Crystallography Open Database

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Searching journal of publication like 'American Mineralogist' volume of publication is 94

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9013628 CIFAs0.33 Ca5 H O13 P2.67P 63/m9.4655; 9.4655; 6.9068
90; 90; 120
535.913Lee, Y. J.; Stephens, P. W.; Tang, Y.; Li, W.; Phillips, B. L.; Parise, J. B.; Reeder, R. J.
Arsenate substitution in hydroxylapatite: Structural characterization of the Ca5(PxAs1-xO4)3OH solid solution Sample: As11
American Mineralogist, 2009, 94, 666-675
9013629 CIFAs0.727 Ca5 H O13 P2.273P 63/m9.5075; 9.5075; 6.9187
90; 90; 120
541.611Lee, Y. J.; Stephens, P. W.; Tang, Y.; Li, W.; Phillips, B. L.; Parise, J. B.; Reeder, R. J.
Arsenate substitution in hydroxylapatite: Structural characterization of the Ca5(PxAs1-xO4)3OH solid solution Sample: As24
American Mineralogist, 2009, 94, 666-675
9013630 CIFAs1.298 Ca5 H O13 P1.702P 63/m9.564; 9.564; 6.936
90; 90; 120
549.438Lee, Y. J.; Stephens, P. W.; Tang, Y.; Li, W.; Phillips, B. L.; Parise, J. B.; Reeder, R. J.
Arsenate substitution in hydroxylapatite: Structural characterization of the Ca5(PxAs1-xO4)3OH solid solution Sample: As43
American Mineralogist, 2009, 94, 666-675
9013631 CIFAs1.972 Ca5 H O13 P1.028P 63/m9.6311; 9.6311; 6.9556
90; 90; 120
558.749Lee, Y. J.; Stephens, P. W.; Tang, Y.; Li, W.; Phillips, B. L.; Parise, J. B.; Reeder, R. J.
Arsenate substitution in hydroxylapatite: Structural characterization of the Ca5(PxAs1-xO4)3OH solid solution Sample: As66
American Mineralogist, 2009, 94, 666-675
9013632 CIFAs2.405 Ca5 H O13 P0.595P 63/m9.6758; 9.6758; 6.9732
90; 90; 120
565.375Lee, Y. J.; Stephens, P. W.; Tang, Y.; Li, W.; Phillips, B. L.; Parise, J. B.; Reeder, R. J.
Arsenate substitution in hydroxylapatite: Structural characterization of the Ca5(PxAs1-xO4)3OH solid solution Sample: As80
American Mineralogist, 2009, 94, 666-675
9013633 CIFAs3 Ca5 H O13P 63/m9.7156; 9.7156; 6.9857
90; 90; 120
571.057Lee, Y. J.; Stephens, P. W.; Tang, Y.; Li, W.; Phillips, B. L.; Parise, J. B.; Reeder, R. J.
Arsenate substitution in hydroxylapatite: Structural characterization of the Ca5(PxAs1-xO4)3OH solid solution Sample: As100
American Mineralogist, 2009, 94, 666-675
9013634 CIFFe3 H6 O14 P2 PbR -3 m :H7.2963; 7.2963; 16.8491
90; 90; 120
776.806Grey, I. E.; Mumme, W. G.; Mills, S. J.; Birch, W. D.; Wilson, N. C.
The crystal chemical role of Zn in alunite-type minerals: Structure refinements for kintoreite and zincian kintoreite
American Mineralogist, 2009, 94, 676-683
9013635 CIFAs0.766 Fe3 H6 O14 P1.08 Pb S0.16 Zn0.31R -3 m :H7.3789; 7.3789; 16.8552
90; 90; 120
794.782Grey, I. E.; Mumme, W. G.; Mills, S. J.; Birch, W. D.; Wilson, N. C.
The crystal chemical role of Zn in alunite-type minerals: Structure refinements for kintoreite and zincian kintoreite
American Mineralogist, 2009, 94, 676-683
9013636 CIFCa2 Mg O7 Si2P -4 21 m7.74; 7.74; 4.932
90; 90; 90
295.464Merlini, M.; Gemmi, M.; Hanfland, M.; Crichton, W.
High-pressure behavior of akermanite and gehlenite and phase stability of the normal structures in melelites Note: P = 5 GPa
American Mineralogist, 2009, 94, 704-709
9013637 CIFCa2 Mg O7 Si2P -4 21 m7.57; 7.57; 4.781
90; 90; 90
273.975Merlini, M.; Gemmi, M.; Hanfland, M.; Crichton, W.
High-pressure behavior of akermanite and gehlenite and phase stability of the normal structures in melelites Note: P = 15 GPa
American Mineralogist, 2009, 94, 704-709
9013638 CIFCa2 Mg O7 Si2P 1 21/n 18.82; 7.34; 9.13
90; 115.1; 90
535.25Merlini, M.; Gemmi, M.; Hanfland, M.; Crichton, W.
High-pressure behavior of akermanite and gehlenite and phase stability of the normal structures in melelites Note: P = 15.7 GPa
American Mineralogist, 2009, 94, 704-709
9013639 CIFMg1.997 O4 Si0.995P b n m4.7552; 10.1985; 5.9822
90; 90; 90
290.112Hushur, A.; Manghnani, M. H.; Smyth, J. R.; Nestola, F.; Frost, D. J.
Crystal chemistry of hydrous forsterite and its vibrational properties up to 41 GPa Locality: synthetic Sample: Anhydrous Fo100
American Mineralogist, 2009, 94, 751-760
9013640 CIFMg1.984 O4 Si0.994P b n m4.7545; 10.2068; 5.9863
90; 90; 90
290.505Hushur, A.; Manghnani, M. H.; Smyth, J. R.; Nestola, F.; Frost, D. J.
Crystal chemistry of hydrous forsterite and its vibrational properties up to 41 GPa Locality: synthetic Sample: SZ0408A
American Mineralogist, 2009, 94, 751-760
9013641 CIFMg1.99 O4 Si0.993P b n m4.7547; 10.20416; 5.98494
90; 90; 90
290.376Hushur, A.; Manghnani, M. H.; Smyth, J. R.; Nestola, F.; Frost, D. J.
Crystal chemistry of hydrous forsterite and its vibrational properties up to 41 GPa Locality: synthetic Sample: SZ0408B
American Mineralogist, 2009, 94, 751-760
9013642 CIFAl2 O4 ZnF d -3 m :28.0854; 8.0854; 8.0854
90; 90; 90
528.572Popovic, J.; Tkalcec, E.; Grzeta, B.; Kurajica, S.; Rakvin, B.
Inverse spinel structure of Co-doped gahnite Note: Sample S0, inversion parameter = 0, ZnAl2O4
American Mineralogists, 2009, 94, 771-776
9013643 CIFAl2 Co0.04 O4 Zn0.96F d -3 m :28.0863; 8.0863; 8.0863
90; 90; 90
528.749Popovic, J.; Tkalcec, E.; Grzeta, B.; Kurajica, S.; Rakvin, B.
Inverse spinel structure of Co-doped gahnite Note: Sample S1, inversion parameter = .037, (Zn.96Co.04)Al2O4
American Mineralogists, 2009, 94, 771-776
9013644 CIFAl2 Co0.08 O4 Zn0.92F d -3 m :28.0883; 8.0883; 8.0883
90; 90; 90
529.141Popovic, J.; Tkalcec, E.; Grzeta, B.; Kurajica, S.; Rakvin, B.
Inverse spinel structure of Co-doped gahnite Note: Sample S2, inversion parameter = .051, (Zn.92Co.08)Al2O4
American Mineralogists, 2009, 94, 771-776
9013645 CIFAl2 Co0.12 O4 Zn0.88F d -3 m :28.0897; 8.0897; 8.0897
90; 90; 90
529.416Popovic, J.; Tkalcec, E.; Grzeta, B.; Kurajica, S.; Rakvin, B.
Inverse spinel structure of Co-doped gahnite Note: Sample S3, inversion parameter = .054, (Zn.88Co.12)Al2O4
American Mineralogists, 2009, 94, 771-776
9013646 CIFAl2 Co0.25 O4 Zn0.75F d -3 m :28.0914; 8.0914; 8.0914
90; 90; 90
529.75Popovic, J.; Tkalcec, E.; Grzeta, B.; Kurajica, S.; Rakvin, B.
Inverse spinel structure of Co-doped gahnite Note: Sample S4, inversion parameter = .070, (Zn.75Co.25)Al2O4
American Mineralogists, 2009, 94, 771-776
9013647 CIFAl2 Co0.5 O4 Zn0.5F d -3 m :28.0928; 8.0928; 8.0928
90; 90; 90
530.025Popovic, J.; Tkalcec, E.; Grzeta, B.; Kurajica, S.; Rakvin, B.
Inverse spinel structure of Co-doped gahnite Note: Sample S6, inversion parameter = .095, (Zn.5Co.5)Al2O4
American Mineralogists, 2009, 94, 771-776

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