Crystallography Open Database

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9003631 CIFAl2.315 Ca0.474 H8 Na1.462 O12.102 Si2.685I -4 2 d12.9815; 12.9815; 6.6808
90; 90; 90
1125.84Lee Y; Hriljac J A; Vogt T
Variable-temperature structural studies of tetranatrolite from Mt. Saint-Hilaire: Synchrotron X-ray powder diffraction and Rietveld analysis Sample: T = 200 C
American Mineralogist, 2005, 90, 247-251
9003632 CIFAl2.315 Ca0.474 H0.204 Na1.462 O12 Si2.685I -4 2 d12.9202; 12.9202; 6.695
90; 90; 90
1117.61Lee Y; Hriljac J A; Vogt T
Variable-temperature structural studies of tetranatrolite from Mt. Saint-Hilaire: Synchrotron X-ray powder diffraction and Rietveld analysis Sample: T = 300 C, phase I
American Mineralogist, 2005, 90, 247-251
9003633 CIFAl2.315 Ca0.474 H0.204 Na1.462 O10.402 Si2.685I -4 2 d13.1503; 13.1503; 6.2469
90; 90; 90
1080.28Lee Y; Hriljac J A; Vogt T
Variable-temperature structural studies of tetranatrolite from Mt. Saint-Hilaire: Synchrotron X-ray powder diffraction and Rietveld analysis Sample: T = 300 C, phase II
American Mineralogist, 2005, 90, 247-251
9003634 CIFAl2 H6 Na2 O13 Si3C 1 c 16.48; 19.293; 9.8984
90; 107.56; 90
1179.82Lee, Y.; Hriljac, J. A.; Parise, J. B.; Vogt, T.
Pressure-induced stabilization of ordered paranatrolite: A new insight into the paranatrolite controversy Sample: at P = 0.99 GPa
American Mineralogist, 2005, 90, 252-257
9003635 CIFGe Mg O3C m c m2.613; 8.473; 6.443
90; 90; 90
142.648Hirose, K.; Kawamura, K.; Ohishi, Y.; Tateno, S.; Sata, N.
Stability and equation of state of MgGeO3 post-perovskite phase Sample: P = 78.3 GPa, T = 300 K Note: CaIrO3-type structure
American Mineralogist, 2005, 90, 262-265
9003636 CIFGe Mg O3C m c m2.613; 8.473; 6.443
90; 90; 90
142.648Hirose, K.; Kawamura, K.; Ohishi, Y.; Tateno, S.; Sata, N.
Stability and equation of state of MgGeO3 post-perovskite phase Sample: P = 78.3 GPa, T = 300 K Note: CaIrO3-type structure, positional parameters from MD simulation
American Mineralogist, 2005, 90, 262-265
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
9003638 CIFFe2 H10 O17 S3P 1 21/m 110.711; 11.085; 5.5747
90; 98.853; 90
654.007Majzlan, J.; Botez, C.; Stephens, P. W.
The crystal structures of synthetics Fe2(SO4)3(H2O)5 and the type specimen of lausenite
American Mineralogist, 2005, 90, 411-416
9003639 CIFAl2 Ca H4 O10 Si2P m c n5.8515; 8.7768; 13.1107
90; 90; 90
673.332Sondergeld, P.; Schranz, W.; Troster, A.; Armbruster, T.; Giester, G.; Kityk, A.; Carpenter, M. A.
Ordering and elasticity associated with low-temperature phase transitions in lawsonite Sample at T = 215 K
American Mineralogist, 2005, 90, 448-456
9003640 CIFAl8.982 B3.324 H5 Na0.484 O31 Si5.676R 3 m :H15.8031; 15.8031; 7.0877
90; 90; 120
1532.92Ertl, A.; Rossman, G. R.; Hughes, J. M.; Prowatke, S.; Ludwig, T.
Mn-bearing "oxy-rossmanite" with tetrahedrally-coordinated Al and B from Austria: Structure, chemistry, and infrared and optical spectroscopic study Sample: REDT1 from Eibenstein an der Thaya, Lower Austria Reported formula: (Na.46 Ca.01) (Al2.37 Li.33 Mn2+.25 Fe2+.04 Ti4+.01) Al6 (Si5.47 Al.28 B.25) O18 (BO3)3 [(OH)2.85 O.15] [O.86 (OH).10 F.04] Tourmaline
American Mineralogist, 2005, 90, 481-487
9003641 CIFAl9 B3.39 H3 Na0.478 O31 Si5.61R 3 m :H15.8171; 15.8171; 7.0935
90; 90; 120
1536.9Ertl, A.; Rossman, G. R.; Hughes, J. M.; Prowatke, S.; Ludwig, T.
Mn-bearing "oxy-rossmanite" with tetrahedrally-coordinated Al and B from Austria: Structure, chemistry, and infrared and optical spectroscopic study Sample: REDT4 from Eibenstein an der Thaya, Lower Austria Reported formula: (Na.46 Ca.01) (Al2.35 Li.32 Mn2+.28 Fe2+.04 Ti4+.01) Al6 (Si5.51 Al.25 B.24) O18 (BO3)3 [(OH)2.80 O.20] [O.86 (OH).10 F.04] Tourmaline
American Mineralogist, 2005, 90, 481-487
9003642 CIFAl2 Ca3 D12 O12I a -3 d12.567; 12.567; 12.567
90; 90; 90
1984.7Lager, G. A.; Marshall, W. G.; Liu, Z.; Downs, R. T.
Re-examination of the hydrogarnet structure at high pressure using neutron powder diffraction and infrared spectroscopy Sample: P = 0.08 GPa
American Mineralogist, 2005, 90, 639-644
9003643 CIFAl2 Ca3 D12 O12I a -3 d12.5163; 12.5163; 12.5163
90; 90; 90
1960.78Lager, G. A.; Marshall, W. G.; Liu, Z.; Downs, R. T.
Re-examination of the hydrogarnet structure at high pressure using neutron powder diffraction and infrared spectroscopy Sample: P = 0.80 GPa
American Mineralogist, 2005, 90, 639-644
9003644 CIFAl2 Ca3 D12 O12I a -3 d12.4557; 12.4557; 12.4557
90; 90; 90
1932.43Lager, G. A.; Marshall, W. G.; Liu, Z.; Downs, R. T.
Re-examination of the hydrogarnet structure at high pressure using neutron powder diffraction and infrared spectroscopy Sample: P = 1.72 GPa
American Mineralogist, 2005, 90, 639-644
9003645 CIFAl2 Ca3 D12 O12I a -3 d12.3783; 12.3783; 12.3783
90; 90; 90
1896.63Lager, G. A.; Marshall, W. G.; Liu, Z.; Downs, R. T.
Re-examination of the hydrogarnet structure at high pressure using neutron powder diffraction and infrared spectroscopy Sample: P = 2.98 GPa
American Mineralogist, 2005, 90, 639-644
9003646 CIFAl2 Ca3 D12 O12I a -3 d12.3165; 12.3165; 12.3165
90; 90; 90
1868.37Lager, G. A.; Marshall, W. G.; Liu, Z.; Downs, R. T.
Re-examination of the hydrogarnet structure at high pressure using neutron powder diffraction and infrared spectroscopy Sample: P = 4.05 GPa
American Mineralogist, 2005, 90, 639-644
9003647 CIFAl2 Ca3 D12 O12I a -3 d12.2441; 12.2441; 12.2441
90; 90; 90
1835.61Lager, G. A.; Marshall, W. G.; Liu, Z.; Downs, R. T.
Re-examination of the hydrogarnet structure at high pressure using neutron powder diffraction and infrared spectroscopy Sample: P = 5.40 GPa
American Mineralogist, 2005, 90, 639-644
9003648 CIFAl2 Ca3 D12 O12I a -3 d12.1812; 12.1812; 12.1812
90; 90; 90
1807.47Lager, G. A.; Marshall, W. G.; Liu, Z.; Downs, R. T.
Re-examination of the hydrogarnet structure at high pressure using neutron powder diffraction and infrared spectroscopy Sample: P = 6.65 GPa
American Mineralogist, 2005, 90, 639-644
9003649 CIFAl2 Ca3 D12 O12I a -3 d12.1388; 12.1388; 12.1388
90; 90; 90
1788.66Lager, G. A.; Marshall, W. G.; Liu, Z.; Downs, R. T.
Re-examination of the hydrogarnet structure at high pressure using neutron powder diffraction and infrared spectroscopy Sample: P = 7.55 GPa
American Mineralogist, 2005, 90, 639-644
9003650 CIFAl2 Ca3 D12 O12I a -3 d12.0926; 12.0926; 12.0926
90; 90; 90
1768.31Lager, G. A.; Marshall, W. G.; Liu, Z.; Downs, R. T.
Re-examination of the hydrogarnet structure at high pressure using neutron powder diffraction and infrared spectroscopy Sample: P = 8.56 GPa
American Mineralogist, 2005, 90, 639-644
9003651 CIFAl2 Ca3 D12 O12I a -3 d12.0549; 12.0549; 12.0549
90; 90; 90
1751.82Lager, G. A.; Marshall, W. G.; Liu, Z.; Downs, R. T.
Re-examination of the hydrogarnet structure at high pressure using neutron powder diffraction and infrared spectroscopy Sample: P = 9.42 GPa
American Mineralogist, 2005, 90, 639-644
9003652 CIFAl5.574 Ca2 H72 K0.48 Na0.3 O61.56 Si12.426R -3 m :H13.335; 13.335; 22.823
90; 90; 120
3514.71Gatta, G. D.; Comodi, P.; Zanazzi, P. F.; Ballaran, T. B.
Anomalous elastic behavior and high-pressure structural evolution of zeolite levyne Locality: Beech Creek, Grant County, Oregon P = .0001 GPa uncompressed
American Mineralogist, 2005, 90, 645-652
9003653 CIFAl5.574 Ca2.28 H60 K0.56 Na0.4 O60.78 Si12.426R -3 m :H13.196; 13.196; 22.895
90; 90; 120
3452.68Gatta, G. D.; Comodi, P.; Zanazzi, P. F.; Ballaran, T. B.
Anomalous elastic behavior and high-pressure structural evolution of zeolite levyne Locality: Beech Creek, Grant County, Oregon P = .79 GPa
American Mineralogist, 2005, 90, 645-652
9003654 CIFAl5.574 Ca2.56 H72 K0.56 Na0.5 O66.72 Si12.426R -3 m :H13; 13; 22.676
90; 90; 120
3318.82Gatta, G. D.; Comodi, P.; Zanazzi, P. F.; Ballaran, T. B.
Anomalous elastic behavior and high-pressure structural evolution of zeolite levyne Locality: Beech Creek, Grant County, Oregon P = 3.0 GPa
American Mineralogist, 2005, 90, 645-652
9003655 CIFAl5.574 Ca2.16 H60 K0.5 Na0.1 O61.44 Si12.426R -3 m :H13.327; 13.327; 22.861
90; 90; 120
3516.34Gatta, G. D.; Comodi, P.; Zanazzi, P. F.; Ballaran, T. B.
Anomalous elastic behavior and high-pressure structural evolution of zeolite levyne Locality: Beech Creek, Grant County, Oregon P = .0001 GPa decompressed
American Mineralogist, 2005, 90, 645-652
9003656 CIFFe Mn2.02 Na1.862 O12 P3C 1 2/c 112.024; 12.629; 6.515
90; 114.58; 90
899.66Hatert, F.; Rebbouh, L.; Hermann, R. P.; Fransolet, A. M.; Long, G. J.; Grandjean, F.
Crystal chemistry of the hydrothermally synthesized Na2(Mn1-xFe2+x)2Fe3+(PO4)3 alluaudite-type solid solution Sample: Na2Mn2Fe3+(PO4)3 (x = 0.00)
American Mineralogist, 2005, 90, 653-662
9003657 CIFFe1.5 Mn1.538 Na1.56 O12 P3C 1 2/c 111.995; 12.596; 6.495
90; 114.6; 90
892.254Hatert, F.; Rebbouh, L.; Hermann, R. P.; Fransolet, A. M.; Long, G. J.; Grandjean, F.
Crystal chemistry of the hydrothermally synthesized Na2(Mn1-xFe2+x)2Fe3+(PO4)3 alluaudite-type solid solution Sample: Na2Mn1.5Fe2+0.5Fe3+(PO4)3 (x = 0.25)
American Mineralogist, 2005, 90, 653-662
9003658 CIFFe1.964 Mn Na1.738 O12 P3C 1 2/c 111.944; 12.56; 6.48
90; 114.52; 90
884.44Hatert, F.; Rebbouh, L.; Hermann, R. P.; Fransolet, A. M.; Long, G. J.; Grandjean, F.
Crystal chemistry of the hydrothermally synthesized Na2(Mn1-xFe2+x)2Fe3+(PO4)3 alluaudite-type solid solution Sample: Na2MnFe2+Fe3+(PO4)3 (x = 0.50)
American Mineralogist, 2005, 90, 653-662
9003659 CIFFe2.48 Mn0.442 Na1.762 O12 P3C 1 2/c 111.894; 12.536; 6.471
90; 114.49; 90
878.043Hatert, F.; Rebbouh, L.; Hermann, R. P.; Fransolet, A. M.; Long, G. J.; Grandjean, F.
Crystal chemistry of the hydrothermally synthesized Na2(Mn1-xFe2+x)2Fe3+(PO4)3 alluaudite-type solid solution Sample: Na2Mn0.5Fe2+1.5Fe3+(PO4)3 (x = 0.75)
American Mineralogist, 2005, 90, 653-662
9003660 CIFFe3 Na1.702 O12 P3C 1 2/c 111.849; 12.539; 6.486
90; 114.51; 90
876.819Hatert, F.; Rebbouh, L.; Hermann, R. P.; Fransolet, A. M.; Long, G. J.; Grandjean, F.
Crystal chemistry of the hydrothermally synthesized Na2(Mn1-xFe2+x)2Fe3+(PO4)3 alluaudite-type solid solution Sample: Na2Fe2+2Fe3+(PO4)3 (x = 1.00)
American Mineralogist, 2005, 90, 653-662
9003661 CIFFe O8 S2I m m m3.668; 6.418; 7.159
90; 90; 90
168.532Ventruti, G.; Scordari, F.; Schingaro, E.; Gualtieri, A. F.; Meneghini, C.
The order-disorder character of FeOHSO4 obtained from the thermal decomposition of metahohmannite, Fe3+2(H2O)4[O(SO4)2] Sample: T = 220 C Note: this is a fictitious "superposition structure", resulting from Rietveld refinement of a structure with disordered layer stacking
American Mineralogist, 2005, 90, 679-686
9003662 CIFFe O5 SP 1 21/c 17.33; 7.14; 7.39
90; 119.7; 90
335.956Ventruti, G.; Scordari, F.; Schingaro, E.; Gualtieri, A. F.; Meneghini, C.
The order-disorder character of FeOHSO4 obtained from the thermal decomposition of metahohmannite, Fe3+2(H2O)4[O(SO4)2] Sample: T = 220 C Note: this is the MDO2 polytype, a maximally ordered member of a family of OD structures
American Mineralogist, 2005, 90, 679-686
9003663 CIFCa Ge O5 Ti0.954 Zr0.046P 1 21/a 17.15; 8.89941; 6.65482
90; 113.73; 90
387.649Ellemann-Olesen R; Malcherek, T.
Temperature and composition dependence of structural phase transitions in Ca(TixZr1-x)OGeO4. Sample: Ti95, titanite structure
American Mineralogist, 2005, 90, 687-694
9003664 CIFCa Ge O5 Ti0.908 Zr0.091P 1 21/a 17.15461; 8.90612; 6.65901
90; 113.701; 90
388.523Ellemann-Olesen R; Malcherek, T.
Temperature and composition dependence of structural phase transitions in Ca(TixZr1-x)OGeO4. Sample: Ti90, titanite structure
American Mineralogist, 2005, 90, 687-694
9003665 CIFCa Ge O5 Ti0.807 Zr0.192A 1 2/a 17.1749; 8.93321; 6.67312
90; 113.6; 90
391.94Ellemann-Olesen R; Malcherek, T.
Temperature and composition dependence of structural phase transitions in Ca(TixZr1-x)OGeO4. Sample: Ti80, hi-T titanite structure
American Mineralogist, 2005, 90, 687-694
9003666 CIFCa Ge O5 Ti0.507 Zr0.492A 1 2/a 17.25821; 9.01791; 6.722
90; 113.351; 90
403.944Ellemann-Olesen R; Malcherek, T.
Temperature and composition dependence of structural phase transitions in Ca(TixZr1-x)OGeO4. Sample: Ti50, hi-T titanite structure
American Mineralogist, 2005, 90, 687-694
9003667 CIFCa Ge O5 Ti0.222 Zr0.778A -17.35292; 9.1; 6.75633
89.085; 113.024; 91.001
415.981Ellemann-Olesen R; Malcherek, T.
Temperature and composition dependence of structural phase transitions in Ca(TixZr1-x)OGeO4. Sample: Ti20, triclinically distorted titanite structure
American Mineralogist, 2005, 90, 687-694
9003668 CIFCa Ge O5 Ti0.114 Zr0.885A -17.38422; 9.12413; 6.76031
88.765; 112.877; 91.297
419.499Ellemann-Olesen R; Malcherek, T.
Temperature and composition dependence of structural phase transitions in Ca(TixZr1-x)OGeO4. Sample: Ti10, triclinically distorted titanite structure
American Mineralogist, 2005, 90, 687-694
9003669 CIFD0.63 H1.37 Mg6.13 Na1.71 O24 Si8P 1 21/m 19.71887; 17.93853; 5.26923
90; 102.526; 90
896.783Iezzi, G.; Gatta, G. D.; Kockelmann, W.; Della Ventura, G.; Rinaldi, R.; Schafer, W.; Piccinini, M.; Gaillard, F.
Low-T neutron powder-diffraction and synchrotron-radiation IR study of synthetic amphibole Na(NaMg)Mg5Si8O22(OH)2 Sample: T = 298 K
American Mineralogist, 2004, 90, 695-700
9003670 CIFD0.63 H1.37 Mg6.13 Na1.71 O24 Si8P 1 21/m 19.70169; 17.89537; 5.25744
90; 102.597; 90
890.8Iezzi, G.; Gatta, G. D.; Kockelmann, W.; Della Ventura, G.; Rinaldi, R.; Schafer, W.; Piccinini, M.; Gaillard, F.
Low-T neutron powder-diffraction and synchrotron-radiation IR study of synthetic amphibole Na(NaMg)Mg5Si8O22(OH)2 Sample: T = 8 K
American Mineralogist, 2004, 90, 695-700
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
9003672 CIFAl2.02 Ca0.04 Cr0.01 F0.9 Fe0.52 H1.1 K0.01 Li2.57 Mg1.82 Mn0.02 Na0.67 O23.1 Si7.96 Zn0.01C 1 2/m 19.368; 17.616; 5.271
90; 102.38; 90
849.629Oberti, 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
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
9003674 CIFCa Ge O3I 41/a :212.535; 12.535; 12.37
90; 90; 90
1943.65Nakatsuka, A.; Chaya, H.; Yoshiasa, A.
Crystal structure of single-crystal CaGeO3 tetragonal garnet synthesized at 3 GPa and 1000 C
American Mineralogist, 2005, 90, 755-757
9003675 CIFCa Ge O3I 41/a12.535; 12.535; 12.37
90; 90; 90
1943.65Nakatsuka, A.; Chaya, H.; Yoshiasa, A.
Crystal structure of single-crystal CaGeO3 tetragonal garnet synthesized at 3 GPa and 1000 C Note: alternate origin, resulting in coordinates similar to some majorite refinements
American Mineralogist, 2005, 90, 732-736
9003676 CIFMn5 O15 Si5C -19.8381; 10.5361; 12.2381
108.697; 103.335; 82.191
1166.56Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4018 Note: see samples 15-4029 and 15-4024 for plausible typical "fowlerite" and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003677 CIFCa1.001 Fe0.209 Mg0.13 Mn3.275 O15 Si5 Zn0.41C -19.7718; 10.5084; 12.2256
108.606; 103.017; 82.482
1156.84Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4024 Note: this is a plausible typical cation distribution for "fowlerite"
American Mineralogist, 2005, 90, 969-983
9003678 CIFMn5 O15 Si5C -19.7999; 10.5176; 12.2365
108.587; 103.185; 82.32
1161.4Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4025 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003679 CIFMn5 O15 Si5C -19.7902; 10.5184; 12.223
108.644; 103.159; 82.308
1158.78Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4026 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003680 CIFMn5 O15 Si5C -19.8451; 10.5389; 12.2414
108.692; 103.299; 82.184
1168.19Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4030 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003681 CIFMn5 O15 Si5C -19.8121; 10.5187; 12.218
108.651; 103.217; 82.308
1160.63Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4031 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003682 CIFMn5 O15 Si5C -19.7834; 10.5023; 12.2338
108.682; 103.273; 82.213
1156.34Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4033 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003683 CIFMn5 O15 Si5C -19.7648; 10.4912; 12.2228
108.671; 103.177; 82.284
1152.47Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4034 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003684 CIFCa Mn3 O15 Si5 ZnC -19.8456; 10.4992; 12.2005
108.726; 103.724; 82.113
1157.76Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4006 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003685 CIFCa Mn3 O15 Si5 ZnC -19.8768; 10.5222; 12.218
108.748; 103.781; 82.037
1165.12Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4014 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003686 CIFCa Mn3 O15 Si5 ZnC -19.8393; 10.4941; 12.1977
108.751; 103.751; 82.091
1155.87Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4020 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003687 CIFCa Mn3 O15 Si5 ZnC -19.8337; 10.4987; 12.1966
108.699; 103.597; 82.221
1156.83Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4027 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003688 CIFCa Mn3 O15 Si5 ZnC -19.864; 10.5237; 12.218
108.727; 103.705; 82.082
1164.33Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4028 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003689 CIFCa0.3 Fe0.4 Mg0.1 Mn4.292 O15 Si5 Zn0.005C -19.8793; 10.5298; 12.2257
108.744; 103.752; 82.03
1167.14Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4029 Note: this is a plausible typical cation distribution for rhodonite
American Mineralogist, 2005, 90, 969-983
9003690 CIFCa Mn3 O15 Si5 ZnC -19.8719; 10.5262; 12.2214
108.743; 103.728; 82.049
1165.6Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4040 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003691 CIFCa Mn3 O15 Si5 ZnC -19.8905; 10.5423; 12.2294
108.739; 103.773; 82.05
1170.18Nelson, W. R.; Griffen, D. T.
Crystal chemistry of Zn-rich rhodonite ("fowlerite") Sample: 15-4041 Note: see samples 15-4029 and 15-4024 for plausible typical fowlerite and rhodonite cation distributions
American Mineralogist, 2005, 90, 969-983
9003692 CIFH4 Mg3 O13 Si4C 1 2/m 15.323; 9.203; 10.216
90; 99.98; 90
492.884Comodi, P.; Fumagalli, P.; Nazzareni, S.; Zanazzi, P. F.
The 10 A phase: Crystal structure from single-crystal X-ray data
American Mineralogist, 2005, 90, 1012-1016
9003693 CIFCa1.02 H2 K0.954 Mg5 Na0.98 O24 Si8C 1 2/m 110.0439; 17.9883; 5.2708
90; 104.803; 90
920.683Senda, K.; Ishida, K.; Jenkins, D. M.
X-ray Rietveld refinement and FTIR spectra of synthetic (Si,Ge)-richterites Sample: KGe0Ri, K in A site, Si100Ge0
American Mineralogist, 2005, 90, 1062-1071
9003694 CIFCa0.98 H2 Mg5 Na1.87 O24 Si8C 1 2/m 19.9032; 17.9885; 5.2692
90; 104.25; 90
909.793Senda, K.; Ishida, K.; Jenkins, D. M.
X-ray Rietveld refinement and FTIR spectra of synthetic (Si,Ge)-richterites Sample: Ge0Ri, Na in A site, Si100Ge0
American Mineralogist, 2005, 90, 1062-1071
9003695 CIFCa0.9 Ge2.04 H2 Mg5 Na1.54 O24 Si5.96C 1 2/m 110.0144; 18.071; 5.3058
90; 104.625; 90
929.081Senda, K.; Ishida, K.; Jenkins, D. M.
X-ray Rietveld refinement and FTIR spectra of synthetic (Si,Ge)-richterites Sample: Ge2Ri, Si74Ge26
American Mineralogist, 2005, 90, 1062-1071
9003696 CIFCa0.98 Ge4.12 H2 Mg5 Na1.47 O24 Si3.88C 1 2/m 110.1237; 18.147; 5.3386
90; 105.067; 90
947.063Senda, K.; Ishida, K.; Jenkins, D. M.
X-ray Rietveld refinement and FTIR spectra of synthetic (Si,Ge)-richterites Sample: Ge4Ri, Si48Ge52
American Mineralogist, 2005, 90, 1062-1071
9003697 CIFCa0.88 Ge6.08 H2 Mg5 Na1.58 O24 Si1.92C 1 2/m 110.2255; 18.2144; 5.3683
90; 105.555; 90
963.232Senda, K.; Ishida, K.; Jenkins, D. M.
X-ray Rietveld refinement and FTIR spectra of synthetic (Si,Ge)-richterites Sample: Ge6Ri, Si24Ge76
American Mineralogist, 2005, 90, 1062-1071
9003698 CIFCa0.84 Ge8 H2 Mg5 Na1.62 O24C 1 2/m 110.3244; 18.282; 5.3994
90; 106.015; 90
979.587Senda, K.; Ishida, K.; Jenkins, D. M.
X-ray Rietveld refinement and FTIR spectra of synthetic (Si,Ge)-richterites Sample: Ge8Ri, Si0Ge100
American Mineralogist, 2005, 90, 1062-1071
9003699 CIFAs9.3 S14 Sb0.7P n a 2125.262; 14.563; 6.492
90; 90; 90
2388.34Bonazzi, P.; Lampronti, G. I.; Bindi, L.; Zandari, S.
Wakabayashilite, [(As,Sb)6S9][As4S5]: crystal structure, psuedosymmetry, twinning, and revised chemical formula Sample: White Caps Mine, Nevada
American Mineralogist, 2005, 90, 1108-1114
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
9003703 CIFCr2 O4 ZnF d -3 m :28.3291; 8.3291; 8.3291
90; 90; 90
577.822Levy, D.; Diella, V.; Pavese, A.; Dapiaggi, M.; Sani, A.
P-V equation of state, thermal expansion, and P-T stability of synthetic zincochromite (ZnCr2O4 spinel) Sample: T = 298 K
American Mineralogist, 2005, 90, 1157-1162
9003704 CIFCr2 O4 ZnF d -3 m :28.333; 8.333; 8.333
90; 90; 90
578.634Levy, D.; Diella, V.; Pavese, A.; Dapiaggi, M.; Sani, A.
P-V equation of state, thermal expansion, and P-T stability of synthetic zincochromite (ZnCr2O4 spinel) Sample: T = 393 K
American Mineralogist, 2005, 90, 1157-1162
9003705 CIFCr2 O4 ZnF d -3 m :28.3391; 8.3391; 8.3391
90; 90; 90
579.906Levy, D.; Diella, V.; Pavese, A.; Dapiaggi, M.; Sani, A.
P-V equation of state, thermal expansion, and P-T stability of synthetic zincochromite (ZnCr2O4 spinel) Sample: T = 463 K
American Mineralogist, 2005, 90, 1157-1162
9003706 CIFCr2 O4 ZnF d -3 m :28.3456; 8.3456; 8.3456
90; 90; 90
581.263Levy, D.; Diella, V.; Pavese, A.; Dapiaggi, M.; Sani, A.
P-V equation of state, thermal expansion, and P-T stability of synthetic zincochromite (ZnCr2O4 spinel) Sample: T = 613 K
American Mineralogist, 2005, 90, 1157-1162
9003707 CIFCr2 O4 ZnF d -3 m :28.3519; 8.3519; 8.3519
90; 90; 90
582.58Levy, D.; Diella, V.; Pavese, A.; Dapiaggi, M.; Sani, A.
P-V equation of state, thermal expansion, and P-T stability of synthetic zincochromite (ZnCr2O4 spinel) Sample: T = 702 K
American Mineralogist, 2005, 90, 1157-1162
9003708 CIFCr2 O4 ZnF d -3 m :28.3588; 8.3588; 8.3588
90; 90; 90
584.025Levy, D.; Diella, V.; Pavese, A.; Dapiaggi, M.; Sani, A.
P-V equation of state, thermal expansion, and P-T stability of synthetic zincochromite (ZnCr2O4 spinel) Sample: T = 788 K
American Mineralogist, 2005, 90, 1157-1162
9003709 CIFCr2 O4 ZnF d -3 m :28.3654; 8.3654; 8.3654
90; 90; 90
585.41Levy, D.; Diella, V.; Pavese, A.; Dapiaggi, M.; Sani, A.
P-V equation of state, thermal expansion, and P-T stability of synthetic zincochromite (ZnCr2O4 spinel) Sample: T = 901 K
American Mineralogist, 2005, 90, 1157-1162
9003710 CIFCr2 O4 ZnF d -3 m :28.3716; 8.3716; 8.3716
90; 90; 90
586.713Levy, D.; Diella, V.; Pavese, A.; Dapiaggi, M.; Sani, A.
P-V equation of state, thermal expansion, and P-T stability of synthetic zincochromite (ZnCr2O4 spinel) Sample: T = 994 K
American Mineralogist, 2005, 90, 1157-1162
9003711 CIFCr2 O4 ZnF d -3 m :28.3777; 8.3777; 8.3777
90; 90; 90
587.996Levy, D.; Diella, V.; Pavese, A.; Dapiaggi, M.; Sani, A.
P-V equation of state, thermal expansion, and P-T stability of synthetic zincochromite (ZnCr2O4 spinel) Sample: T = 1072 K
American Mineralogist, 2005, 90, 1157-1162
9003712 CIFCr2 O4 ZnF d -3 m :28.3834; 8.3834; 8.3834
90; 90; 90
589.197Levy, D.; Diella, V.; Pavese, A.; Dapiaggi, M.; Sani, A.
P-V equation of state, thermal expansion, and P-T stability of synthetic zincochromite (ZnCr2O4 spinel) Sample: T = 1162 K
American Mineralogist, 2005, 90, 1157-1162
9003713 CIFCr2 O4 ZnF d -3 m :28.388; 8.388; 8.388
90; 90; 90
590.167Levy, D.; Diella, V.; Pavese, A.; Dapiaggi, M.; Sani, A.
P-V equation of state, thermal expansion, and P-T stability of synthetic zincochromite (ZnCr2O4 spinel) Sample: T = 1236 K
American Mineralogist, 2005, 90, 1157-1162
9003714 CIFAl1.89 F0.03 Fe1.71 H1.97 K0.01 Li1.88 Mg1.47 Mn0.01 Na0.04 O23.97 Si8P n m a18.2872; 17.6797; 5.2784
90; 90; 90
1706.57Camara, F.; Oberti, R.
The crystal-chemistry of holmquistites: Ferroholmquistite from Greenbushes (Western Australia) and hints for compositional constraints in B-Li amphiboles Sample: Greenbushes, W Australia
American Mineralogist, 2005, 90, 1167-1176
9003715 CIFAl1.97 F0.03 Fe1.23 H1.97 Li1.98 Mg1.8 Mn0.02 Na0.03 O23.97 Si7.99 Zn0.01P n m a18.277; 17.65; 5.2736
90; 90; 90
1701.21Camara, F.; Oberti, R.
The crystal-chemistry of holmquistites: Ferroholmquistite from Greenbushes (Western Australia) and hints for compositional constraints in B-Li amphiboles Sample: HS 119915 Siberia
American Mineralogist, 2005, 90, 1167-1176
9003716 CIFAl1.98 F0.02 Fe1.2 H1.98 Li1.71 Mg1.89 Mn0.01 Na0.03 O23.98 Si7.98P n m a18.277; 17.646; 5.2792
90; 90; 90
1702.63Camara, F.; Oberti, R.
The crystal-chemistry of holmquistites: Ferroholmquistite from Greenbushes (Western Australia) and hints for compositional constraints in B-Li amphiboles Sample: Siberia
American Mineralogist, 2005, 90, 1167-1176
9003717 CIFAl1.76 F0.07 Fe1.2 H1.93 Li1.97 Mg2.01 Mn0.04 Na0.02 O23.93 Si8 Zn0.01P n m a18.2754; 17.6569; 5.2738
90; 90; 90
1701.79Camara, F.; Oberti, R.
The crystal-chemistry of holmquistites: Ferroholmquistite from Greenbushes (Western Australia) and hints for compositional constraints in B-Li amphiboles Sample: Rwanda
American Mineralogist, 2005, 90, 1167-1176
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
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
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
9003721 CIFH55.7 Na5.67 O47.48 Si18P 63/m m c18.2343; 18.2343; 7.6371
90; 90; 120
2199.06Arletti, R.; Galli, E.; Vezzalini, G.; Wise, W. S.
Mazzite-Na, a new zeolite from Boron, California: Its description and crystal structure Sample: US Borax Mine, Boron, Ca
American Mineralogist, 2005, 90, 1186-1191
9003722 CIFCa0.36 Mg0.81 Na0.56 O6 Si2.27C 1 2/c 19.5792; 8.7588; 5.261
90; 107.199; 90
421.672Yang, H.; Konzett, J.
Crystal chemistry of a high-pressure C2/c clinopyroxene with six-coordinated silicon
American Mineralogist, 2005, 90, 1223-1226
9003723 CIFCu1.375 Fe0.275 SF m -3 m21.88; 21.88; 21.88
90; 90; 90
10474.7Ding, Y.; Veblen, D. R.; Prewitt, C. T.
High-resolution transmission electron microscopy (HRTEM) study of the 4a and 6a superstructure of bornite Cu5FeS4 Sample: 4a-1 superstructure model Note: Occupancies calculated assuming complete Cu-Fe disorder
American Mineralogist, 2005, 90, 1256-1264
9003724 CIFCu2 Fe S2F -4 3 m10.7; 10.7; 10.7
90; 90; 90
1225.04Ding, Y.; Veblen, D. R.; Prewitt, C. T.
Possible Fe/Cu ordering schemes in the 2a superstructure of bornite (Cu5FeS4) Sample: 2a Cu(anti) superstructure model, alternative 1
American Mineralogist, 2005, 90, 1265-1269
9003725 CIFCu2 Fe S2F -4 3 m10.7; 10.7; 10.7
90; 90; 90
1225.04Ding, Y.; Veblen, D. R.; Prewitt, C. T.
Possible Fe/Cu ordering schemes in the 2a superstructure of bornite (Cu5FeS4) Sample: 2a Cu(anti) superstructure model, alternative 2
American Mineralogist, 2005, 90, 1265-1269
9003726 CIFCu2 Fe S2F -4 3 m10.71; 10.71; 10.71
90; 90; 90
1228.48Ding, Y.; Veblen, D. R.; Prewitt, C. T.
Possible Fe/Cu ordering schemes in the 2a superstructure of bornite (Cu5FeS4) Sample: 2a CuFe(anti) superstructure model, alternative 1 Note: Energetically preferred model
American Mineralogist, 2005, 90, 1265-1269
9003727 CIFCu2 Fe S2F -4 3 m10.71; 10.71; 10.71
90; 90; 90
1228.48Ding, Y.; Veblen, D. R.; Prewitt, C. T.
Possible Fe/Cu ordering schemes in the 2a superstructure of bornite (Cu5FeS4) Sample: 2a CuFe(anti) superstructure model, alternative 2 Note: Energetically preferred model
American Mineralogist, 2005, 90, 1265-1269
9003728 CIFCa0.001 Fe0.202 Mn0.767 Nb1.91 O6 Sc0.001 Sn0.001 Ta0.08 Ti0.036 W0.002P b c n14.2877; 5.7363; 5.0561
90; 90; 90
414.391Tarantino S C; Zema M
Mixing and ordering behavior in manganocolumbite-ferrocolumbite solid solution: A single-crystal X-ray diffraction study Sample: BRA n3 Qm=1 from S. Jose de Safira, Minas Gerais, Brazil
American Mineralogist, 2005, 90, 1291-1300
9003729 CIFCa0.001 Fe0.462 Mn0.476 Nb1.806 O6 Sc0.045 Sn0.004 Ta0.086 Ti0.116 W0.004P b c n14.3267; 5.7392; 5.0674
90; 90; 90
416.661Tarantino S C; Zema M
Mixing and ordering behavior in manganocolumbite-ferrocolumbite solid solution: A single-crystal X-ray diffraction study Sample: AMB n3 Qm=1 from Ambatofotsikely, Madagascar
American Mineralogist, 2005, 90, 1291-1300
9003730 CIFCa0.001 Fe0.534 Mn0.457 Nb1.836 O6 Sn0.001 Ta0.094 Ti0.063 W0.014P b c n14.3434; 5.7415; 5.0665
90; 90; 90
417.24Tarantino S C; Zema M
Mixing and ordering behavior in manganocolumbite-ferrocolumbite solid solution: A single-crystal X-ray diffraction study Sample: RIO n5 Qm=1 from Rio Arriba Co., Globe Mine, U.S.A.
American Mineralogist, 2005, 90, 1291-1300

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