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

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