Crystallography Open Database

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9001482 CIFFe2 Mg O4F d -3 m :28.3959; 8.3959; 8.3959
90; 90; 90
591.837O'Neill H St C; Annersten, H.; Virgo, D.
The temperature dependence of the cation distribution in magnesioferrite (MgFe2O4) from powder XRD structural refinements and Mossbauer spectroscopy batch 2, anneal T = 900 C using the two step method
American Mineralogist, 1992, 77, 725-740
9001483 CIFFe2 Mg O4F d -3 m :28.397; 8.397; 8.397
90; 90; 90
592.069O'Neill H St C; Annersten, H.; Virgo, D.
The temperature dependence of the cation distribution in magnesioferrite (MgFe2O4) from powder XRD structural refinements and Mossbauer spectroscopy batch 1, anneal T = 950 C using the two step method
American Mineralogist, 1992, 77, 725-740
9001485 CIFFe2 Mg O4F d -3 m :28.3981; 8.3981; 8.3981
90; 90; 90
592.302O'Neill H St C; Annersten, H.; Virgo, D.
The temperature dependence of the cation distribution in magnesioferrite (MgFe2O4) from powder XRD structural refinements and Mossbauer spectroscopy batch 2, anneal T = 1000 C using the two step method
American Mineralogist, 1992, 77, 725-740
9001486 CIFFe2 Mg O4F d -3 m :28.3987; 8.3987; 8.3987
90; 90; 90
592.429O'Neill H St C; Annersten, H.; Virgo, D.
The temperature dependence of the cation distribution in magnesioferrite (MgFe2O4) from powder XRD structural refinements and Mossbauer spectroscopy batch 2, anneal T = 1050 C using the two step method
American Mineralogist, 1992, 77, 725-740
9001488 CIFFe2 Mg O4F d -3 m :28.4; 8.4; 8.4
90; 90; 90
592.704O'Neill H St C; Annersten, H.; Virgo, D.
The temperature dependence of the cation distribution in magnesioferrite (MgFe2O4) from powder XRD structural refinements and Mossbauer spectroscopy batch 1, anneal T = 1150 C using the two step method
American Mineralogist, 1992, 77, 725-740
9001489 CIFFe2 Mg O4F d -3 m :28.3998; 8.3998; 8.3998
90; 90; 90
592.662O'Neill H St C; Annersten, H.; Virgo, D.
The temperature dependence of the cation distribution in magnesioferrite (MgFe2O4) from powder XRD structural refinements and Mossbauer spectroscopy batch 1, anneal T = 1200 C using the two step method
American Mineralogist, 1992, 77, 725-740
9001490 CIFCu H4 O5 SeP 21 21 216.674; 9.161; 7.398
90; 90; 90
452.318Robinson, P. D.; Sen Gupta, P. K.; Swihart, G. H.; Houk, L.
Crystal structure, H positions, and the Se lone pair of synthetic chalcomenite, Cu(H2O)2[SeO3]
American Mineralogist, 1992, 77, 834-838
9001491 CIFCl3 Hg6 O2I a -3 d16.036; 16.036; 16.036
90; 90; 90
4123.71Mereiter, K.; Zemann, J.; Hewat, A. W.
Eglestonite, [Hg2]3Cl3O2H: Confirmation of the chemical formula by neutron powder diffraction sample SX examined by single-crystal X-ray diffraction
American Mineralogist, 1992, 77, 839-842
9001492 CIFCl3 H Hg6 O2I a -3 d16.036; 16.036; 16.036
90; 90; 90
4123.71Mereiter, K.; Zemann, J.; Hewat, A. W.
Eglestonite, (Hg2)3Cl3O2H: confirmation of the chemical formula by neutron powder diffraction sample SN examined by powder neutron diffraction
American Mineralogist, 1992, 77, 839-842
9001493 CIFBe2 Ca3 H10 O20 P4P 1 21/a 17.3482; 15.0522; 7.0685
90; 96.519; 90
776.768Kampf, A. R.
Beryllophosphate chains in the structures of fransoletite, parafransoletite, and ehrleite and some general comments on beryllophosphate linkages
American Mineralogist, 1992, 77, 848-856
9001494 CIFBe2 Ca3 H10 O20 P4P -17.3275; 7.6959; 7.0606
94.903; 96.82; 101.865
384.414Kampf, A. R.
Beryllophosphate chains in the structures of fransoletite, parafransoletite, and ehrleite and some general comments on beryllophosphate linkages
American Mineralogist, 1992, 77, 848-856
9001495 CIFCu Fe2 S3P c m n6.46; 11.1; 6.22
90; 90; 90
446.011McCammon, C. A.; Zhang, J.; Hazen, R. M.; Finger, L. W.
High-pressure crystal chemistry of cubanite, CuFe2S3 P = 0 GPa, in air
American Mineralogist, 1992, 77, 937-944
9001496 CIFCu Fe2 S3P c m n6.455; 11.102; 6.226
90; 90; 90
446.176McCammon, C. A.; Zhang, J.; Hazen, R. M.; Finger, L. W.
High-pressure crystal chemistry of cubanite, CuFe2S3 P = 0 GPa, in the cell
American Mineralogist, 1992, 77, 937-944
9001497 CIFCu Fe2 S3P c m n6.404; 11.01; 6.158
90; 90; 90
434.189McCammon, C. A.; Zhang, J.; Hazen, R. M.; Finger, L. W.
High-pressure crystal chemistry of cubanite, CuFe2S3 P = 1.7 GPa
American Mineralogist, 1992, 77, 937-944
9001498 CIFCu Fe2 S3P c m n6.344; 10.919; 6.098
90; 90; 90
422.409McCammon, C. A.; Zhang, J.; Hazen, R. M.; Finger, L. W.
High-pressure crystal chemistry of cubanite, CuFe2S3 P = 3.6 GPa
American Mineralogist, 1992, 77, 937-944
9001499 CIFAl5.44 Ca9.5 Cu0.26 F2.7 H2.3 Mg0.8 O36.3 Si9P 4/n n c :215.517; 15.517; 11.781
90; 90; 90
2836.6Ohkawa, M.; Yoshiasa, A.; Takeno, S.
Crystal chemistry of vesuvianite: Site preferences of square-pyramidal coordinated sites sample #1 from Sauland
American Mineralogist, 1992, 77, 945-953
9001500 CIFAl5.24 Ca9.5 F Fe1.26 H4 O38 Si9P 4/n n c :215.606; 15.606; 11.825
90; 90; 90
2879.95Ohkawa, M.; Yoshiasa, A.; Takeno, S.
Crystal chemistry of vesuvianite: Site preferences of square-pyramidal coordinated sites sample #2 from Sanpo
American Mineralogist, 1992, 77, 945-953
9001501 CIFAl5.48 Ca9.5 F3.07 Fe1.02 H1.93 O35.93 Si9P 4/n n c :215.583; 15.583; 11.801
90; 90; 90
2865.64Ohkawa, M.; Yoshiasa, A.; Takeno, S.
Crystal chemistry of vesuvianite: Site preferences of square-pyramidal coordinated sites sample #3 from Jinmu
American Mineralogist, 1992, 77, 945-953
9001502 CIFAl5.88 Ca9.5 Fe0.36 H5 Mg0.26 O39 Si9P 4/n n c :215.546; 15.546; 11.828
90; 90; 90
2858.57Ohkawa, M.; Yoshiasa, A.; Takeno, S.
Crystal chemistry of vesuvianite: Site preferences of square-pyramidal coordinated sites sample #4 from Chichibu
American Mineralogist, 1992, 77, 945-953
9001503 CIFCa0.04 Fe2 H2 Li0.83 Mg2.17 Na2.962 O24 Si8C 1 2/m 19.822; 17.836; 5.286
90; 104.37; 90
897.056Hawthorne, F. C.; Oberti, R.; Ungaretti, L.; Grice, J. D.
Leakeite, NaNa2(Mg2Fe2Li)Si8O22(OH)2, a new alkali amphibole from the Kajlidongri manganese mine, Jhabua district, Madhya Pradesh, India
American Mineralogist, 1992, 77, 1112-1115
9001504 CIFAl4 Ca H5 Mn O20 P3 SiC 1 2/m 117.188; 11.477; 7.322
90; 113.83; 90
1321.25Grice, J. D.; Dunn, P. J.
Attakolite: New data and crystal-structure determination
American Mineralogist, 1992, 77, 1285-1291
9001505 CIFCa6 Cu3 O26 S3P 1 21/c 115.122; 14.358; 22.063
90; 108.68; 90
4538.01Dai, Y. S.; Harlow, G. E.
Description and crystal structure of vonbezingite, a new Ca-Cu-SO4-H2O mineral from the Kalahari manganese field, South Africa
American Mineralogist, 1992, 77, 1292-1300
9001506 CIFCl2 CuC 1 2/m 16.9038; 3.2995; 6.824
90; 122.197; 90
131.54Burns, P. C.; Hawthorne, F. C.
Tolbachite, CuCl2, the first example of Cu2+ octahedrally coordinated by Cl
American Mineralogist, 1993, 78, 187-189
9001507 CIFH2 Mn5 O10 Si2P n m a10.732; 15.672; 4.811
90; 90; 90
809.171Freed, R. L.; Rouse, R. C.; Peacor, D. R.
Ribbeite, a second example of edge-sharing silicate tetrahedra in the leucophoenicite group
American Mineralogist, 1993, 78, 190-194
9001508 CIFAl5 B1.632 Ca1.598 Mg2 Na0.402 O20 Si3.368P -110.01; 10.393; 8.631
106.37; 96.1; 124.38
669.89Van Derveer, D. G.; Swihart, G. H.; Sen Gupta, P. K.; Grew, E. S.
Cation occupancies in serendibite: A crystal structure study Sample from Johnsburg, New York Displacement parameters obtained from ICSD
American Mineralogist, 1993, 78, 195-203
9001509 CIFAl3.48 Ba0.16 Ca0.784 H12.2 K0.28 Mg0.36 Na0.96 O48.2 Si14.52C 1 2/m 117.622; 17.895; 7.399
90; 116.45; 90
2089.01Armbruster, T.
Dehydration mechanism of clinoptilolite and heulandite: Single-crystal X-ray study of Na-poor, Ca-, K-, Mg-rich clinoptilolite at 100 K Sample Natural Data obtained from the ICSD
American Mineralogist, 1993, 78, 260-264
9001510 CIFAl3.48 Ba0.16 Ca0.444 H3.36 K0.84 Na0.56 O39.36 Si14.52C 1 2/m 117.588; 17.572; 7.389
90; 116.77; 90
2038.86Armbruster, T.
Dehydration mechanism of clinoptilolite and heulandite: Single-crystal X-ray study of Na-poor, Ca-, K-, Mg-rich clinoptilolite at 100 K Sample Dehyd 1 Data obtained from the ICSD
American Mineralogist, 1993, 78, 260-264
9001511 CIFAl3.48 Ba0.16 Ca0.22 H2.58 K1.06 Na0.42 O38.58 Si14.52C 1 2/m 117.619; 17.503; 7.371
90; 116.71; 90
2030.55Armbruster, T.
Dehydration mechanism of clinoptilolite and heulandite: Single-crystal X-ray study of Na-poor, Ca-, K-, Mg-rich clinoptilolite at 100 K Sample Dehyd 2 Data obtained from the ICSD
American Mineralogist, 1993, 78, 260-264
9001512 CIFAl3.48 Ba0.16 Ca0.16 H2.42 K1.08 Na0.38 O38.42 Si14.52C 1 2/m 117.61; 17.456; 7.36
90; 116.77; 90
2019.98Armbruster, T.
Dehydration mechanism of clinoptilolite and heulandite: Single-crystal X-ray study of Na-poor, Ca-, K-, Mg-rich clinoptilolite at 100 K Sample Dehyd 3 Data obtained from the ICSD
American Mineralogist, 1993, 78, 260-264
9001513 CIFAl6.078 B3 Ca0.009 Cr0.006 Fe0.612 K0.014 Mg2.274 Mn0.003 Na0.814 O34 Si6 Ti0.03R 3 m :H15.947; 15.947; 7.214
90; 90; 120
1588.78Hawthorne, F. C.; MacDonald, D. J.; Burns, P. C.
Reassignment of cation site occupancies in tourmaline: Al-Mg disorder in the crystal structure of dravite
American Mineralogist, 1993, 78, 265-270
9001514 CIFAl2 H2 O6 SiP b n m4.7238; 8.9473; 8.39
90; 90; 90
354.605Wunder, B.; Rubie, D. C.; Ross, C. R.; Medenbach, O.; Seifert, F.; Schreyer, W.
Synthesis, stability, and properties of Al2SiO4(OH)2: A fully hydrated analogue of topaz
American Mineralogist, 1993, 78, 285-297
9001515 CIFC Ce F O3P -6 2 c7.1175; 7.1175; 9.7619
90; 90; 120
428.272Ni, Y.; Hughes, J. M.; Mariano, A. N.
The atomic arrangement of bastnasite-(Ce), Ce(CO3)F, and structural elements of synchysite-(Ce), rontgenite-(Ce), and parisite-(Ce)
American Mineralogist, 1993, 78, 415-418
9001516 CIFC3 H2 O11 Y2B b 21 m6.078; 9.157; 15.114
90; 90; 90
841.189Miyawaki, R.; Kuriyama, J.; Nakai, I.
The redefinition of tengerite-(Y), Y2(CO3)3.2-3H2O, and its crystal structure
American Mineralogist, 1993, 78, 425-432
9001517 CIFB3 Fe9 H1.998 Na 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
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
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
9001526 CIFAl2 Mg3 O12 Si3I a -3 d11.4566; 11.4566; 11.4566
90; 90; 90
1503.72Ganguly, J.; Cheng, W.; O'Neill H St C
Syntheses, volume, and structural changes of garnets in the pyrope-grossular join: Implications for stability and mixing properties Sample JW12
American Mineralogist, 1993, 78, 583-593
9001527 CIFAl2 Ca0.588 Mg2.412 O12 Si3I a -3 d11.452; 11.452; 11.452
90; 90; 90
1501.91Ganguly, J.; Cheng, W.; O'Neill H St C
Syntheses, volume, and structural changes of garnets in the pyrope-grossular join: Implications for stability and mixing properties Sample JW13
American Mineralogist, 1993, 78, 583-593
9001528 CIFAl2 Ca0.774 Mg2.226 O12 Si3I a -3 d11.567; 11.567; 11.567
90; 90; 90
1547.61Ganguly, J.; Cheng, W.; O'Neill H St C
Syntheses, volume, and structural changes of garnets in the pyrope-grossular join: Implications for stability and mixing properties Sample JW28
American Mineralogist, 1993, 78, 583-593
9001529 CIFAl2 Ca2.106 Mg0.888 O12 Si3I a -3 d11.7445; 11.7445; 11.7445
90; 90; 90
1619.96Ganguly, J.; Cheng, W.; O'Neill H St C
Syntheses, volume, and structural changes of garnets in the pyrope-grossular join: Implications for stability and mixing properties Sample JW22
American Mineralogist, 1993, 78, 583-593
9001530 CIFAl2 Ca2.391 Mg0.609 O12 Si3I a -3 d11.7817; 11.7817; 11.7817
90; 90; 90
1635.4Ganguly, J.; Cheng, W.; O'Neill H St C
Syntheses, volume, and structural changes of garnets in the pyrope-grossular join: Implications for stability and mixing properties Sample JW3
American Mineralogist, 1993, 78, 583-593
9001531 CIFAl2 Ca2.547 Mg0.453 O12 Si3I a -3 d11.8063; 11.8063; 11.8063
90; 90; 90
1645.67Ganguly, J.; Cheng, W.; O'Neill H St C
Syntheses, volume, and structural changes of garnets in the pyrope-grossular join: Implications for stability and mixing properties Sample JW15
American Mineralogist, 1993, 78, 583-593
9001532 CIFAl2 Ca3 O12 Si3I a -3 d11.8515; 11.8515; 11.8515
90; 90; 90
1664.64Ganguly, J.; Cheng, W.; O'Neill H St C
Syntheses, volume, and structural changes of garnets in the pyrope-grossular join: Implications for stability and mixing properties Sample JW11
American Mineralogist, 1993, 78, 583-593
9001533 CIFK2.28 Mg1.14 O8 Si2.86I 4 m m8.957; 8.957; 5.281
90; 90; 90
423.683Dollase, W. A.; Ross, C. R.
Crystal structures of the body-centered tetragonal tectosilicates: K1.14Mg0.57Si1.43O4, K1.10Zn0.55Si1.45O4, and K1.11Fe1.11Si0.89O4 Sample: Mg-rich phase
American Mineralogist, 1993, 78, 627-632
9001534 CIFK2.2 O8 Si2.9 Zn1.1I 4 m m8.939; 8.939; 5.246
90; 90; 90
419.185Dollase, W. A.; Ross, C. R.
Crystal structures of the body-centered tetragonal tectosilicates: K1.14Mg0.57Si1.43O4, K1.10Zn0.55Si1.45O4, and K1.11Fe1.11Si0.89O4 Sample: Zn-rich phase
American Mineralogist, 1993, 78, 627-632
9001535 CIFFe2.22 K2.22 O8 Si1.78I 4 m m9.102; 9.102; 5.341
90; 90; 90
442.483Dollase, W. A.; Ross, C. R.
Crystal structures of the body-centered tetragonal tectosilicates: K1.14Mg0.57Si1.43O4, K1.10Zn0.55Si1.45O4, and K1.11Fe1.11Si0.89O4 Sample: Fe-rich phase
American Mineralogist, 1993, 78, 627-632
9001536 CIFCa H2 K Mg5 Na O24 Si8C 1 2/m 110.0547; 17.997; 5.2746
90; 104.832; 90
922.66Della Ventura, G.; Robert, J.-L.; Raudsepp, M.; Hawthorne, F. C.
Site occupancies in monoclinic amphiboles: Rietveld structure refinement of synthetic magnesium cobalt potassium richterite Sample: KNi0 Atomic parameters from ICSD
American Mineralogist, 1993, 78, 633-640
9001537 CIFCa H2 K Mg3.86 Na Ni1.14 O24 Si8C 1 2/m 110.0536; 17.982; 5.2702
90; 104.879; 90
920.821Della Ventura, G.; Robert, J.-L.; Raudsepp, M.; Hawthorne, F. C.
Site occupancies in monoclinic amphiboles: Rietveld structure refinement of synthetic magnesium cobalt potassium richterite Sample: KNi20 Atomic parameters from ICSD
American Mineralogist, 1993, 78, 633-640
9001538 CIFCa H2 K Mg2.75 Na Ni2.25 O24 Si8C 1 2/m 110.0492; 17.975; 5.2661
90; 104.904; 90
919.237Della Ventura, G.; Robert, J.-L.; Raudsepp, M.; Hawthorne, F. C.
Site occupancies in monoclinic amphiboles: Rietveld structure refinement of synthetic magnesium cobalt potassium richterite Sample: KNi40 Atomic parameters from ICSD
American Mineralogist, 1993, 78, 633-640
9001539 CIFCa H2 K Mg1.78 Na Ni3.22 O24 Si8C 1 2/m 110.0436; 17.962; 5.2633
90; 104.936; 90
917.436Della Ventura, G.; Robert, J.-L.; Raudsepp, M.; Hawthorne, F. C.
Site occupancies in monoclinic amphiboles: Rietveld structure refinement of synthetic magnesium cobalt potassium richterite Sample: KNi60 Atomic parameters from ICSD
American Mineralogist, 1993, 78, 633-640
9001540 CIFCa H2 K Mg0.93 Na Ni4.07 O24 Si8C 1 2/m 110.0382; 17.954; 5.261
90; 104.954; 90
916.057Della Ventura, G.; Robert, J.-L.; Raudsepp, M.; Hawthorne, F. C.
Site occupancies in monoclinic amphiboles: Rietveld structure refinement of synthetic magnesium cobalt potassium richterite Sample: KNi80 Atomic parameters from ICSD
American Mineralogist, 1993, 78, 633-640
9001541 CIFCa H2 K Na Ni5 O24 Si8C 1 2/m 110.0297; 17.942; 5.2576
90; 104.982; 90
913.959Della Ventura, G.; Robert, J.-L.; Raudsepp, M.; Hawthorne, F. C.
Site occupancies in monoclinic amphiboles: Rietveld structure refinement of synthetic magnesium cobalt potassium richterite Sample: KNi100 Atomic parameters from ICSD
American Mineralogist, 1993, 78, 633-640
9001542 CIFCa Co1.01 H2 K Mg3.99 Na O24 Si8C 1 2/m 110.0711; 18.015; 5.276
90; 104.836; 90
925.318Della Ventura, G.; Robert, J.-L.; Raudsepp, M.; Hawthorne, F. C.
Site occupancies in monoclinic amphiboles: Rietveld structure refinement of synthetic magnesium cobalt potassium richterite Sample: KCo20 Atomic parameters from ICSD
American Mineralogist, 1993, 78, 633-640
9001543 CIFCa Co1.98 H2 K Mg3.02 Na O24 Si8C 1 2/m 110.0817; 18.021; 5.2753
90; 104.832; 90
926.494Della Ventura, G.; Robert, J.-L.; Raudsepp, M.; Hawthorne, F. C.
Site occupancies in monoclinic amphiboles: Rietveld structure refinement of synthetic magnesium cobalt potassium richterite Sample: KCo40 Atomic parameters from ICSD
American Mineralogist, 1993, 78, 633-640
9001544 CIFCa Co2.92 H2 K Mg2.08 Na O24 Si8C 1 2/m 110.0923; 18.032; 5.2742
90; 104.829; 90
927.854Della Ventura, G.; Robert, J.-L.; Raudsepp, M.; Hawthorne, F. C.
Site occupancies in monoclinic amphiboles: Rietveld structure refinement of synthetic magnesium cobalt potassium richterite Sample: KCo60 Atomic parameters from ICSD
American Mineralogist, 1993, 78, 633-640
9001545 CIFCa Co3.82 H2 K Mg1.18 Na O24 Si8C 1 2/m 110.1065; 18.052; 5.2743
90; 104.844; 90
930.143Della Ventura, G.; Robert, J.-L.; Raudsepp, M.; Hawthorne, F. C.
Site occupancies in monoclinic amphiboles: Rietveld structure refinement of synthetic magnesium cobalt potassium richterite Sample: KCo80 Atomic parameters from ICSD
American Mineralogist, 1993, 78, 633-640
9001546 CIFCa Co5 H2 K Na O24 Si8C 1 2/m 110.1166; 18.066; 5.2752
90; 104.846; 90
931.945Della Ventura, G.; Robert, J.-L.; Raudsepp, M.; Hawthorne, F. C.
Site occupancies in monoclinic amphiboles: Rietveld structure refinement of synthetic magnesium cobalt potassium richterite Sample: KCo100 Atomic parameters from ICSD
American Mineralogist, 1993, 78, 633-640
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
9001548 CIFAl2.3 Ca1.94 F0.26 Fe2.76 H2.12 K1.9 Mg1.8 Na1.56 O23.74 Si6.08 Ti0.06C 1 2/m 19.895; 18.119; 5.332
90; 105.17; 90
922.649Oberti R; Ungaretti L; Cannillo E; Hawthorne F C
The mechanism of Cl incorporation in amphibole Sample: Cl(0) Locality: Nuptse Glacier moraine, Everest Massif, Nepal
American Mineralogist, 1993, 78, 746-752
9001549 CIFAl1.88 Ca1.74 Cl0.56 F0.26 Fe2.94 H0.6 K1.8 Mg1.76 Na2.5 O25.16 Si6.44 Ti0.04C 1 2/m 19.884; 18.143; 5.332
90; 104.86; 90
924.184Oberti R; Ungaretti L; Cannillo E; Hawthorne F C
The mechanism of Cl incorporation in amphibole Sample: Cl(1) Locality: Sesia-Lanzo marble, Western Alps, Italy
American Mineralogist, 1993, 78, 746-752
9001550 CIFAl2.18 Ca1.86 Cl0.98 F0.14 Fe3.58 H2 K2.7 Mg1.06 Na1.94 O24.88 Si6.16 Ti0.02C 1 2/m 19.922; 18.219; 5.36
90; 104.81; 90
936.733Oberti R; Ungaretti L; Cannillo E; Hawthorne F C
The mechanism of Cl incorporation in amphibole Sample: Cl(2) Locality: Sesia-Lanzo marble, Western Alps, Italy
American Mineralogist, 1993, 78, 746-752
9001551 CIFAl2 Be2.664 Cs0.083 H1.476 Li0.315 Na0.24 O18.72 Si6P 6/m c c9.197; 9.197; 9.202
90; 90; 120
674.07Artioli, G.; Rinaldi, R.; Stahl, K.; Zanazzi, P. F.
Structure refinements of beryl by single-crystal neutron and X-ray diffraction Sample no. 1, morganite, probed with neutrons, T = 30 K
American Mineralogist, 1993, 78, 762-768
9001552 CIFAl2 Be2.682 Cs0.083 H1.26 Li0.318 Na0.24 O18.61 Si6P 6/m c c9.208; 9.208; 9.197
90; 90; 120
675.317Artioli, G.; Rinaldi, R.; Stahl, K.; Zanazzi, P. F.
Structure refinements of beryl by single-crystal neutron and X-ray diffraction Sample no. 1, morganite, probed with neutrons, T = 295 K
American Mineralogist, 1993, 78, 762-768
9001553 CIFAl2 Be2.682 Cs0.096 H0.48 Li0.318 O18.16 Si6P 6/m c c9.208; 9.208; 9.197
90; 90; 120
675.317Artioli, G.; Rinaldi, R.; Stahl, K.; Zanazzi, P. F.
Structure refinements of beryl by single-crystal neutron and X-ray diffraction Sample no. 1, morganite, probed with X-rays, T = 295 K
American Mineralogist, 1993, 78, 762-768
9001554 CIFAl1.97 Be3 Fe0.03 H0.26 Na0.016 O18.24 Si6P 6/m c c9.218; 9.218; 9.197
90; 90; 120
676.784Artioli, G.; Rinaldi, R.; Stahl, K.; Zanazzi, P. F.
Structure refinements of beryl by single-crystal neutron and X-ray diffraction Sample no. 2, aquamarine, probed with neutrons, T = 295 K
American Mineralogist, 1993, 78, 762-768
9001555 CIFAl1.97 Be3 Fe0.03 H0.48 O18.48 Si6P 6/m c c9.218; 9.218; 9.197
90; 90; 120
676.784Artioli, G.; Rinaldi, R.; Stahl, K.; Zanazzi, P. F.
Structure refinements of beryl by single-crystal neutron and X-ray diffraction Sample no. 2, aquamarine, probed with X-rays, T = 295 K
American Mineralogist, 1993, 78, 762-768
9001556 CIFFe4 H14 O13I m m m7.544; 7.56; 7.558
90; 90; 90
431.053Birch, W. D.; Pring, A.; Reller, A.; Schmalle, H. W.
Bernalite, Fe(OH)3, a new mineral from Broken Hill, New South Wales: Description and structure
American Mineralogist, 1993, 78, 827-834
9001557 CIFO8 Pb Te2 UP 1 21/c 17.813; 7.061; 13.775
90; 93.71; 90
758.341Swihart, G. H.; Sen Gupta, P. K.; Schlemper, E. O.; Back, M. E.; Gaines, R. V.
The crystal structure of moctezumite [PbUO2](TeO3)2
American Mineralogist, 1993, 78, 835-839
9001558 CIFCa H2 K Mg5 Na O24 Si7.4 Ti0.6C 1 2/m 110.0746; 18.0337; 5.2979
90; 104.906; 90
930.145Della Ventura, G.; Robert, J.-L.; Beny, J.-M.; Raudsepp, M.; Hawthorne, F. C.
The OH-F substitution in Ti-rich potassium richterite: Rietveld structure refinement and FTIR and micro-Raman spectroscopic studies of synthetic amphiboles in the system K2O-Na2O-CaO-MgO-SiO2-TiO2-H2O-HF Sample Rich58 Atomic parameters from ICSD
American Mineralogist, 1993, 78, 980-987
9001559 CIFCa F0.4 H1.6 K Mg5 Na O23.6 Si7.44 Ti0.56C 1 2/m 110.0613; 18.0314; 5.2963
90; 104.896; 90
928.561Della Ventura, G.; Robert, J.-L.; Beny, J.-M.; Raudsepp, M.; Hawthorne, F. C.
The OH-F substitution in Ti-rich potassium richterite: Rietveld structure refinement and FTIR and micro-Raman spectroscopic studies of synthetic amphiboles in the system K2O-Na2O-CaO-MgO-SiO2-TiO2-H2O-HF Sample Rich59 Atomic parameters from ICSD
American Mineralogist, 1993, 78, 980-987
9001560 CIFCa F0.8 H1.2 K Mg5 Na O23.2 Si7.52 Ti0.48C 1 2/m 110.0427; 18.0254; 5.2922
90; 104.875; 90
925.909Della Ventura, G.; Robert, J.-L.; Beny, J.-M.; Raudsepp, M.; Hawthorne, F. C.
The OH-F substitution in Ti-rich potassium richterite: Rietveld structure refinement and FTIR and micro-Raman spectroscopic studies of synthetic amphiboles in the system K2O-Na2O-CaO-MgO-SiO2-TiO2-H2O-HF Sample Rich60 Atomic parameters from ICSD
American Mineralogist, 1993, 78, 980-987
9001561 CIFCa F1.2 H0.8 K Mg5 Na O22.8 Si7.6 Ti0.4C 1 2/m 110.0262; 18.0194; 5.2871
90; 104.874; 90
923.194Della Ventura, G.; Robert, J.-L.; Beny, J.-M.; Raudsepp, M.; Hawthorne, F. C.
The OH-F substitution in Ti-rich potassium richterite: Rietveld structure refinement and FTIR and micro-Raman spectroscopic studies of synthetic amphiboles in the system K2O-Na2O-CaO-MgO-SiO2-TiO2-H2O-HF Sample Rich61 Atomic parameters from ICSD
American Mineralogist, 1993, 78, 980-987
9001562 CIFCa F1.6 H0.4 K Mg5 Na O22.4 Si7.76 Ti0.24C 1 2/m 110.0166; 18.0189; 5.2871
90; 104.908; 90
922.139Della Ventura, G.; Robert, J.-L.; Beny, J.-M.; Raudsepp, M.; Hawthorne, F. C.
The OH-F substitution in Ti-rich potassium richterite: Rietveld structure refinement and FTIR and micro-Raman spectroscopic studies of synthetic amphiboles in the system K2O-Na2O-CaO-MgO-SiO2-TiO2-H2O-HF Sample Rich62 Atomic parameters from ICSD
American Mineralogist, 1993, 78, 980-987
9001563 CIFCa F2 K Mg5 Na O22 Si7.84 Ti0.16C 1 2/m 110.0149; 18.0099; 5.2862
90; 104.954; 90
921.167Della Ventura, G.; Robert, J.-L.; Beny, J.-M.; Raudsepp, M.; Hawthorne, F. C.
The OH-F substitution in Ti-rich potassium richterite: Rietveld structure refinement and FTIR and micro-Raman spectroscopic studies of synthetic amphiboles in the system K2O-Na2O-CaO-MgO-SiO2-TiO2-H2O-HF Sample Rich63 Atomic parameters from ICSD
American Mineralogist, 1993, 78, 980-987
9001564 CIFCa1.67 H2 Mn0.33 O5 SiP b c a9.398; 9.139; 10.535
90; 90; 90
904.833Dai, Y. S.; Harlow, G. E.; McGhie, A. R.
Poldervaartite, Ca(Ca0.5Mn0.5)(SiO3OH)(OH), a new acid nesosilicate from the Kalahari manganese field, South Africa: Crystal structure and description
American Mineralogist, 1993, 78, 1082-1087
9001565 CIFBa Mn2 O14 Si4 Sr2C 1 2 114.6; 7.759; 5.142
90; 93.25; 90
581.556Armbruster, T.; Oberhansli, R.; Kunz, M.
Taikanite, BaSr2Mn2O2[Si4O12], from the Wessels mine, South Africa: A chain silicate related to synthetic Ca3Mn2O2[Si4O12]
American Mineralogist, 1993, 78, 1088-1095
9001566 CIFAs S4 Tl3P n m a8.894; 10.855; 9.079
90; 90; 90
876.526Wilson, J. R.; Sen Gupta, P. K.; Robinson, P. D.; Criddle, A. J.
Fangite, Tl3AsS4, a new thallium arsenic sulfosalt from the Mercur Au deposit, Utah, and revised optical data for gillulyite
American Mineralogist, 1993, 78, 1096-1103
9001567 CIFAl2.25 O4.871 Si0.75P b a m7.54336; 7.69176; 2.88402
90; 90; 90
167.336Balzar, D.; Ledbetter, H.
Crystal structure and compressibility of 3:2 mullite
American Mineralogist, 1993, 78, 1192-1196
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
9001569 CIFAl3.15 H2 Mg1.85 Na0.85 O12 Si2C 1 2/m 15.225; 9.05; 9.791
90; 100.27; 90
455.562Oberti, R.; Ungaretti, L.; Tlili, A.; Smith, D. C.; Robert, J.-L.
The crystal structure of preiswerkite Sample: KP9
American Mineralogist, 1993, 78, 1290-1298
9001570 CIFAl3.15 H2 Mg1.85 Na0.85 O12 Si2C 1 2/m 15.228; 9.049; 9.819
90; 100.41; 90
456.873Oberti, R.; Ungaretti, L.; Tlili, A.; Smith, D. C.; Robert, J.-L.
The crystal structure of preiswerkite Sample: KP17
American Mineralogist, 1993, 78, 1290-1298
9001571 CIFAl6.891 B3 Fe1.599 Li0.219 Mg0.051 Mn0.24 Na0.25 O31 Si6R 3 m :H15.967; 15.967; 7.126
90; 90; 120
1573.34MacDonald, D. J.; Hawthorne, F. C.; Grice, J. D.
Foitite, _[Fe2(Al,Fe)]Al6Si6O18(BO3)3(OH)4, a new alkali-deficient tourmaline: Description and crystal structure
American Mineralogist, 1993, 78, 1299-1303
9001572 CIFFe16.2 Mg0.98 O27 Pb1.818P 63/m m c5.952; 5.952; 33.379
90; 90; 120
1024.07Holtstam, D.; Norrestam, R.
Lindqvistite, Pb2MeFe16O27, a novel hexagonal ferrite mineral from Jakobsberg, Filipstad, Sweden
American Mineralogist, 1993, 78, 1304-1312
9001573 CIFMg2 O4 SiF d -3 m :28.0709; 8.0709; 8.0709
90; 90; 90
525.734Hazen, R. M.; Downs, R. T.; Finger, L. W.
Crystal chemistry of ferromagnesian silicate spinels: Evidence for Mg-Si disorder Sample: SUNY 859
American Mineralogist, 1993, 78, 1320-1323
9001574 CIFFe1.234 Mg0.766 O4 SiF d -3 m :28.1763; 8.1763; 8.1763
90; 90; 90
546.601Hazen, R. M.; Downs, R. T.; Finger, L. W.
Crystal chemistry of ferromagnesian silicate spinels: Evidence for Mg-Si disorder Sample: SUNY 1013
American Mineralogist, 1993, 78, 1320-1323
9001575 CIFFe1.58 Mg0.42 O4 SiF d -3 m :28.203; 8.203; 8.203
90; 90; 90
551.973Hazen, R. M.; Downs, R. T.; Finger, L. W.
Crystal chemistry of ferromagnesian silicate spinels: Evidence for Mg-Si disorder Sample: SUNY 1097
American Mineralogist, 1993, 78, 1320-1323
9001576 CIFFe1.564 Mg0.436 O4 SiF d -3 m :28.2059; 8.2059; 8.2059
90; 90; 90
552.559Hazen, R. M.; Downs, R. T.; Finger, L. W.
Crystal chemistry of ferromagnesian silicate spinels: Evidence for Mg-Si disorder Sample: SUNY 1102
American Mineralogist, 1993, 78, 1320-1323
9001577 CIFFe0.44 Mg0.56 O3 SiP b c a18.312; 8.917; 5.217
90; 90; 90
851.874Hazen, R. M.; Finger, L. W.; Ko, J.
Effects of pressure on Mg-Fe ordering in orthopyroxene synthesized at 11.3 GPa and 1600 C
American Mineralogist, 1993, 78, 1336-1339
9001578 CIFO2 SiP 41 21 24.9717; 4.9717; 6.9223
90; 90; 90
171.104Downs, R. T.; Palmer, D. C.
The pressure behavior of alpha cristobalite P = room pressure
American Mineralogist, 1994, 79, 9-14
9001579 CIFO2 SiP 41 21 24.9501; 4.9501; 6.876
90; 90; 90
168.486Downs, R. T.; Palmer, D. C.
The pressure behavior of alpha cristobalite P = 0.19 GPa
American Mineralogist, 1994, 79, 9-14
9001580 CIFO2 SiP 41 21 24.9028; 4.9028; 6.7782
90; 90; 90
162.931Downs, R. T.; Palmer, D. C.
The pressure behavior of alpha cristobalite P = 0.73 GPa
American Mineralogist, 1994, 79, 9-14
9001581 CIFO2 SiP 41 21 24.8757; 4.8757; 6.7163
90; 90; 90
159.663Downs, R. T.; Palmer, D. C.
The pressure behavior of alpha cristobalite P = 1.05 GPa
American Mineralogist, 1994, 79, 9-14
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

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