginia, in an alteration of hornblende
American Mineralogist, 1998, 83, 458-475
9001936 CIFAl0.024 Ca1.814 Cl0.03 F0.01 Fe3.112 H1.86 Mg1.954 Mn0.088 Na0.018 O23.96 Si7.988 Ti0.002C 1 2/m 19.908; 18.218; 5.301
90; 104.59; 90
925.996Evans, B. W.; Yang, H.
Fe-Mg order-disorder in tremolite-actinolite-ferro-actinolite at ambient and high temperature Sample: ID4-4C, from Isua Belt, East Greenland, in an iron formation
American Mineralogist, 1998, 83, 458-475
9001749 CIFAl0.028 Ca0.036 Cr0.004 Fe0.795 Mg1.134 Mn0.026 O6 Si1.986 Ti0.005P b c a18.316; 8.907; 5.218
90; 90; 90
851.268Domeneghetti, M. C.; Tazzoli, V.; Ballaran, T. B.; Molin, G. M.
Orthopyroxene from the Serra de Mage meteorite: A structure-refinement procedure for a Pbca phase coexisting with a C2/c exsolved phase Sample Opx SDM N.13, natural
American Mineralogist, 1996, 81, 842-846
9001750 CIFAl0.028 Ca0.036 Cr0.004 Fe0.801 Mg1.128 Mn0.026 O6 Si1.986 Ti0.005P b c a18.32; 8.917; 5.219
90; 90; 90
852.573Domeneghetti, M. C.; Tazzoli, V.; Ballaran, T. B.; Molin, G. M.
Orthopyroxene from the Serra de Mage meteorite: A structure-refinement procedure for a Pbca phase coexisting with a C2/c exsolved phase Sample Opx SDM N.7, heated
American Mineralogist, 1996, 81, 842-846
9001937 CIFAl0.028 Ca1.814 Cl0.026 F0.048 Fe3.17 H1.872 K0.004 Mg1.906 Mn0.092 Na0.038 O23.926 Si7.972C 1 2/m 19.903; 18.211; 5.299
90; 104.64; 90
924.614Evans, B. W.; Yang, H.
Fe-Mg order-disorder in tremolite-actinolite-ferro-actinolite at ambient and high temperature Sample: C51, ID4-4C, from Isua Belt, East Greenland, in an iron formation after heating at 700 C
American Mineralogist, 1998, 83, 458-475
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
9002718 CIFAl0.029 Ca0.413 Cr0.298 Fe0.011 Mg0.388 Mn0.001 Na0.587 O6 Si1.988 V0.285C 1 2/c 19.6595; 8.8263; 5.2686
90; 106.596; 90
430.476Secco, L.; Martignago, F.; Dal Negro, A.; Reznitskii, L. Z.; Sklyarov, E. V.
Crystal chemistry of Cr-V-rich clinopyroxenes Sample 2
American Mineralogist, 2002, 87, 709-714
9002722 CIFAl0.029 Ca0.509 Cr0.223 Fe0.011 Mg0.488 Mn0.001 Na0.491 O6 Si1.99 Ti0.001 V0.257C 1 2/c 19.6774; 8.8479; 5.2662
90; 106.446; 90
432.468Secco, L.; Martignago, F.; Dal Negro, A.; Reznitskii, L. Z.; Sklyarov, E. V.
Crystal chemistry of Cr-V-rich clinopyroxenes Sample 6
American Mineralogist, 2002, 87, 709-714
9001740 CIFAl0.029 Ca0.798 Cr0.071 Fe0.059 K0.073 Mg0.955 Na0.023 O6 Si1.992C 1 2/c 19.7476; 8.9478; 5.2622
90; 106.056; 90
441.063Harlow, G. E.
Structure refinement of a natural K-rich diopside: The effect of K on the average structure
American Mineralogist, 1996, 81, 632-638
1521135 CIFAl0.03 Ca0.08 Fe0.71 H0.46 K0.18 Mg3.09 Mn0.37 Na2.66 O24 Si8 Ti0.86C 1 2/m 19.776; 17.919; 5.292
90; 104.05; 90
899.299Hawthorne, F.C.; Cooper, M.A.; Grice, J.D.; Ottolini, L.
A new anhydrous amphibole from the Eifel region, Germany: description and crystal structure of obertiite, Na Na2 (Mg3 Fe(3+) Ti(4+)) Si8 O22 O2
American Mineralogist, 2000, 85, 236-241
9002263 CIFAl0.03 Ca2 Fe0.71 K0.18 Mg2.13 Mn0.37 Na2.66 O24 Si8 Ti0.86C 1 2/m 19.776; 17.919; 5.292
90; 104.05; 90
899.299Hawthorne, F. C.; Cooper, M. A.; Grice, J. D.; Ottolini, L.
A new anhydrous amphibole from the Eifel region, Germany: Description and crystal structure of obertiite, NaNa2(Mg3FeTi)Si8O22O2 Note: M1A and M1 are interchanged in the bond length table
American Mineralogist, 2000, 85, 236-241
9002717 CIFAl0.033 Ca0.055 Cr0.478 Fe0.001 Mg0.056 Mn0.001 Na0.945 O6 Si2 Ti0.003 V0.428C 1 2/c 19.6072; 8.7413; 5.2771
90; 107.172; 90
423.413Secco, L.; Martignago, F.; Dal Negro, A.; Reznitskii, L. Z.; Sklyarov, E. V.
Crystal chemistry of Cr-V-rich clinopyroxenes Sample 1
American Mineralogist, 2002, 87, 709-714
1522136 CIFAl0.033 Cr0.19 Fe0.087 H0.509 Mg0.055 Nb0.0045 O2 Ti0.621 V0.011P 1 21/c 17.706; 4.5583; 20.187
90; 92.334; 90
708.506Wang, L.-P.; Peacor, D.R.; Rouse, R.C.; Essene, E.J.; Zhang, Y.-X.
Carmichaelite, a new hydroxyl-bearing titanate from Garnet Ridge, Arizona
American Mineralogist, 2000, 85, 792-800
9002721 CIFAl0.035 Ca0.51 Cr0.247 Fe0.007 Mg0.484 Mn0.001 Na0.49 O6 Si1.982 V0.244C 1 2/c 19.6718; 8.8412; 5.267
90; 106.483; 90
431.874Secco, L.; Martignago, F.; Dal Negro, A.; Reznitskii, L. Z.; Sklyarov, E. V.
Crystal chemistry of Cr-V-rich clinopyroxenes Sample 5
American Mineralogist, 2002, 87, 709-714
9001356 CIFAl0.04 B Cr0.18 Fe0.51 Mg1.15 O4 Ti0.12P n m a9.23; 3.0906; 9.378
90; 90; 90
267.519Bigi, S.; Brigatti, M. F.; Capedri, S.
Crystal chemistry of Fe- and Cr-rich warwickite sample S3
American Mineralogist, 1991, 76, 1380-1388
9002233 CIFAl0.04 Ca Fe2.88 H Mg0.03 Mn0.05 O9 Si2P 1 21/a 113.006; 8.808; 5.85
90; 90.34; 90
670.146Bonazzi, P.; Bindi, L.
Structural adjustments induced by heat treatment in ilvaite Sample: RM at room temperature
American Mineralogist, 1999, 84, 1604-1612
9002234 CIFAl0.04 Ca Fe2.88 H Mg0.03 Mn0.05 O9 Si2P 1 21/a 113.015; 8.803; 5.842
90; 90.16; 90
669.321Bonazzi, P.; Bindi, L.
Structural adjustments induced by heat treatment in ilvaite Sample: RM at T = 400 deg C
American Mineralogist, 1999, 84, 1604-1612
9002235 CIFAl0.04 Ca Fe2.88 H Mg0.03 Mn0.05 O9 Si2P 1 21/a 113.014; 8.807; 5.846
90; 90.1; 90
670.034Bonazzi, P.; Bindi, L.
Structural adjustments induced by heat treatment in ilvaite Sample: RM at T = 450 deg C
American Mineralogist, 1999, 84, 1604-1612
9010041 CIFAl0.04 Ca0.06 F1.7 Fe3.21 H0.3 K0.159 Li0.25 Mg0.62 Mn0.91 Na2.663 O22.3 Si7.96 Ti0.12C 1 2/m 19.859; 18.049; 5.316
90; 103.69; 90
919.082Hawthorne, F. C.; Ungaretti, L.; Oberti, R.; Bottazzi, P.; Czamanske, G. K.
Li: an important component in igneous alkali amphiboles Sample: A(11)
American Mineralogist, 1993, 78, 733-745
9002719 CIFAl0.04 Ca0.418 Cr0.165 Fe0.003 Mg0.402 Na0.582 O6 Si1.986 Ti0.001 V0.403C 1 2/c 19.6631; 8.8263; 5.2709
90; 106.601; 90
430.814Secco, L.; Martignago, F.; Dal Negro, A.; Reznitskii, L. Z.; Sklyarov, E. V.
Crystal chemistry of Cr-V-rich clinopyroxenes Sample 3
American Mineralogist, 2002, 87, 709-714
9002140 CIFAl0.04 Cs0.89 Fe3.92 O12 Si3.04C 1 2/m 15.486; 9.506; 10.818
90; 99.67; 90
556.142Comodi P; Zanazzi P F; Weiss Z; Rieder M; Drabek M
"Cs-tetra-ferri-annite:" High-pressure and high-temperature behavior of a potential nuclear waste disposal phase T = 23 deg C, P = .001 kbar, crystal 1
American Mineralogist, 1999, 84, 325-332
9002141 CIFAl0.04 Cs0.89 Fe3.92 O12 Si3.04C 1 2/m 15.444; 9.439; 10.185
90; 100.2; 90
515.094Comodi P; Zanazzi P F; Weiss Z; Rieder M; Drabek M
"Cs-tetra-ferri-annite:" High-pressure and high-temperature behavior of a potential nuclear waste disposal phase T = 23 deg C, P = 39.4 kbar, crystal 1
American Mineralogist, 1999, 84, 325-332
9002142 CIFAl0.04 Cs0.89 Fe3.92 O12 Si3.04C 1 2/m 15.48; 9.498; 10.82
90; 99.76; 90
555.02Comodi P; Zanazzi P F; Weiss Z; Rieder M; Drabek M
"Cs-tetra-ferri-annite:" High-pressure and high-temperature behavior of a potential nuclear waste disposal phase T = 23 deg C, crystal 2
American Mineralogist, 1999, 84, 325-332
9002143 CIFAl0.04 Cs0.89 Fe3.92 O12 Si3.04C 1 2/m 15.48; 9.5; 10.907
90; 99.6; 90
559.867Comodi P; Zanazzi P F; Weiss Z; Rieder M; Drabek M
"Cs-tetra-ferri-annite:" High-pressure and high-temperature behavior of a potential nuclear waste disposal phase T = 296 deg C, crystal 2
American Mineralogist, 1999, 84, 325-332
9002144 CIFAl0.04 Cs0.89 Fe3.92 O12 Si3.04C 1 2/m 15.476; 9.502; 10.954
90; 99.54; 90
562.086Comodi P; Zanazzi P F; Weiss Z; Rieder M; Drabek M
"Cs-tetra-ferri-annite:" High-pressure and high-temperature behavior of a potential nuclear waste disposal phase T = 435 deg C, crystal 2
American Mineralogist, 1999, 84, 325-332
9002145 CIFAl0.04 Cs0.89 Fe3.92 O12 Si3.04C 1 2/m 15.452; 9.448; 10.786
90; 99.77; 90
547.534Comodi P; Zanazzi P F; Weiss Z; Rieder M; Drabek M
"Cs-tetra-ferri-annite:" High-pressure and high-temperature behavior of a potential nuclear waste disposal phase T = 23 deg C after heating, crystal 2
American Mineralogist, 1999, 84, 325-332
9001766 CIFAl0.04 F0.1 Fe1.22 H1.56 K0.95 Mg2.55 Na0.02 O11.9 Si3.16 Ti0.03C 1 2/m 15.356; 9.284; 10.309
90; 100.03; 90
504.782Brigatti, M. F.; Medici, L.; Saccani, E.; Vaccaro, C.
Crystal chemistry and petrologic significance of Fe3±rich phlogopite from the Tapira carbonatite complex, Brazil Sample: Tpq16-6B
American Mineralogist, 1996, 81, 913-927
9001137 CIFAl0.04 O7 Sc1.12 Si1.96 Y0.88C 1 2/m 16.65; 8.616; 4.686
90; 102.2; 90
262.427Bianchi, R.; Pilati, T.; Diella, V.; Gamaccioli, C. M.; Mannucci, G.
A re-examination of thortveitite Sample 1 from Iveland
American Mineralogist, 1988, 73, 601-607
9001138 CIFAl0.04 O7 Sc1.38 Si1.96 Y0.62C 1 2/m 16.587; 8.547; 4.695
90; 102.65; 90
257.908Bianchi, R.; Pilati, T.; Diella, V.; Gamaccioli, C. M.; Mannucci, G.
A re-examination of thortveitite Sample 2 from Setesdalen
American Mineralogist, 1988, 73, 601-607
9001139 CIFAl0.04 O7 Sc1.6 Si1.96 Y0.4C 1 2/m 16.582; 8.555; 4.693
90; 102.59; 90
257.904Bianchi, R.; Pilati, T.; Diella, V.; Gamaccioli, C. M.; Mannucci, G.
A re-examination of thortveitite Sample 3 from Flat, Evje
American Mineralogist, 1988, 73, 601-607
9001140 CIFAl0.04 O7 Sc1.84 Si1.96 Y0.16C 1 2/m 16.527; 8.507; 4.691
90; 102.78; 90
254.016Bianchi, R.; Pilati, T.; Diella, V.; Gamaccioli, C. M.; Mannucci, G.
A re-examination of thortveitite Sample 4 from Malagasy Republic
American Mineralogist, 1988, 73, 601-607
9002720 CIFAl0.046 Ca0.463 Cr0.238 Mg0.461 Na0.537 O6 Si2 V0.257C 1 2/c 19.6582; 8.8273; 5.2665
90; 106.577; 90
430.338Secco, L.; Martignago, F.; Dal Negro, A.; Reznitskii, L. Z.; Sklyarov, E. V.
Crystal chemistry of Cr-V-rich clinopyroxenes Sample 4
American Mineralogist, 2002, 87, 709-714
9003095 CIFAl0.048 Fe0.622 H2 Mg6.378 Na0.048 O24 Si7.96P n m n9.3553; 17.9308; 5.3117
90; 90; 90
891.027Konishi, H.; Groy, T. L.; Dodony, I.; Miyawaki, R.; Matsubara, S.; Buseck, P. R.
Crystal structure of protoanthophyllite: A new mineral from the Takese ultramafic complex, Japan
American Mineralogist, 2003, 88, 1718-1723
9002726 CIFAl0.05 As2 Bi1.96 Ca0.04 Co0.38 Cu0.01 Fe1.5 H2 Ni0.04 O12 Zn0.01P -14.566; 6.158; 8.972
95.52; 99.51; 92.85
247.095Krause, W.; Bernhardt, H. J.; McCammon, C. A.; Effenberger, H.
Neustadtelite and cobaltneustadtelite, the Fe- and Co- analogues of medenbachite
American Mineralogist, 2002, 87, 726-738
9002383 CIFAl0.05 Li0.05 O2 Si0.95P 32 2 14.9567; 4.9567; 5.4164
90; 90; 120
115.246Xu, H.; Heaney, P. J.; Beall, G. H.
Phase transitions induced by solid solution in stuffed derivatives of quartz: A powder synchrotron XRD study of the LiAlSiO4-SiO2 join Sample: x=.9, Li.1Al.1Si1.9O4, alpha quartz structure
American Mineralogist, 2000, 85, 971-979
9010434 CIFAl0.058 Cr1.702 Fe0.122 Mg0.042 O3 Ti0.076R -3 c :H4.9696; 4.9696; 13.597
90; 90; 120
290.815Logvinova, A. M.; Wirth, R.; Sobolev, N. V.; Seryotkin, Y. V.; Yefimova, E. S.; Floss, C.; Taylor, L. A.
Eskolaite associated with diamond from the Udachnaya kimberlite pipe, Yakutia, Russia Locality: natural diamond, Udachnaya pipe, Yukutia, Russia
American Mineralogist, 2008, 93, 685-690
1537733 CIFAl0.06 Ca0.16 Fe0.72 Mg1.05 O6 Si1.98 Ti0.03P 1 21/c 19.678; 8.905; 5.227
90; 108.71; 90
426.671Clark, J.R.; Ross, M.; Appleman, D.E.
Crystal chemistry of a lunar pigeonite
American Mineralogist, 1971, 56, 888-906
9001332 CIFAl0.06 Ca0.91 Fe0.1 Mg0.91 Na0.05 O6 Si1.97C 1 2/c 19.739; 8.913; 5.253
90; 106.02; 90
438.272Oberti, R.; Caporuscio, F. A.
Crystal chemistry of clinopyroxenes from mantle eclogites: A study of the key role of the M2 site population by means of crystal-structure refinement sample SRV 4, Di90Jd05, diopside - jadeite join
American Mineralogist, 1991, 76, 1141-1152
1533619 CIFAl0.06 Ca1.12 F0.37 Fe0.52 H1.63 K0.2 Mg4.46 Mn0.04 Na1.12 O23.63 Si7.96C 1 2/m 19.879; 18.024; 5.288
90; 104.377; 90
912.089Gunter, M.E.; Dyar, M.D.; Twamley, B.; Cornelius, S.; Foit, F.F.jr.
Composition, Fe(3+)/Fe(tot) and crystal structure of non-asbestiform and asbestiform amphiboles from Libby, Montana, USA
American Mineralogist, 2003, 88, 1970-1978
9003097 CIFAl0.06 Ca1.12 Fe0.52 H2 K0.2 Mg4.46 Mn0.04 Na1.12 O24 Si7.96C 1 2/m 19.8787; 18.024; 5.2875
90; 104.377; 90
911.975Gunter, M. E.; Dyar, M. D.; Twamley, B.; Foit, F. F.; Cornelius, S.
Composition, Fe3+/Sum(Fe), and crystal structure of non-asbestiform and asbestiform amphiboles from Libby, Montana, U.S.A.
American Mineralogist, 2003, 88, 1970-1978
9002668 CIFAl0.06 Cr0.02 K6 Mg1.84 O7 Si2P 63 c m5.028; 5.028; 13.216
90; 90; 120
289.348Mancini, F.; Harlow, G. E.; Cahill, C. L.
The crystal structure and cation ordering of phase-X - (K1-x-n)2(Mg1-n[Al,Cr]n)2Si2O7H2x: A potential K- and H-bearing phase in the mantle
American Mineralogist, 2002, 87, 302-306
1531913 CIFAl0.06 Cr0.04 H K1.32 Mg1.9 O7 Si2P 63 c m5.028; 5.028; 13.216
90; 90; 120
289.348Mancini, F.; Harlow, G.E.; Cahill, C.
The crystal structure and cation ordering of Phase-X- (K1-x-n)2 (Mg1-n (Al, Cr)n)2 Si2 O7 H2x : a potential K- and H-bearing phase in the mantle
American Mineralogist, 2002, 87, 302-306
9002531 CIFAl0.066 Ca3 H3.8 Mn1.934 O11.964 Si2.047I 41/a c d :212.489; 12.489; 11.909
90; 90; 90
1857.51Armbruster, T.; Kohler, T.; Libowitzky, E.; Friedrich, A.; Miletich, R.; Kunz, M.; Medenbach, O.; Gutzmer, J.
Structure, compressibility, hydrogen bonding, and dehydration of the tetragonal Mn3+ hydrogarnet, henritermierite Sample: T = 293 K
American Mineralogist, 2001, 86, 147-158
9002530 CIFAl0.066 Ca3 H3.8 Mn1.934 O11.992 Si2.044I 41/a c d :212.468; 12.468; 11.894
90; 90; 90
1848.93Armbruster, T.; Kohler, T.; Libowitzky, E.; Friedrich, A.; Miletich, R.; Kunz, M.; Medenbach, O.; Gutzmer, J.
Structure, compressibility, hydrogen bonding, and dehydration of the tetragonal Mn3+ hydrogarnet, henritermierite Sample: T = 100 K
American Mineralogist, 2001, 86, 147-158
9017080 CIFAl0.07 Be2.93 Ca1.08 H1.84 K Na0.02 O30.92 Si12 Y0.91 Yb0.01P 6/m c c10.3476; 10.3476; 13.761
90; 90; 120
1276.03Hawthorne, F. C.; Abdu, Y. A.; Ball, N. A.; Cerny, P.; Kristiansen, R.
Agakhanovite-(Y), ideally (YCa)2KBe3Si12O30, a new milarite-group mineral from the Heftetjern pegmatite, Tordal, Southern Norway: description and crystal structure
American Mineralogist, 2014, 99, 2084-2088
1525683 CIFAl0.07 Ca1.85 Fe0.02 Mg0.03 Mn0.04 Na0.14 O7 Pb0.01 Si2 Zn0.85P -4 21 m7.8; 7.8; 5
90; 90; 90
304.2Bindi, L.; Roethlisberger, F.; Czank, M.; Bonazzi, P.
Hardystonite from Franklin Furnace: a natural modulated melilite
American Mineralogist, 2001, 86, 747-751
9002568 CIFAl0.07 Ca1.86 Fe0.02 Mg0.03 Mn0.04 Na0.14 O7 Si2 Zn0.85P -4 21 m7.8; 7.8; 5
90; 90; 90
304.2Bindi, L.; Bonazzi, P.; Rothlisberger, F.
Hardystonite from Franklin Furnace: A natural modulated melilite
American Mineralogist, 2001, 86, 747-751
9001933 CIFAl0.072 Ca1.872 Cl0.02 F0.048 Fe2.673 H1.886 K0.004 Mg2.405 Mn0.042 Na0.096 O23.932 Si7.928C 1 2/m 19.9; 18.198; 5.299
90; 104.63; 90
923.716Evans, B. W.; Yang, H.
Fe-Mg order-disorder in tremolite-actinolite-ferro-actinolite at ambient and high temperature Sample: C60, 12BA, from Bloom Lake, Quebec, Canada in an iron formation after heating at 700 C
American Mineralogist, 1998, 83, 458-475
9002236 CIFAl0.08 Ca Fe2.81 H Mg0.06 Mn0.05 O9 Si2P n a m13.005; 8.8; 5.847
90; 90; 90
669.154Bonazzi, P.; Bindi, L.
Structural adjustments induced by heat treatment in ilvaite Sample: RM at T = 500 deg C
American Mineralogist, 1999, 84, 1604-1612
9002237 CIFAl0.08 Ca Fe2.81 H Mg0.06 Mn0.05 O9 Si2P n a m13.013; 8.802; 5.849
90; 90; 90
669.947Bonazzi, P.; Bindi, L.
Structural adjustments induced by heat treatment in ilvaite Sample: RM at T = 550 deg C
American Mineralogist, 1999, 84, 1604-1612
9002238 CIFAl0.08 Ca Fe2.81 H Mg0.06 Mn0.05 O9 Si2P n a m13.015; 8.802; 5.847
90; 90; 90
669.821Bonazzi, P.; Bindi, L.
Structural adjustments induced by heat treatment in ilvaite Sample: RM at T = 600 deg C
American Mineralogist, 1999, 84, 1604-1612
9002239 CIFAl0.08 Ca Fe2.81 H Mg0.06 Mn0.05 O9 Si2P n a m13.012; 8.801; 5.85
90; 90; 90
669.934Bonazzi, P.; Bindi, L.
Structural adjustments induced by heat treatment in ilvaite Sample: RM at T = 615 deg C
American Mineralogist, 1999, 84, 1604-1612
9002240 CIFAl0.08 Ca Fe2.81 Mg0.06 Mn0.05 O9 Si2P n a m13.007; 8.805; 5.844
90; 90; 90
669.294Bonazzi, P.; Bindi, L.
Structural adjustments induced by heat treatment in ilvaite Sample: RM at T = 625 deg C
American Mineralogist, 1999, 84, 1604-1612
9002241 CIFAl0.08 Ca Fe2.81 Mg0.06 Mn0.05 O9 Si2P n a m13.008; 8.802; 5.842
90; 90; 90
668.888Bonazzi, P.; Bindi, L.
Structural adjustments induced by heat treatment in ilvaite Sample: RM at T = 660 deg C
American Mineralogist, 1999, 84, 1604-1612
9002242 CIFAl0.08 Ca Fe2.81 Mg0.06 Mn0.05 O9 Si2P n a m13.013; 8.804; 5.841
90; 90; 90
669.183Bonazzi, P.; Bindi, L.
Structural adjustments induced by heat treatment in ilvaite Sample: RM at T = 675 deg C
American Mineralogist, 1999, 84, 1604-1612
9002243 CIFAl0.08 Ca Fe2.81 Mg0.06 Mn0.05 O9 Si2P n a m13.006; 8.804; 5.836
90; 90; 90
668.25Bonazzi, P.; Bindi, L.
Structural adjustments induced by heat treatment in ilvaite Sample: RM at T = 700 deg C
American Mineralogist, 1999, 84, 1604-1612
9002296 CIFAl0.08 Ca0.84 F0.02 Fe1.55 H1.18 K1.29 Mg2.9 Na1.28 O23.98 Si7.76 Ti0.71C 1 2/m 110.031; 18.096; 5.299
90; 104.72; 90
930.31Oberti, R.; Vannucci, R.; Zanetti, A.; Tiepolo, M.; Brumm, R. C.
A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 30
American Mineralogist, 2000, 85, 407-419
9001932 CIFAl0.08 Ca1.824 Fe2.711 H1.88 K0.016 Mg2.395 Mn0.04 Na0.12 O24 Si7.92 Ti0.002C 1 2/m 19.886; 18.171; 5.297
90; 104.61; 90
920.777Evans, B. W.; Yang, H.
Fe-Mg order-disorder in tremolite-actinolite-ferro-actinolite at ambient and high temperature Sample: 12BA, from Bloom Lake, Quebec, Canada in an iron formation
American Mineralogist, 1998, 83, 458-475
9001680 CIFAl0.08 Cr0.01 Nb0.01 O2 Ti0.91P 42/m n m4.594; 4.594; 2.9586
90; 90; 90
62.441Swope, R. J.; Smyth, J. R.; Larson, A. C.
H in rutile-type compounds: I. Single-crystal neutron and X-ray diffraction study of H in rutile Sample: X-ray; natural, T = 300 K
American Mineralogist, 1995, 80, 448-453
9002266 CIFAl0.08 H2 Mg5.92 Na2 O20 Si6P -110.2925; 10.7052; 8.8027
105.28; 96.712; 125.256
718.083Yang, H.; Konzett, J.
High-pressure synthesis of Na2Mg6Si6O18(OH)2 - a new hydrous silicate phase isostructural with aenigmatite
American Mineralogist, 2000, 85, 259-262
9010435 CIFAl0.09 Ca0.87 Fe1.91 H15.72 Na1.13 O29 P4 U1.888C 1 c 119.6441; 7.0958; 18.7029
90; 115.692; 90
2349.27Mills, S. J.; Birch, W. D.; Kolitsch, U.; Mumme, W. G.; Grey, I. E.
Lakebogaite, CaNaFe3+2H(UO2)2(PO4)4(OH)2(H2O)8, a new uranyl phosphate with a unique crystal structure from Victoria, Australia Locality: Upper Devonian granite, near Lake Boga, northern Victoria, Australia
American Mineralogist, 2008, 93, 691-697
9002249 CIFAl0.09 Ca1.03 Fe0.94 H2 Mg0.44 Mn1.89 Na0.1 O13 P3 Zn0.02P c a b12.559; 12.834; 11.714
90; 90; 90
1888.09Galliski, M. A.; Cooper, M. A.; Hawthorne, F. C.; Cerny, P.
Bederite, a new pegmatite phosphate mineral from Nevados de Palermo, Argentina: Description and crystal structure
American Mineralogist, 1999, 84, 1674-1679
9003457 CIFAl0.1 Ca0.06 F0.47 Fe2.63 H1.51 K0.125 Li1.66 Mg1.35 Mn0.13 Na1.376 O23.51 Si8 Ti0.06 Zn0.31C 1 2/m 19.535; 17.876; 5.294
90; 102.54; 90
880.824Oberti, R.; Camara, F.; Caballero, J. M.
Ferri-ottoliniite and ferriwhittakerite, two new end-members of the new Group 5 for monoclinic amphiboles
American Mineralogist, 2004, 89, 888-893
9003458 CIFAl0.1 Ca0.11 F0.7 Fe2.06 H1.3 K0.232 Li1.35 Mg1.47 Mn0.12 Na2.411 O23.3 Si8 Ti0.12 Zn0.4C 1 2/m 19.712; 17.851; 5.297
90; 103.63; 90
892.473Oberti, R.; Camara, F.; Caballero, J. M.
Ferri-ottoliniite and ferriwhittakerite, two new end-members of the new Group 5 for monoclinic amphiboles
American Mineralogist, 2004, 89, 888-893
1538118 CIFAl0.1 Ca0.15 F0.4 Fe1.25 H1.6 K0.2 Li0.25 Mg3.4 Na2.4 O23.6 Si8C 1 2/m 19.7709; 17.88718; 5.2889
90; 103.819; 90
897.606Hawthorne, F.C.; Ungaretti, L.; Smelik, E.A.; Cannillo, E.; Oberti, R.
The mechanism of 6Li incorporation in amphiboles
American Mineralogist, 1994, 79, 443-451
9003637 CIFAl0.1 Ca0.28 Fe0.72 K0.8 Li1.8 Mg1.85 Mn0.83 Na2.92 O24 Si8 Ti0.6C 1 2/m 19.808; 17.84; 5.2848
90; 104.653; 90
894.631Tait, K. T.; Hawthorne, F. C.; Grice, J. D.; Ottolini, L.; Nayak, V. K.
Dellaventuraite, NaNa2(MgMn2TiLi)Si8O22O2, a new anhydrous amphibole from the Kajlidongri Manganese Mine, Jhabua District, Madhya Pradesh, India
American Mineralogist, 2005, 90, 304-309
9001333 CIFAl0.1 Ca0.78 Cr0.09 Fe0.05 Mg0.83 Na0.18 O6 Si1.97C 1 2/c 19.693; 8.889; 5.253
90; 106.34; 90
434.323Oberti, R.; Caporuscio, F. A.
Crystal chemistry of clinopyroxenes from mantle eclogites: A study of the key role of the M2 site population by means of crystal-structure refinement sample SBB 7P, Di78Jd18, diopside - jadeite join
American Mineralogist, 1991, 76, 1141-1152
9000892 CIFAl0.1 Fe1.75 H O8 Ti0.55 V2.6P 63 m c5.89; 5.89; 9.255
90; 90; 120
278.059Gatehouse, B. M.; Grey, I. E.; Nickel, E. H.
The crystal chemistry of nolanite, (V,Fe,Ti,Al)10O14(OH)2, from Kalgoorlie, Western Australia sample: crystal # 2
American Mineralogist, 1983, 68, 833-839
5000231 CIFAl0.11 Ca3.76 F0.41 H4.03 K0.882 Na3.65 O31.51 Si7.75P 4/m b m13.178; 13.178; 16.69499
90; 90; 90
2899.2Chao, G Y
The crystal structure of Carletonite, K Na4 Ca4 Si8 O18 (C O3)4 F.5 (O H).5) H2 O, a double-sheet silicate
American Mineralogist, 1972, 57, 765-778
9010043 CIFAl0.112 Ca0.05 F0.3 Fe4.48 H1.7 K0.521 Li0.22 Mg0.04 Mn0.14 Na2.231 O23.7 Si7.928 Ti0.06 Zn0.02C 1 2/m 19.986; 18.042; 5.314
90; 103.92; 90
929.293Hawthorne, F. C.; Ungaretti, L.; Oberti, R.; Bottazzi, P.; Czamanske, G. K.
Li: an important component in igneous alkali amphiboles Sample: A(13)
American Mineralogist, 1993, 78, 733-745
9003337 CIFAl0.114 Ca2 Fe1.886 O5P n m a5.4217; 14.7432; 5.596
90; 90; 90
447.306Redhammer, G. J.; Tippelt, G.; Roth, G.; Amthauer, G.
Structural variations in the brownmillerite series Ca2(Fe2-xAlx)O5: Single-crystal X-ray diffraction at 25 deg C and high temperature X-ray powder diffraction (25 C <= T <= 1000 C) Sample: bht005_2
American Mineralogist, 2004, 89, 405-420
9017024 CIFAl0.12 Ca0.55 Ce0.01 Fe1.41 K0.04 La0.02 Mg0.05 Mn0.26 Na2.45 O24 Si8 Sr3.84 Ti0.01 Zn0.16P 1 21/c 15.21381; 7.9143; 26.0888
90; 90.3556; 90
1076.5Chakhmourdian, A. R.; Cooper, M. A.; Ball, N.; Reguir, E. P.; Medici, L.; Abdu, Y. A.; Antonov, A. A.
Vladykinite, Na3Sr4(Fe2+Fe3+)Si8O24: A new complex sheet silicate from peralkaline rocks of the Murun complex, eastern Siberia, Russia
American Mineralogist, 2014, 99, 235-241
9010038 CIFAl0.12 F1.2 Fe3.57 H0.8 K0.245 Li0.36 Mg0.2 Mn0.67 Na2.47 O22.8 Si7.88 Ti0.1 Zn0.1C 1 2/m 19.816; 18.004; 5.325
90; 103.72; 90
914.22Hawthorne, F. C.; Ungaretti, L.; Oberti, R.; Bottazzi, P.; Czamanske, G. K.
Li: an important component in igneous alkali amphiboles Sample: A(8)
American Mineralogist, 1993, 78, 733-745
1538116 CIFAl0.12 F1.2 Fe3.67 H0.8 K0.26 Li0.36 Mg0.2 Mn0.67 Na2.48 O22.8 Si7.88 Zn0.1C 1 2/m 19.816; 18.004; 5.325
90; 103.72; 90
914.22Hawthorne, F.C.; Czamanske, G.K.; Oberti, R.; Ungaretti, L.; Bottazzi, P.
Li: An important component in igneous alkali amphiboles
American Mineralogist, 1993, 78, 733-745
9010039 CIFAl0.12 F1.4 Fe3.52 H0.6 K0.257 Li0.33 Mg0.18 Mn0.79 Na2.404 O22.6 Si7.88 Ti0.08 Zn0.1C 1 2/m 19.815; 18.016; 5.329
90; 103.71; 90
915.463Hawthorne, F. C.; Ungaretti, L.; Oberti, R.; Bottazzi, P.; Czamanske, G. K.
Li: an important component in igneous alkali amphiboles Sample: A(9)
American Mineralogist, 1993, 78, 733-745
9001993 CIFAl0.12 F2 Mg5.76 Na2.11 O22 Si8C 1 2/m 19.668; 17.916; 5.271
90; 102.82; 90
890.241Oberti, R.; Hawthorne, F. C.; Camara, F.; Raudsepp, M.
Unusual M3+ cations in synthetic amphiboles with nominal fluoro-eckermannite composition: Deviations from stoichiometry and structural effects of the cummingtonite component Sample: Al, Na.98Na1.10Mg.90Mg4.88Al.12Si8O22F2
American Mineralogist, 1999, 84, 102-111
9002655 CIFAl0.12 Mg1.88 Na1.78 O7 Si2P -3 1 m4.9827; 4.9827; 6.4354
90; 90; 120
138.368Yang, H.; Konzett, J.; Prewitt, C. T.
Crystal structure of phase X, a high pressure alkali-rich hydrous silicate and its anhydrous equivalent Sample: JKW42
American Mineralogist, 2001, 86, 1483-1488
9001920 CIFAl0.122 Ca1.802 Fe0.575 H1.94 K0.014 Mg4.479 Mn0.016 Na0.124 O24 Si7.94 Ti0.002C 1 2/m 19.834; 18.078; 5.283
90; 104.63; 90
908.755Evans, B. W.; Yang, H.
Fe-Mg order-disorder in tremolite-actinolite-ferro-actinolite at ambient and high temperature Sample: NMNH 93728 from Greiner, Zillertal, Austria in act-talc rock
American Mineralogist, 1998, 83, 458-475
9002156 CIFAl0.13 Fe0.73 K Li3 Na1.7 O30 Si12 Ti0.38 Zr0.76P 6/m c c10.053; 10.053; 14.211
90; 90; 120
1243.79Cooper, M. A.; Hawthorne, F. C.; Grew, E. S.
The crystal chemistry of sogdianite, a milarite-group mineral Note: U(1,2) for Li2 changed to match symmetry constraints.
American Mineralogist, 1999, 84, 764-768
9001921 CIFAl0.138 Ca1.774 Fe0.594 H1.976 K0.01 Mg4.43 Mn0.02 Na0.132 O24 Si7.952C 1 2/m 19.833; 18.078; 5.282
90; 104.58; 90
908.697Evans, B. W.; Yang, H.
Fe-Mg order-disorder in tremolite-actinolite-ferro-actinolite at ambient and high temperature Sample: C78, NMNH 93728 from Greiner, Zillertal, Austria in act-talc rock after heating at 700 C
American Mineralogist, 1998, 83, 458-475
9001603 CIFAl0.14 Ca0.1 F0.21 Fe0.96 H0.97 K0.15 Li0.67 Mg2.3 Mn0.52 Na2.7 O23.79 Si8 Ti0.41C 1 2/m 19.748; 17.842; 5.287
90; 104.12; 90
891.753Hawthorne, F. C.; Ungaretti, L.; Oberti, R.; Cannillo, E.
The mechanism of Li incorporation in amphiboles Sample: A1
American Mineralogist, 1994, 79, 443-451
1538120 CIFAl0.14 Ca0.1 F0.42 Fe1.3 H1.58 K0.18 Li0.24 Mg3.34 Na2.46 O23.58 Si7.94 Ti0.04C 1 2/m 19.7788; 17.88779; 5.2873
90; 103.855; 90
897.951Hawthorne, F.C.; Ungaretti, L.; Oberti, R.; Cannillo, E.; Smelik, E.A.
The mechanism of 6Li incorporation in amphiboles
American Mineralogist, 1994, 79, 443-451
9003673 CIFAl0.144 B0.008 Ca1.85 F0.33 Fe0.18 H1.67 K0.1 Mg4.75 Mn0.01 Na0.31 O23.67 Si7.928 Ti0.01 Zn0.01C 1 2/m 19.848; 18.049; 5.279
90; 104.73; 90
907.486Oberti, R.; Camara, F.; Ottolini, L.
Clinoholmquistite discredited: The new amphibole end-member fluoro-sodic-pedrizite sample from Tastyg spodumene deposit, Tuva, Siberia, Russia
American Mineralogist, 2005, 90, 732-736
9000891 CIFAl0.15 Fe1.1 H O8 Ti0.3 V3.45P 63 m c5.89; 5.89; 9.255
90; 90; 120
278.059Gatehouse, B. M.; Grey, I. E.; Nickel, E. H.
The crystal chemistry of nolanite, (V,Fe,Ti,Al)10O14(OH)2, from Kalgoorlie, Western Australia sample: crystal # 1
American Mineralogist, 1983, 68, 833-839
9002382 CIFAl0.155 Li0.155 O2 Si0.845P 32 2 15.0865; 5.0865; 5.4451
90; 90; 120
122.004Xu, H.; Heaney, P. J.; Beall, G. H.
Phase transitions induced by solid solution in stuffed derivatives of quartz: A powder synchrotron XRD study of the LiAlSiO4-SiO2 join Sample: x=.69, Li.31Al.31Si1.69O4, alpha quartz structure
American Mineralogist, 2000, 85, 971-979
9002294 CIFAl0.16 Ca Fe0.9 H2 K1.26 Mg3.85 Na1.12 O24 Si7.68 Ti0.41C 1 2/m 110.046; 18.065; 5.297
90; 104.82; 90
929.326Oberti, R.; Vannucci, R.; Zanetti, A.; Tiepolo, M.; Brumm, R. C.
A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 28
American Mineralogist, 2000, 85, 407-419
9016919 CIFAl0.16 Ca0.06 Dy0.01 Er0.01 Fe0.02 Gd0.01 Mg0.11 O3 Sc0.54 Ti0.66 V0.03 Y0.07 Zr0.13I a -39.842; 9.842; 9.842
90; 90; 90
953.345Ma, C.; Tschauner, O.; Beckett, J. R.; Rossman, G. R.; Liu, W.
Kangite, (Sc,Ti,Al,Zr,Mg,Ca,[_])2O3, a new ultra-refractory scandia mineral from the Allende meteorite: Synchrotron micro-Laue diffraction and electron backscatter diffraction Note: x-coordinate of Sc2, and coordinates of O atoms are changed by personal email with authors May 2013
American Mineralogist, 2013, 98, 870-878
1557417 CIFAl0.16 Ca0.06 Fe0.02 Mg0.11 O3 Sc0.54 Ti0.66 V0.03 Y0.07 Zr0.13I a -39.842; 9.842; 9.842
90; 90; 90
953.34Ma, C.; Tschauner, O.; Beckett, J.R.; Rossman, G.R.; Liu, W.
Kangite, (Sc,Ti,Al,Zr,Mg,Ca,[])2O3, a new ultra-refractory scandia mineral from the Allende meteorite: Synchrotron micro-Laue diffraction and electron backscatter diffraction
American Mineralogist, 2013, 98, 870-878
9001606 CIFAl0.16 Ca0.1 F0.42 Fe1.174 H2 K0.2 Li0.24 Mg3.34 Mn0.126 Na2.45 O23.58 Si7.92 Ti0.04C 1 2/m 19.771; 17.887; 5.289
90; 103.82; 90
897.619Hawthorne, F. C.; Ungaretti, L.; Oberti, R.; Cannillo, E.
The mechanism of Li incorporation in amphiboles Sample: A4 Note: Site occupancies are set to be the same as ones in sample A5
American Mineralogist, 1994, 79, 443-451
9001607 CIFAl0.16 Ca0.1 F0.42 Fe1.174 H2 K0.2 Li0.24 Mg3.34 Mn0.126 Na2.45 O23.58 Si7.92 Ti0.04C 1 2/m 19.779; 17.888; 5.287
90; 103.85; 90
897.949Hawthorne, F. C.; Ungaretti, L.; Oberti, R.; Cannillo, E.
The mechanism of Li incorporation in amphiboles Sample: A5
American Mineralogist, 1994, 79, 443-451
9002297 CIFAl0.16 Ca0.86 F0.04 Fe2.65 H2 K1.32 Mg3.8 Na1.23 O23.96 Si7.68 Ti0.71C 1 2/m 110.011; 18.06; 5.297
90; 104.77; 90
926.046Oberti, R.; Vannucci, R.; Zanetti, A.; Tiepolo, M.; Brumm, R. C.
A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 31
American Mineralogist, 2000, 85, 407-419
9000087 CIFAl0.16 Ca0.872 Ce2.312 Fe0.87 La0.5 Mg0.24 Na0.312 O22 Si3.84 Th0.192 Ti3.48 Y0.16C 1 2/m 113.61; 5.62; 11.63
90; 113.47; 90
815.964Gottardi, G.
The crystal structure of perrierite
American Mineralogist, 1960, 45, 1-14
9002293 CIFAl0.16 Ca0.92 Fe H2 K1.32 Mg3.65 Na1.2 O24 Si7.6 Ti0.59C 1 2/m 110.041; 18.081; 5.3
90; 104.79; 90
930.342Oberti, R.; Vannucci, R.; Zanetti, A.; Tiepolo, M.; Brumm, R. C.
A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 27
American Mineralogist, 2000, 85, 407-419
9002289 CIFAl0.16 Ca0.92 Fe0.7 H2 K1.29 Mg4.05 Na1.17 O24 Si7.6 Ti0.49C 1 2/m 110.029; 18.061; 5.296
90; 104.78; 90
927.544Oberti, R.; Vannucci, R.; Zanetti, A.; Tiepolo, M.; Brumm, R. C.
A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 23
American Mineralogist, 2000, 85, 407-419
9002298 CIFAl0.16 Ca0.94 Fe H2 K1.3 Mg3.8 Na1.15 O24 Si7.68 Ti0.36C 1 2/m 110.051; 18.068; 5.295
90; 104.79; 90
929.721Oberti, R.; Vannucci, R.; Zanetti, A.; Tiepolo, M.; Brumm, R. C.
A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 32
American Mineralogist, 2000, 85, 407-419
9002288 CIFAl0.16 Ca1.08 Fe0.45 H2 K1.23 Mg4.45 Na1.07 O24 Si7.68 Ti0.26C 1 2/m 110.032; 18.032; 5.284
90; 104.85; 90
923.934Oberti, R.; Vannucci, R.; Zanetti, A.; Tiepolo, M.; Brumm, R. C.
A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 22
American Mineralogist, 2000, 85, 407-419
9010042 CIFAl0.176 Ca0.08 F0.8 Fe3.87 H1.2 K0.223 Li0.17 Mg0.31 Mn0.58 Na2.415 O23.2 Si7.824 Ti0.08 Zn0.04C 1 2/m 19.84; 18.036; 5.365
90; 104.05; 90
923.665Hawthorne, F. C.; Ungaretti, L.; Oberti, R.; Bottazzi, P.; Czamanske, G. K.
Li: an important component in igneous alkali amphiboles Sample: A(12)
American Mineralogist, 1993, 78, 733-745
9002794 CIFAl0.177 As1.19 B4 Ca8.01 Ce2.328 F8.749 Fe0.823 H La2.214 Na0.583 O38.461 P0.227 Si6 Th2.448R 3 m :H10.8112; 10.8112; 27.3296
90; 90; 120
2766.38Ballirano, P.; Callegari, A.; Caucia, F.; Maras, A.; Mazzi, F.; Ungaretti, L.
The crystal structure of vicanite - (Ce), a borosilicate showing an unusual (Si3B3O18) polyanion
American Mineralogist, 2002, 87, 1139-1143
9001925 CIFAl0.182 Ca1.89 Cl0.034 F0.406 Fe1.166 H1.556 K0.066 Mg2.71 Mn0.444 Na0.212 O23.56 Si7.836 Ti0.004C 1 2/m 19.863; 18.09; 5.282
90; 104.78; 90
911.241Evans, B. W.; Yang, H.
Fe-Mg order-disorder in tremolite-actinolite-ferro-actinolite at ambient and high temperature Sample: C71, 67-3701, from Carr Fork Mine, Bingham, Utah in cpx hornfels rock after heating at 700 C
American Mineralogist, 1998, 83, 458-475
9001334 CIFAl0.19 Ca0.71 Fe0.08 Mg0.83 Na0.2 O6 Si1.98 Ti0.01C 1 2/c 19.678; 8.853; 5.255
90; 106.52; 90
431.659Oberti, R.; Caporuscio, F. A.
Crystal chemistry of clinopyroxenes from mantle eclogites: A study of the key role of the M2 site population by means of crystal-structure refinement sample SBB 37, Di71Jd20, diopside - jadeite join
American Mineralogist, 1991, 76, 1141-1152
9004022 CIFAl0.19 Ca0.88 K0.12 Mg0.83 O6 Si1.98C 1 2/c 19.6912; 8.8986; 5.2531
90; 105.99; 90
435.49Bindi, L.; Downs, R. T.; Harlow, G. E.; Safonov, O. G.; Litvin, Y. A.; Perchuk, L. L.; Uchida, H.; Menchetti, S.
Compressibility of synthetic potassium-rich clinopyroxene: In situ high-pressure single-crystal X-ray study Sample: 939-1, in air
American Mineralogist, 2006, 91, 802-808
9004023 CIFAl0.19 Ca0.88 K0.12 Mg0.83 O6 Si1.98C 1 2/c 19.6912; 8.8986; 5.2531
90; 105.99; 90
435.49Bindi L; Downs R T; Harlow G E; Safonov O G; Litvin Y A; Perchuk L L; Uchida H; Menchetti S
Compressibility of synthetic potassium-rich clinopyroxene: In situ high-pressure single-crystal X-ray study Sample: 939-1, in air
American Mineralogist, 2006, 91, 802-808
9004024 CIFAl0.19 Ca0.88 K0.12 Mg0.83 O6 Si1.98C 1 2/c 19.6828; 8.888; 5.2482
90; 105.951; 90
434.274Bindi, L.; Downs, R. T.; Harlow, G. E.; Safonov, O. G.; Litvin, Y. A.; Perchuk, L. L.; Uchida, H.; Menchetti, S.
Compressibility of synthetic potassium-rich clinopyroxene: In situ high-pressure single-crystal X-ray study Sample: 939-1, P = .46 GPa
American Mineralogist, 2006, 91, 802-808
9004025 CIFAl0.19 Ca0.88 K0.12 Mg0.83 O6 Si1.98C 1 2/c 19.6313; 8.8327; 5.2212
90; 105.746; 90
427.502Bindi, L.; Downs, R. T.; Harlow, G. E.; Safonov, O. G.; Litvin, Y. A.; Perchuk, L. L.; Uchida, H.; Menchetti, S.
Compressibility of synthetic potassium-rich clinopyroxene: In situ high-pressure single-crystal X-ray study Sample: 939-1, P = 2.45 GPa
American Mineralogist, 2006, 91, 802-808
9004026 CIFAl0.19 Ca0.88 K0.12 Mg0.83 O6 Si1.98C 1 2/c 19.5674; 8.7596; 5.1863
90; 105.52; 90
418.798Bindi, L.; Downs, R. T.; Harlow, G. E.; Safonov, O. G.; Litvin, Y. A.; Perchuk, L. L.; Uchida, H.; Menchetti, S.
Compressibility of synthetic potassium-rich clinopyroxene: In situ high-pressure single-crystal X-ray study Sample: 939-1, P = 5.36 GPa
American Mineralogist, 2006, 91, 802-808
9004027 CIFAl0.19 Ca0.88 K0.12 Mg0.83 O6 Si1.98C 1 2/c 19.5089; 8.6937; 5.1545
90; 105.344; 90
410.921Bindi, L.; Downs, R. T.; Harlow, G. E.; Safonov, O. G.; Litvin, Y. A.; Perchuk, L. L.; Uchida, H.; Menchetti, S.
Compressibility of synthetic potassium-rich clinopyroxene: In situ high-pressure single-crystal X-ray study Sample: 939-1, P = 8.11 GPa
American Mineralogist, 2006, 91, 802-808
9004028 CIFAl0.19 Ca0.88 K0.12 Mg0.83 O6 Si1.98C 1 2/c 19.4762; 8.6541; 5.1356
90; 105.269; 90
406.293Bindi, L.; Downs, R. T.; Harlow, G. E.; Safonov, O. G.; Litvin, Y. A.; Perchuk, L. L.; Uchida, H.; Menchetti, S.
Compressibility of synthetic potassium-rich clinopyroxene: In situ high-pressure single-crystal X-ray study Sample: 939-1, P = 9.72 GPa
American Mineralogist, 2006, 91, 802-808
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
9001926 CIFAl0.194 Ca1.922 Fe1.538 H1.92 K0.01 Mg3.364 Mn0.052 Na0.052 O24 Si7.888 Ti0.002C 1 2/m 19.881; 18.139; 5.298
90; 104.78; 90
918.149Evans, B. W.; Yang, H.
Fe-Mg order-disorder in tremolite-actinolite-ferro-actinolite at ambient and high temperature Sample: NMNH 156831, from Green Monster Mine, Alaska in uralite from cpx
American Mineralogist, 1998, 83, 458-475
9000482 CIFAl0.2 Ba2 Ca Fe1.48 Mg0.22 Mn0.18 O17 Si5.8 Zn0.12C m c m15.677; 7.15; 14.209
90; 90; 90
1592.69Meagher, E. P.
The atomic arrangement of pellyite: Ba2Ca(Fe,Mg)2Si6O17
American Mineralogist, 1976, 61, 67-73
9001901 CIFAl0.2 Ca0.04 F0.42 Fe2.89 H1.58 K0.06 Li3.21 Mg1.21 Mn0.07 Na1.18 O23.58 Si8 Ti0.12 Zn0.02C 1 2/m 19.48; 17.845; 5.283
90; 102.03; 90
874.101Caballero, J. M.; Monge, A.; Iglesia, A. L.; Tornos, F.
Ferri-clinoholmquistite, Li2(Fe,Mg)3Fe2Si8O22(OH)2, a new Li clinoamphibole from the Pedriza Massif, Sierra de Guadarrama, Spanish Central System
American Mineralogist, 1998, 83, 167-171
9002780 CIFAl0.2 Ca0.04 F0.7 Fe2.51 H1.3 K0.04 Li2.34 Mg1.48 Mn0.07 Na0.76 O23.3 Si8 Ti0.08 Zn0.02C 1 2/m 19.499; 17.864; 5.296
90; 102.15; 90
878.548Caballero, J. M.; Oberti, R.; Ottolini, L.
Ferripedrizite, a new monoclinic Li amphibole end-member from the Eastern Pedriza Massif, Sierra de Guadarrama, Spain, and a restatement of the nomenclature of Mg-Fe-Mn-Li amphiboles
American Mineralogist, 2002, 87, 976-982
9002338 CIFAl0.2 Ca0.04 F0.84 Fe1.98 H1.16 K0.03 Li2.24 Mg1.76 Na1.3 O23.16 Si8C 1 2/m 19.536; 17.797; 5.278
90; 102.54; 90
874.373Oberti, R.; Caballero, J. M.; Ottolini, L.; Lopez-Andres S; Herreros, V.
Sodic-ferripedrizite, a new monoclinic amphibole bridging the magnesium-iron-manganese-lithium and the sodium-calcium groups Note: site occupancy unknown Sample: crystal P(1)
American Mineralogist, 2000, 85, 578-585
9002339 CIFAl0.2 Ca0.04 F0.94 Fe1.98 H1.06 K0.03 Li2.48 Mg1.76 Na1.32 O23.06 Si8C 1 2/m 19.534; 17.785; 5.278
90; 102.52; 90
873.668Oberti, R.; Caballero, J. M.; Ottolini, L.; Lopez-Andres S; Herreros, V.
Sodic-ferripedrizite, a new monoclinic amphibole bridging the magnesium-iron-manganese-lithium and the sodium-calcium groups Note: site occupancy unknown Sample: crystal P(2)
American Mineralogist, 2000, 85, 578-585
1538112 CIFAl0.2 Ca0.72 F1.38 Fe2.27 H0.22 K0.22 Li0.16 Mg2.11 Mn0.46 Na1.91 O22.62 Si7.8C 1 2/m 19.835; 17.9439; 5.297
90; 103.97; 90
907.156Hawthorne, F.C.; Oberti, R.; Ungaretti, L.; Bottazzi, P.; Czamanske, G.K.
Li: An important component in igneous alkali amphiboles
American Mineralogist, 1993, 78, 733-745
9010034 CIFAl0.2 F1.6 Fe2.92 H0.4 K0.239 Li0.64 Mg0.64 Mn0.66 Na2.652 O22.4 Si7.8 Ti0.07 Zn0.07C 1 2/m 19.796; 17.934; 5.312
90; 103.89; 90
905.931Hawthorne, F. C.; Ungaretti, L.; Oberti, R.; Bottazzi, P.; Czamanske, G. K.
Li: an important component in igneous alkali amphiboles Sample: A(4), ferro-fluor-leakeite
American Mineralogist, 1993, 78, 733-745
9001923 CIFAl0.204 Ca1.954 F0.276 Fe0.947 H1.696 K0.096 Mg4.031 Mn0.014 Na0.152 O23.724 Si7.82 Ti0.004C 1 2/m 19.852; 18.066; 5.282
90; 104.89; 90
908.555Evans, B. W.; Yang, H.
Fe-Mg order-disorder in tremolite-actinolite-ferro-actinolite at ambient and high temperature Sample: C70, 67-3172, from Carr Fork Mine, Bingham, Utah in cpx hornfels rock after heating at 700 C
American Mineralogist, 1998, 83, 458-475
9003338 CIFAl0.204 Ca2 Fe1.796 O5P n m a5.414; 14.7163; 5.5947
90; 90; 90
445.752Redhammer, G. J.; Tippelt, G.; Roth, G.; Amthauer, G.
Structural variations in the brownmillerite series Ca2(Fe2-xAlx)O5: Single-crystal X-ray diffraction at 25 deg C and high temperature X-ray powder diffraction (25 C <= T <= 1000 C) Sample: bht015_1
American Mineralogist, 2004, 89, 405-420
9010036 CIFAl0.208 Ca0.72 F1.38 Fe2.14 H0.22 K0.211 Li0.16 Mg2.1 Mn0.54 Na1.91 O22.62 Si7.792 Ti0.04 Zn0.02C 1 2/m 19.835; 17.944; 5.297
90; 103.97; 90
907.161Hawthorne, F. C.; Ungaretti, L.; Oberti, R.; Bottazzi, P.; Czamanske, G. K.
Li: an important component in igneous alkali amphiboles Sample: A(6), magnesio-ferri-fluor-katophorite
American Mineralogist, 1993, 78, 733-745
1538311 CIFAl0.21 B Fe0.12 Mg1.33 O4 Ti0.34P n a m9.197; 9.358; 3.085
90; 90; 90
265.512Moore, P.B.; Araki, T.
Pinakiolite, Mg2 Mn(III) O2 B O3, warwickite, Mg (Mg.5 Ti.5) O (B O3), wightmanite, Mg5 (O) (O H)5 (B O3) * (H2 O)n: Crystal chemistry of complex 3 Angstroem wallpaper structures
American Mineralogist, 1974, 59, 985-1004
9000982 CIFAl0.21 Ba1.91 Fe7.82 H4 K0.064 Mg0.61 Mn0.16 Na0.026 O22 S2 Si5.2P n m n5.439; 9.509; 19.878
90; 90; 90
1028.08Filut, M. A.; Rule, A. C.; Bailey, S. W.
Crystal structure refinement of anandite-2Or, a barium- and sulfur-bearing trioctahedral mica
American Mineralogist, 1985, 70, 1298-1308
1521680 CIFAl0.21 Ca0.05 F0.84 Fe2.07 H1.16 Li2.19 Mg1.77 Na1.33 O23.16 Si8 Ti0.11C 1 2/m 19.536; 17.797; 5.278
90; 102.54; 90
874.373Oberti, R.; Caballero, J.M.; Ottolini, L.; Lopez-Andres, S.; Herreros, V.
Sodic - ferripedrizite, a new monoclinic amphibole bridging the magnesium - iron - manganese - lithium and the sodium calcium groups
American Mineralogist, 2000, 85, 578-585
9000237 CIFAl0.21 Ca2.991 Cr1.73 Fe0.05 Mn0.009 O12 Si3 Ti0.01I a -3 d11.988; 11.988; 11.988
90; 90; 90
1722.82Novak, G. A.; Gibbs, G. V.
The crystal chemistry of the silicate garnets sample Uv
American Mineralogist, 1971, 56, 791-823
9016962 CIFAl0.21 Fe2.79 H6 K O14 S2R -3 m :H7.2913; 7.2913; 17.1744
90; 90; 120
790.719Mills, S. J.; Nestola, F.; Kahlenberg, V.; Christy, A. G.; Hejny, C.; Redhammer, G. J.
Looking for jarosite on Mars: The low-temperature crystal structure of jarosite Note: T = 297 K
American Mineralogist, 2013, 98, 1966-1971
9016963 CIFAl0.21 Fe2.79 H6 K O14 S2R -3 m :H7.2931; 7.2931; 17.1456
90; 90; 120
789.783Mills, S. J.; Nestola, F.; Kahlenberg, V.; Christy, A. G.; Hejny, C.; Redhammer, G. J.
Looking for jarosite on Mars: The low-temperature crystal structure of jarosite Note: T = 253 K
American Mineralogist, 2013, 98, 1966-1971
9016964 CIFAl0.21 Fe2.79 H6 K O14 S2R -3 m :H7.2918; 7.2918; 17.1235
90; 90; 120
788.484Mills, S. J.; Nestola, F.; Kahlenberg, V.; Christy, A. G.; Hejny, C.; Redhammer, G. J.
Looking for jarosite on Mars: The low-temperature crystal structure of jarosite Note: T = 213 K
American Mineralogist, 2013, 98, 1966-1971
9016965 CIFAl0.21 Fe2.79 H6 K O14 S2R -3 m :H7.2918; 7.2918; 17.1026
90; 90; 120
787.521Mills, S. J.; Nestola, F.; Kahlenberg, V.; Christy, A. G.; Hejny, C.; Redhammer, G. J.
Looking for jarosite on Mars: The low-temperature crystal structure of jarosite Note: T = 173 K
American Mineralogist, 2013, 98, 1966-1971
9016966 CIFAl0.21 Fe2.79 H6 K O14 S2R -3 m :H7.2907; 7.2907; 17.09
90; 90; 120
786.704Mills, S. J.; Nestola, F.; Kahlenberg, V.; Christy, A. G.; Hejny, C.; Redhammer, G. J.
Looking for jarosite on Mars: The low-temperature crystal structure of jarosite Note: T = 133 K
American Mineralogist, 2013, 98, 1966-1971
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
9001335 CIFAl0.22 Ca0.61 Fe0.2 Mg0.72 Na0.25 O6 Si2C 1 2/c 19.662; 8.841; 5.253
90; 106.78; 90
429.614Oberti, R.; Caporuscio, F. A.
Crystal chemistry of clinopyroxenes from mantle eclogites: A study of the key role of the M2 site population by means of crystal-structure refinement sample SBB 34, Di62Jd24, diopside - jadeite join
American Mineralogist, 1991, 76, 1141-1152
9014487 CIFAl0.22 Ca2.778 Cr0.07 Mn0.129 O12 Si3 V1.62I a -3 d12.0276; 12.0276; 12.0276
90; 90; 90
1739.95Righter, K.; Sutton, S.; Danielson, L.; Pando, K.; Schmidt, G.; Yang, H.; Berthet, S.; Newville, M.; Choi, Y.; Downs, R. T.; Malavergne, V.
The effect of fO2 on the partitioning and valence of V and Cr in garnet/melt pairs and the relation to terrestrial mantle V and Cr content Note: R061138
American Mineralogist, 2011, 96, 1278-1290
9017086 CIFAl0.22 Cr0.3 Fe2.15 Mg0.26 O4 Si0.08A m a m9.8; 9.6; 2.87
90; 90; 90
270.01Koch-Muller M; Mugnaioli, E.; Rhede, D.; Speziale, S.; Kolb, U.; Wirth, R.
Synthesis of a quenchable high-pressure form of magnetite (h-Fe3O4) with composition Fe1(Fe2+0.75Mg0.26)Fe2(Fe3+0.70Cr0.15Al0.11Si0.04)2O4 Note: Sample Crystal 1
American Mineralogist, 2014, 99, 2405-2415
9017087 CIFAl0.22 Cr0.3 Fe2.15 Mg0.26 O4 Si0.08A m a m9.8; 9.6; 2.87
90; 90; 90
270.01Koch-Muller M; Mugnaioli, E.; Rhede, D.; Speziale, S.; Kolb, U.; Wirth, R.
Synthesis of a quenchable high-pressure form of magnetite (h-Fe3O4) with composition Fe1(Fe2+0.75Mg0.26)Fe2(Fe3+0.70Cr0.15Al0.11Si0.04)2O4 Note: Sample Crystal 2
American Mineralogist, 2014, 99, 2405-2415
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
9010241 CIFAl0.23 Mg0.874 O3 Si0.875P b c a18.1876; 8.7352; 5.1789
90; 90; 90
822.784Smyth, J. R.; Mierdel, K.; Keppler, H.; Langenhorst, F.; Dubrovinsky, L.; Nestola, F.
Crystal chemistry of hydration in aluminous orthopyroxene
American Mineralogist, 2007, 92, 973-976
9017144 CIFAl0.235 Fe1.765 O3P n a 215.0647; 8.7131; 9.3842
90; 90; 90
414.118Xu, H.; Lee, S.; Xu, H.
Luogufengite: A new nano-mineral of Fe2O3 polymorph with giant coercive field
American Mineralogist, 2017, 102, 711-719
9010424 CIFAl0.236 Ca0.01 Fe0.967 Mg0.923 Mn0.016 O6 Si1.848P b c a18.2889; 8.8662; 5.2175
90; 90; 90
846.034Nestola, F.; Ballaran, T. B.; Balic-Zunic T; Secco, L.; Dal Negro, A.
The high-pressure behavior of an Al- and Fe-rich natural orthopyroxene Sample: P = 0 GPa, in air
American Mineralogist, 2008, 93, 644-652
9010425 CIFAl0.236 Ca0.01 Fe0.967 Mg0.923 Mn0.016 O6 Si1.848P b c a18.2889; 8.8662; 5.2175
90; 90; 90
846.034Nestola, F.; Ballaran, T. B.; Balic-Zunic T; Secco, L.; Dal Negro, A.
The high-pressure behavior of an Al- and Fe-rich natural orthopyroxene Sample: P = 0 GPa, in air, same # of reflections as DAC crystal
American Mineralogist, 2008, 93, 644-652
9010426 CIFAl0.236 Ca0.01 Fe0.967 Mg0.923 Mn0.016 O6 Si1.848P b c a18.2804; 8.8601; 5.2161
90; 90; 90
844.832Nestola, F.; Ballaran, T. B.; Balic-Zunic T; Secco, L.; Dal Negro, A.
The high-pressure behavior of an Al- and Fe-rich natural orthopyroxene Sample: P = 0.163 GPa
American Mineralogist, 2008, 93, 644-652
9010427 CIFAl0.236 Ca0.01 Fe0.967 Mg0.923 Mn0.016 O6 Si1.848P b c a18.2192; 8.8111; 5.1965
90; 90; 90
834.2Nestola, F.; Ballaran, T. B.; Balic-Zunic T; Secco, L.; Dal Negro, A.
The high-pressure behavior of an Al- and Fe-rich natural orthopyroxene Sample: P = 1.715 GPa
American Mineralogist, 2008, 93, 644-652
9010428 CIFAl0.236 Ca0.01 Fe0.967 Mg0.923 Mn0.016 O6 Si1.848P b c a18.1427; 8.746; 5.1716
90; 90; 90
820.609Nestola, F.; Ballaran, T. B.; Balic-Zunic T; Secco, L.; Dal Negro, A.
The high-pressure behavior of an Al- and Fe-rich natural orthopyroxene Sample: P = 3.947 GPa
American Mineralogist, 2008, 93, 644-652
9010429 CIFAl0.236 Ca0.01 Fe0.967 Mg0.923 Mn0.016 O6 Si1.848P b c a18.0221; 8.6456; 5.1327
90; 90; 90
799.736Nestola, F.; Ballaran, T. B.; Balic-Zunic T; Secco, L.; Dal Negro, A.
The high-pressure behavior of an Al- and Fe-rich natural orthopyroxene Sample: P = 8.033 GPa
American Mineralogist, 2008, 93, 644-652
9010430 CIFAl0.236 Ca0.01 Fe0.967 Mg0.923 Mn0.016 O6 Si1.848P b c a17.977; 8.61; 5.1227
90; 90; 90
792.902Nestola, F.; Ballaran, T. B.; Balic-Zunic T; Secco, L.; Dal Negro, A.
The high-pressure behavior of an Al- and Fe-rich natural orthopyroxene Sample: P = 9.562 GPa
American Mineralogist, 2008, 93, 644-652
9002295 CIFAl0.24 Ca Fe5 H2 K1.29 Mg4.05 Na1.09 O24 Si7.52 Ti0.69C 1 2/m 110.039; 18.068; 5.298
90; 104.81; 90
929.051Oberti, R.; Vannucci, R.; Zanetti, A.; Tiepolo, M.; Brumm, R. C.
A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 29
American Mineralogist, 2000, 85, 407-419
9002300 CIFAl0.24 Ca0.68 F0.04 Fe0.7 H0.88 K0.64 Mg3.4 Na2.1 O23.96 Si7.52 Ti1.14C 1 2/m 19.908; 18.062; 5.307
90; 104.36; 90
920.059Oberti, R.; Vannucci, R.; Zanetti, A.; Tiepolo, M.; Brumm, R. C.
A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 34
American Mineralogist, 2000, 85, 407-419
9010328 CIFAl0.24 Ca0.76 Fe0.76 Na0.24 O6 Si2C 1 2/c 19.734; 8.9103; 5.2682
90; 105.904; 90
439.436Nestola, F.; Tribaudino, M.; Ballaran, T. B.; Liebske, C.; Bruno, M.
The crystal structures of pyroxenes along the jadeite - hedenbergite and jadeite - aegirine joins Sample: Jd24Hde76
American Mineralogist, 2007, 92, 1492-1501
9010473 CIFAl0.24 Ca0.76 Fe0.76 Na0.24 O6 Si2C 1 2/c 19.734; 8.9103; 5.2682
90; 105.904; 90
439.436Nestola, F.; Ballaran, T. B.; Liebske, C.; Thompson, R.; Downs, R. T.
The effect of the hedenbergitic substitution on the compressibility of jadeite Sample: Jd24Hd76, P = 0 GPa
American Mineralogist, 2008, 93, 1005-1013
9010474 CIFAl0.24 Ca0.76 Fe0.76 Na0.24 O6 Si2C 1 2/c 19.641; 8.792; 5.2122
90; 105.391; 90
425.961Nestola, F.; Ballaran, T. B.; Liebske, C.; Thompson, R.; Downs, R. T.
The effect of the hedenbergitic substitution on the compressibility of jadeite Sample: Jd24Hd76, P = 3.87 GPa
American Mineralogist, 2008, 93, 1005-1013
9010475 CIFAl0.24 Ca0.76 Fe0.76 Na0.24 O6 Si2C 1 2/c 19.5525; 8.6648; 5.155
90; 104.972; 90
412.197Nestola, F.; Ballaran, T. B.; Liebske, C.; Thompson, R.; Downs, R. T.
The effect of the hedenbergitic substitution on the compressibility of jadeite Sample: Jd24Hd76, P = 8.76 GPa
American Mineralogist, 2008, 93, 1005-1013
9002291 CIFAl0.24 Ca0.94 F0.04 Fe0.6 H0.96 K1.32 Mg3.75 Na1.15 O23.96 Si7.52 Ti0.89C 1 2/m 19.987; 18.061; 5.298
90; 104.81; 90
923.881Oberti, R.; Vannucci, R.; Zanetti, A.; Tiepolo, M.; Brumm, R. C.
A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 25
American Mineralogist, 2000, 85, 407-419
9002292 CIFAl0.24 Ca0.96 F0.04 Fe0.6 H0.98 K1.29 Mg3.75 Na1.16 O23.96 Si7.52 Ti0.89C 1 2/m 19.987; 18.065; 5.298
90; 104.82; 90
924.043Oberti, R.; Vannucci, R.; Zanetti, A.; Tiepolo, M.; Brumm, R. C.
A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 26
American Mineralogist, 2000, 85, 407-419
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
9001169 CIFAl0.25 Ca2 Fe0.75 H8 Mg0.65 Mn3.05 O18 Si2 Zn2.3C 1 2 15.483; 9.39; 14.51
90; 97.04; 90
741.421Peacor, D. R.; Rouse, R. C.; Bailey, S. W.
Crystal structure of franklinfurnaceite: A tri-dioctahedral zincosilicate intermediate between chlorite and mica
American Mineralogist, 1988, 73, 876-887
9002381 CIFAl0.25 Li0.25 O2 Si0.75P 62 2 25.1609; 5.1609; 5.4574
90; 90; 120
125.883Xu, H.; Heaney, P. J.; Beall, G. H.
Phase transitions induced by solid solution in stuffed derivatives of quartz: A powder synchrotron XRD study of the LiAlSiO4-SiO2 join Sample: x=.50, Li.5Al.5Si1.5O4, beta quartz structure
American Mineralogist, 2000, 85, 971-979
9001922 CIFAl0.252 Ca1.904 F0.726 Fe0.905 H1.566 K0.096 Mg4.083 Mn0.02 Na0.232 O23.274 Si7.788 Ti0.014C 1 2/m 19.855; 18.069; 5.283
90; 104.79; 90
909.575Evans, B. W.; Yang, H.
Fe-Mg order-disorder in tremolite-actinolite-ferro-actinolite at ambient and high temperature Sample: 67-3172, from Carr Fork Mine, Bingham, Utah in cpx hornfels rock
American Mineralogist, 1998, 83, 458-475
9001924 CIFAl0.256 Ca1.856 F0.464 Fe1.133 H1.436 K0.09 Mg3.879 Mn0.02 Na0.286 O23.536 Si7.776 Ti0.02C 1 2/m 19.866; 18.098; 5.284
90; 104.77; 90
912.308Evans, B. W.; Yang, H.
Fe-Mg order-disorder in tremolite-actinolite-ferro-actinolite at ambient and high temperature Sample: 67-3701, from Carr Fork Mine, Bingham, Utah in cpx hornfels rock
American Mineralogist, 1998, 83, 458-475
9001969 CIFAl0.26 Ca O5 Si Ti0.74A 1 2/a 17.0469; 8.6901; 6.5372
90; 113.944; 90
365.876Chrosch, J.; Colombo, M.; Malcherek, T.; Salje, E. K. H.; Groat, L. A.; Bismayer, U.
Thermal annealing behaviour of radiation damaged titanite Sample is heated Cardiff titanite, 1123 K for 3 days
American Mineralogist, 1998, 83, 1083-1091
9001604 CIFAl0.26 Ca0.04 F0.48 Fe1.42 H1.28 K0.2 Li0.74 Mg2.24 Mn0.42 Na2.71 O23.5 Si7.92C 1 2/m 19.79; 17.848; 5.287
90; 104.1; 90
895.975Hawthorne, F. C.; Ungaretti, L.; Oberti, R.; Cannillo, E.
The mechanism of Li incorporation in amphiboles Sample: A2
American Mineralogist, 1994, 79, 443-451
9001605 CIFAl0.26 Ca0.04 F0.48 Fe1.42 H1.28 K0.2 Li0.74 Mg2.24 Mn0.42 Na2.71 O23.5 Si7.92C 1 2/m 19.822; 17.836; 5.286
90; 104.37; 90
897.056Hawthorne, F. C.; Ungaretti, L.; Oberti, R.; Cannillo, E.
The mechanism of Li incorporation in amphiboles Sample: A3 Note: Site occupancies are set to be the same as ones in sample A2
American Mineralogist, 1994, 79, 443-451
9001337 CIFAl0.27 Ca0.52 Fe0.24 Mg0.66 Mn0.01 Na0.29 O6 Si2 Ti0.01C 1 2/c 19.644; 8.82; 5.256
90; 107.04; 90
427.449Oberti, R.; Caporuscio, F. A.
Crystal chemistry of clinopyroxenes from mantle eclogites: A study of the key role of the M2 site population by means of crystal-structure refinement sample SBB 39, Di52Jd27, diopside - jadeite join
American Mineralogist, 1991, 76, 1141-1152
9013280 CIFAl0.27 Ca2 Cu0.03 H3 Mg0.09 Mn2.511 O14 Si3 V0.009P 1 21/m 18.959; 6.072; 10.218
90; 110.75; 90
519.794Nagashima, M.; Rahmoun, N. S.; Alekseev, E. V.; Geiger, C. A.; Armbruster, T.; Akasaka, M.
Crystal chemistry of macfallite: Relationships to sursassite and pumpellyite
American Mineralogist, 2008, 93, 1851-1857
9010035 CIFAl0.272 F1.6 Fe3.04 H0.4 K0.236 Li0.63 Mg0.46 Mn0.73 Na2.647 O22.4 Si7.728 Ti0.07 Zn0.07C 1 2/m 19.792; 17.935; 5.314
90; 103.85; 90
906.109Hawthorne, F. C.; Ungaretti, L.; Oberti, R.; Bottazzi, P.; Czamanske, G. K.
Li: an important component in igneous alkali amphiboles Sample: A(5), ferro-fluor-leakeite
American Mineralogist, 1993, 78, 733-745
9003339 CIFAl0.276 Ca2 Fe1.724 O5P n m a5.4071; 14.6949; 5.5941
90; 90; 90
444.489Redhammer, G. J.; Tippelt, G.; Roth, G.; Amthauer, G.
Structural variations in the brownmillerite series Ca2(Fe2-xAlx)O5: Single-crystal X-ray diffraction at 25 deg C and high temperature X-ray powder diffraction (25 C <= T <= 1000 C) Sample: bht025_2
American Mineralogist, 2004, 89, 405-420
9001336 CIFAl0.28 Ca0.65 Fe0.13 Mg0.65 Na0.26 O6 Si2 Ti0.01C 1 2/c 19.654; 8.831; 5.255
90; 106.52; 90
429.519Oberti, R.; Caporuscio, F. A.
Crystal chemistry of clinopyroxenes from mantle eclogites: A study of the key role of the M2 site population by means of crystal-structure refinement sample SBB 3H, Di64Jd26, diopside - jadeite join
American Mineralogist, 1991, 76, 1141-1152
1538110 CIFAl0.28 F1.6 Fe3.1 H0.4 K0.24 Li0.63 Mg0.46 Mn0.73 Na2.66 O22.4 Si7.72 Zn0.08C 1 2/m 19.792; 17.935; 5.314
90; 103.85; 90
906.109Hawthorne, F.C.; Ungaretti, L.; Bottazzi, P.; Czamanske, G.K.; Oberti, R.
Li: An important component in igneous alkali amphiboles
American Mineralogist, 1993, 78, 733-745
9001935 CIFAl0.282 Ca1.736 F0.048 Fe2.823 H1.894 K0.024 Mg1.979 Mn0.336 Na0.176 O23.952 Si7.792 Ti0.006C 1 2/m 19.89; 18.194; 5.306
90; 104.62; 90
923.841Evans, B. W.; Yang, H.
Fe-Mg order-disorder in tremolite-actinolite-ferro-actinolite at ambient and high temperature Sample: C59, AMNH 44973, from Cumberland, Rhode Island in a quartzite after heating at 700 C
American Mineralogist, 1998, 83, 458-475
9002185 CIFAl0.283 H12.9 Na0.19 O20.12 Si9C 1 2/m 117.583; 17.695; 7.408
90; 116.52; 90
2062.34Wust, T.; Stolz, J.; Armbruster, T.
Partially dealuminated heulandite produced by acidic REECl3 solution: A chemical and single-crystal X-ray study Sample: DEHY323 Tetrahedral sites were refined as Si
American Mineralogist, 1999, 84, 1126-1134
9002010 CIFAl0.29 O2 Pb0.5 Si0.71C 1 2/m 18.448; 13.057; 7.166
90; 115.25; 90
714.926Benna, P.; Tribaudino, M.; Bruno, E.
High-temperature in situ structural investigation on lead feldspar Sample at T = 700 C, split Pb atom model
American Mineralogist, 1999, 84, 120-129
9001934 CIFAl0.294 Ca1.772 F0.048 Fe2.757 H1.836 K0.022 Mg2.049 Mn0.316 Na0.192 O23.952 Si7.756 Ti0.004C 1 2/m 19.884; 18.189; 5.302
90; 104.6; 90
922.415Evans, B. W.; Yang, H.
Fe-Mg order-disorder in tremolite-actinolite-ferro-actinolite at ambient and high temperature Sample: AMNH 44973, from Cumberland, Rhode Island in a quartzite
American Mineralogist, 1998, 83, 458-475
9010037 CIFAl0.296 Ca0.72 F1.6 Fe1.72 H0.4 K0.166 Li0.08 Mg2.57 Mn0.63 Na1.864 O22.4 Si7.704 Ti0.04 Zn0.04C 1 2/m 19.861; 18.05; 5.288
90; 104.22; 90
912.377Hawthorne, F. C.; Ungaretti, L.; Oberti, R.; Bottazzi, P.; Czamanske, G. K.
Li: an important component in igneous alkali amphiboles Sample: A(7), magnesio-ferri-fluor-katophorite
American Mineralogist, 1993, 78, 733-745
9016536 CIFAl0.3 B3 Fe6.87 H3.12 K0.2 Mg1.83 Na0.8 O31 Si6R 3 m :H16.186; 16.186; 7.444
90; 90; 120
1688.95Grice, J. D.; Ercit, T. S.; Hawthorne, F. C.
Povondraite, a redefinition of the tourmaline ferridravite Note: Atomic parameters updated by Grice on 11/20/2001
American Mineralogist, 1993, 78, 433-436
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
9002184 CIFAl0.302 H28.74 Na0.38 O24.46 Si9C 1 2/m 117.611; 17.933; 7.398
90; 116.29; 90
2094.75Wust, T.; Stolz, J.; Armbruster, T.
Partially dealuminated heulandite produced by acidic REECl3 solution: A chemical and single-crystal X-ray study Sample: REE100 Tetrahedral sites were refined as Si
American Mineralogist, 1999, 84, 1126-1134
9003057 CIFAl0.312 Ca2 Fe2.688 H4 O14 Si3A 1 2/m 18.8879; 6.058; 19.3321
90; 97.498; 90
1032Artioli, G.; Geiger, C. A.; Dapiaggi, M.
The crystal chemistry of julgoldite-Fe3+ from Bombay, India, studied using synchrotron X-ray powder diffraction and 57Fe Mossbauer spectroscopy
American Mineralogist, 2003, 88, 1084-1090
9001228 CIFAl0.318 Ca3 Fe1.682 O12 Si2.88I a -3 d12.057; 12.057; 12.057
90; 90; 90
1752.74Lager, G. A.; Armbruster, T.; Rotella, F. J.; Rossman, G. R.
OH substitution in garnets: X-ray and neutron diffraction, infrared, and geometric-modeling studies sample SB-1
American Mineralogist, 1989, 74, 840-851
9001338 CIFAl0.32 Ca0.55 Fe0.15 Mg0.65 Na0.3 O6 Si2 Ti0.01C 1 2/c 19.628; 8.808; 5.254
90; 106.88; 90
426.36Oberti, R.; Caporuscio, F. A.
Crystal chemistry of clinopyroxenes from mantle eclogites: A study of the key role of the M2 site population by means of crystal-structure refinement sample SBB 25, Di55Jd30, diopside - jadeite join
American Mineralogist, 1991, 76, 1141-1152
9002299 CIFAl0.32 Ca0.84 F0.02 Fe0.5 H2 K0.42 Mg4.13 Na2.13 O23.98 Si7.44 Ti0.69C 1 2/m 19.922; 18.047; 5.297
90; 104.37; 90
918.818Oberti, R.; Vannucci, R.; Zanetti, A.; Tiepolo, M.; Brumm, R. C.
A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 33
American Mineralogist, 2000, 85, 407-419
9002290 CIFAl0.32 Ca0.9 Fe H1.2 K1.29 Mg3.4 Na1.22 O24 Si7.44 Ti0.84C 1 2/m 110.022; 18.075; 5.3
90; 104.77; 90
928.359Oberti, R.; Vannucci, R.; Zanetti, A.; Tiepolo, M.; Brumm, R. C.
A Crystal Chemical re-evaluation of amphibole/melt and amphibole/clinopyroxene DTi values in petrogenetic studies SAMPLE 24
American Mineralogist, 2000, 85, 407-419
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
9010033 CIFAl0.328 F1.7 Fe2.98 H0.3 K0.238 Li0.64 Mg0.54 Mn0.7 Na2.662 O22.3 Si7.672 Ti0.08 Zn0.06C 1 2/m 19.792; 17.934; 5.313
90; 103.87; 90
905.81Hawthorne, F. C.; Ungaretti, L.; Oberti, R.; Bottazzi, P.; Czamanske, G. K.
Li: an important component in igneous alkali amphiboles Sample: A(3), ferro-fluor-leakeite
American Mineralogist, 1993, 78, 733-745
9002183 CIFAl0.33 H28.74 Na0.39 O25.14 Si9C 1 2/m 117.649; 17.98; 7.412
90; 116.22; 90
2110.03Wust, T.; Stolz, J.; Armbruster, T.
Partially dealuminated heulandite produced by acidic REECl3 solution: A chemical and single-crystal X-ray study Sample: REE293 Tetrahedral sites were refined as Si
American Mineralogist, 1999, 84, 1126-1134
9002380 CIFAl0.33 Li0.33 O2 Si0.67P 62 2 25.2102; 5.2102; 5.4551
90; 90; 120
128.246Xu, H.; Heaney, P. J.; Beall, G. H.
Phase transitions induced by solid solution in stuffed derivatives of quartz: A powder synchrotron XRD study of the LiAlSiO4-SiO2 join Sample: x=.33, Li.67Al.67Si1.33O4, beta quartz structure
American Mineralogist, 2000, 85, 971-979
9003547 CIFAl0.337 Cr1.606 Fe0.326 Mg0.694 Mn0.006 Ni0.004 O4 Ti0.002 V0.002F d -3 m :28.3043; 8.3043; 8.3043
90; 90; 90
572.676Bosi, F.; Andreozzi, G. B.; Ferrini, V.; Lucchesi, S.
Behavior of cation vacany in kenotetrahedral Cr-spinels from Albanian eastern belt ophiolites Sample: Ba2y, Provenance is Bater, Bulqiza massif, Sequence is cumulate
American Mineralogist, 2004, 89, 1367-1373
9001134 CIFAl0.34 Fe1.66 K Li3 Na1.96 O30 Si12P 6/m c c10.009; 10.009; 14.006
90; 90; 120
1215.14Armbruster, T.; Oberhansli, R.
Crystal chemistry of double-ring silicates: Structures of sugilite and brannockite Note: x-coordinate of Na has been corrected
American Mineralogist, 1988, 73, 595-600
9010325 CIFAl0.35 Fe0.65 Na O6 Si2C 1 2/c 19.5663; 8.704; 5.2733
90; 107.6; 90
418.529Nestola, F.; Tribaudino, M.; Ballaran, T. B.; Liebske, C.; Bruno, M.
The crystal structures of pyroxenes along the jadeite - hedenbergite and jadeite - aegirine joins Sample: Jd35Ae65
American Mineralogist, 2007, 92, 1492-1501
9003545 CIFAl0.355 Cr1.55 Fe0.369 Mg0.704 Mn0.006 Ni0.004 O4 Si0.001 Ti0.004 V0.002F d -3 m :28.3101; 8.3101; 8.3101
90; 90; 90
573.877Bosi, F.; Andreozzi, G. B.; Ferrini, V.; Lucchesi, S.
Behavior of cation vacany in kenotetrahedral Cr-spinels from Albanian eastern belt ophiolites Sample: Ba4c, Provenance is Bater, Bulqiza massif, Sequence is cumulate
American Mineralogist, 2004, 89, 1367-1373
9003492 CIFAl0.357 Ca0.16 O4 Si1.643I m m a20.041; 23.814; 12.869
90; 90; 90
6141.81Zanardi, S.; Cruciani, G.; Alberti, A.; Galli, E.
Dehydration and rehydration process in boggsite: an in-situ X-ray single-crystal study Note: Ca represents an unknown distribution across the Ca sites of [Ca.806,Mg.138,Na.041,K.007,Fe.006,Sr.001] Note: Reported occupancies are discrepant with reported formula. Sample: BOG-500, T = 500 C
American Mineralogist, 2004, 89, 1033-1042
9001386 CIFAl0.36 Be2.64 Ca1.38 K Na0.02 O30 Si12 Y0.62P 6/m c c10.34; 10.34; 13.758
90; 90; 120
1273.88Hawthorne, F. C.; Kimata, M.; Cerny, P.; Ball, N. A.; Rossman, G. R.; Grice, J. D.
The crystal chemistry of the milarite-group minerals sample #37 from Strange Lake
American Mineralogist, 1991, 76, 1836-1856
9002025 CIFAl0.36 Cr0.28 Mg3.68 O12 Si4.68I 41/a11.512; 11.512; 11.515
90; 90; 90
1526.04Nakatsuka, A.; Yoshiasa, A.; Yamanaka, T.; Ito, E.
Structure refinement of birefringent Cr-bearing majorite Mg3(Mg.34Si.34Al.18Cr.14)2Si3O12
American Mineralogist, 1999, 84, 199-202
9003535 CIFAl0.364 Cr1.552 Fe0.467 Mg0.597 Mn0.008 O4 Ti0.004 V0.004F d -3 m :28.3133; 8.3133; 8.3133
90; 90; 90
574.54Bosi, F.; Andreozzi, G. B.; Ferrini, V.; Lucchesi, S.
Behavior of cation vacany in kenotetrahedral Cr-spinels from Albanian eastern belt ophiolites Sample: N10a, Provenance is Bulqize, Bulqiza massif, Sequence is tectonite
American Mineralogist, 2004, 89, 1367-1373
9003340 CIFAl0.365 Ca2 Fe1.635 O5P n m a5.4027; 14.6779; 5.5923
90; 90; 90
443.471Redhammer, G. J.; Tippelt, G.; Roth, G.; Amthauer, G.
Structural variations in the brownmillerite series Ca2(Fe2-xAlx)O5: Single-crystal X-ray diffraction at 25 deg C and high temperature X-ray powder diffraction (25 C <= T <= 1000 C) Sample: bht030_3
American Mineralogist, 2004, 89, 405-420
9003537 CIFAl0.368 Cr1.564 Fe0.424 Mg0.624 Mn0.007 O4 Ti0.002F d -3 m :28.3081; 8.3081; 8.3081
90; 90; 90
573.463Bosi, F.; Andreozzi, G. B.; Ferrini, V.; Lucchesi, S.
Behavior of cation vacany in kenotetrahedral Cr-spinels from Albanian eastern belt ophiolites Sample: Thkv1a, Provenance is Thekna, Bulqiza massif, Sequence is tectonite
American Mineralogist, 2004, 89, 1367-1373
9003541 CIFAl0.378 Cr1.536 Fe0.394 Mg0.667 Mn0.007 Ni0.004 O4 Si0.001 Ti0.002 V0.002 Zn0.002F d -3 m :28.3057; 8.3057; 8.3057
90; 90; 90
572.966Bosi, F.; Andreozzi, G. B.; Ferrini, V.; Lucchesi, S.
Behavior of cation vacany in kenotetrahedral Cr-spinels from Albanian eastern belt ophiolites Sample: Thkv2w, Provenance is Thekna, Bulqiza massif, Sequence is tectonite
American Mineralogist, 2004, 89, 1367-1373
9003772 CIFAl0.38 Be1.06 Ca1.71 Fe5.61 Mg0.12 Na0.29 O20 Si4.56 Sn0.03 Ti0.24P -110.322; 10.729; 8.8624
105.802; 96.185; 124.758
731.673Grew, E. S.; Barbier, J.; Britten, J.; Yates, M. G.; Polyakov, V. O.; Shcherbakova, E. P.; Halenius, U.; Shearer, C. K.
Makarochkinite, Ca2Fe2+4Fe3+TiSi4BeAlO20, a new beryllosilicate member of the aenigmatite-sapphirine-surinamite group from the Il'men Mountains (southern Urals), Russia Sample: N86
American Mineralogist, 2005, 90, 1402-1412
9017089 CIFAl0.38 Fe0.3 Ni0.32I m -3 m3.0214; 3.0214; 3.0214
90; 90; 90
27.582Bindi, L.; Yao, N.; Lin, C.; Hollister, L. S.; MacPherson, G. J.; Poirier, G. R.; Andronicos, C. L.; Distler, V. V.; Eddy, M. P.; Kostin, A.; Kryachko, V.; Steinhardt, W. M.; Yudovskaya, M.
Steinhardtite, a new body-centered-cubic allotropic form of aluminum from the Khatyrka CV3 carbonaceous chondrite
American Mineralogist, 2014, 99, 2433-2436
9000598 CIFAl0.384 Ca0.72 Cr2.238 Fe3.43 La0.33 Mg0.92 O38 Ti12.474 U0.05 V0.21 Zr0.58R -3 :R9.117; 9.117; 9.117
69.07; 69.07; 69.07
637.788Gatehouse, B. M.; Grey, I. E.; Campbell, I. H.; Kelly, P. R.
The crystal structure of loveringite - a new member of the crichtonite group
American Mineralogist, 1978, 63, 28-36
9003538 CIFAl0.387 Cr1.552 Fe0.402 Mg0.632 Mn0.006 O4 Ti0.002 V0.004F d -3 m :28.3033; 8.3033; 8.3033
90; 90; 90
572.469Bosi, F.; Andreozzi, G. B.; Ferrini, V.; Lucchesi, S.
Behavior of cation vacany in kenotetrahedral Cr-spinels from Albanian eastern belt ophiolites Sample: Thkv1w, Provenance is Thekna, Bulqiza massif, Sequence is tectonite
American Mineralogist, 2004, 89, 1367-1373
9003542 CIFAl0.388 Cr1.548 Fe0.4 Mg0.648 Mn0.006 O4 Si0.001 Ti0.002 V0.002F d -3 m :28.3071; 8.3071; 8.3071
90; 90; 90
573.256Bosi, F.; Andreozzi, G. B.; Ferrini, V.; Lucchesi, S.
Behavior of cation vacany in kenotetrahedral Cr-spinels from Albanian eastern belt ophiolites Sample: N2h, Provenance is Bulqize, Bulqiza massif, Sequence is tectonite
American Mineralogist, 2004, 89, 1367-1373
9000947 CIFAl0.39 Ca2 H3 Mn2.61 O14 Si3P 1 21/m 110.235; 6.086; 8.97
90; 110.75; 90
522.5Moore, P. B.; Shen, J.; Araki, T.
Crystal chemistry of the (M2)3+ phi2 sheet: Structural principles and crystal structures of ruizite, macfallite and orientite
American Mineralogist, 1985, 70, 171-181
9003536 CIFAl0.393 Cr1.5 Fe0.469 Mg0.608 Mn0.009 Ni0.002 O4 Ti0.006F d -3 m :28.3091; 8.3091; 8.3091
90; 90; 90
573.67Bosi, F.; Andreozzi, G. B.; Ferrini, V.; Lucchesi, S.
Behavior of cation vacany in kenotetrahedral Cr-spinels from Albanian eastern belt ophiolites Sample: N7g, Provenance is Bulqize, Bulqiza massif, Sequence is tectonite
American Mineralogist, 2004, 89, 1367-1373
9003531 CIFAl0.393 Cr1.582 Fe0.34 Mg0.59 Mn0.003 Ni0.004 O4 Si0.002 Ti0.004 V0.004F d -3 m :28.2743; 8.2743; 8.2743
90; 90; 90
566.492Bosi, F.; Andreozzi, G. B.; Ferrini, V.; Lucchesi, S.
Behavior of cation vacany in kenotetrahedral Cr-spinels from Albanian eastern belt ophiolites Sample: Tro6f, Provenance is Tropoja massif, Sequence is cumulate
American Mineralogist, 2004, 89, 1367-1373
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
1538106 CIFAl0.4 Ca0.26 F1.4 Fe1.69 K0.16 Li0.06 Mg3.25 Na2.1 O22.6 Si7.6C 1 2/m 19.795; 17.993; 5.28
90; 104.53; 90
900.792Hawthorne, F.C.; Oberti, R.; Ungaretti, L.; Czamanske, G.K.; Bottazzi, P.
Li: An important component in igneous alkali amphiboles
American Mineralogist, 1993, 78, 733-745
9010032 CIFAl0.4 Ca0.95 F1.36 Fe1.24 H0.18 K0.169 Li0.06 Mg3.16 Mn0.16 Na1.469 O22.64 Si7.6 Ti0.05 Zn0.33C 1 2/m 19.808; 17.993; 5.284
90; 104.54; 90
902.63Hawthorne, F. C.; Ungaretti, L.; Oberti, R.; Bottazzi, P.; Czamanske, G. K.
Li: an important component in igneous alkali amphiboles Sample: A(2), magnesio-ferri-fluor-katophorite
American Mineralogist, 1993, 78, 733-745
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
9000055 CIFAl0.4 Ca1.7 K0.1 Mg0.5 Na0.2 O7 Si2P -4 21 m7.789; 7.789; 5.018
90; 90; 90
304.435Smith, J. V.
Reexamination of the crystal structure of melilite
American Mineralogist, 1953, 38, 643-661
9001230 CIFAl0.404 Ca3 Fe1.596 O12 Si2.58I a -3 d12.106; 12.106; 12.106
90; 90; 90
1774.2Lager, G. A.; Armbruster, T.; Rotella, F. J.; Rossman, G. R.
OH substitution in garnets: X-ray and neutron diffraction, infrared, and geometric-modeling studies sample SB-3
American Mineralogist, 1989, 74, 840-851
9003532 CIFAl0.406 Cr1.524 Fe0.396 Mg0.643 Mn0.006 Ni0.002 O4 Ti0.006F d -3 m :28.2991; 8.2991; 8.2991
90; 90; 90
571.601Bosi, F.; Andreozzi, G. B.; Ferrini, V.; Lucchesi, S.
Behavior of cation vacany in kenotetrahedral Cr-spinels from Albanian eastern belt ophiolites Sample: Shb4b, Provenance is Shebenik massif, Sequence is cumulate
American Mineralogist, 2004, 89, 1367-1373
9003341 CIFAl0.408 Ca2 Fe1.592 O5P n m a5.3986; 14.6631; 5.591
90; 90; 90
442.585Redhammer, G. J.; Tippelt, G.; Roth, G.; Amthauer, G.
Structural variations in the brownmillerite series Ca2(Fe2-xAlx)O5: Single-crystal X-ray diffraction at 25 deg C and high temperature X-ray powder diffraction (25 C <= T <= 1000 C) Sample: bht035_1
American Mineralogist, 2004, 89, 405-420
9002186 CIFAl0.412 H25.12 Na0.26 O39.1 Si18C 1 2/m 117.608; 17.656; 7.414
90; 116.42; 90
2064.18Wust, T.; Stolz, J.; Armbruster, T.
Partially dealuminated heulandite produced by acidic REECl3 solution: A chemical and single-crystal X-ray study Sample: DEHY378
American Mineralogist, 1999, 84, 1126-1134
9010031 CIFAl0.416 Ca0.25 F1.4 Fe1.22 K0.148 Li0.06 Mg3.24 Mn0.43 Na2.104 O22.6 Si7.584 Ti0.05C 1 2/m 19.795; 17.993; 5.28
90; 104.53; 90
900.792Hawthorne, F. C.; Ungaretti, L.; Oberti, R.; Bottazzi, P.; Czamanske, G. K.
Li: an important component in igneous alkali amphiboles Sample: A(1), magnesio-ferri-fluor-oxy-katophorite
American Mineralogist, 1993, 78, 733-745
9003824 CIFAl0.42 Ca2.97 Cr0.152 Fe1.025 Hf0.008 Mg0.124 O12 Sc0.154 Si1.899 Ti0.654 V0.004 Zr0.584I a -3 d12.331; 12.331; 12.331
90; 90; 90
1874.97Galuskina, I. O.; Galuskin, E. V.; Dzierzanowski, P.; Armbruster, T.; Kozanecki, M.
A natural scandian garnet
American Mineralogist, 2005, 90, 1688-1692
9003539 CIFAl0.422 Cr1.506 Fe0.367 Mg0.643 Mn0.004 Ni0.004 O4 Ti0.004 V0.002F d -3 m :28.2793; 8.2793; 8.2793
90; 90; 90
567.52Bosi, F.; Andreozzi, G. B.; Ferrini, V.; Lucchesi, S.
Behavior of cation vacany in kenotetrahedral Cr-spinels from Albanian eastern belt ophiolites Sample: Shb2m, Provenance is Shebenik massif, Sequence is tectonite
American Mineralogist, 2004, 89, 1367-1373
9004015 CIFAl0.43 Ca1.92 Cu0.01 Fe0.26 H4 Mg0.2 Mn0.15 Na0.08 O14 Si2.91 Ti0.02 V2.04C 1 2/m 119.2889; 6.0444; 8.8783
90; 97.328; 90
1026.67Brigatti, M. F.; Caprilli, E.; Marchesini, M.
Poppiite, the V3+ end-member of the pumpellyite group: Description and crystal structure Locality: Gambatesa mine, val Graveglia, Genova, Northern Italy
American Mineralogist, 2006, 91, 584-588
9003543 CIFAl0.438 Cr1.474 Fe0.384 Mg0.682 Mn0.006 Ni0.004 O4 Si0.002 Ti0.004 V0.002F d -3 m :28.3006; 8.3006; 8.3006
90; 90; 90
571.911Bosi, F.; Andreozzi, G. B.; Ferrini, V.; Lucchesi, S.
Behavior of cation vacany in kenotetrahedral Cr-spinels from Albanian eastern belt ophiolites Sample: Shkm1i, Provenance is Shkalla, Bulqiza massif, Sequence is tectonite
American Mineralogist, 2004, 89, 1367-1373
9003342 CIFAl0.441 Ca2 Fe1.559 O5P n m a5.3936; 14.6476; 5.5899
90; 90; 90
441.621Redhammer, G. J.; Tippelt, G.; Roth, G.; Amthauer, G.
Structural variations in the brownmillerite series Ca2(Fe2-xAlx)O5: Single-crystal X-ray diffraction at 25 deg C and high temperature X-ray powder diffraction (25 C <= T <= 1000 C) Sample: bht040_2
American Mineralogist, 2004, 89, 405-420
9003540 CIFAl0.444 Cr1.5 Fe0.378 Mg0.637 Mn0.006 Ni0.004 O4 Si0.001 Ti0.002 V0.004F d -3 m :28.2902; 8.2902; 8.2902
90; 90; 90
569.764Bosi, F.; Andreozzi, G. B.; Ferrini, V.; Lucchesi, S.
Behavior of cation vacany in kenotetrahedral Cr-spinels from Albanian eastern belt ophiolites Sample: Shb4f, Provenance is Shebenik massif, Sequence is cumulate
American Mineralogist, 2004, 89, 1367-1373
9003544 CIFAl0.451 Cr1.466 Fe0.414 Mg0.646 Mn0.007 Ni0.004 O4 Ti0.004F d -3 m :28.2982; 8.2982; 8.2982
90; 90; 90
571.415Bosi, F.; Andreozzi, G. B.; Ferrini, V.; Lucchesi, S.
Behavior of cation vacany in kenotetrahedral Cr-spinels from Albanian eastern belt ophiolites Sample: Shkm3g, Provenance is Shkalla, Bulqiza massif, Sequence is tectonite
American Mineralogist, 2004, 89, 1367-1373
9003343 CIFAl0.46 Ca2 Fe1.54 O5P n m a5.3876; 14.6302; 5.5877
90; 90; 90
440.432Redhammer, G. J.; Tippelt, G.; Roth, G.; Amthauer, G.
Structural variations in the brownmillerite series Ca2(Fe2-xAlx)O5: Single-crystal X-ray diffraction at 25 deg C and high temperature X-ray powder diffraction (25 C <= T <= 1000 C) Sample: bf80i_2
American Mineralogist, 2004, 89, 405-420
1538379 CIFAl0.47 Ca2.9 Fe0.33 Mg0.08 Mn0.02 O12 Si3 V1.2I a -3 d12.011; 12.011; 12.011
90; 90; 90
1732.76Novak, G.A.; Gibbs, G.V.
The crystal chemistry of the silicate garnets
American Mineralogist, 1971, 56, 791-823
9015443 CIFAl0.474 Ca3 Fe1.746 Hf0.016 Nb0.038 O12 Sc0.018 Si0.51 Sn0.192 Ti0.426 U0.212 Zr1.356I a -3 d12.5965; 12.5965; 12.5965
90; 90; 90
1998.71Galuskina, I. O.; Galuskin, E. V.; Armbruster, T.; Lazic, B.; Kusz, J.; Dzierzanowski, P.; Gazeev, V. M.; Pertsev, N. N.; Prusik, K.; Zadov, A. E.; Winiarski, A.; Wrzalik, R.; Gurbanov, A. G.
Elbrusite-(Zr) - A new uranian garnet from the Upper Chegem caldera, Kabardino-Balkaria, Northern Caucasus, Russia
American Mineralogist, 2010, 95, 1172-1181
9002730 CIFAl0.479 B4 Be0.818 Ca4.604 Ce0.352 Dy0.002 Eu0.002 F0.49 Fe0.377 Gd0.008 H0.544 La0.09 Li0.038 Mg0.047 Mn0.016 Nd0.19 O22.544 Pr0.054 Si4 Sm0.02 Th0.628 Ti0.097 U0.034 Y0.016P 1 2/a 119.059; 4.729; 10.291
90; 111.33; 90
863.993Della Ventura, G.; Bonazzi, P.; Oberti, R.; Ottolini, L.
Ciprianiite and mottanaite-(Ce), two new minerals of the hellandite group from Latium (Italy)
American Mineralogist, 2002, 87, 739-744
1531310 CIFAl0.48 B4 Be0.82 Ca4.6 Ce0.74 F0.49 Fe0.4 H0.54 Li0.04 Mg0.05 O23.51 Si4 Th0.66 Ti0.1P 1 2/a 119.059; 4.729; 10.291
90; 111.33; 90
863.993della Ventura, G.; Bonazzi, P.; Oberti, R.; Ottolini, L.
Ciprianiite and Mottanaite-(Ce), two new minerals of the Hellandite group from Latium (Italy)
American Mineralogist, 2002, 87, 739-744
9003771 CIFAl0.48 Be Ca1.77 Fe5.145 Mg0.225 Mn0.04 Na0.19 Nb0.07 O20 Si4.52 Sn0.02 Ti0.54P -110.373; 10.768; 8.878
105.794; 96.183; 124.934
737.315Grew, E. S.; Barbier, J.; Britten, J.; Yates, M. G.; Polyakov, V. O.; Shcherbakova, E. P.; Halenius, U.; Shearer, C. K.
Makarochkinite, Ca2Fe2+4Fe3+TiSi4BeAlO20, a new beryllosilicate member of the aenigmatite-sapphirine-surinamite group from the Il'men Mountains (southern Urals), Russia Sample: 3319
American Mineralogist, 2005, 90, 1402-1412
9001385 CIFAl0.48 Be2.52 Ca1.532 K Na0.048 O30 Si12 Y0.468P 6/m c c10.342; 10.342; 13.777
90; 90; 120
1276.13Hawthorne, F. C.; Kimata, M.; Cerny, P.; Ball, N. A.; Rossman, G. R.; Grice, J. D.
The crystal chemistry of the milarite-group minerals sample #36 from Jaguaracu
American Mineralogist, 1991, 76, 1836-1856
9000238 CIFAl0.48 Ca2.91 Fe0.32 Mg0.09 O12 Si3 V1.2I a -3 d12.011; 12.011; 12.011
90; 90; 90
1732.76Novak, G. A.; Gibbs, G. V.
The crystal chemistry of the silicate garnets sample Go
American Mineralogist, 1971, 56, 791-823
9004055 CIFAl0.49 B8 Be0.54 Ca8.6 Ce1.1 F0.24 Fe0.35 H1.76 Li0.3 O37.76 Si6 Th0.3 Ti0.16P 1 2/a 128.097; 4.777; 10.236
90; 96.81; 90
1364.18Boiocchi, M.; Callegari, A.; Ottolini, L.
The crystal structure of piergorite-(Ce), Ca8Ce2(Al0.5Fe3+0.5)Sum1(X,Li,Be)2Si6B8O36(OH,F)2: A new borosilicate from Vetralla, Italy, with a modified hellandite-type chain
American Mineralogist, 2006, 91, 1170-1177
9001229 CIFAl0.496 Ca3 Fe1.504 O12 Si2.745I a -3 d12.085; 12.085; 12.085
90; 90; 90
1764.98Lager, G. A.; Armbruster, T.; Rotella, F. J.; Rossman, G. R.
OH substitution in garnets: X-ray and neutron diffraction, infrared, and geometric-modeling studies sample SB-2
American Mineralogist, 1989, 74, 840-851
9002729 CIFAl0.497 B4 Be1.18 Ca4.372 Ce0.772 Eu0.002 F0.49 Fe0.384 Gd0.006 H0.544 La0.456 Li0.026 Mg0.035 Nd0.142 O22.544 Pr0.068 Si4 Sm0.008 Th0.152 Ti0.07 U0.016 Y0.006P 1 2/a 119.032; 4.746; 10.248
90; 110.97; 90
864.351Della Ventura, G.; Bonazzi, P.; Oberti, R.; Ottolini, L.
Ciprianiite and mottanaite-(Ce), two new minerals of the hellandite group from Latium (Italy)
American Mineralogist, 2002, 87, 739-744
1531309 CIFAl0.5 B3.99 Be1.18 Ca4.37 Ce1.46 F0.53 Fe0.38 H0.43 Li0.02 Mg0.03 O23.47 Si3.98 Th0.17 Ti0.07P 1 2/a 119.032; 4.746; 10.248
90; 110.97; 90
864.351della Ventura, G.; Bonazzi, P.; Oberti, R.; Ottolini, L.
Ciprianiite and Mottanaite-(Ce), two new minerals of the Hellandite group from Latium (Italy)
American Mineralogist, 2002, 87, 739-744
9010503 CIFAl0.5 Cl0.392 K Mg2.722 O11.608 Si3.5C 1 2/m 15.299; 9.167; 10.226
90; 100.06; 90
489.1Nazzareni, S.; Comodi, P.; Bindi, L.; Safonov, O. G.; Litvin, Y. A.; Perchuk, L. L.
Synthetic hypersilicic Cl-bearing mica in the phlogopite-celadonite join: a mulitmethodical characterization of the missing link between di- and tri- octahedral micas at high pressures
American Mineralogist, 2008, 93, 1429-1436
9016634 CIFAl0.5 Nb0.5 O2C 1 2/m 112.1545; 3.735; 6.4884
90; 107.62; 90
280.735Ardit, M.; Dondi, M.; Cruciani, G.
Structural stability, cation ordering, and local relaxation along the AlNbO4-Al0.5Cr0.5NbO4 join Note: Sample label: N00
American Mineralogist, 2012, 97, 910-917
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
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
9004003 CIFAl0.51 Ca1.13 Fe0.04 H2 K0.01 Mg4.21 Mn1.04 Na0.48 O24 Si7.52C 1 2/m 19.7807; 18.0548; 5.2928
90; 104.19; 90
906.13Oberti, R.; Camara, F.; Della Ventura, G.; Iezzi, G.; Benimoff, A. I.
Parvo-mangano-edenite, parvo-manganotremolite, and the solid solution between Ca and Mn2+ at the M4 site in amphiboles Locality: amphibole, Grenville marble, Arnold open pit, St Lawrence Co, New York, USA Sample: 1104 Note: A and B occupancies invented to match formula
American Mineralogist, 2006, 91, 526-532
9001339 CIFAl0.52 Ca0.47 Fe0.07 Mg0.46 Na0.41 O6 Si2 Ti0.01C 1 2/c 19.561; 8.73; 5.249
90; 107; 90
418.977Oberti, R.; Caporuscio, F. A.
Crystal chemistry of clinopyroxenes from mantle eclogites: A study of the key role of the M2 site population by means of crystal-structure refinement sample SBB 61, Di47Jd40, diopside - jadeite join
American Mineralogist, 1991, 76, 1141-1152
9010476 CIFAl0.52 Ca0.47 Fe0.48 Na0.53 O6 Si2C 1 2/c 19.6031; 8.7735; 5.2656
90; 106.725; 90
424.874Nestola, F.; Ballaran, T. B.; Liebske, C.; Thompson, R.; Downs, R. T.
The effect of the hedenbergitic substitution on the compressibility of jadeite Sample: Jd53Hd47, P = 0 GPa
American Mineralogist, 2008, 93, 1005-1013
9010477 CIFAl0.52 Ca0.47 Fe0.48 Na0.53 O6 Si2C 1 2/c 19.5135; 8.6765; 5.2158
90; 106.317; 90
413.191Nestola, F.; Ballaran, T. B.; Liebske, C.; Thompson, R.; Downs, R. T.
The effect of the hedenbergitic substitution on the compressibility of jadeite Sample: Jd53Hd47, P = 3.65 GPa
American Mineralogist, 2008, 93, 1005-1013
9010478 CIFAl0.52 Ca0.47 Fe0.48 Na0.53 O6 Si2C 1 2/c 19.4632; 8.617; 5.1857
90; 106.097; 90
406.286Nestola, F.; Ballaran, T. B.; Liebske, C.; Thompson, R.; Downs, R. T.
The effect of the hedenbergitic substitution on the compressibility of jadeite Sample: Jd53Hd47, P = 6.09 GPa
American Mineralogist, 2008, 93, 1005-1013
9010327 CIFAl0.52 Ca0.47 Fe0.51 Na0.53 O6 Si2C 1 2/c 19.6031; 8.7735; 5.2656
90; 106.725; 90
424.874Nestola, F.; Tribaudino, M.; Ballaran, T. B.; Liebske, C.; Bruno, M.
The crystal structures of pyroxenes along the jadeite - hedenbergite and jadeite - aegirine joins Sample: Jd53Hd47
American Mineralogist, 2007, 92, 1492-1501
9002211 CIFAl0.52 Ca1.82 Mg4.98 Na0.14 O24 Si7.68C 1 2/m 19.816; 18.04; 5.2775
90; 104.741; 90
903.783Sharma, A.; Jenkins, D. M.
Hydrothermal synthesis of amphiboles along the tremolite-pargasite join and in the ternary system tremolite-pargasite-cummingtonite Sample: PARG 18-3
American Mineralogist, 1999, 84, 1304-1318
9002634 CIFAl0.538 Ca3 Cr1.462 O12 Si3I -111.965; 11.965; 11.965
90; 90.14; 90.01
1712.92Wildner, M.; Andrut, M.
The crystal chemistry of birefringent natural uvarovites: Part II. Single-crystal X-ray structures Sample: Sar-k12
American Mineralogist, 2001, 86, 1231-1251
9003770 CIFAl0.54 Be0.9 Ca1.69 Fe5.19 Mg0.25 Mn0.1 Na0.21 Nb0.04 O20 Si4.49 Ta0.01 Ti0.59P -110.355; 10.751; 8.873
105.757; 96.227; 124.861
735.302Grew, E. S.; Barbier, J.; Britten, J.; Yates, M. G.; Polyakov, V. O.; Shcherbakova, E. P.; Halenius, U.; Shearer, C. K.
Makarochkinite, Ca2Fe2+4Fe3+TiSi4BeAlO20, a new beryllosilicate member of the aenigmatite-sapphirine-surinamite group from the Il'men Mountains (southern Urals), Russia Sample: 400shch6
American Mineralogist, 2005, 90, 1402-1412
9001383 CIFAl0.54 Be2.46 Ca2 H8 K Na0.448 O30.92 Si12P 6/m c c10.415; 10.415; 13.763
90; 90; 120
1292.89Hawthorne, F. C.; Kimata, M.; Cerny, P.; Ball, N. A.; Rossman, G. R.; Grice, J. D.
The crystal chemistry of the milarite-group minerals sample #35 from east Siberia Note: U(1,2) of WatB/NaB changed to match symmetry constraints
American Mineralogist, 1991, 76, 1836-1856
9000546 CIFAl0.55 B4 Ca2.616 Fe0.45 H2 O24 Si4 Y2.622P 1 2/a 118.99; 4.715; 10.3
90; 111.4; 90
858.657Mellini, M.; Merlino, S.
Hellandite: a new type of silicoborate chain
American Mineralogist, 1977, 62, 89-99
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
9003344 CIFAl0.552 Ca2 Fe1.448 O5I 2 m b5.3808; 14.6131; 5.5911
90; 90; 90
439.629Redhammer, G. J.; Tippelt, G.; Roth, G.; Amthauer, G.
Structural variations in the brownmillerite series Ca2(Fe2-xAlx)O5: Single-crystal X-ray diffraction at 25 deg C and high temperature X-ray powder diffraction (25 C <= T <= 1000 C) Sample: bht55_1
American Mineralogist, 2004, 89, 405-420
9003533 CIFAl0.552 Cr1.362 Fe0.481 Mg0.586 Mn0.007 Ni0.004 O4 Ti0.006F d -3 m :28.2915; 8.2915; 8.2915
90; 90; 90
570.032Bosi, F.; Andreozzi, G. B.; Ferrini, V.; Lucchesi, S.
Behavior of cation vacany in kenotetrahedral Cr-spinels from Albanian eastern belt ophiolites Sample: Tro4f, Provenance is Tropoja massif, Sequence is tectonite
American Mineralogist, 2004, 89, 1367-1373
9002657 CIFAl0.56 Ca1.62 Cl0.02 F1.98 Fe0.3 K0.15 Mg4.74 Mn0.04 Na0.85 O22 Si7.44C 1 2/m 19.846; 18.009; 5.277
90; 104.77; 90
904.781Gianfagna, A.; Oberti, R.
Fluoro-edenite from Biancavilla (Catania, Sicily, Italy): Crystal chemistry of a new amphibole end-member
American Mineralogist, 2001, 86, 1489-1493
9000146 CIFAl0.57 H1.4 Mg1.705 O7.86 Si1.43C 1 2/c 15.349; 9.255; 28.89
90; 97.12; 90
1419.17Shirozu, H.; Bailey, S. W.
Crystal structure of a two-layer Mg-vermiculite
American Mineralogist, 1966, 51, 1124-1143
9003534 CIFAl0.575 Cr1.346 Fe0.429 Mg0.631 Mn0.006 Ni0.002 O4 Ti0.006 V0.004F d -3 m :28.2864; 8.2864; 8.2864
90; 90; 90
568.981Bosi, F.; Andreozzi, G. B.; Ferrini, V.; Lucchesi, S.
Behavior of cation vacany in kenotetrahedral Cr-spinels from Albanian eastern belt ophiolites Sample: Tro4j, Provenance is Tropoja massif, Sequence is tectonite
American Mineralogist, 2004, 89, 1367-1373
9002635 CIFAl0.577 Ca3 Cr1.423 O12 Si3F d d d :211.959; 16.958; 16.958
90; 90; 90
3439.09Wildner, M.; Andrut, M.
The crystal chemistry of birefringent natural uvarovites: Part II. Single-crystal X-ray structures Sample: Sar-899
American Mineralogist, 2001, 86, 1231-1251
9001340 CIFAl0.58 Ca0.45 Fe0.07 Mg0.4 Na0.47 O6 Si1.97 Ti0.01C 1 2/c 19.551; 8.724; 5.247
90; 106.97; 90
418.159Oberti, R.; Caporuscio, F. A.
Crystal chemistry of clinopyroxenes from mantle eclogites: A study of the key role of the M2 site population by means of crystal-structure refinement sample SBB 37, Di45Jd48, diopside - jadeite join
American Mineralogist, 1991, 76, 1141-1152
9010369 CIFAl0.58 Ca3 Cr0.48 O12 Si3 V0.94I a -3 d12.001; 12.001; 12.001
90; 90; 90
1728.43Uher, P.; Kovacik, M.; Kubis, M.; Shtukenberg, A.; Ozdin, D.
Metamorphic vanadian-chromian silicate mineralization in carbon-rich amphicole schists from the Male Karpaty Mountains, Western Carpathians, Slovakia Locality: Pezinok-Pernek crystalline complex, Male Karpaty Mountains, Slovakia
American Mineralogist, 2008, 93, 63-73
9001308 CIFAl0.58 H0.668 K O6.25 Si1.42I 41/a m d :27.141; 7.141; 17.307
90; 90; 90
882.551Rouse, R. C.; Dunn, P. J.; Grice, J. D.; Schlenker, J. L.; Higgins, J. B.
Montesommaite, (K,Na)9Al9Si23O64.10H2O, a new zeolite related to merlinoite and the gismondine group
American Mineralogist, 1990, 75, 1415-1420
9002006 CIFAl0.58 O4 Pb Si1.42C 1 2/m 18.448; 13.057; 7.166
90; 115.25; 90
714.926Benna, P.; Tribaudino, M.; Bruno, E.
High-temperature in situ structural investigation on lead feldspar Sample at T = 700 C, single Pb atom model
American Mineralogist, 1999, 84, 120-129
9002007 CIFAl0.58 O4 Pb0.5 Si1.42I 1 2/c 18.402; 13.043; 14.308
90; 115.3; 90
1417.58Benna, P.; Tribaudino, M.; Bruno, E.
High-temperature in situ structural investigation on lead feldspar Sample at T = 20 C, split Pb atom model
American Mineralogist, 1999, 84, 120-129
9002008 CIFAl0.58 O4 Pb0.5 Si1.42I 1 2/c 18.422; 13.045; 14.31
90; 115.34; 90
1420.9Benna, P.; Tribaudino, M.; Bruno, E.
High-temperature in situ structural investigation on lead feldspar Sample at T = 230 C, split Pb atom model
American Mineralogist, 1999, 84, 120-129
9002009 CIFAl0.58 O4 Pb0.5 Si1.42I 1 2/c 18.44; 13.051; 14.325
90; 115.33; 90
1426.2Benna, P.; Tribaudino, M.; Bruno, E.
High-temperature in situ structural investigation on lead feldspar Sample at T = 465 C, split Pb atom model
American Mineralogist, 1999, 84, 120-129
9003345 CIFAl0.59 Ca2 Fe1.41 O5I 2 m b5.3832; 14.6214; 5.5916
90; 90; 90
440.114Redhammer, G. J.; Tippelt, G.; Roth, G.; Amthauer, G.
Structural variations in the brownmillerite series Ca2(Fe2-xAlx)O5: Single-crystal X-ray diffraction at 25 deg C and high temperature X-ray powder diffraction (25 C <= T <= 1000 C) Sample: bht50_2
American Mineralogist, 2004, 89, 405-420
9016910 CIFAl0.596 Ca1.42 H2 Mg4.74 Na0.6 O24 Si7.824C 1 2/m 19.8076; 18.0004; 5.2804
90; 104.575; 90
902.206Jenkins, D. M.; Della Ventura, G.; Oberti, R.; Bozhilov, K.
Synthesis and characterization of amphiboles along the tremolite-glaucophane join Note: Sample WIN 9-1
American Mineralogist, 2013, 98, 588-600
1538114 CIFAl0.6 Ca0.72 F1.6 Fe1.88 H0.4 K0.18 Li0.08 Mg2.58 Mn0.54 Na1.88 O22.4 Si7.4C 1 2/m 19.861; 18.05; 5.288
90; 104.22; 90
912.377Hawthorne, F.C.; Oberti, R.; Ungaretti, L.; Bottazzi, P.; Czamanske, G.K.
Li: An important component in igneous alkali amphiboles
American Mineralogist, 1993, 78, 733-745
9016335 CIFAl0.6 K1.26 Na2.22 Nb1.29 O31 Ta9.11C 2 2 217.224; 17.687; 3.9361
90; 90; 90
1199.1Atencio, D.; Contreira, R. R.; Mills, S. J.; Coutinho, J. M. V.; Honorato, S. B.; Ayala, A. P.; Ellena, J.; De Andrade, M. B.
Rankamaite from the Urubu pegmatite, Itinga, Minas Gerais, Brazil: Crystal chemistry and Rietveld refinement Note: Identification of OH not reported
American Mineralogist, 2011, 96, 1455-1460
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
9016911 CIFAl0.618 Ca1.42 H2 Mg4.88 Na0.65 O24 Si7.712C 1 2/m 19.7739; 17.9636; 5.2659
90; 104.423; 90
895.418Jenkins, D. M.; Della Ventura, G.; Oberti, R.; Bozhilov, K.
Synthesis and characterization of amphiboles along the tremolite-glaucophane join Note: Sample WIN 4-2
American Mineralogist, 2013, 98, 588-600
9017099 CIFAl0.62 Ca0.11 F0.03 Fe0.486 H1.97 K0.067 Mg3.884 Mn0.01 Na2.829 O23.97 Si8C 1 2/m 19.8087; 17.8448; 5.2905
90; 103.66; 90
899.826Oberti, R.; Boiocchi, M.; Hawthorne, F. C.; Ball, N. A.; Harlow, G. E.
Eckermannite revised: The new holotype from the Jade Mine Tract, Myanmar-crystal structure, mineral data, and hints on the reasons for the rarity of eckermannite Note: Sample AMNH H108401
American Mineralogist, 2015, 100, 909-914
9000387 CIFAl0.62 Fe8 Mg0.45 Mn2.98 Na O44 Si11.92 Ti0.08P -110.17; 9.774; 9.589
91.22; 70.76; 108.09
851.947Wenk, H. R.
Howieite, a new type of chain silicate
American Mineralogist, 1974, 59, 86-97
9000149 CIFAl0.64 Ca0.98 Fe0.22 Mg0.57 Mn0.01 Na0.01 O6 Si1.5 Ti0.07C 1 2/c 19.794; 8.906; 5.319
90; 105.9; 90
446.202Peacor, D. R.
Refinement of the crystal structure of a pyroxene of formula M1M2(Si1.5Al0.5)O6
American Mineralogist, 1967, 52, 31-41
9001590 CIFAl0.65 H2 Li0.33 Mn O4R -3 m :H2.9247; 2.9247; 28.169
90; 90; 120
208.672Post, J. E.; Appleman, D. E.
Crystal structure refinement of lithiophorite Note: U(1,2) for Mn/Al/Li/O2 have been altered to match symmetry constraints.
American Mineralogist, 1994, 79, 370-374
9001384 CIFAl0.651 Be2.349 Ca2 H8 K Na0.348 O30.94 Si12P 6/m c c10.396; 10.396; 13.781
90; 90; 120
1289.86Hawthorne, F. C.; Kimata, M.; Cerny, P.; Ball, N. A.; Rossman, G. R.; Grice, J. D.
The crystal chemistry of the milarite-group minerals sample #30 from Rossing
American Mineralogist, 1991, 76, 1836-1856
9003346 CIFAl0.663 Ca2 Fe1.337 O5I 2 m b5.3714; 14.5805; 5.5847
90; 90; 90
437.381Redhammer, G. J.; Tippelt, G.; Roth, G.; Amthauer, G.
Structural variations in the brownmillerite series Ca2(Fe2-xAlx)O5: Single-crystal X-ray diffraction at 25 deg C and high temperature X-ray powder diffraction (25 C <= T <= 1000 C) Sample: bht070_1
American Mineralogist, 2004, 89, 405-420
9001341 CIFAl0.68 Ca0.45 Fe0.03 Mg0.37 Na0.55 O6 Si1.92C 1 2/c 19.545; 8.713; 5.246
90; 106.9; 90
417.445Oberti, R.; Caporuscio, F. A.
Crystal chemistry of clinopyroxenes from mantle eclogites: A study of the key role of the M2 site population by means of crystal-structure refinement sample SBB 2H, Di46Jd55, diopside - jadeite join
American Mineralogist, 1991, 76, 1141-1152
9014509 CIFAl0.68 H0.68 O2 Si0.32P b n m4.72318; 8.9148; 2.77276
90; 90; 90
116.75Kanzaki, M.
Crystal structure of a new high-pressure polymorph of topaz-OH P = 14 GPa, T = 1400 C
American Mineralogist, 2010, 95, 1349-1352
1200006 CIFAl0.7 Ca Fe0.2 Mg0.6 O6 Si1.5C 1 2/c 19.794; 8.906; 5.319
90; 105.9; 90
446.2Peacor, D R
Refinement of the Crystal Structure of a Pyroxene of Formula M1 M2 (Si1.5 Al.5) O6
American Mineralogist, 1967, 52, 31-41
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
9016073 CIFAl0.706 Ca0.154 H3.27 Na0.592 O5.635 Si1.294P m n b10.1035; 9.7819; 10.1523
90; 90; 90
1003.37Gatta, G. D.; Birch, W. D.; Rotiroti, N.
Reinvestigation of the crystal structure of the zeolite gobbinsite: a single-crystal x-ray diffraction study
American Mineralogist, 2010, 95, 481-486
9001865 CIFAl0.72 Ca0.12 H0.333 Na0.068 O6.69 Si2.28A m m a13.72; 17.6808; 17.4461
90; 90; 90
4232.08Cruciani, G.; Artioli, G.; Gualtieri, A.; Stahl, K.; Hanson, J. C.
Dehydration dynamics of stilbite using synchrotron X-ray powder diffraction Sample: at T = 441 K
American Mineralogist, 1997, 82, 729-739
9001762 CIFAl0.72 F0.08 Fe0.69 H1.86 K0.99 Mg2.64 O11.92 Si2.92 Ti0.03C 1 2/m 15.338; 9.247; 10.3
90; 99.96; 90
500.751Brigatti, M. F.; Medici, L.; Saccani, E.; Vaccaro, C.
Crystal chemistry and petrologic significance of Fe3±rich phlogopite from the Tapira carbonatite complex, Brazil Sample: Tpq16-4A
American Mineralogist, 1996, 81, 913-927
9002192 CIFAl0.72 Mg3.64 O12 Si3.64I a -3 d11.4891; 11.4891; 11.4891
90; 90; 90
1516.56Nakatsuka A; Yoshiasa A; Yamanaka T; Ohtaka O; Katsura T; Ito E
Symmetry change of majorite solid-solution in the system Mg3Al2Si3O12-MgSiO3 Sample: x = .64
American Mineralogist, 1999, 84, 1135-1143
9002195 CIFAl0.72 Mg3.64 O12 Si3.64I 41/a c d :211.4891; 11.4891; 11.4891
90; 90; 90
1516.56Nakatsuka, A.; Yoshiasa, A.; Yamanaka, T.; Ohtaka, O.; Katsura, T.; Ito, E.
Symmetry change of majorite solid-solution in the system Mg3Al2Si3O12-MgSiO3 Sample: x = .64
American Mineralogist, 1999, 84, 1135-1143
9000060 CIFAl0.721 Fe0.24 H3 Mg1.338 O9 Si1.36C 1 c 15.33; 9.18; 28.9
90; 97; 90
1403.52Mathieson, A. M.; Walker, G. F.
Crystal structure of magnesium-vermiculite
American Mineralogist, 1954, 39, 231-255
9001382 CIFAl0.729 Be2.271 Ca1.968 H4.48 K Na0.24 O30.72 Si12 Y0.032P 6/m c c10.404; 10.404; 13.825
90; 90; 120
1295.97Hawthorne, F. C.; Kimata, M.; Cerny, P.; Ball, N. A.; Rossman, G. R.; Grice, J. D.
The crystal chemistry of the milarite-group minerals sample #33 from Tittling Note: U(1,2) of WatB/NaB/KC changed to match symmetry constraints
American Mineralogist, 1991, 76, 1836-1856
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
9010324 CIFAl0.74 Fe0.26 Na O6 Si2C 1 2/c 19.4781; 8.618; 5.2449
90; 107.57; 90
408.429Nestola, F.; Tribaudino, M.; Ballaran, T. B.; Liebske, C.; Bruno, M.
The crystal structures of pyroxenes along the jadeite - hedenbergite and jadeite - aegirine joins Sample: Jd74Ae26
American Mineralogist, 2007, 92, 1492-1501
9001405 CIFAl0.75 Ca0.436 H4.63 O5.57 Si1.25I -4 m 29.8712; 9.8712; 10.2987
90; 90; 90
1003.51Artioli, G.
The crystal structure of garronite sample from Fara Vicentina, Italy
American Mineralogist, 1992, 77, 189-196
9001033 CIFAl0.758 Ca0.286 Fe0.082 Mg0.205 Na0.602 O6 Si2C 1 2/c 19.501; 8.654; 5.238
90; 107.23; 90
411.35McCormick, T. C.
Crystal-chemical aspects of nonstoichiometric pyroxenes Sample: Vacancy model I
American Mineralogist, 1986, 71, 1434-1440
9001034 CIFAl0.758 Ca0.286 Fe0.082 Mg0.205 Na0.602 O6 Si2C 1 2/c 19.501; 8.654; 5.238
90; 107.23; 90
411.35McCormick, T. C.
Crystal-chemical aspects of nonstoichiometric pyroxenes Sample: Vacancy model II
American Mineralogist, 1986, 71, 1434-1440
9004004 CIFAl0.76 Ca Fe0.04 H2 K0.02 Mg4.56 Mn1.27 Na0.64 O24 Si7.36 Ti0.01C 1 2/m 19.795; 18.047; 5.2869
90; 104.28; 90
905.691Oberti, R.; Camara, F.; Della Ventura, G.; Iezzi, G.; Benimoff, A. I.
Parvo-mangano-edenite, parvo-manganotremolite, and the solid solution between Ca and Mn2+ at the M4 site in amphiboles Sample: 1079 Note: A and B occupancies invented to match formula
American Mineralogist, 2006, 91, 526-532
9014885 CIFAl0.76 Cr0.24 Nb O4C 1 2/m 112.1886; 3.7748; 6.5033
90; 107.72; 90
285.018Ardit, M.; Dondi, M.; Cruciani, G.
Structural stability, cation ordering, and local relaxation along the AlNbO4-Al0.5Cr0.5NbO4 join Note: Sample label: N37
American Mineralogist, 2012, 97, 910-917
9015325 CIFAl0.76 Cr0.24 Nb O4C 1 2/m 112.1881; 3.7726; 6.5033
90; 107.7; 90
284.872Ardit, M.; Dondi, M.; Cruciani, G.
Structural stability, cation ordering, and local relaxation along the AlNbO4-Al0.5Cr0.5NbO4 join Note: Sample label: N25
American Mineralogist, 2012, 97, 910-917
9001273 CIFAl0.76 H10 O12.247 Si3.24I m m a20.236; 23.798; 12.798
90; 90; 90
6163.21Pluth, J. J.; Smith, J. V.
Crystal structure of boggsite, a new high-silica zeolite with the first three-dimensional channel system bounded by both 12- and 10-rings
American Mineralogist, 1990, 75, 501-507
9001967 CIFAl0.78 Ba0.94 O36.94 P3 V5.22I -4 3 m15.47; 15.47; 15.47
90; 90; 90
3702.29Medrano, M. D.; Evans, H. T.; Wenk, H. R.; Piper, D. Z.
Phosphovanadylite: A new vanadium phosphate mineral with a zeolite-type structure
American Mineralogist, 1998, 83, 889-895
9015086 CIFAl0.78 Ca1.5 H54.64 O45.32 P3 V5.22I -4 3 m15.441; 15.441; 15.441
90; 90; 90
3681.51Kampf, A. R.; Nash, B. P.; Loomis, T. A.
Phosphovanadylite-Ca, Ca[V44+P2O8(OH)8]*12H2O, the Ca analogue of phosphovanadylite-Ba
American Mineralogist, 2013, 98, 439-443
9003347 CIFAl0.789 Ca2 Fe1.211 O5I 2 m b5.3569; 14.5407; 5.5735
90; 90; 90
434.137Redhammer, G. J.; Tippelt, G.; Roth, G.; Amthauer, G.
Structural variations in the brownmillerite series Ca2(Fe2-xAlx)O5: Single-crystal X-ray diffraction at 25 deg C and high temperature X-ray powder diffraction (25 C <= T <= 1000 C) Sample: bht120_6
American Mineralogist, 2004, 89, 405-420
9015800 CIFAl0.798 B3 Cr5.322 F0.46 H2.67 Mg2.073 Na O30.54 Si5.898 Ti0.039 V0.87R 3 m :H16.1121; 16.1121; 7.3701
90; 90; 120
1656.95Bosi, F.; Reznitskii, L.; Skogby, H.
Oxy-chromium-dravite, NaCr3(Cr4Mg2)(Si6O18)(BO3)3(OH)3O, a new mineral species of the tourmaline supergroup
American Mineralogist, 2012, 97, 2024-2030
9000790 CIFAl0.8 Fe0.42 Mg2.58 Na0.55 O12 Si3.2C 1 2/m 15.312; 9.163; 9.825
90; 103.18; 90
465.624Spear, F. S.; Hazen, R. M.; Rumble, D.
Wonesite: A new rock-forming silicate from the Post Pond Volcanics, Vermont
American Mineralogist, 1981, 66, 100-105
9001381 CIFAl0.81 Be2.19 Ca2 H3.52 K Na0.188 O30.668 Si12P 6/m c c10.41; 10.41; 13.845
90; 90; 120
1299.35Hawthorne, F. C.; Kimata, M.; Cerny, P.; Ball, N. A.; Rossman, G. R.; Grice, J. D.
The crystal chemistry of the milarite-group minerals sample #25 from Guanajuato Note: U(1,2) of WatB/NaB changed to match symmetry constraints
American Mineralogist, 1991, 76, 1836-1856
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
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
9002429 CIFAl0.816 As2 Ca Fe0.354 H3 Mg0.784 Mn0.046 O10C 1 2/m 18.925; 6.143; 7.352
90; 115.25; 90
364.57Brugger, J.; Meisser, N.; Schenk, K.; Berlepsch, P.; Bonin, M.; Armbruster, T.; Nyfeler, D.; Schmidt, S.
Description and crystal structure of cabalzarite Ca(Mg,Al,Fe)2(AsO4)2(H2O,OH)2, a new mineral of the tsumcorite group
American Mineralogist, 2000, 85, 1307-1314
9014158 CIFAl0.82 Ca3 Cr1.15 O12 Si3 Ti0.03I a -3 d11.9204; 11.9204; 11.9204
90; 90; 90
1693.84Righter, K.; Sutton, S.; Danielson, L.; Pando, K.; Schmidt, G.; Yang, H.; Berthet, S.; Newville, M.; Choi, Y.; Downs, R. T.; Malavergne, V.
The effect of fO2 on the partitioning and valence of V and Cr in garnet/melt pairs and the relation to terrestrial mantle V and Cr content Note: R060477
American Mineralogist, 2011, 96, 1278-1290
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
9002169 CIFAl0.83 B4 Be0.74 Ca4.2 Ce0.66 F0.5 Fe0.65 H0.5 La0.3 Li0.24 Mg0.11 Nd0.24 O23.5 Pr0.06 Si4 Th0.36 Ti0.41 U0.06 Y0.12P 1 2/a 119.068; 4.745; 10.289
90; 111.18; 90
868.041Oberti, R.; Ottolini, L.; Camara, F.; Della Ventura, G.
Crystal structure of non-metamict Th-rich hellandite-(Ce) from Latium (Italy) and crystal chemistry of the hellandite-group minerals
American Mineralogist, 1999, 84, 913-921
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
9002430 CIFAl0.84 As2 Ca Fe0.08 H3 Mg0.82 Mn0.26 O10C 1 2/m 18.9284; 6.1314; 7.3439
90; 115.494; 90
362.886Brugger, J.; Meisser, N.; Schenk, K.; Berlepsch, P.; Bonin, M.; Armbruster, T.; Nyfeler, D.; Schmidt, S.
Description and crystal structure of cabalzarite Ca(Mg,Al,Fe)2(AsO4)2(H2O,OH)2, a new mineral of the tsumcorite group
American Mineralogist, 2000, 85, 1307-1314
9000301 CIFAl0.86 Ca Mg0.39 O6 Si1.27 Ti0.48C 1 2/c 19.8; 8.85; 5.36
90; 105.62; 90
447.704Dowty, E.; Clark, J. R.
Crystal structure refinement and optical properties of a Ti3+ fassaite from the Allende Meteorite
American Mineralogist, 1973, 58, 230-242
9010163 CIFAl0.865 Fe0.255 H4 Mg2.292 O9 Si1.588C 1 2/m 15.3363; 9.24; 14.37
90; 96.93; 90
703.371Zanazzi, P. F.; Montagnoli, M.; Nazzareni, S.; Comodi, P.
Structural effects of pressure on monoclinic chlorite: a single-crystal study
American Mineralogist, 2007, 92, 655-661
9010164 CIFAl0.865 Fe0.255 H4 Mg2.292 O9 Si1.588C 1 2/m 15.327; 9.227; 14.23
90; 96.9; 90
694.37Zanazzi, P. F.; Montagnoli, M.; Nazzareni, S.; Comodi, P.
Structural effects of pressure on monoclinic chlorite: a single-crystal study
American Mineralogist, 2007, 92, 655-661
9010165 CIFAl0.865 Fe0.255 H4 Mg2.292 O9 Si1.588C 1 2/m 15.304; 9.19; 14.2
90; 96.9; 90
687.148Zanazzi, P. F.; Montagnoli, M.; Nazzareni, S.; Comodi, P.
Structural effects of pressure on monoclinic chlorite: a single-crystal study
American Mineralogist, 2007, 92, 655-661
9010166 CIFAl0.865 Fe0.255 H4 Mg2.292 O9 Si1.588C 1 2/m 15.293; 9.168; 14.19
90; 96.79; 90
683.757Zanazzi, P. F.; Montagnoli, M.; Nazzareni, S.; Comodi, P.
Structural effects of pressure on monoclinic chlorite: a single-crystal study
American Mineralogist, 2007, 92, 655-661
9010167 CIFAl0.865 Fe0.255 H4 Mg2.292 O9 Si1.588C 1 2/m 15.27; 9.132; 14.11
90; 96.77; 90
674.318Zanazzi, P. F.; Montagnoli, M.; Nazzareni, S.; Comodi, P.
Structural effects of pressure on monoclinic chlorite: a single-crystal study
American Mineralogist, 2007, 92, 655-661
9010168 CIFAl0.865 Fe0.255 H4 Mg2.292 O9 Si1.588C 1 2/m 15.252; 9.103; 14.08
90; 96.71; 90
668.539Zanazzi, P. F.; Montagnoli, M.; Nazzareni, S.; Comodi, P.
Structural effects of pressure on monoclinic chlorite: a single-crystal study
American Mineralogist, 2007, 92, 655-661
9010169 CIFAl0.865 Fe0.255 H4 Mg2.292 O9 Si1.588C 1 2/m 15.237; 9.078; 14
90; 96.64; 90
661.116Zanazzi, P. F.; Montagnoli, M.; Nazzareni, S.; Comodi, P.
Structural effects of pressure on monoclinic chlorite: a single-crystal study
American Mineralogist, 2007, 92, 655-661
9003348 CIFAl0.866 Ca2 Fe1.134 O5I 2 m b5.351; 14.5256; 5.5685
90; 90; 90
432.82Redhammer, G. J.; Tippelt, G.; Roth, G.; Amthauer, G.
Structural variations in the brownmillerite series Ca2(Fe2-xAlx)O5: Single-crystal X-ray diffraction at 25 deg C and high temperature X-ray powder diffraction (25 C <= T <= 1000 C) Sample: bht095_2
American Mineralogist, 2004, 89, 405-420
9000455 CIFAl0.868 Ca1.03 Fe0.317 Mg0.815 Na0.97 O12 Si4P 1 2/n 19.585; 8.776; 5.26
90; 106.8; 90
423.576Matsumoto, T.; Tokonami, M.; Morimoto, N.
The crystal structure of omphacite
American Mineralogist, 1975, 60, 634-641
9014324 CIFAl0.875 Cr0.125 Nb O4C 1 2/m 112.1724; 3.755; 6.4957
90; 107.67; 90
282.894Ardit, M.; Dondi, M.; Cruciani, G.
Structural stability, cation ordering, and local relaxation along the AlNbO4-Al0.5Cr0.5NbO4 join Note: Sample label: N12
American Mineralogist, 2012, 97, 910-917
9017147 CIFAl0.877 Fe0.123 H24 K0.879 O20 S2 Tl0.121P a -312.203; 12.203; 12.203
90; 90; 90
1817.19Biagioni, C.; Mauro, D.; Pasero, M.; Bonaccorsi, E.; Lepore, G. O.; Zaccarini, F.; Skogby, H.
Crystal-chemistry of sulfates from the Apuan Alps (Tuscany, Italy). VI. Tl-bearing alum-(K) and voltaite from the Fornovolasco mining complex
American Mineralogist, 2020, 105, 1088-1098
9000170 CIFAl0.885 Ca1.165 Fe0.31 Mg0.805 Na0.835 O12 Si4P 1 2 19.596; 8.771; 5.265
90; 106.93; 90
423.932Clark, J. R.; Papike, J. J.
Crystal-chemical characterization of omphacites
American Mineralogist, 1968, 53, 840-868
9000206 CIFAl0.9 Fe3.1 H36 O42 S6P -3 1 c10.922; 10.922; 17.084
90; 90; 120
1764.92Fang, J. H.; Robinson, P. D.
Crystal structures and mineral chemistry of hydrated ferric sulfates. I. The crystal structure of coquimbite
American Mineralogist, 1970, 55, 1534-1540
9003349 CIFAl0.909 Ca2 Fe1.091 O5I 2 m b5.3469; 14.5149; 5.564
90; 90; 90
431.82Redhammer, G. J.; Tippelt, G.; Roth, G.; Amthauer, G.
Structural variations in the brownmillerite series Ca2(Fe2-xAlx)O5: Single-crystal X-ray diffraction at 25 deg C and high temperature X-ray powder diffraction (25 C <= T <= 1000 C) Sample: bht100_2
American Mineralogist, 2004, 89, 405-420
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
9001032 CIFAl0.931 Ca0.229 Fe0.069 Na0.77 O6 Si2C 1 2/c 19.501; 8.654; 5.238
90; 107.23; 90
411.35McCormick, T. C.
Crystal-chemical aspects of nonstoichiometric pyroxenes Sample: Full-occupancy model
American Mineralogist, 1986, 71, 1434-1440
9002636 CIFAl0.939 Ca3 Cr1.061 O12 Si3I -111.925; 11.926; 11.926
90.04; 90.1; 90.04
1696.08Wildner, M.; Andrut, M.
The crystal chemistry of birefringent natural uvarovites: Part II. Single-crystal X-ray structures Sample: Ska-1
American Mineralogist, 2001, 86, 1231-1251
9016072 CIFAl0.94 Cr0.06 Nb O4C 1 2/m 112.162; 3.7454; 6.491
90; 107.64; 90
281.772Ardit, M.; Dondi, M.; Cruciani, G.
Structural stability, cation ordering, and local relaxation along the AlNbO4-Al0.5Cr0.5NbO4 join Note: Sample label: N06
American Mineralogist, 2012, 97, 910-917
9010173 CIFAl0.94 Fe1.2 K0.9 Mg1.35 Na0.06 O12 Si2.84 Ti0.27C 1 2/m 15.3304; 9.2277; 10.1918
90; 100.051; 90
493.614Laurora, A.; Brigatti, M. F.; Mottana, A.; Malferrari, D.; Caprilli, E.
Crystal chemistry of trioctahedral micas in alkaline and subalkaline volcanic rocks: A case study from Mt. Sassetto (Tolfa district, Latium, central Italy) polytype
American Mineralogist, 2007, 92, 468-480
9002001 CIFAl0.95 H4 Na0.9 O6.22 Si2.05I 41/a c d :213.6717; 13.6717; 13.5996
90; 90; 90
2541.97Cruciani, G.; Gualtieri, A.
Dehydration dynamics of analcime by in situ synchrotron powder diffraction Sample at T = 632 K
American Mineralogist, 1999, 84, 112-119
9000485 CIFAl0.96 K O6 Si2.04I 41/a :213.09; 13.09; 13.75
90; 90; 90
2356.04Mazzi, F.; Galli, E.; Gottardi, G.
The crystal structure of tetragonal leucite
American Mineralogist, 1976, 61, 108-115
9002191 CIFAl0.96 Mg3.52 O12 Si3.52I a -3 d11.4876; 11.4876; 11.4876
90; 90; 90
1515.96Nakatsuka A; Yoshiasa A; Yamanaka T; Ohtaka O; Katsura T; Ito E
Symmetry change of majorite solid-solution in the system Mg3Al2Si3O12-MgSiO3 Sample: x = .52
American Mineralogist, 1999, 84, 1135-1143
9002194 CIFAl0.96 Mg3.52 O12 Si3.52I 41/a c d :211.4876; 11.4876; 11.4876
90; 90; 90
1515.96Nakatsuka, A.; Yoshiasa, A.; Yamanaka, T.; Ohtaka, O.; Katsura, T.; Ito, E.
Symmetry change of majorite solid-solution in the system Mg3Al2Si3O12-MgSiO3 Sample: x = .52
American Mineralogist, 1999, 84, 1135-1143
1532100 CIFAl0.98 Fe3.19 H2 K O12 Si2.83C 1 2/m 15.4059; 9.3639; 10.3235
90; 100.2; 90
514.32Redhammer, G.J.; Roth, G.
Single-crystal structure refinements and crystal chemistry of synthetic trioctahedral micas K M3 (Al(3+), Si(3+))4 O10 (O H)2, where M = Ni(2+), Mg(2+), Co(2+), Fe(2+) or Al(3+)
American Mineralogist, 2002, 87, 1464-1476
9001164 CIFAl0.985 Ca0.963 Ce1.037 F0.87 Fe0.148 H Mg1.867 O12.13 Si3P 1 21/m 18.934; 5.721; 10.176
90; 114.3; 90
474.03Peacor, D. R.; Dunn, P. J.
Dollaseite-(Ce) (Magnesium orthite redefined): Structure refinement and implications for F + M2+ substitutions in epidote-group minerals Note: Mg3-x coordinate has been corrected
American Mineralogist, 1988, 73, 838-842
9004002 CIFAl0.985 Ca1.27 Fe0.07 H2 K0.02 Mg4.51 Mn1.005 Na0.74 O24 Si7.08 Ti0.01C 1 2/m 19.826; 18.0487; 5.284
90; 104.55; 90
907.045Oberti, R.; Camara, F.; Della Ventura, G.; Iezzi, G.; Benimoff, A. I.
Parvo-mangano-edenite, parvo-manganotremolite, and the solid solution between Ca and Mn2+ at the M4 site in amphiboles Sample: 1103 Note: A and B occupancies invented to match formula
American Mineralogist, 2006, 91, 526-532
9003350 CIFAl0.986 Ca2 Fe1.014 O5I 2 m b5.3369; 14.4945; 5.5548
90; 90; 90
429.695Redhammer, G. J.; Tippelt, G.; Roth, G.; Amthauer, G.
Structural variations in the brownmillerite series Ca2(Fe2-xAlx)O5: Single-crystal X-ray diffraction at 25 deg C and high temperature X-ray powder diffraction (25 C <= T <= 1000 C) Sample: bht110n1
American Mineralogist, 2004, 89, 405-420
9000155 CIFAl0.99 Cs0.7 Na0.3 O6 Si2.01I a -3 d13.682; 13.682; 13.682
90; 90; 90
2561.23Newnham, R. E.
Crystal structure and optical properties of pollucite
American Mineralogist, 1967, 52, 1515-1518
9013186 CIFAl0.99 Fe0.009 K0.948 Na0.026 O6 Si2.001I 41/a :213.084; 13.084; 13.784
90; 90; 90
2359.7Gatta, G. D.; Rotiroti, N.; Ballaran, T. B.; Pavese, A.
Leucite at high pressure: Elastic behavior, phase stability, and petrological implications Locality: Sabatini volcanic district, Lazium, Italy Note: P = 0.0001 GPa in air
American Mineralogist, 2008, 93, 1588-1596
9013187 CIFAl0.99 Fe0.009 K0.948 Na0.026 O6 Si2.001I 41/a :213.097; 13.097; 13.755
90; 90; 90
2359.42Gatta, G. D.; Rotiroti, N.; Ballaran, T. B.; Pavese, A.
Leucite at high pressure: Elastic behavior, phase stability, and petrological implications Note: P = 0.0001 GPa in diamond cell
American Mineralogist, 2008, 93, 1588-1596
9013188 CIFAl0.99 Fe0.009 K0.948 Na0.026 O6 Si2.001I 41/a :213.053; 13.053; 13.732
90; 90; 90
2339.67Gatta, G. D.; Rotiroti, N.; Ballaran, T. B.; Pavese, A.
Leucite at high pressure: Elastic behavior, phase stability, and petrological implications Note: P = 0.38 GPa
American Mineralogist, 2008, 93, 1588-1596
9013189 CIFAl0.99 Fe0.009 K0.948 Na0.026 O6 Si2.001I 41/a :212.955; 12.955; 13.684
90; 90; 90
2296.61Gatta, G. D.; Rotiroti, N.; Ballaran, T. B.; Pavese, A.
Leucite at high pressure: Elastic behavior, phase stability, and petrological implications Note: P = 1.20 GPa
American Mineralogist, 2008, 93, 1588-1596
9013190 CIFAl0.99 Fe0.009 K0.948 Na0.026 O6 Si2.001I 41/a :212.891; 12.891; 13.653
90; 90; 90
2268.83Gatta, G. D.; Rotiroti, N.; Ballaran, T. B.; Pavese, A.
Leucite at high pressure: Elastic behavior, phase stability, and petrological implications Note: P = 1.77 GPa
American Mineralogist, 2008, 93, 1588-1596
9013191 CIFAl0.99 Fe0.009 K0.948 Na0.026 O6 Si2.001I 41/a :213.073; 13.073; 13.731
90; 90; 90
2346.67Gatta, G. D.; Rotiroti, N.; Ballaran, T. B.; Pavese, A.
Leucite at high pressure: Elastic behavior, phase stability, and petrological implications Note: P = .0001 GPa in air after decompression
American Mineralogist, 2008, 93, 1588-1596
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
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
9002230 CIFAl0.99 H2 Mg2.97 O12 Si3.04 X12C 1 2/m 15.372; 9.291; 14.27
90; 97.34; 90
706.4Guggenheim, S.; Zhan, W.
Crystal structures of two partially dehydrated chlorites: The "modified" chlorite structure
American Mineralogist, 1999, 84, 1415-1421
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
9000762 CIFAl0.999 Ca2.94 Fe0.492 Mg0.38 O12 Si1.509 Ti0.47 Zr1.21I a -3 d12.365; 12.365; 12.365
90; 90; 90
1890.53Munno, R.; Rossi, G.; Tadini, C.
Crystal chemistry of kimzeyite from Stomboli, Aeolian Islands, Italy
American Mineralogist, 1980, 65, 188-191
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
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
9013734 CIFAl1.01 Fe4.06 H10 Mn0.93 Na O24 P4C 1 2/c 125.975; 5.1766; 13.929
90; 111.293; 90
1745.07Kampf, A. R.; Colombo, F.; Gonzalez del Tanago, J.
Gayite, a new dufrenite-group mineral from the Gigante granitic pegmatite, Cordoba province, Argentina Cordoba province, Argentina
American Mineralogist, 2010, 95, 386-391
9010152 CIFAl1.01 H12 O12 Sb Zn1.99P -35.327; 5.327; 9.792
90; 90; 120
240.64Bonaccorsi, E.; Merlino, S.; Orlandi, P.
Zincalstibite, a new mineral, and cualstibite: Crystal chemical and structural relationships Locality: Lucchetti marble quarry, Fantiscritti marble basin, Carrara, Apuan Alps, Tuscany, Italy
American Mineralogist, 2007, 92, 198-203
9000304 CIFAl1.02 K O8 Si2.98C 1 2/m 18.545; 12.967; 7.201
90; 116; 90
717.141Phillips, M. W.; Ribbe, P. H.
The structures of monoclinic potassium-rich feldspars Note: variety adularia
American Mineralogist, 1973, 58, 263-270
9016743 CIFAl1.02 K0.88 Na0.12 O8 Si2.98C 1 2/m 18.545; 12.967; 7.201
90; 116; 90
717.141Phillips, M. W.; Ribbe, P. H.
The structures of monoclinic potassium-rich feldspars Note: variety adularia
American Mineralogist, 1973, 58, 263-270
9001755 CIFAl1.04 Ba0.01 F0.04 Fe0.39 H1.8 K0.96 Mg2.67 Na0.03 O11.96 Si2.84 Ti0.06C 1 2/m 15.33; 9.2346; 10.301
90; 99.92; 90
499.439Brigatti, M. F.; Medici, L.; Saccani, E.; Vaccaro, C.
Crystal chemistry and petrologic significance of Fe3±rich phlogopite from the Tapira carbonatite complex, Brazil Sample: Tas27-2Bb
American Mineralogist, 1996, 81, 913-927
9001759 CIFAl1.04 Ba0.02 Fe0.36 H1.82 K0.93 Mg0.89 Na0.05 O12 Si2.84 Ti1.87C 1 2/m 15.321; 9.211; 10.287
90; 99.93; 90
496.631Brigatti, M. F.; Medici, L.; Saccani, E.; Vaccaro, C.
Crystal chemistry and petrologic significance of Fe3±rich phlogopite from the Tapira carbonatite complex, Brazil Sample: Tae23-1a
American Mineralogist, 1996, 81, 913-927
9002837 CIFAl1.04 Fe0.3 H2 K Mg2.7 O12 Si2.96C 1 2/m 15.3257; 9.2241; 10.3056
90; 99.932; 90
498.673Redhammer, G. J.; Roth, G.
Single-crystal structure refinements and crystal chemistry of synthetic trioctahedral micas KM3(Al,Si)4O10(OH)2, where M = Ni, Mg, Co, Fe, Al Sample: Mga1.6#4
American Mineralogist, 2002, 87, 1464-1476
9002834 CIFAl1.04 Fe0.54 H2 K Mg2.46 O12 Si2.96C 1 2/m 15.3295; 9.2309; 10.3074
90; 99.944; 90
499.466Redhammer, G. J.; Roth, G.
Single-crystal structure refinements and crystal chemistry of synthetic trioctahedral micas KM3(Al,Si)4O10(OH)2, where M = Ni, Mg, Co, Fe, Al Sample: A40#7
American Mineralogist, 2002, 87, 1464-1476
9002836 CIFAl1.04 Fe0.78 H2 K Mg2.22 O12 Si2.96C 1 2/m 15.3409; 9.2536; 10.3087
90; 99.962; 90
501.801Redhammer, G. J.; Roth, G.
Single-crystal structure refinements and crystal chemistry of synthetic trioctahedral micas KM3(Al,Si)4O10(OH)2, where M = Ni, Mg, Co, Fe, Al Sample: Mga1.2#1
American Mineralogist, 2002, 87, 1464-1476
9014532 CIFAl1.04 H3.2 O6 W0.96I -18.196; 9.187; 11.316
92.82; 94.08; 90.23
848.844Grey, I. E.; Madsen, I. C.; Mills, S. J.; Hatert, F.; Peterson, V. K.; Bastow, T. J.
A new type of cubic-stacked layer structure in anthoinite, AlWO3(OH)3
American Mineralogist, 2010, 95, 639-645
9000616 CIFAl1.048 Ba0.05 F1.3 H0.7 K0.76 Mg3 Na0.16 O10.7 Si2.952C 1 2/m 15.26; 9.1; 9.791
90; 100.68; 90
460.538Hazen, R. M.; Finger, L. W.
The crystal structures and compressibilities of layer minerals at high pressure. II. Phlogopite and chlorite P = 35 kbar, sample is from Franklin, New Jersey, USA
American Mineralogist, 1978, 63, 293-296
9000376 CIFAl1.048 Ba0.05 F1.3 H0.7 K0.77 Mg3 Na0.16 O10.7 Si2.952C 1 2/m 15.3078; 9.1901; 10.1547
90; 100.08; 90
487.692Hazen, R. M.; Burnham, C. W.
The crystal structures of one-layer phlogopite and annite
American Mineralogist, 1973, 58, 889-900
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
9003351 CIFAl1.078 Ca2 Fe0.922 O5I 2 m b5.3269; 14.4687; 5.5433
90; 90; 90
427.241Redhammer, G. J.; Tippelt, G.; Roth, G.; Amthauer, G.
Structural variations in the brownmillerite series Ca2(Fe2-xAlx)O5: Single-crystal X-ray diffraction at 25 deg C and high temperature X-ray powder diffraction (25 C <= T <= 1000 C) Sample: bht120n2
American Mineralogist, 2004, 89, 405-420
9001754 CIFAl1.08 Ba0.01 F0.04 Fe0.35 H1.8 K0.96 Mg2.67 Na0.03 O11.96 Si2.84 Ti0.06C 1 2/m 15.318; 9.214; 10.279
90; 100.01; 90
496.004Brigatti, M. F.; Medici, L.; Saccani, E.; Vaccaro, C.
Crystal chemistry and petrologic significance of Fe3±rich phlogopite from the Tapira carbonatite complex, Brazil Sample: Tas27-2Ba
American Mineralogist, 1996, 81, 913-927
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
9001244 CIFAl1.08 Ca1.7 Fe1.718 H2 Mg3.442 Na0.46 O24 Si6.92C 1 2/m 19.829; 18.06; 5.304
90; 104.7; 90
910.704Makino, K.; Tomita, K.
Cation distribution in the octahedral sites of hornblendes sample K-H from Kawanabe, Japan
American Mineralogist, 1989, 74, 1097-1105
9002830 CIFAl1.08 Co1.68 H2 K Ni1.32 O12 Si2.92C 1 2/m 15.3225; 9.2195; 10.3125
90; 99.949; 90
498.433Redhammer, G. J.; Roth, G.
Single-crystal structure refinements and crystal chemistry of synthetic trioctahedral micas KM3(Al,Si)4O10(OH)2, where M = Ni, Mg, Co, Fe, Al Sample: Coni1.8#2 - Co
American Mineralogist, 2002, 87, 1464-1476
9002831 CIFAl1.08 Co3 H2 K O12 Si2.92C 1 2/m 15.338; 9.2465; 10.341
90; 99.977; 90
502.69Redhammer, G. J.; Roth, G.
Single-crystal structure refinements and crystal chemistry of synthetic trioctahedral micas KM3(Al,Si)4O10(OH)2, where M = Ni, Mg, Co, Fe, Al Sample: CoAn#2 - Co Note: Uij's for K altered by Redhammer, 7 Nov, 2002
American Mineralogist, 2002, 87, 1464-1476
9002833 CIFAl1.08 Fe0.3 H2 K Mg2.7 O12 Si2.92C 1 2/m 15.3245; 9.2245; 10.305
90; 99.927; 90
498.561Redhammer, G. J.; Roth, G.
Single-crystal structure refinements and crystal chemistry of synthetic trioctahedral micas KM3(Al,Si)4O10(OH)2, where M = Ni, Mg, Co, Fe, Al Sample: A20#4
American Mineralogist, 2002, 87, 1464-1476
9002832 CIFAl1.08 Fe0.34 H2 K Mg2.66 O12 Si2.92C 1 2/m 15.3257; 9.2254; 10.307
90; 99.926; 90
498.82Redhammer, G. J.; Roth, G.
Single-crystal structure refinements and crystal chemistry of synthetic trioctahedral micas KM3(Al,Si)4O10(OH)2, where M = Ni, Mg, Co, Fe, Al Sample: A20#2
American Mineralogist, 2002, 87, 1464-1476
9002835 CIFAl1.08 Fe0.53 H2 K Mg2.47 O12 Si2.92C 1 2/m 15.3384; 9.2465; 10.3061
90; 99.951; 90
501.071Redhammer, G. J.; Roth, G.
Single-crystal structure refinements and crystal chemistry of synthetic trioctahedral micas KM3(Al,Si)4O10(OH)2, where M = Ni, Mg, Co, Fe, Al Sample: A60#2
American Mineralogist, 2002, 87, 1464-1476
9010171 CIFAl1.08 Fe1.11 K0.87 Mg1.5 Na0.06 O12 Si2.92 Ti0.39C 1 2/m 15.3369; 9.2423; 10.1618
90; 100.222; 90
493.277Laurora, A.; Brigatti, M. F.; Mottana, A.; Malferrari, D.; Caprilli, E.
Crystal chemistry of trioctahedral micas in alkaline and subalkaline volcanic rocks: A case study from Mt. Sassetto (Tolfa district, Latium, central Italy) polytype
American Mineralogist, 2007, 92, 468-480
9010174 CIFAl1.08 Fe1.11 K0.93 Mg1.5 Na0.07 O12 Si2.92 Ti0.39C 1 2/m 15.333; 9.244; 10.152
90; 100.164; 90
492.622Laurora, A.; Brigatti, M. F.; Mottana, A.; Malferrari, D.; Caprilli, E.
Crystal chemistry of trioctahedral micas in alkaline and subalkaline volcanic rocks: A case study from Mt. Sassetto (Tolfa district, Latium, central Italy) polytype
American Mineralogist, 2007, 92, 468-480
9002829 CIFAl1.08 H2 K Mg3 O12 Si2.92C 1 2/m 15.3158; 9.2036; 10.31
90; 99.891; 90
496.914Redhammer, G. J.; Roth, G.
Single-crystal structure refinements and crystal chemistry of synthetic trioctahedral micas KM3(Al,Si)4O10(OH)2, where M = Ni, Mg, Co, Fe, Al Sample: Phl#2 - Mg
American Mineralogist, 2002, 87, 1464-1476
9002828 CIFAl1.08 H2 K Ni3 O12 Si2.92C 1 2/m 15.3023; 9.1804; 10.2911
90; 99.921; 90
493.451Redhammer, G. J.; Roth, G.
Single-crystal structure refinements and crystal chemistry of synthetic trioctahedral micas KM3(Al,Si)4O10(OH)2, where M = Ni, Mg, Co, Fe, Al Sample: NiPhl#6 - Ni
American Mineralogist, 2002, 87, 1464-1476
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
9016902 CIFAl1.09 Ba0.01 Cr0.02 F0.02 Fe0.42 H1.15 K0.94 Mg2.16 Na0.04 O11.83 Si2.96 Ti0.33C 1 2/c 15.3255; 9.2285; 20.1897
90; 94.994; 90
988.484Scordari, F.; Schingaro, E.; Lacalamita, M.; Mesto, E.
Crystal chemistry of trioctahedral micas-2M_1 from Bunyaruguru kamafugite (southwest Uganda) Note: BU3_2
American Mineralogist, 2012, 97, 430-439
9016904 CIFAl1.09 Ba0.01 F0.02 Fe0.58 H K0.94 Mg2 Na0.04 O11.98 Si2.93 Ti0.4C 1 2/c 15.3283; 9.2304; 20.1565
90; 95.131; 90
987.371Scordari, F.; Schingaro, E.; Lacalamita, M.; Mesto, E.
Crystal chemistry of trioctahedral micas-2M_1 from Bunyaruguru kamafugite (southwest Uganda) Note: BU3_10
American Mineralogist, 2012, 97, 430-439
9001347 CIFAl1.092 Ca0.006 Cr0.024 Fe0.282 K0.952 Mg2.424 Mn0.015 Na0.024 O12 Si2.908 Ti0.177C 1 2/m 15.306; 9.19; 10.163
90; 100.11; 90
487.875Brigatti, M. F.; Galli, E.; Poppi, L.
Effect of Ti substitution in biotite-M crystal chemistry Sample 9 from a lamproite rock, Cancarix, Spain
American Mineralogist, 1991, 76, 1174-1183
1524917 CIFAl1.1 B8 Ca5.24 Fe0.9 H8 La2.62 O48 Si8 Y2.62P 1 2/a 118.99; 4.715; 10.3
90; 111.4; 90
858.657Mellini, M.; Merlino, S.
Hellandite: a new type of silicoborate chain
American Mineralogist, 1977, 62, 89-99
9016905 CIFAl1.1 Ba0.01 Ca0.01 Fe0.55 K0.91 Mg2 Na0.04 O11.98 Si2.96 Ti0.38C 1 2/c 15.3307; 9.2315; 20.155
90; 95.095; 90
987.916Scordari, F.; Schingaro, E.; Lacalamita, M.; Mesto, E.
Crystal chemistry of trioctahedral micas-2M_1 from Bunyaruguru kamafugite (southwest Uganda) Note: BU3_12
American Mineralogist, 2012, 97, 430-439
1531082 CIFAl1.1 Ca8 Fe10.7 H14 Mg0.2 O56 Si12A 1 2/m 18.8879; 6.058; 19.3321
90; 97.498; 90
1032Artioli, G.; Geiger, C.A.; Dapiaggi, M.
The crystal chemistry of julgoldite-Fe(3+) from Bombay, India, studied using synchrotron x-ray powder diffraction and (57)Fe Moessbauer spectroscopy
American Mineralogist, 2003, 88, 1084-1090
9010431 CIFAl1.1 H9 Mg O14.92 Si3.9C 1 2/m 113.179; 17.852; 5.2316
90; 107.77; 90
1172.12Post, J. E.; Heaney, P. J.
Synchotron powder X-ray diffraction study of the structure and dehydration behavior of palygorskite Sample: T = 100 K
American Mineralogist, 2008, 93, 667-675
9000628 CIFAl1.107 F H1.334 K0.667 Li1.153 Mn0.037 O7.004 Si2.334P 31 1 25.2; 5.2; 29.76
90; 90; 120
696.9Brown, B. E.
The crystal structure of a 3T lepidolite
American Mineralogist, 1978, 63, 332-336
9016901 CIFAl1.11 Ba0.01 Cr0.02 F0.02 Fe0.41 H1.22 K0.94 Mg2.23 Na0.05 O11.76 Si2.91 Ti0.32C 1 2/c 15.3273; 9.2231; 20.1964
90; 95.121; 90
988.373Scordari, F.; Schingaro, E.; Lacalamita, M.; Mesto, E.
Crystal chemistry of trioctahedral micas-2M_1 from Bunyaruguru kamafugite (southwest Uganda) Note: BU3_1
American Mineralogist, 2012, 97, 430-439
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
9016903 CIFAl1.12 Ba0.01 Cr0.02 F0.02 Fe0.4 H1.24 K0.93 Mg2.23 Na0.04 O11.74 Si2.91 Ti0.32C 1 2/c 15.3252; 9.2246; 20.1908
90; 95.086; 90
987.924Scordari, F.; Schingaro, E.; Lacalamita, M.; Mesto, E.
Crystal chemistry of trioctahedral micas-2M_1 from Bunyaruguru kamafugite (southwest Uganda) Note: BU3_6
American Mineralogist, 2012, 97, 430-439
9001760 CIFAl1.12 Ba0.01 Fe0.34 H1.82 K0.88 Mg2.61 Na0.05 O12 Si2.84 Ti0.09C 1 2/m 15.33; 9.23; 10.256
90; 99.92; 90
497.01Brigatti, M. F.; Medici, L.; Saccani, E.; Vaccaro, C.
Crystal chemistry and petrologic significance of Fe3±rich phlogopite from the Tapira carbonatite complex, Brazil Sample: Tae23-1b
American Mineralogist, 1996, 81, 913-927
9001763 CIFAl1.12 Ba0.02 F0.1 Fe0.28 H1.74 K0.98 Mg2.67 Na0.01 O11.9 Si2.84 Ti0.09C 1 2/m 15.332; 9.239; 10.291
90; 99.94; 90
499.349Brigatti, M. F.; Medici, L.; Saccani, E.; Vaccaro, C.
Crystal chemistry and petrologic significance of Fe3±rich phlogopite from the Tapira carbonatite complex, Brazil Sample: Tpt17-1
American Mineralogist, 1996, 81, 913-927
9001882 CIFAl1.12 Fe0.12 H4 Mg2.34 O9 Si1.42P 635.334; 5.334; 14.37
90; 90; 120
354.073Brigatti, M. F.; Galli, E.; Medici, L.; Poppi, L.
Crystal structure refinement of aluminian lizardite-2H2
American Mineralogist, 1997, 82, 931-935
9010172 CIFAl1.12 Fe1.11 K0.89 Mg1.5 Na0.07 O12 Si2.88 Ti0.39C 1 2/c 15.3368; 9.2377; 20.086
90; 95.128; 90
986.272Laurora, A.; Brigatti, M. F.; Mottana, A.; Malferrari, D.; Caprilli, E.
Crystal chemistry of trioctahedral micas in alkaline and subalkaline volcanic rocks: A case study from Mt. Sassetto (Tolfa district, Latium, central Italy) polytype
American Mineralogist, 2007, 92, 468-480
9010181 CIFAl1.12 Fe1.11 K0.93 Mg1.5 Na0.07 O12 Si2.88 Ti0.39C 1 2/m 15.342; 9.2461; 10.1635
90; 100.219; 90
494.039Laurora, A.; Brigatti, M. F.; Mottana, A.; Malferrari, D.; Caprilli, E.
Crystal chemistry of trioctahedral micas in alkaline and subalkaline volcanic rocks: A case study from Mt. Sassetto (Tolfa district, Latium, central Italy) polytype
American Mineralogist, 2007, 92, 468-480
9010182 CIFAl1.12 Fe1.14 K0.94 Mg1.5 Na0.06 O12 Si2.88 Ti0.36C 1 2/m 15.3408; 9.2497; 10.1633
90; 100.205; 90
494.132Laurora, A.; Brigatti, M. F.; Mottana, A.; Malferrari, D.; Caprilli, E.
Crystal chemistry of trioctahedral micas in alkaline and subalkaline volcanic rocks: A case study from Mt. Sassetto (Tolfa district, Latium, central Italy) polytype
American Mineralogist, 2007, 92, 468-480
9000835 CIFAl1.128 F H K Li2 O11 Si3.868C 1 2 15.242; 9.055; 10.097
90; 100.77; 90
470.825Guggenheim, S.
Cation ordering in lepidolite Tanakamiyama
American Mineralogist, 1981, 66, 1221-1232
9001350 CIFAl1.135 Ca0.002 Cr0.054 Fe0.498 K0.947 Mg2.088 Mn0.018 Na0.051 O12 Si2.904 Ti0.267C 1 2/m 15.314; 9.19; 10.16
90; 100.18; 90
488.359Brigatti, M. F.; Galli, E.; Poppi, L.
Effect of Ti substitution in biotite-M crystal chemistry Sample 12 from a lamproite rock, Jummilla, Spain
American Mineralogist, 1991, 76, 1174-1183
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
9000816 CIFAl1.14 Mn0.86 O5 SiP n n m7.959; 8.047; 5.616
90; 90; 90
359.683Weiss, Z.; Bailey, S. W.; Rieder, M.
Refinement of the crystal structure of kanonaite, (Mn,Al)(Al,Mn)O[SiO4]
American Mineralogist, 1981, 66, 561-567
1556997 CIFAl1.15 Cr0.05 F0.03 Fe0.35 H1.3292 K0.92 Mg2.28 Na0.04 Ni0.01 O11.97 Si2.89 Ti0.27P 31 1 25.3235; 5.3235; 30.188
90; 90; 120
740.9Schingaro, E.; Lacalamita, M.; Scordari, F.; Mesto, E.
3T-phlogopite from Kasenyi kamafugite (SW Uganda): EPMA, XPS, FTIR, and SCXRD study
American Mineralogist, 2013, 98, 709-717
9016912 CIFAl1.15 Cr0.05 F0.03 Fe0.36 H1.32 K0.92 Mg2.28 Na0.04 Ni0.01 O11.97 Si2.88 Ti0.27P 31 1 25.3235; 5.3235; 30.188
90; 90; 120
740.9Schingaro, E.; Lacalamita, M.; Scordari, F.; Mesto, E.
3T-phlogopite from Kasenyi kamafugite (SW Uganda): EPMA, XPS, FTIR, and SCXRD study
American Mineralogist, 2013, 98, 709-717
9000833 CIFAl1.158 F K Li1.24 O11 Si3.492C 1 2/c 19.023; 5.197; 20.171
90; 99.48; 90
932.952Guggenheim, S.
Cation ordering in lepidolite type 2M(2) from Radkovice
American Mineralogist, 1981, 66, 1221-1232
9001761 CIFAl1.16 Ba0.02 F0.02 Fe0.37 H1.8 K0.87 Mg2.58 Na0.05 O11.98 Si2.8 Ti0.09C 1 2/m 15.318; 9.219; 10.274
90; 99.88; 90
496.229Brigatti, M. F.; Medici, L.; Saccani, E.; Vaccaro, C.
Crystal chemistry and petrologic significance of Fe3±rich phlogopite from the Tapira carbonatite complex, Brazil Sample: Tae23-1c
American Mineralogist, 1996, 81, 913-927
9010183 CIFAl1.16 Fe1.11 K0.93 Mg1.5 Na0.07 O12 Si2.84 Ti0.39C 1 2/m 15.3399; 9.2483; 10.1688
90; 100.217; 90
494.223Laurora, A.; Brigatti, M. F.; Mottana, A.; Malferrari, D.; Caprilli, E.
Crystal chemistry of trioctahedral micas in alkaline and subalkaline volcanic rocks: A case study from Mt. Sassetto (Tolfa district, Latium, central Italy) polytype
American Mineralogist, 2007, 92, 468-480
9010184 CIFAl1.16 Fe1.11 K0.93 Mg1.5 Na0.07 O12 Si2.84 Ti0.39C 1 2/c 15.3341; 9.2403; 20.085
90; 95.151; 90
985.965Laurora, A.; Brigatti, M. F.; Mottana, A.; Malferrari, D.; Caprilli, E.
Crystal chemistry of trioctahedral micas in alkaline and subalkaline volcanic rocks: A case study from Mt. Sassetto (Tolfa district, Latium, central Italy) 2M_1 polytype
American Mineralogist, 2007, 92, 468-480
9002003 CIFAl1.16 O8 Pb Si2.84I 1 2/c 18.402; 13.043; 14.308
90; 115.3; 90
1417.58Benna, P.; Tribaudino, M.; Bruno, E.
High-temperature in situ structural investigation on lead feldspar Sample at T = 20 C, single Pb atom model
American Mineralogist, 1999, 84, 120-129
9002004 CIFAl1.16 O8 Pb Si2.84I 1 2/c 18.422; 13.045; 14.31
90; 115.34; 90
1420.9Benna, P.; Tribaudino, M.; Bruno, E.
High-temperature in situ structural investigation on lead feldspar Sample at T = 230 C, single Pb atom model
American Mineralogist, 1999, 84, 120-129
9002005 CIFAl1.16 O8 Pb Si2.84I 1 2/c 18.44; 13.051; 14.325
90; 115.33; 90
1426.2Benna, P.; Tribaudino, M.; Bruno, E.
High-temperature in situ structural investigation on lead feldspar Sample at T = 465 C, single Pb atom model
American Mineralogist, 1999, 84, 120-129
9001348 CIFAl1.161 Ca0.004 Cr0.054 Fe0.588 K0.958 Mg1.602 Mn0.03 Na0.016 O12 Si2.932 Ti0.522C 1 2/m 15.322; 9.228; 10.102
90; 100.25; 90
488.206Brigatti, M. F.; Galli, E.; Poppi, L.
Effect of Ti substitution in biotite-M crystal chemistry Sample 10 from a lamproite rock, Fortuna, Spain
American Mineralogist, 1991, 76, 1174-1183
9000768 CIFAl1.18 Ba0.19 K0.59 Na0.22 O8 Si2.82C 1 2/m 18.516; 13.023; 7.206
90; 115.9; 90
718.903Viswanathan, K.; Brandt, K.
The crystal structure of ternary (Ba,K,Na)-feldspar and its significance
American Mineralogist, 1980, 65, 472-476
9001275 CIFAl1.19 Cs0.995 H5.96 O21.64 Si7.81C 1 2/m 117.692; 17.945; 7.404
90; 116.4; 90
2105.5Smyth, J. R.; Spaid, A. T.; Bish, D. L.
Crystal structures of a natural and a Cs-exchanged clinoptilolite Cs-exchanged sample
American Mineralogist, 1990, 75, 522-528
9001756 CIFAl1.2 Ba0.04 F0.06 Fe0.73 H1.68 K0.92 Mg2.16 Mn0.09 O11.94 Si2.76 Ti0.12C 1 2/m 15.333; 9.238; 10.267
90; 99.96; 90
498.193Brigatti, M. F.; Medici, L.; Saccani, E.; Vaccaro, C.
Crystal chemistry and petrologic significance of Fe3±rich phlogopite from the Tapira carbonatite complex, Brazil Sample: Tag15-4
American Mineralogist, 1996, 81, 913-927
9002210 CIFAl1.2 Ca1.68 Mg4.92 Na0.43 O24 Si7.2C 1 2/m 19.8184; 18.021; 5.278
90; 104.829; 90
902.772Sharma, A.; Jenkins, D. M.
Hydrothermal synthesis of amphiboles along the tremolite-pargasite join and in the ternary system tremolite-pargasite-cummingtonite Sample: PARG 21-2
American Mineralogist, 1999, 84, 1304-1318
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
9010170 CIFAl1.2 Fe1.11 K0.93 Mg1.5 Na0.07 O12 Si2.8 Ti0.39C 1 2/c 15.3332; 9.2376; 20.069
90; 95.125; 90
984.766Laurora, A.; Brigatti, M. F.; Mottana, A.; Malferrari, D.; Caprilli, E.
Crystal chemistry of trioctahedral micas in alkaline and subalkaline volcanic rocks: A case study from Mt. Sassetto (Tolfa district, Latium, central Italy) polytype
American Mineralogist, 2007, 92, 468-480
9017031 CIFAl1.206 Cr0.794 Fe0.287 Mg0.714 O4F d -3 m :28.2021; 8.2021; 8.2021
90; 90; 90
551.792Lenaz, D.; Youbi, N.; Min, A. D.; Boumehdi, M. A.; Abbou, M. B.
Low intra-crystalline closure temperatures of Cr-bearing spinels from the mantle xenoliths of the Middle AtlasNeogene-Quaternary Volcanic Field (Morocco):Mineralogical evidence of a cooler mantle beneath the West African Craton. Note:Sample MAR-BI16
American Mineralogist, 2014, 99, 267-275
9001582 CIFAl1.207 Fe0.4 K1.906 Mg0.512 Mn0.007 Na0.034 O12 Si2.808 Ti0.067C 1 2/m 15.335; 9.244; 10.206
90; 100.08; 90
495.557Bigi, S.; Brigatti, M. F.
Crystal chemistry and microstructures of plutonic biotite Sample 1M from Valle del Cervo syenitic complex
American Mineralogist, 1994, 79, 63-72
9001583 CIFAl1.216 Fe1.215 K0.946 Mg1.545 Mn0.018 Na0.032 O12 Si2.784 Ti0.225C 1 2/c 15.339; 9.249; 20.196
90; 95.06; 90
993.4Bigi, S.; Brigatti, M. F.
Crystal chemistry and microstructures of plutonic biotite Sample 2M1 from Valle del Cervo syenitic complex
American Mineralogist, 1994, 79, 63-72
9002637 CIFAl1.22 Ca1.52 H2 K1.1 Mg5.84 Na2.32 O36 Si12A 1 2/m 19.839; 26.6471; 5.2665
90; 106.25; 90
1325.61Yang, H.; Konzett, J.; Prewitt, C. T.
Crystal structure of a new (21)-clinopyribole synthesized at high temperature and pressure
American Mineralogist, 2001, 86, 1261-1266
9010418 CIFAl1.224 Fe0.785 K Mg2.215 O12 Si2.693C 1 2/m 15.316; 9.2043; 10.1613
90; 100.06; 90
489.549Ventruti, G.; Zema, M.; Scordari, F.; Pedrazzi, G.
Thermal behavior of a Ti-rich phlogopite from Mt. Vulture (Potenza, Italy): An in situ X-ray single-crystal diffraction study Sample: T = 298 K after reversal experiment
American Mineralogist, 2008, 93, 632-643
9010423 CIFAl1.224 Fe0.786 K Mg2.214 O12 Si2.694C 1 2/m 15.3621; 9.2897; 10.2986
90; 100.064; 90
505.104Ventruti, G.; Zema, M.; Scordari, F.; Pedrazzi, G.
Thermal behavior of a Ti-rich phlogopite from Mt. Vulture (Potenza, Italy): An in situ X-ray single-crystal diffraction study Sample: T = 1023 K
American Mineralogist, 2008, 93, 632-643
9010419 CIFAl1.225 Fe0.784 K Mg2.216 O12 Si2.695C 1 2/m 15.34; 9.247; 10.2465
90; 100.055; 90
498.19Ventruti, G.; Zema, M.; Scordari, F.; Pedrazzi, G.
Thermal behavior of a Ti-rich phlogopite from Mt. Vulture (Potenza, Italy): An in situ X-ray single-crystal diffraction study Sample: T = 473 K
American Mineralogist, 2008, 93, 632-643
9010420 CIFAl1.225 Fe0.784 K Mg2.216 O12 Si2.695C 1 2/m 15.3526; 9.2727; 10.2787
90; 100.069; 90
502.306Ventruti, G.; Zema, M.; Scordari, F.; Pedrazzi, G.
Thermal behavior of a Ti-rich phlogopite from Mt. Vulture (Potenza, Italy): An in situ X-ray single-crystal diffraction study Sample: T = 673 K
American Mineralogist, 2008, 93, 632-643
9010422 CIFAl1.225 Fe0.785 K Mg2.215 O12 Si2.695C 1 2/m 15.356; 9.2798; 10.2863
90; 100.051; 90
503.41Ventruti, G.; Zema, M.; Scordari, F.; Pedrazzi, G.
Thermal behavior of a Ti-rich phlogopite from Mt. Vulture (Potenza, Italy): An in situ X-ray single-crystal diffraction study Sample: T = 873 K, after 14 h from previous measurement at same temperature
American Mineralogist, 2008, 93, 632-643
9010421 CIFAl1.225 Fe0.786 K Mg2.214 O12 Si2.696C 1 2/m 15.3583; 9.2866; 10.296
90; 100.081; 90
504.423Ventruti, G.; Zema, M.; Scordari, F.; Pedrazzi, G.
Thermal behavior of a Ti-rich phlogopite from Mt. Vulture (Potenza, Italy): An in situ X-ray single-crystal diffraction study Sample: T = 873 K
American Mineralogist, 2008, 93, 632-643
9010417 CIFAl1.226 Fe0.797 H1.187 K Mg2.203 O12 Si2.698C 1 2/m 15.3365; 9.2438; 10.2331
90; 100.031; 90
497.078Ventruti, G.; Zema, M.; Scordari, F.; Pedrazzi, G.
Thermal behavior of a Ti-rich phlogopite from Mt. Vulture (Potenza, Italy): An in situ X-ray single-crystal diffraction study Sample: T = 298 K
American Mineralogist, 2008, 93, 632-643
9010416 CIFAl1.227 Fe0.799 H1.189 K Mg2.201 O12 Si2.699C 1 2/m 15.331; 9.2298; 10.2217
90; 100.031; 90
495.261Ventruti, G.; Zema, M.; Scordari, F.; Pedrazzi, G.
Thermal behavior of a Ti-rich phlogopite from Mt. Vulture (Potenza, Italy): An in situ X-ray single-crystal diffraction study Sample: T = 200 K
American Mineralogist, 2008, 93, 632-643
9010415 CIFAl1.229 Fe0.781 H1.186 K Mg2.219 O12 Si2.704C 1 2/m 15.3278; 9.2225; 10.2087
90; 100.031; 90
493.943Ventruti, G.; Zema, M.; Scordari, F.; Pedrazzi, G.
Thermal behavior of a Ti-rich phlogopite from Mt. Vulture (Potenza, Italy): An in situ X-ray single-crystal diffraction study Sample: T = 100 K
American Mineralogist, 2008, 93, 632-643
1527006 CIFAl1.23 Ca1.52 H2 K1.1 Mg5.83 Na2.32 O36 Si12A 1 2/m 19.839; 26.6471; 5.2665
90; 106.25; 90
1325.61Yang, H.-X.; Konzett, J.; Prewitt, C.T.
Crystal structure of a new (21)-clinopyribole synthesized at high temperature and pressure
American Mineralogist, 2001, 86, 1261-1266
9003546 CIFAl1.238 Cr0.704 Fe0.304 Mg0.734 Mn0.004 Ni0.006 O4 Ti0.006F d -3 m :28.1992; 8.1992; 8.1992
90; 90; 90
551.207Bosi, F.; Andreozzi, G. B.; Ferrini, V.; Lucchesi, S.
Behavior of cation vacany in kenotetrahedral Cr-spinels from Albanian eastern belt ophiolites Sample: N4x, Provenance is Bulqize, Bulqiza massif, Sequence is tectonite
American Mineralogist, 2004, 89, 1367-1373
9001757 CIFAl1.24 Ba0.02 F0.06 Fe0.6 H1.92 K0.92 Mg2.19 O11.94 Si2.76 Ti0.12C 1 2/m 15.329; 9.228; 10.258
90; 100.03; 90
496.738Brigatti, M. F.; Medici, L.; Saccani, E.; Vaccaro, C.
Crystal chemistry and petrologic significance of Fe3±rich phlogopite from the Tapira carbonatite complex, Brazil Sample: Tag15-3
American Mineralogist, 1996, 81, 913-927
9002307 CIFAl1.24 Fe1.4 H1.64 K0.98 Mg0.71 Na0.02 O12 Si1.36 Ti0.16C 1 2/c 15.335; 9.242; 20.181
90; 95.2; 90
990.951Brigatti, M. F.; Frigieri, P.; Ghezzo c; Poppi, L.
Crystal chemistry of Al-rich biotites coexisting with muscovites in peraluminous granites Sample: C6c
American Mineralogist, 2000, 85, 436-448
9001352 CIFAl1.249 Ca0.009 Cr0.006 Fe1.239 K0.968 Mg1.401 Mn0.024 Na0.02 O12 Si2.832 Ti0.231C 1 2/m 15.333; 9.256; 10.186
90; 100.17; 90
494.904Brigatti, M. F.; Galli, E.; Poppi, L.
Effect of Ti substitution in biotite-M crystal chemistry Sample 16 from a monzonite-alkali syenite, Sande caldron, Norway
American Mineralogist, 1991, 76, 1174-1183
9002190 CIFAl1.252 Mg3.374 O12 Si3.374I a -3 d11.4833; 11.4833; 11.4833
90; 90; 90
1514.26Nakatsuka A; Yoshiasa A; Yamanaka T; Ohtaka O; Katsura T; Ito E
Symmetry change of majorite solid-solution in the system Mg3Al2Si3O12-MgSiO3 Sample: x = .38
American Mineralogist, 1999, 84, 1135-1143
9002193 CIFAl1.252 Mg3.374 O12 Si3.374I 41/a c d :211.4833; 11.4833; 11.4833
90; 90; 90
1514.26Nakatsuka, A.; Yoshiasa, A.; Yamanaka, T.; Ohtaka, O.; Katsura, T.; Ito, E.
Symmetry change of majorite solid-solution in the system Mg3Al2Si3O12-MgSiO3 Sample: x = .38
American Mineralogist, 1999, 84, 1135-1143
9003352 CIFAl1.259 Ca2 Fe0.741 O5I 2 m b5.3093; 14.4534; 5.523
90; 90; 90
423.821Redhammer, G. J.; Tippelt, G.; Roth, G.; Amthauer, G.
Structural variations in the brownmillerite series Ca2(Fe2-xAlx)O5: Single-crystal X-ray diffraction at 25 deg C and high temperature X-ray powder diffraction (25 C <= T <= 1000 C) Sample: bht130_2
American Mineralogist, 2004, 89, 405-420
9001351 CIFAl1.27 Ca0.007 Cr0.006 Fe0.942 K0.915 Mg1.476 Mn0.024 Na0.015 O12 Si2.736 Ti0.39C 1 2/m 15.329; 9.235; 10.19
90; 100.2; 90
493.558Brigatti, M. F.; Galli, E.; Poppi, L.
Effect of Ti substitution in biotite-M crystal chemistry Sample 15 from a alkaline gabbro-peralkaline syenite rock, Mt St Hilaire, Quebec
American Mineralogist, 1991, 76, 1174-1183
1537459 CIFAl1.27 Fe0.1 H4.4 Mg2 O9 Si1.4P 3 1 m5.295; 5.295; 63.99
90; 90; 120
1553.73Jahanbagloo, I.C.; Zoltai, T.
The crystal structure of a hexagonal Al-serpentine
American Mineralogist, 1968, 53, 14-24
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
9010185 CIFAl1.27 Fe1.08 K0.93 Mg1.44 Na0.06 O12 Si2.88 Ti0.33C 1 2/c 15.3449; 9.2375; 20.095
90; 95.143; 90
988.166Laurora, A.; Brigatti, M. F.; Mottana, A.; Malferrari, D.; Caprilli, E.
Crystal chemistry of trioctahedral micas in alkaline and subalkaline volcanic rocks: A case study from Mt. Sassetto (Tolfa district, Latium, central Italy) 2M_1 polytype
American Mineralogist, 2007, 92, 468-480
9001758 CIFAl1.28 Ba F0.02 Fe0.87 H1.74 K Mg1.89 Mn0.03 O11.98 Si2.72 Ti0.18C 1 2/m 15.3405; 9.244; 10.253
90; 100.09; 90
498.337Brigatti, M. F.; Medici, L.; Saccani, E.; Vaccaro, C.
Crystal chemistry and petrologic significance of Fe3±rich phlogopite from the Tapira carbonatite complex, Brazil Sample: Tpg63-2B
American Mineralogist, 1996, 81, 913-927
9003444 CIFAl1.28 Ba0.03 F0.18 Fe0.82 H1.72 K0.91 Mg2.18 Na0.02 O11.82 Si2.72C 1 2/m 15.337; 9.24; 10.237
90; 100.02; 90
497.126Comodi, P.; Fumagalli, P.; Montagnoli, M.; Zanazzi, P. F.
A single-crystal study on the pressure behavior of phlogopite and petrological implications P = 0.0001 GPa
American Mineralogist, 2004, 89, 647-653
9003445 CIFAl1.28 Ba0.03 F0.18 Fe0.82 H1.72 K0.91 Mg2.18 Na0.02 O11.82 Si2.72C 1 2/m 15.318; 9.21; 10.1
90; 100.12; 90
486.989Comodi, P.; Fumagalli, P.; Montagnoli, M.; Zanazzi, P. F.
A single-crystal study on the pressure behavior of phlogopite and petrological implications P = 1.2 GPa
American Mineralogist, 2004, 89, 647-653
9003446 CIFAl1.28 Ba0.03 F0.18 Fe0.82 H1.72 K0.91 Mg2.18 Na0.02 O11.82 Si2.72C 1 2/m 15.291; 9.16; 9.9
90; 100.3; 90
472.077Comodi, P.; Fumagalli, P.; Montagnoli, M.; Zanazzi, P. F.
A single-crystal study on the pressure behavior of phlogopite and petrological implications P = 3.2 GPa
American Mineralogist, 2004, 89, 647-653
9003447 CIFAl1.28 Ba0.03 F0.18 Fe0.82 H1.72 K0.91 Mg2.18 Na0.02 O11.82 Si2.72C 1 2/m 15.271; 9.13; 9.78
90; 100.3; 90
463.07Comodi, P.; Fumagalli, P.; Montagnoli, M.; Zanazzi, P. F.
A single-crystal study on the pressure behavior of phlogopite and petrological implications P = 5.0 GPa
American Mineralogist, 2004, 89, 647-653
9003448 CIFAl1.28 Ba0.03 F0.18 Fe0.82 H1.72 K0.91 Mg2.18 Na0.02 O11.82 Si2.72C 1 2/m 15.256; 9.105; 9.71
90; 100.4; 90
457.047Comodi, P.; Fumagalli, P.; Montagnoli, M.; Zanazzi, P. F.
A single-crystal study on the pressure behavior of phlogopite and petrological implications P = 6.0 GPa
American Mineralogist, 2004, 89, 647-653
9010178 CIFAl1.28 Fe1.41 K0.93 Mg1.02 Na0.07 O12 Si2.72 Ti0.46C 1 2/m 15.3207; 9.2099; 10.1034
90; 99.959; 90
487.638Laurora, A.; Brigatti, M. F.; Mottana, A.; Malferrari, D.; Caprilli, E.
Crystal chemistry of trioctahedral micas in alkaline and subalkaline volcanic rocks: A case study from Mt. Sassetto (Tolfa district, Latium, central Italy) polytype
American Mineralogist, 2007, 92, 468-480
9001349 CIFAl1.282 Ca0.013 Cr0.072 Fe0.504 K0.955 Mg1.899 Mn0.027 Na0.03 O12 Si2.868 Ti0.324C 1 2/m 15.315; 9.204; 10.168
90; 100.13; 90
489.657Brigatti, M. F.; Galli, E.; Poppi, L.
Effect of Ti substitution in biotite-M crystal chemistry Sample 11 from a lamproite rock, Jummilla, Spain
American Mineralogist, 1991, 76, 1174-1183
9000377 CIFAl1.282 Ca0.03 Cl0.05 F0.22 Fe2.43 H1.38 K0.88 Mg0.12 Mn0.03 Na0.07 O11.73 Si2.808 Ti0.21C 1 2/m 15.386; 9.3241; 10.2683
90; 100.63; 90
506.82Hazen, R. M.; Burnham, C. W.
The crystal structures of one-layer phlogopite and annite
American Mineralogist, 1973, 58, 889-900
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
9003719 CIFAl1.3 F0.13 Fe1.3 H1.87 Li1.93 Mg2.32 Mn0.06 Na0.1 O23.87 Si8 Zn0.01P n m a18.335; 17.693; 5.2743
90; 90; 90
1710.99Camara, F.; Oberti, R.
The crystal-chemistry of holmquistites: Ferroholmquistite from Greenbushes (Western Australia) and hints for compositional constraints in B-Li amphiboles Sample: Uto, Sweden
American Mineralogist, 2005, 90, 1167-1176
9016793 CIFAl1.3 F0.13 Fe1.3 H3.74 Li1.93 Mg2.32 Mn0.06 Na0.1 O23.87 Si8 Zn0.01P n m a18.335; 17.693; 5.2743
90; 90; 90
1710.99Camara, F.; Oberti, R.
The crystal-chemistry of holmquistites: Ferroholmquistite from Greenbushes (Western Australia) and hints for compositional constraints in B-Li amphiboles Sample: Uto, Sweden
American Mineralogist, 2005, 90, 1167-1176
9002345 CIFAl1.305 Ca0.02 Fe0.3 K0.28 Mg1.295 Na0.16 O6 Si1.05P 63/m8.83; 8.83; 2.779
90; 90; 120
187.647Gasparik, T.; Tripathi, A.; Parise, J. B.
Structure of a new Al-rich phase, [K,Na].9[Mg,Fe]2[Mg,Fe,Al,Si]6O12, synthesized at 24 GPa
American Mineralogist, 2000, 85, 613-618
9000132 CIFAl1.305 Fe1.71 H4 Mg0.645 O9 Si1.34C 1 2/m 15.39; 9.336; 14.166
90; 90; 90
712.848Shirozu, H.; Bailey, S. W.
Chlorite polytypism: III. Crystal structure of an orthohexagonal iron chlorite
American Mineralogist, 1965, 50, 868-885
9001149 CIFAl1.311 Be2.859 Cs0.012 Fe0.366 Li0.027 Mg0.328 Na0.406 O18 Si6.111P 6/m c c9.2736; 9.2736; 9.191
90; 90; 120
684.526Aurisicchio, C.; Fioravanti, G.; Grubessi, O.; Zanazzi, P. F.
Reappraisal of the crystal chemistry of beryl Sample: 3
American Mineralogist, 1988, 73, 826-837
1536245 CIFAl1.318 F0.16 Fe0.868 H0.3 K Mg1.638 O11.84 Si2.84 Ti0.336C 1 2/m 15.3204; 9.21; 10.104
90; 100.102; 90
487.429Ohta, T.; Takeda, H.; Takeuchi, Y.
Mica polytypism: similarities in the crystal structures of coexisting 1M and 2M1 oxybiotite
American Mineralogist, 1982, 67, 298-310
9010175 CIFAl1.32 Fe1.14 K0.94 Mg1.44 Na0.06 O12 Si2.8 Ti0.3C 1 2/m 15.3402; 9.2461; 10.1866
90; 100.138; 90
495.121Laurora, A.; Brigatti, M. F.; Mottana, A.; Malferrari, D.; Caprilli, E.
Crystal chemistry of trioctahedral micas in alkaline and subalkaline volcanic rocks: A case study from Mt. Sassetto (Tolfa district, Latium, central Italy) polytype
American Mineralogist, 2007, 92, 468-480
9010176 CIFAl1.32 Fe1.14 K0.94 Mg1.44 Na0.06 O12 Si2.8 Ti0.3C 1 2/m 15.3403; 9.2485; 10.1867
90; 100.132; 90
495.273Laurora, A.; Brigatti, M. F.; Mottana, A.; Malferrari, D.; Caprilli, E.
Crystal chemistry of trioctahedral micas in alkaline and subalkaline volcanic rocks: A case study from Mt. Sassetto (Tolfa district, Latium, central Italy) polytype
American Mineralogist, 2007, 92, 468-480
9000842 CIFAl1.322 Fe0.864 K Mg1.638 O12 Si2.84 Ti0.336C 1 2/m 15.3204; 9.21; 10.104
90; 100.102; 90
487.429Ohta, T.; Takeda, H.; Takeuchi, Y.
Mica polytypism: Similarities in the crystal structures of coexisting 1M and 2M(1) oxybiotite
American Mineralogist, 1982, 67, 298-310
9000843 CIFAl1.322 Fe0.864 K Mg1.638 O12 Si2.84 Ti0.336C 1 2/c 15.3175; 9.212; 19.976
90; 95.09; 90
974.662Ohta, T.; Takeda, H.; Takeuchi, Y.
Mica polytypism: Similarities in the crystal structures of coexisting 1M and 2M(1) oxybiotite Sample: in the 2M1 setting
American Mineralogist, 1982, 67, 298-310
1536248 CIFAl1.324 F0.16 Fe0.862 H0.3 K Mg1.638 O11.84 Si2.84 Ti0.336C 1 2/c 15.3175; 9.212; 19.976
90; 95.09; 90
974.662Ohta, T.; Takeuchi, Y.; Takeda, H.
Mica polytypism: similarities in the crystal structures of coexisting 1M and 2M1 oxybiotite
American Mineralogist, 1982, 67, 298-310
9015861 CIFAl1.33 Ba0.05 F0.17 Fe0.807 H1.553 K0.83 Mg2.193 Na0.07 O11.83 Si2.67C 1 2/m 15.3403; 9.2481; 10.2327
90; 100.017; 90
497.665Zema, M.; Ventruti, G.; Lacalamita, M.; Scordari, F.
Kinetics of Fe-oxidation/deprotonation process in Fe-rich phlogopite under isothermal conditions Sample: SA1_14n
American Mineralogist, 2010, 95, 1458-1466
9003720 CIFAl1.33 F0.1 Fe1.26 H1.9 Li1.93 Mg2.42 Mn0.04 Na0.05 O23.9 Si8 Zn0.01P n m a18.336; 17.693; 5.2755
90; 90; 90
1711.47Camara, F.; Oberti, R.
The crystal-chemistry of holmquistites: Ferroholmquistite from Greenbushes (Western Australia) and hints for compositional constraints in B-Li amphiboles Sample: Norway
American Mineralogist, 2005, 90, 1167-1176
9016794 CIFAl1.33 F0.1 Fe1.26 H3.8 Li1.93 Mg2.42 Mn0.04 Na0.05 O23.9 Si8 Zn0.01P n m a18.336; 17.693; 5.2755
90; 90; 90
1711.47Camara, F.; Oberti, R.
The crystal-chemistry of holmquistites: Ferroholmquistite from Greenbushes (Western Australia) and hints for compositional constraints in B-Li amphiboles Sample: Norway
American Mineralogist, 2005, 90, 1167-1176
9014069 CIFAl1.33 Fe0.21 Mg0.16 O6 Si0.91P -3 1 m4.7621; 4.7621; 4.2964
90; 90; 120
84.379Boffa Ballaran, T.; Frost, D. J.; Miyajima, N.; Heidelbach, F.
The structure of a super-aluminous version of the dense hydrous-magnesium silicate phase D
American Mineralogist, 2010, 95, 1113-1116
9001041 CIFAl1.34 Ca0.97 Fe0.61 O6 Si1.08C 1 2/c 19.79; 8.822; 5.37
90; 105.81; 90
446.248Cosca, M. A.; Peacor, D. R.
Chemistry and structure of esseneite (CaFeAlSiO6), a new pyroxene produced by pyrometamorphism
American Mineralogist, 1987, 72, 148-156
9000232 CIFAl1.34 Cr0.66 Fe0.36 Mg2.64 O12 Si3I a -3 d11.526; 11.526; 11.526
90; 90; 90
1531.21Novak, G. A.; Gibbs, G. V.
The crystal chemistry of the silicate garnets sample Cr-Py
American Mineralogist, 1971, 56, 791-825
9003718 CIFAl1.34 F0.09 Fe1.26 H1.91 Li1.98 Mg2.35 Mn0.04 Na0.05 O23.91 Si8 Zn0.01P n m a18.3345; 17.6955; 5.2764
90; 90; 90
1711.86Camara, F.; Oberti, R.
The crystal-chemistry of holmquistites: Ferroholmquistite from Greenbushes (Western Australia) and hints for compositional constraints in B-Li amphiboles Sample: Zaire
American Mineralogist, 2005, 90, 1167-1176
9016792 CIFAl1.34 F0.09 Fe1.26 H3.82 Li1.98 Mg2.35 Mn0.04 Na0.05 O23.91 Si8 Zn0.01P n m a18.3345; 17.6955; 5.2764
90; 90; 90
1711.86Camara, F.; Oberti, R.
The crystal-chemistry of holmquistites: Ferroholmquistite from Greenbushes (Western Australia) and hints for compositional constraints in B-Li amphiboles Sample: Zaire
American Mineralogist, 2005, 90, 1167-1176
9010179 CIFAl1.34 Fe1.35 K0.92 Mg1.11 Na0.07 O12 Si2.72 Ti0.18C 1 2/m 15.3216; 9.2114; 10.106
90; 99.949; 90
487.94Laurora, A.; Brigatti, M. F.; Mottana, A.; Malferrari, D.; Caprilli, E.
Crystal chemistry of trioctahedral micas in alkaline and subalkaline volcanic rocks: A case study from Mt. Sassetto (Tolfa district, Latium, central Italy) polytype
American Mineralogist, 2007, 92, 468-480
9010180 CIFAl1.34 Fe1.35 K0.92 Mg1.11 Na0.07 O12 Si2.72 Ti0.18C 1 2/m 15.3213; 9.2034; 10.1048
90; 99.954; 90
487.424Laurora, A.; Brigatti, M. F.; Mottana, A.; Malferrari, D.; Caprilli, E.
Crystal chemistry of trioctahedral micas in alkaline and subalkaline volcanic rocks: A case study from Mt. Sassetto (Tolfa district, Latium, central Italy) polytype
American Mineralogist, 2007, 92, 468-480
9003353 CIFAl1.346 Ca2 Fe0.654 O5I 2 m b5.2991; 14.4434; 5.5099
90; 90; 90
421.711Redhammer, G. J.; Tippelt, G.; Roth, G.; Amthauer, G.
Structural variations in the brownmillerite series Ca2(Fe2-xAlx)O5: Single-crystal X-ray diffraction at 25 deg C and high temperature X-ray powder diffraction (25 C <= T <= 1000 C) Sample: bht140_2
American Mineralogist, 2004, 89, 405-420
9000213 CIFAl1.352 Ca0.09 Cr0.572 Fe0.355 Mg2.625 Mn0.015 O12 Si2.988I a -3 d11.526; 11.526; 11.526
90; 90; 90
1531.21Novak, G. A.; Meyer, H. O. A.
Refinement of the crystal structure of a chrome pyrope garnet: An inclusion in natural diamond
American Mineralogist, 1970, 55, 2124-2127
9015879 CIFAl1.36 Ba0.03 F0.16 Fe0.806 H1.35 K0.89 Mg2.194 Na0.08 O11.84 Si2.64C 1 2/m 15.32568; 9.2207; 10.2093
90; 100.014; 90
493.705Zema, M.; Ventruti, G.; Lacalamita, M.; Scordari, F.
Kinetics of Fe-oxidation/deprotonation process in Fe-rich phlogopite under isothermal conditions Sample: SA1_18n
American Mineralogist, 2010, 95, 1458-1466
9014229 CIFAl1.36 Fe0.766 H1.597 K Mg2.234 O12 Si2.64C 1 2/m 15.3435; 9.253; 10.2458
90; 100.006; 90
498.882Zema, M.; Ventruti, G.; Lacalamita, M.; Scordari, F.
Kinetics of Fe-oxidation/deprotonation process in Fe-rich phlogopite under isothermal conditions Sample: SA1_15n
American Mineralogist, 2010, 95, 1458-1466
9014496 CIFAl1.36 Fe0.784 H1.478 K Mg2.216 O12 Si2.64C 1 2/m 15.3388; 9.2464; 10.2365
90; 100.037; 90
497.588Zema, M.; Ventruti, G.; Lacalamita, M.; Scordari, F.
Kinetics of Fe-oxidation/deprotonation process in Fe-rich phlogopite under isothermal conditions Sample: SA1_5n
American Mineralogist, 2010, 95, 1458-1466
9001346 CIFAl1.369 Ca0.03 Cr0.048 Fe0.39 K0.955 Mg2.166 Mn0.021 Na0.015 O12 Si2.856 Ti0.144C 1 2/m 15.317; 9.207; 10.232
90; 99.98; 90
493.314Brigatti, M. F.; Galli, E.; Poppi, L.
Effect of Ti substitution in biotite-M crystal chemistry Sample 8 from a lamproite rock, Puebla De Mula, Spain
American Mineralogist, 1991, 76, 1174-1183
9014217 CIFAl1.37 Ba0.05 F0.16 Fe0.776 H1.34 K0.85 Mg2.224 Na0.07 O11.84 Si2.63C 1 2/m 15.3379; 9.2414; 10.2311
90; 100.023; 90
496.994Zema, M.; Ventruti, G.; Lacalamita, M.; Scordari, F.
Kinetics of Fe-oxidation/deprotonation process in Fe-rich phlogopite under isothermal conditions Sample: SA1_9
American Mineralogist, 2010, 95, 1458-1466
9003878 CIFAl1.38 Ba0.05 Cl0.02 F0.83 Fe0.88 H1.1 K0.78 Li0.02 Mg1.65 Na0.12 O11.14 Si2.56 Ti0.31C 1 2/m 15.31; 9.193; 10.096
90; 100; 90
485.347Mesto, E.; Schingaro, E.; Scordari, F.; Ottolini, L.
An electron microprobe analysis, secondary ion mass spectrometry and single crystal X-ray diffraction study of phlogopites from Mt. Vulture, Potenza, Italy: Consideration of cation partioning Locality: Mt. Vulture, Potenza, Italy Sample: LC7-1R Note: mica
American Mineralogist, 2006, 91, 182-190
9017032 CIFAl1.38 Cr0.62 Fe0.306 Mg0.694 O4F d -3 m :28.1727; 8.1727; 8.1727
90; 90; 90
545.879Lenaz, D.; Youbi, N.; Min, A. D.; Boumehdi, M. A.; Abbou, M. B.
Low intra-crystalline closure temperatures of Cr-bearing spinels from the mantle xenoliths of the Middle AtlasNeogene-Quaternary Volcanic Field (Morocco):Mineralogical evidence of a cooler mantle beneath the West African Craton. Note:Sample MAR-BI24
American Mineralogist, 2014, 99, 267-275
9000868 CIFAl1.41 Ba0.4 K0.47 Na0.13 O8 Si2.59C 1 2/m 18.544; 13.03; 7.195
90; 115.68; 90
721.89Viswanathan, K.; Kielhorn, H. M.
Al,Si distribution in a ternary (Ba,K,Na)-feldspar as determined by crystal structure refinement Celsian-rich Locality: Yugoslavia
American Mineralogist, 1983, 68, 122-124
9017035 CIFAl1.42 Cr0.58 Fe0.3 Mg0.7 O4F d -3 m :28.1704; 8.1704; 8.1704
90; 90; 90
545.419Lenaz, D.; Youbi, N.; Min, A. D.; Boumehdi, M. A.; Abbou, M. B.
Low intra-crystalline closure temperatures of Cr-bearing spinels from the mantle xenoliths of the Middle AtlasNeogene-Quaternary Volcanic Field (Morocco):Mineralogical evidence of a cooler mantle beneath the West African Craton. Note:Sample MAR-TF8
American Mineralogist, 2014, 99, 267-275
9001353 CIFAl1.428 Ca0.001 Cr0.006 Fe1.296 K0.914 Mg1.245 Mn0.009 Na0.022 O12 Si2.764 Ti0.198C 1 2/m 15.323; 9.215; 10.21
90; 100.14; 90
492.993Brigatti, M. F.; Galli, E.; Poppi, L.
Effect of Ti substitution in biotite-M crystal chemistry Sample 17 from a quartz diorite, Capo Vaticano, Italy
American Mineralogist, 1991, 76, 1174-1183
9010177 CIFAl1.43 Fe1.14 K0.93 Mg1.47 Na0.07 O12 Si2.72 Ti0.24C 1 2/m 15.3314; 9.229; 10.1801
90; 100.051; 90
493.209Laurora, A.; Brigatti, M. F.; Mottana, A.; Malferrari, D.; Caprilli, E.
Crystal chemistry of trioctahedral micas in alkaline and subalkaline volcanic rocks: A case study from Mt. Sassetto (Tolfa district, Latium, central Italy) polytype
American Mineralogist, 2007, 92, 468-480
1535068 CIFAl1.44 Fe0.48 H10.64 Mg2.68 O16.32 Si2.72C 1 2/c 15.33; 9.18; 28.89999
90; 97; 90
1403.52Mathieson, A.M.; Walker, G.F.
Crystal structure of magnesium-vermiculite
American Mineralogist, 1954, 39, 231-255
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
9002157 CIFAl1.46 Cs0.233 Fe1.04 H2 K0.462 Li0.3 Mg1.24 O12 Rb0.275 Si2.92 Ti0.04C 1 2/m 15.343; 9.247; 10.397
90; 100.04; 90
505.815Hawthorne, F. C.; Teertstra, D. K.; Cerny, P.
Crystal-structure refinement of a rubidian cesian phlogopite
American Mineralogist, 1999, 84, 778-781
9003879 CIFAl1.47 Ba0.02 F0.12 Fe0.53 H1.8 K0.85 Mg2.18 Na0.11 O11.88 Si2.66 Ti0.16C 1 2/m 15.315; 9.209; 10.226
90; 99.97; 90
492.962Mesto, E.; Schingaro, E.; Scordari, F.; Ottolini, L.
An electron microprobe analysis, secondary ion mass spectrometry and single crystal X-ray diffraction study of phlogopites from Mt. Vulture, Potenza, Italy: Consideration of cation partioning Locality: Mt. Vulture, Potenza, Italy Sample: LC7-3Go Note: mica
American Mineralogist, 2006, 91, 182-190
9001151 CIFAl1.493 Be2.943 Fe0.174 Li0.018 Mg0.34 Na0.443 O18 Si6.036P 6/m c c9.2676; 9.2676; 9.1945
90; 90; 120
683.901Aurisicchio, C.; Fioravanti, G.; Grubessi, O.; Zanazzi, P. F.
Reappraisal of the crystal chemistry of beryl Sample: 2
American Mineralogist, 1988, 73, 826-837
9003880 CIFAl1.5 Ba0.04 F0.37 Fe0.38 H1.61 K0.9 Mg2.36 Na0.05 O11.63 Si2.68 Ti0.06C 1 2/m 15.346; 9.257; 10.312
90; 99.97; 90
502.613Mesto, E.; Schingaro, E.; Scordari, F.; Ottolini, L.
An electron microprobe analysis, secondary ion mass spectrometry and single crystal X-ray diffraction study of phlogopites from Mt. Vulture, Potenza, Italy: Consideration of cation partioning Locality: Mt. Vulture, Potenza, Italy Sample: LC7-27Go Note: mica
American Mineralogist, 2006, 91, 182-190
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
9000388 CIFAl1.5 Ca0.5 Fe4 Mg0.5 Mn0.5 Na2.31 O24 P6P 1 21/n 111.868; 12.382; 6.354
90; 114.52; 90
849.512Moore, P. B.; Molin-Case J
Contribution to pegmatite phosphate giant crystal paragenesis: II. The crystal chemistry of wyllieite, Na2Fe2Al[PO4]3, a primary phase
American Mineralogist, 1974, 59, 280-290
9001404 CIFAl1.5 Ca0.704 H18 Na0.2 O11.02 Si2.5I -4 m 29.9266; 9.9266; 10.3031
90; 90; 90
1015.24Artioli, G.
The crystal structure of garronite sample from Goble, Oregon
American Mineralogist, 1992, 77, 189-196
9003355 CIFAl1.5 H30 Na1.37 O28.86 Si10.5C m c 2118.131; 20.507; 7.5221
90; 90; 90
2796.81Simoncic, P.; Armbruster, T.
Peculiarity and defect structure of the natural and synthetic zeolite mordenite: A single-crystal X-ray study Sample: synthetic
American Mineralogist, 2004, 89, 421-431
9002411 CIFAl1.504 F1.746 Fe0.455 H0.142 K0.906 Li1.423 Mn0.038 Na0.005 O10.254 Rb0.051 Si3.536C 1 2 15.262; 9.085; 10.099
90; 100.72; 90
474.36Brigatti, M. F.; Lugli, C.; Poppi, L.; Foord, E. E.; Kile, D. E.
Crystal chemical variations in Li- and Fe-rich micas from Pikes Peak batholith (central Colorado) Sample: 114
American Mineralogist, 2000, 85, 1275-1286
9002189 CIFAl1.524 Mg3.238 O12 Si3.238I a -3 d11.4915; 11.4915; 11.4915
90; 90; 90
1517.51Nakatsuka, A.; Yoshiasa, A.; Yamanaka, T.; Ohtaka, O.; Katsura, T.; Ito, E.
Symmetry change of majorite solid-solution in the system Mg3Al2Si3O12-MgSiO3 Sample: x = .24
American Mineralogist, 1999, 84, 1135-1143
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
9003980 CIFAl1.541 Cr0.244 Mg1.215 O4F d -3 m :28.1166; 8.1166; 8.1166
90; 90; 90
534.715Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Sc, annealed at T = 850 C, ordering, t = 0 m
American Mineralogist, 2006, 91, 313-318
9003981 CIFAl1.541 Cr0.244 Mg1.215 O4F d -3 m :28.1166; 8.1166; 8.1166
90; 90; 90
534.715Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Sc, annealed at T = 850 C, ordering, t = 0.25 m
American Mineralogist, 2006, 91, 313-318
9003972 CIFAl1.544 Cr0.244 Mg1.212 O4F d -3 m :28.1163; 8.1163; 8.1163
90; 90; 90
534.656Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Sc, annealed at T = 650 C, ordering, t = 0 m
American Mineralogist, 2006, 91, 313-318
9003982 CIFAl1.545 Cr0.244 Mg1.211 O4F d -3 m :28.116; 8.116; 8.116
90; 90; 90
534.597Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Sc, annealed at T = 850 C, ordering, t = 0.50 m
American Mineralogist, 2006, 91, 313-318
9003973 CIFAl1.553 Cr0.244 Mg1.203 O4F d -3 m :28.1162; 8.1162; 8.1162
90; 90; 90
534.636Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Sc, annealed at T = 650 C, ordering, t = 12 m
American Mineralogist, 2006, 91, 313-318
9010294 CIFAl1.56 F1.88 Fe0.38 H0.12 K0.95 Li1.44 Mg0.01 Mn0.17 Na0.05 O10.12 Si3.44C 1 2 15.264; 9.086; 10.099
90; 100.719; 90
474.594Brigatti, M. F.; Mottana, A.; Malferrari, D.; Cibin, G.
Crystal structure and chemical composition of Li-, Fe-, and Mn-rich micas Sample: Hirukawa
American Mineralogist, 2007, 92, 1395-1400
9003983 CIFAl1.57 Cr0.244 Mg1.186 O4F d -3 m :28.116; 8.116; 8.116
90; 90; 90
534.597Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Sc, annealed at T = 850 C, ordering, t = 1.5 m
American Mineralogist, 2006, 91, 313-318
9001150 CIFAl1.574 Be2.916 Fe0.3 Li0.027 Mg0.176 Na0.425 O18 Si6.027P 6/m c c9.2666; 9.2666; 9.1874
90; 90; 120
683.226Aurisicchio, C.; Fioravanti, G.; Grubessi, O.; Zanazzi, P. F.
Reappraisal of the crystal chemistry of beryl Sample: 1
American Mineralogist, 1988, 73, 826-837
9003984 CIFAl1.579 Cr0.244 Mg1.177 O4F d -3 m :28.116; 8.116; 8.116
90; 90; 90
534.597Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Sc, annealed at T = 850 C, ordering, t = 1440 m
American Mineralogist, 2006, 91, 313-318
9003974 CIFAl1.586 Cr0.244 Mg1.19 O4F d -3 m :28.1166; 8.1166; 8.1166
90; 90; 90
534.715Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Sc, annealed at T = 650 C, ordering, t = 36 m
American Mineralogist, 2006, 91, 313-318
9003975 CIFAl1.599 Cr0.244 Mg1.157 O4F d -3 m :28.1174; 8.1174; 8.1174
90; 90; 90
534.873Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Sc, annealed at T = 650 C, ordering, t = 120 m
American Mineralogist, 2006, 91, 313-318
9017030 CIFAl1.6 Cr0.4 Fe0.25 Mg0.75 O4F d -3 m :28.1454; 8.1454; 8.1454
90; 90; 90
540.427Lenaz, D.; Youbi, N.; Min, A. D.; Boumehdi, M. A.; Abbou, M. B.
Low intra-crystalline closure temperatures of Cr-bearing spinels from the mantle xenoliths of the Middle AtlasNeogene-Quaternary Volcanic Field (Morocco):Mineralogical evidence of a cooler mantle beneath the West African Craton. Note:Sample MAR-BI4
American Mineralogist, 2014, 99, 267-275
9017036 CIFAl1.6 Cr0.4 Fe0.268 Mg0.732 O4F d -3 m :28.1391; 8.1391; 8.1391
90; 90; 90
539.174Lenaz, D.; Youbi, N.; Min, A. D.; Boumehdi, M. A.; Abbou, M. B.
Low intra-crystalline closure temperatures of Cr-bearing spinels from the mantle xenoliths of the Middle AtlasNeogene-Quaternary Volcanic Field (Morocco):Mineralogical evidence of a cooler mantle beneath the West African Craton. Note:Sample MAR-TF21
American Mineralogist, 2014, 99, 267-275
9000644 CIFAl1.6 H4 Na2.06 O14 Si4.4I 41/a c d :213.729; 13.729; 13.709
90; 90; 90
2583.95Mazzi, F.; Galli, E.
Is each analcime different? ANA 3
American Mineralogist, 1978, 63, 448-460
9001701 CIFAl1.6 O8 Pb2.198 Si2.4I 49.414; 9.414; 2.75
90; 90; 90
243.714Downs, R. T.; Hazen, R. M.; Finger, L. W.
Crystal chemistry of lead aluminosilicate hollandite: A new high-pressure synthetic phase with octahedral Si
American Mineralogist, 1995, 80, 937-940
9000150 CIFAl1.602 Ca H11.333 O16.002 Si4.398C 1 m 117.73; 17.82; 7.43
90; 116.33; 90
2103.96Merkle, A. B.; Slaughter, M.
The crystal structure of heulandite (Ca,Na2)[Al2Si7O18].6H2O
American Mineralogist, 1967, 52, 273-276
9003971 CIFAl1.606 Cr0.244 Mg1.15 O4F d -3 m :28.1174; 8.1174; 8.1174
90; 90; 90
534.873Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Sc, annealed at T = 650 C, disordering, t = 33120 m
American Mineralogist, 2006, 91, 313-318
9003968 CIFAl1.607 Cr0.244 Mg1.149 O4F d -3 m :28.1174; 8.1174; 8.1174
90; 90; 90
534.873Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Sc, annealed at T = 650 C, disordering, t = 3960 m
American Mineralogist, 2006, 91, 313-318
9003970 CIFAl1.607 Cr0.244 Mg1.149 O4F d -3 m :28.1171; 8.1171; 8.1171
90; 90; 90
534.814Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Sc, annealed at T = 650 C, disordering, t = 15840 m
American Mineralogist, 2006, 91, 313-318
9003976 CIFAl1.609 Cr0.244 Mg1.147 O4F d -3 m :28.1178; 8.1178; 8.1178
90; 90; 90
534.952Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Sc, annealed at T = 650 C, ordering, t = 240 m
American Mineralogist, 2006, 91, 313-318
9003969 CIFAl1.611 Cr0.244 Mg1.145 O4F d -3 m :28.1173; 8.1173; 8.1173
90; 90; 90
534.853Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Sc, annealed at T = 650 C, disordering, t = 7980 m
American Mineralogist, 2006, 91, 313-318
9003979 CIFAl1.612 Cr0.244 Mg1.144 O4F d -3 m :28.1176; 8.1176; 8.1176
90; 90; 90
534.913Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Sc, annealed at T = 650 C, ordering, t = 26820 m
American Mineralogist, 2006, 91, 313-318
9017037 CIFAl1.612 Cr0.388 Fe0.234 Mg0.766 O4F d -3 m :28.1499; 8.1499; 8.1499
90; 90; 90
541.323Lenaz, D.; Youbi, N.; Min, A. D.; Boumehdi, M. A.; Abbou, M. B.
Low intra-crystalline closure temperatures of Cr-bearing spinels from the mantle xenoliths of the Middle AtlasNeogene-Quaternary Volcanic Field (Morocco):Mineralogical evidence of a cooler mantle beneath the West African Craton. Note:Sample MAR-TF28
American Mineralogist, 2014, 99, 267-275
9003967 CIFAl1.613 Cr0.244 Mg1.143 O4F d -3 m :28.1174; 8.1174; 8.1174
90; 90; 90
534.873Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Sc, annealed at T = 650 C, disordering, t = 2520 m
American Mineralogist, 2006, 91, 313-318
9016320 CIFAl1.614 Ca3 Fe1.386 O12 Sn1.362 Ti0.638I a -3 d12.524; 12.524; 12.524
90; 90; 90
1964.4Galuskina, I. O.; Galuskin, E. V.; Armbruster, T.; Lazic, B.; Dzierzanowski, P.; Gazeev, V. M.; Prusik, K.; Pertsev, N. N.; Winiarski, A.; Zadov, A. E.; Wrzalik, R.; Gurbanov, A. G.
Bitikleite-(SnAl) and bitikleite-(ZrFe): New garnets from xenoliths of the Upper Chegem volcanic structure, Kabardino-Balkaria, Northern Caucasus, Russia
American Mineralogist, 2010, 95, 959-967
9003977 CIFAl1.614 Cr0.244 Mg1.142 O4F d -3 m :28.1177; 8.1177; 8.1177
90; 90; 90
534.933Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Sc, annealed at T = 650 C, ordering, t = 480 m
American Mineralogist, 2006, 91, 313-318
9003978 CIFAl1.614 Cr0.244 Mg1.142 O4F d -3 m :28.1176; 8.1176; 8.1176
90; 90; 90
534.913Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Sc, annealed at T = 650 C, ordering, t = 6660 m
American Mineralogist, 2006, 91, 313-318
9017872 CIFAl1.62 Ca0.22 Fe2.72 Mg3.36 Mn6.3 Na5.6 O48 P12P 1 21/n 112.8926; 12.4658; 10.9178
90; 97.92; 90
1737.93Yang, H.; Kobsch, A.; Gu, X.; Downs, R. T.; Xie, X.
Zhanghuifenite, Na3Mn2+4Mg2Al(PO4)6, a new mineral isostructural with bobfergusonite, from the Santa Ana mine, San Luis province, Argentina
American Mineralogist, 2021, 106, 1009-1015
9002301 CIFAl1.62 F0.04 Fe1.5 H1.8 K0.96 Mg0.76 Na0.04 O11.96 Si2.72 Ti0.22C 1 2/m 15.352; 9.268; 10.255
90; 100.27; 90
500.522Brigatti, M. F.; Frigieri, P.; Ghezzo c; Poppi, L.
Crystal chemistry of Al-rich biotites coexisting with muscovites in peraluminous granites Sample: A4
American Mineralogist, 2000, 85, 436-448
9000020 CIFAl1.624 F3.882 H2.993 Mg0.376 Na0.35 O2.993F d -3 m :19.87; 9.87; 9.87
90; 90; 90
961.505Pabst, A.
Formula and structure of ralstonite
American Mineralogist, 1939, 24, 566-576
9003966 CIFAl1.627 Cr0.244 Mg1.129 O4F d -3 m :28.1175; 8.1175; 8.1175
90; 90; 90
534.893Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Sc, annealed at T = 650 C, disordering, t = 840 m
American Mineralogist, 2006, 91, 313-318
9003965 CIFAl1.629 Cr0.244 Mg1.127 O4F d -3 m :28.1174; 8.1174; 8.1174
90; 90; 90
534.873Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Sc, annealed at T = 650 C, disordering, t = 420 m
American Mineralogist, 2006, 91, 313-318
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
9002310 CIFAl1.64 Fe2.68 K0.96 O12 Si2.64C 1 2/m 15.3812; 9.3234; 10.2934
90; 100.22; 90
508.237Redhammer, G. J.; Beran, A.; Schneider, J.; Amthauer, G.; Lottermoser, W.
Spectroscopic and structural properties of synthetic micas on the annite-siderophyllite binary: Synthesis, crystal structure refinement, Mossbauer, and infrared spectroscopy Sample: sd37no.10
American Mineralogist, 2000, 85, 449-465
9000645 CIFAl1.64 H4 Na2.03 O14 Si4.36I b c a13.733; 13.729; 13.712
90; 90; 90
2585.26Mazzi, F.; Galli, E.
Is each analcime different? ANA 4
American Mineralogist, 1978, 63, 448-460
9003963 CIFAl1.641 Cr0.244 Mg1.115 O4F d -3 m :28.1176; 8.1176; 8.1176
90; 90; 90
534.913Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Sc, annealed at T = 650 C, disordering, t = 60 m
American Mineralogist, 2006, 91, 313-318
9003964 CIFAl1.641 Cr0.244 Mg1.115 O4F d -3 m :28.1175; 8.1175; 8.1175
90; 90; 90
534.893Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Sc, annealed at T = 650 C, disordering, t = 180 m
American Mineralogist, 2006, 91, 313-318
9003962 CIFAl1.643 Cr0.244 Mg1.113 O4F d -3 m :28.118; 8.118; 8.118
90; 90; 90
534.992Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Sc, untreated
American Mineralogist, 2006, 91, 313-318
9002419 CIFAl1.645 F1.92 Fe0.887 H0.08 K0.942 Li0.862 Mg0.009 Mn0.064 Na0.04 O10.08 Rb0.003 Si3.228 Ti0.01C 1 2 15.288; 9.133; 10.088
90; 100.81; 90
478.557Brigatti, M. F.; Lugli, C.; Poppi, L.; Foord, E. E.; Kile, D. E.
Crystal chemical variations in Li- and Fe-rich micas from Pikes Peak batholith (central Colorado) Sample: 177
American Mineralogist, 2000, 85, 1275-1286
9002413 CIFAl1.649 F1.534 Fe0.608 H0.24 K0.956 Li1.222 Mg0.005 Mn0.045 Na0.011 O10.466 Rb0.023 Si3.412C 1 2 15.263; 9.085; 10.078
90; 100.75; 90
473.416Brigatti, M. F.; Lugli, C.; Poppi, L.; Foord, E. E.; Kile, D. E.
Crystal chemical variations in Li- and Fe-rich micas from Pikes Peak batholith (central Colorado) Sample: 55b
American Mineralogist, 2000, 85, 1275-1286
9001152 CIFAl1.652 Be2.877 Cs0.04 Fe0.234 Li0.099 Mg0.116 Na0.315 O18 Si6.024P 6/m c c9.2531; 9.2531; 9.1918
90; 90; 120
681.563Aurisicchio, C.; Fioravanti, G.; Grubessi, O.; Zanazzi, P. F.
Reappraisal of the crystal chemistry of beryl Sample: 6
American Mineralogist, 1988, 73, 826-837
9001608 CIFAl1.66 Ba2 F2 O10 P2 Ti0.34P 1 21/n 16.977; 12.564; 5.223
90; 102.15; 90
447.587Cooper, M. A.; Hawthorne, F. C.
The crystal structure of curetonite, a complex heteropolyhedral sheet mineral Data has been corrected according to the ICSD
American Mineralogist, 1994, 79, 545-549
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
9002424 CIFAl1.678 F1.294 Fe1.314 H0.154 K0.985 Li0.621 Mg0.022 Mn0.051 Na0.036 O10.706 Rb0.002 Si3.224C 1 2 15.3; 9.144; 10.089
90; 100.74; 90
480.38Brigatti, M. F.; Lugli, C.; Poppi, L.; Foord, E. E.; Kile, D. E.
Crystal chemical variations in Li- and Fe-rich micas from Pikes Peak batholith (central Colorado) Sample: 103
American Mineralogist, 2000, 85, 1275-1286
9003954 CIFAl1.679 Cr0.057 Mg1.264 O4F d -3 m :28.0907; 8.0907; 8.0907
90; 90; 90
529.613Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Ch1, annealed at T = 850 C, ordering, t = 0 m
American Mineralogist, 2006, 91, 313-318
9010295 CIFAl1.68 Ca0.01 F1.9 Fe0.36 H0.1 K0.94 Li1.32 Mg0.16 Mn0.16 Na0.04 O10.1 Si3.32C 1 2 15.297; 9.133; 10.168
90; 100.78; 90
483.222Brigatti, M. F.; Mottana, A.; Malferrari, D.; Cibin, G.
Crystal structure and chemical composition of Li-, Fe-, and Mn-rich micas Sample: Mokrusha
American Mineralogist, 2007, 92, 1395-1400
1530338 CIFAl1.68 Ca2 Fe4.45 H K0.2 Mg0.55 Na0.8 O24 Si6.32C 1 2/m 19.967; 18.269; 5.347
90; 104.97; 90
940.576Makino, K.; Tomita, K.
Cation distribution in the octahedral sites of hornblendes
American Mineralogist, 1989, 74, 1097-1105
9001242 CIFAl1.68 Ca2 Fe4.45 H2 Mg0.55 Na3.96 O24 Si6.32C 1 2/m 19.967; 18.269; 5.347
90; 104.97; 90
940.576Makino, K.; Tomita, K.
Cation distribution in the octahedral sites of hornblendes sample O-H from Obira, Japan
American Mineralogist, 1989, 74, 1097-1105
9003955 CIFAl1.68 Cr0.057 Mg1.263 O4F d -3 m :28.0907; 8.0907; 8.0907
90; 90; 90
529.613Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Ch1, annealed at T = 850 C, ordering, t = 0.25 m
American Mineralogist, 2006, 91, 313-318
9000643 CIFAl1.68 H4 Na1.85 O14 Si4.32I 41/a c d :213.727; 13.727; 13.686
90; 90; 90
2578.86Mazzi, F.; Galli, E.
Is each analcime different? ANA 2
American Mineralogist, 1978, 63, 448-460
9003956 CIFAl1.688 Cr0.057 Mg1.255 O4F d -3 m :28.0908; 8.0908; 8.0908
90; 90; 90
529.632Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Ch1, annealed at T = 850 C, ordering, t = 0.50 m
American Mineralogist, 2006, 91, 313-318
9002415 CIFAl1.69 Ca0.006 F1.544 Fe0.484 H0.186 K0.964 Li1.093 Mg0.022 Mn0.062 Na0.016 O10.456 Si3.328C 1 2 15.275; 9.105; 10.084
90; 100.7; 90
475.902Brigatti, M. F.; Lugli, C.; Poppi, L.; Foord, E. E.; Kile, D. E.
Crystal chemical variations in Li- and Fe-rich micas from Pikes Peak batholith (central Colorado) sample: 130(2)
American Mineralogist, 2000, 85, 1275-1286
9003957 CIFAl1.691 Cr0.057 Mg1.252 O4F d -3 m :28.0909; 8.0909; 8.0909
90; 90; 90
529.652Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Ch1, annealed at T = 850 C, ordering, t = 1.50 m
American Mineralogist, 2006, 91, 313-318
9003944 CIFAl1.699 Cr0.03 Mg1.271 O4F d -3 m :28.0865; 8.0865; 8.0865
90; 90; 90
528.788Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Ch, annealed at T = 650 C, ordering, t = 0 m
American Mineralogist, 2006, 91, 313-318
9002412 CIFAl1.7 F1.626 Fe0.589 H0.206 K0.94 Li1.129 Mg0.007 Mn0.038 Na0.002 O10.374 Rb0.006 Si3.412C 1 2 15.27; 9.092; 10.08
90; 100.7; 90
474.584Brigatti, M. F.; Lugli, C.; Poppi, L.; Foord, E. E.; Kile, D. E.
Crystal chemical variations in Li- and Fe-rich micas from Pikes Peak batholith (central Colorado) Sample: 55a
American Mineralogist, 2000, 85, 1275-1286
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
9003958 CIFAl1.701 Cr0.057 Mg1.242 O4F d -3 m :28.0918; 8.0918; 8.0918
90; 90; 90
529.829Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Ch1, annealed at T = 850 C, ordering, t = 15 m
American Mineralogist, 2006, 91, 313-318
9003959 CIFAl1.704 Cr0.057 Mg1.239 O4F d -3 m :28.0919; 8.0919; 8.0919
90; 90; 90
529.848Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Ch1, annealed at T = 850 C, ordering, t = 30 m
American Mineralogist, 2006, 91, 313-318
9002414 CIFAl1.705 Ca0.006 F1.552 Fe0.795 H0.186 K0.968 Li1.08 Mg0.022 Mn0.062 Na0.016 O10.448 Si3.296C 1 2 15.29; 9.128; 10.093
90; 100.8; 90
478.729Brigatti, M. F.; Lugli, C.; Poppi, L.; Foord, E. E.; Kile, D. E.
Crystal chemical variations in Li- and Fe-rich micas from Pikes Peak batholith (central Colorado) sample: 130(1)
American Mineralogist, 2000, 85, 1275-1286
9003960 CIFAl1.705 Cr0.057 Mg1.338 O4F d -3 m :28.0919; 8.0919; 8.0919
90; 90; 90
529.848Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Ch1, annealed at T = 850 C, ordering, t = 60 m
American Mineralogist, 2006, 91, 313-318
9003961 CIFAl1.708 Cr0.057 Mg1.235 O4F d -3 m :28.0919; 8.0919; 8.0919
90; 90; 90
529.848Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Ch1, annealed at T = 850 C, ordering, t = 1440 m
American Mineralogist, 2006, 91, 313-318
9010147 CIFAl1.71 As0.27 Be3.33 Ca3.78 Fe0.96 Mg7.87 Mn1.35 O40 Sb3 Si5.73P 110.394; 10.777; 8.896
105.953; 96.294; 124.948
738.874Grew, E. S.; Barbier, J.; Britten, J.; Halenius, U.; Shearer, C. K.
The crystal chemistry of welshite, a non-centrosymmetric (P1) aenigmatite- sapphirine-surinamite group mineral
American Mineralogist, 2007, 92, 80-90
9001742 CIFAl1.71 Ca0.96 Ce0.23 Cu0.13 Fe0.4 Gd0.01 H La0.11 Mg0.16 Mn0.93 Nd0.1 O13 Pr0.03 Si3 Sm0.02 Sr0.19 Th0.02P 1 21/m 18.89; 5.69; 10.135
90; 114.44; 90
466.732Bonazzi, P.; Menchetti, S.; Reinecke, T.
Solid solution between piemontite and androsite-(La), a new mineral of the epidote group from Andros Island, Greece Sample: VA-1a
American Mineralogist, 1996, 81, 735-742
9002841 CIFAl1.71 F0.04 Fe2.37 H1.9 K Mg0.12 Mn0.03 O11.96 Si2.56 Ti0.03C 1 2/m 15.3741; 9.3083; 10.2829
90; 100.22; 90
506.228Redhammer, G. J.; Roth, G.
Single-crystal structure refinements and crystal chemistry of synthetic trioctahedral micas KM3(Al,Si)4O10(OH)2, where M = Ni, Mg, Co, Fe, Al Sample: G-117
American Mineralogist, 2002, 87, 1464-1476
9003945 CIFAl1.712 Cr0.03 Mg1.258 O4F d -3 m :28.0862; 8.0862; 8.0862
90; 90; 90
528.729Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Ch, annealed at T = 650 C, ordering, t = 12 m
American Mineralogist, 2006, 91, 313-318
9003946 CIFAl1.713 Cr0.03 Mg1.257 O4F d -3 m :28.0863; 8.0863; 8.0863
90; 90; 90
528.749Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Ch, annealed at T = 650 C, ordering, t = 36 m
American Mineralogist, 2006, 91, 313-318
9017033 CIFAl1.718 Cr0.282 Fe0.24 Mg0.76 O4F d -3 m :28.1339; 8.1339; 8.1339
90; 90; 90
538.142Lenaz, D.; Youbi, N.; Min, A. D.; Boumehdi, M. A.; Abbou, M. B.
Low intra-crystalline closure temperatures of Cr-bearing spinels from the mantle xenoliths of the Middle AtlasNeogene-Quaternary Volcanic Field (Morocco): Mineralogical evidence of a cooler mantle beneath the West African Craton. Note:Sample MAR-TF6
American Mineralogist, 2014, 99, 267-275
9002209 CIFAl1.72 Ca1.84 Mg4.56 Na0.58 O24 Si6.88C 1 2/m 19.8466; 17.99; 5.2793
90; 105.099; 90
902.892Sharma, A.; Jenkins, D. M.
Hydrothermal synthesis of amphiboles along the tremolite-pargasite join and in the ternary system tremolite-pargasite-cummingtonite Sample: PARG 20-2
American Mineralogist, 1999, 84, 1304-1318
9002418 CIFAl1.72 F1.654 Fe0.731 H0.244 K0.94 Li0.591 Mg0.008 Mn0.063 Na0.02 O10.346 Rb0.004 Si3.308C 1 2 15.283; 9.123; 10.072
90; 100.76; 90
476.903Brigatti, M. F.; Lugli, C.; Poppi, L.; Foord, E. E.; Kile, D. E.
Crystal chemical variations in Li- and Fe-rich micas from Pikes Peak batholith (central Colorado) Sample: 54b
American Mineralogist, 2000, 85, 1275-1286
1521827 CIFAl1.72 Fe2.38 H1.88 K Mg0.11 Mn0.03 O11.88 Si2.55 Ti0.04C 1 2/m 15.377; 9.308; 10.283
90; 100.22; 90
506.489Redhammer, G.J.; Lottermoser, W.; Schneider, J.; Beran, A.; Amthauer, G.
Spectroscopic and structural properties of synthetic micas on the annite-siderophyllite binary: synthesis, crystal structure refinement, Mossbauer, and infrared spectroscopy
American Mineralogist, 2000, 85, 449-465
9001154 CIFAl1.721 Be2.94 Cs0.013 Fe0.172 K0.026 Li0.012 Mg0.024 Mn0.05 Na0.053 O18 Rb0.003 Si6.045 Ti0.038P 6/m c c9.2364; 9.2364; 9.1933
90; 90; 120
679.215Aurisicchio, C.; Fioravanti, G.; Grubessi, O.; Zanazzi, P. F.
Reappraisal of the crystal chemistry of beryl Sample: 7
American Mineralogist, 1988, 73, 826-837
9002417 CIFAl1.732 Ca0.001 F1.606 Fe0.788 H0.244 K0.96 Li0.963 Mg0.009 Mn0.01 Na0.02 O10.394 Si3.304C 1 2 15.285; 9.122; 10.101
90; 100.85; 90
478.262Brigatti, M. F.; Lugli, C.; Poppi, L.; Foord, E. E.; Kile, D. E.
Crystal chemical variations in Li- and Fe-rich micas from Pikes Peak batholith (central Colorado) Sample: 104
American Mineralogist, 2000, 85, 1275-1286
9003315 CIFAl1.74 Ba0.09 F0.02 Fe0.21 H1.98 K0.91 Mg0.93 Mn1.53 O11.98 Si2.56 Ti0.03C 1 2/m 15.3791; 9.319; 10.2918
90; 100.186; 90
507.774Ishida, K.; Hawthorne, F. C.; Hirowatari, F.
Shirozulite, KMn3(Si3Al)O10(OH)2, a new manganese-dominant trioctahedral mica: Description and crystal structure Note: Displacement factors for O1, O2 and O4 have been altered.
American Mineralogist, 2004, 89, 232-238
9003503 CIFAl1.74 Ca2 H Mn1.26 O13 Si3P 1 21/m 18.8589; 5.7017; 10.1802
90; 115.54; 90
463.964Nagashima, M.; Akasaka, M.
An X-ray Rietveld study of piemontite on the join Ca2Al3Si3O12(OH) - Ca2Mn3+3Si3O12(OH) formed by hydrothermal synthesis Sample: q = 1.5, p = 1.26, Synthesis at P=200 MPa, T=500 C
American Mineralogist, 2004, 89, 1119-1129
9003504 CIFAl1.74 Ca2 H Mn1.26 O13 Si3P 1 21/m 18.8625; 5.7006; 10.1822
90; 115.525; 90
464.212Nagashima, M.; Akasaka, M.
An X-ray Rietveld study of piemontite on the join Ca2Al3Si3O12(OH) - Ca2Mn3+3Si3O12(OH) formed by hydrothermal synthesis Sample: q = 1.5, p = 1.25, Synthesis at P=350 MPa, T=500 C
American Mineralogist, 2004, 89, 1119-1129
9002188 CIFAl1.74 Mg3.13 O12 Si3.13I a -3 d11.4755; 11.4755; 11.4755
90; 90; 90
1511.18Nakatsuka, A.; Yoshiasa, A.; Yamanaka, T.; Ohtaka, O.; Katsura, T.; Ito, E.
Symmetry change of majorite solid-solution in the system Mg3Al2Si3O12-MgSiO3 Sample: x = .13
American Mineralogist, 1999, 84, 1135-1143
9000425 CIFAl1.74 Na0.03 O8 Si2.26 Sr0.84C 1 2/m 18.3282; 12.9801; 7.1358
90; 115.599; 90
695.667Grundy, H. D.; Ito, J.
The refinement of the crystal structure of a synthetic non-stoichiometric Sr feldspar
American Mineralogist, 1974, 59, 1319-1326
9002421 CIFAl1.743 F1.64 Fe0.879 H0.248 K0.954 Li0.849 Mg0.047 Mn0.06 Na0.014 O10.36 Si3.236C 1 2 15.297; 9.146; 10.102
90; 100.81; 90
480.72Brigatti, M. F.; Lugli, C.; Poppi, L.; Foord, E. E.; Kile, D. E.
Crystal chemical variations in Li- and Fe-rich micas from Pikes Peak batholith (central Colorado) sample: 140(2)
American Mineralogist, 2000, 85, 1275-1286
9003947 CIFAl1.744 Cr0.03 Mg1.226 O4F d -3 m :28.0876; 8.0876; 8.0876
90; 90; 90
529.004Princivalle, F.; Martignago, F.; Dal Negro, A.
Kinetics of cation ordering in natural Mg(Al,Cr3+)2O4 spinels Sample: Ch, annealed at T = 650 C, ordering, t = 120 m
American Mineralogist, 2006, 91, 313-318
9003505 CIFAl1.75 Ca2 H Mn1.25 O13 Si3P 1 21/m 18.8591; 5.7039; 10.1827
90; 115.548; 90
464.236Nagashima, M.; Akasaka, M.
An X-ray Rietveld study of piemontite on the join Ca2Al3Si3O12(OH) - Ca2Mn3+3Si3O12(OH) formed by hydrothermal synthesis Sample: q = 1.75, p = 1.26, Synthesis at P=200 MPa, T=500 C
American Mineralogist, 2004, 89, 1119-1129
9003506 CIFAl1.75 Ca2 H Mn1.25 O13 Si3P 1 21/m 18.8581; 5.6949; 10.1771
90; 115.518; 90
463.312Nagashima, M.; Akasaka, M.
An X-ray Rietveld study of piemontite on the join Ca2Al3Si3O12(OH) - Ca2Mn3+3Si3O12(OH) formed by hydrothermal synthesis Sample: q = 1.75, p = 1.25, Synthesis at P=350 MPa, T=500 C
American Mineralogist, 2004, 89, 1119-1129
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
9010142 CIFAl1.75 Mg0.899 Mn0.351 O4F d -3 m :28.1413; 8.1413; 8.1413
90; 90; 90
539.612Bosi, F.; Halenius, U.; Andreozzi, G. B.; Skogby, H.; Lucchesi, S.
Structural refinement and crystal chemistry of Mn-doped spinel: A case for tetrahedrally coordinated Mn3+ in an oxygen-based structure Sample: MgMn20
American Mineralogist, 2007, 92, 27-33

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