Crystallography Open Database

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Searching journal of publication like 'American Mineralogist' volume of publication is 93

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9010460 CIFGe Mg O3C m c m2.5987; 8.4107; 6.4079
90; 90; 90
140.057Kubo, A.; Kiefer, B.; Shim, S. H.; Shen, G.; Prakapenka, V. B.; Duffy, T. S.
Rietveld structure refinement of MgGeO3 post-perovskite phase to 1 Mbar Sample: B018, P = 93.6 GPa, T = 1420 K
American Mineralogist, 2008, 93, 965-976
9010461 CIFGe Mg O3C m c m2.5971; 8.4089; 6.4064
90; 90; 90
139.908Kubo, A.; Kiefer, B.; Shim, S. H.; Shen, G.; Prakapenka, V. B.; Duffy, T. S.
Rietveld structure refinement of MgGeO3 post-perovskite phase to 1 Mbar Sample: B019, P = 87.8 GPa, T = 300 K
American Mineralogist, 2008, 93, 965-976
9010462 CIFGe Mg O3C m c m2.5949; 8.4009; 6.4013
90; 90; 90
139.545Kubo, A.; Kiefer, B.; Shim, S. H.; Shen, G.; Prakapenka, V. B.; Duffy, T. S.
Rietveld structure refinement of MgGeO3 post-perovskite phase to 1 Mbar Sample: B020, P = 89.5 GPa, T = 300 K
American Mineralogist, 2008, 93, 965-976
9010463 CIFGe Mg O3C m c m2.6018; 8.4259; 6.4161
90; 90; 90
140.657Kubo, A.; Kiefer, B.; Shim, S. H.; Shen, G.; Prakapenka, V. B.; Duffy, T. S.
Rietveld structure refinement of MgGeO3 post-perovskite phase to 1 Mbar Sample: B038, P = 85.0 GPa, T = 300 K
American Mineralogist, 2008, 93, 965-976
9010464 CIFGe Mg O3C m c m2.6113; 8.4602; 6.4381
90; 90; 90
142.231Kubo, A.; Kiefer, B.; Shim, S. H.; Shen, G.; Prakapenka, V. B.; Duffy, T. S.
Rietveld structure refinement of MgGeO3 post-perovskite phase to 1 Mbar Sample: B040, P = 79.2 GPa, T = 300 K
American Mineralogist, 2008, 93, 965-976
9010465 CIFGe Mg O3C m c m2.6127; 8.4674; 6.4413
90; 90; 90
142.499Kubo, A.; Kiefer, B.; Shim, S. H.; Shen, G.; Prakapenka, V. B.; Duffy, T. S.
Rietveld structure refinement of MgGeO3 post-perovskite phase to 1 Mbar Sample: B041, P = 78.2 GPa, T = 300 K
American Mineralogist, 2008, 93, 965-976
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
9010467 CIFB0.8 Be1.08 Ca0.8 Ce0.24 Dy0.04 Er0.02 Eu2 Fe0.71 Gd0.04 La0.06 Li0.35 Mg0.02 Mn0.03 Nd0.16 O10 Pr0.04 Si2 Sm0.04 Th0.14 U0.02 Y0.38 Yb0.02P 1 21/c 14.7708; 7.6229; 9.8975
90; 90.017; 90
359.946Camara, F.; Oberti, R.; Ottolini, L.; Ventura, G. D.; Bellatreccia, F.
The crystal chemistry of Li in gadolinite
American Mineralogist, 2008, 93, 996-1004
9010468 CIFCa Fe O6 Si2C 1 2/c 19.8447; 9.0234; 5.2509
90; 104.862; 90
450.847Nestola, F.; Ballaran, T. B.; Liebske, C.; Thompson, R.; Downs, R. T.
The effect of the hedenbergitic substitution on the compressibility of jadeite Sample: Jd0Hd100 at P = 0 GPa
American Mineralogist, 2008, 93, 1005-1013
9010469 CIFCa Fe O6 Si2C 1 2/c 19.7553; 8.8998; 5.1923
90; 104.29; 90
436.848Nestola, F.; Ballaran, T. B.; Liebske, C.; Thompson, R.; Downs, R. T.
The effect of the hedenbergitic substitution on the compressibility of jadeite Sample: Jd0Hd100 at P = 3.80 GPa
American Mineralogist, 2008, 93, 1005-1013
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
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
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
9010479 CIFC H2 Ca O4P 3110.5547; 10.5547; 7.5644
90; 90; 120
729.788Swainson, I. P.
The structure of monohydrocalcite and the phase composition of the beachrock deposits of Lake Butler and Lake Fellmongery, South Australia
American Mineralogist, 2008, 93, 1014-1018
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
9010481 CIFCa Ir O3C m c m3.1472; 9.8655; 7.3018
90; 90; 90
226.711Sugahara, M.; Yoshiasa, A.; Yoneda, A.; Hashimoto, T.; Sakai, S.; Okube, M.; Nakatsuka, A.; Ohtaka, O.
Single-crystal X-ray diffraction study of CaIrO3 Note: post-perovskite structure
American Mineralogist, 2008, 93, 1148-1152
9010482 CIFBe H Na O8 Si3P n m a12.7334; 13.6298; 7.3467
90; 90; 90
1275.05Gatta, G. D.; Rotiroti, N.; McIntyre, G. J.; Guastoni, A.; Nestola, F.
New insights into the crystal chemistry of epididymite and eudidymite from Malosa, Malawi: A single-crystal neutron diffraction study
American Mineralogist, 2008, 93, 1158-1165
9010483 CIFBe2 H2 Na2 O16 Si6C 1 2/c 112.6188; 7.3781; 13.994
90; 103.762; 90
1265.48Gatta, G. D.; Rotiroti, N.; McIntyre, G. J.; Guastoni, A.; Nestola, F.
New insights into the crystal chemistry of epididymite and eudidymite from Malosa, Malawi: A single-crystal neutron diffraction study
American Mineralogist, 2008, 93, 1158-1165
9010484 CIFAs3 Co1.5 Fe1.5 S3P n 21 m14.158; 5.6462; 3.3196
90; 90; 90
265.365Yang, H.; Downs, R. T.
Crystal structure of glaucodot, (Co,Fe)AsS, and its relationships to marcasite and arsenopyrite
American Mineralogist, 2008, 93, 1183-1186
9010485 CIFAl2 Na2 O10 Si3F d d 217.574; 18.161; 6.3674
90; 90; 90
2032.23Wang, H.; Bish, D. L.
A PH2O-dependent structural phase transition in the zeolite natrolite Sample: alpha2-metanatrolite at 400 C, 0.15 mbar
American Mineralogist, 2008, 93, 1191-1194
9010486 CIFGe Mg2 O4F d -3 m :28.246; 8.246; 8.246
90; 90; 90
560.699Thomas, S. M.; Muller, M. K.; Kahlenberg, V.; Thomas, R.; Rhede, D.; Wirth, R.; Wunder, B.
Protonation in germanium equivalents of ringwoodite, anhydrous phase B, and superhydrous phase B Note: Ge-ringwoodite
American Mineralogist, 2008, 93, 1282-1294
9010487 CIFGe5 Mg14 O24P b a m14.52; 10.231; 5.947
90; 90; 90
883.451Thomas, S. M.; Muller, M. K.; Kahlenberg, V.; Thomas, R.; Rhede, D.; Wirth, R.; Wunder, B.
Protonation in germanium equivalents of ringwoodite, anhydrous phase B, and superhydrous phase B Note: Ge-anhydrous phase B
American Mineralogist, 2008, 93, 1282-1294
9010488 CIFGe3 H4 Mg10 O18P n n 214.202; 5.1676; 8.8756
90; 90; 90
651.383Thomas, S. M.; Muller, M. K.; Kahlenberg, V.; Thomas, R.; Rhede, D.; Wirth, R.; Wunder, B.
Protonation in germanium equivalents of ringwoodite, anhydrous phase B, and superhydrous phase B Note: superhydrous phase B Ge-ringwoodite Note: published bond lengths could not be reproduced
American Mineralogist, 2008, 93, 1282-1294
9010489 CIFCa9.181 Fe0.429 H0.693 Mg0.571 O28 P7R 3 c :H10.3612; 10.3612; 37.096
90; 90; 120
3448.88Hughes, J. M.; Jolliff, B. L.; Rakovan, J.
The crystal chemistry of whitlockite and merrillite and the dehydrogenation of whitlockite to merrillite Locality: Palermo Mine, North Groton, Grafton County, New Hampshire
American Mineralogist, 2008, 93, 1300-1305
9010490 CIFCa9.061 Fe0.014 H0.89 Mg0.986 O28 P7R 3 c :H10.3477; 10.3477; 37.077
90; 90; 120
3438.14Hughes, J. M.; Jolliff, B. L.; Rakovan, J.
The crystal chemistry of whitlockite and merrillite and the dehydrogenation of whitlockite to merrillite Locality: Tip Top Pegmatite, Custer County, South Dakota
American Mineralogist, 2008, 93, 1300-1305
9010491 CIFCa9.06 Fe0.079 H0.87 Mg0.921 O28 P7R 3 c :H10.3571; 10.3571; 37.138
90; 90; 120
3450.05Hughes, J. M.; Jolliff, B. L.; Rakovan, J.
The crystal chemistry of whitlockite and merrillite and the dehydrogenation of whitlockite to merrillite Locality: synthetic Note: Standard temperature and pressure
American Mineralogist, 2008, 93, 1300-1305
9010492 CIFCa9.036 Fe0.084 H0.831 Mg0.916 O27.28 P7R 3 c :H10.3597; 10.3597; 37.161
90; 90; 120
3453.92Hughes, J. M.; Jolliff, B. L.; Rakovan, J.
The crystal chemistry of whitlockite and merrillite and the dehydrogenation of whitlockite to merrillite Note: Heated at 500 degrees C
American Mineralogist, 2008, 93, 1300-1305
9010493 CIFCa9.443 Fe0.065 Mg0.935 O28 P6.964R 3 c :H10.3499; 10.3499; 37.115
90; 90; 120
3443.12Hughes, J. M.; Jolliff, B. L.; Rakovan, J.
The crystal chemistry of whitlockite and merrillite and the dehydrogenation of whitlockite to merrillite Note: Formed through dehydrogenation of synthetic whitlockite by heating at 1050 degrees C for 24 hours
American Mineralogist, 2008, 93, 1300-1305
9010494 CIFAl3 Ca0.982 H14 K1.14 O17.11 Si3P -19.248; 9.259; 9.533
92.313; 92.761; 89.981
814.671Fischer, R. X.; Kahlenberg, V.; Lengauer, C. L.; Tillmanns, E.
Thermal behavior and structural transformation in the chabazite-type zeolite willhendersonite, KCaAl3Si3O12*5H2O Note: Room temperature
American Mineralogist, 2008, 93, 1317-1325
9010495 CIFAl3 Ca0.987 H4.68 K1.537 O15.82 Si3P -19.205; 9.231; 9.442
92.55; 93.086; 90.519
800.29Fischer, R. X.; Kahlenberg, V.; Lengauer, C. L.; Tillmanns, E.
Thermal behavior and structural transformation in the chabazite-type zeolite willhendersonite, KCaAl3Si3O12*5H2O Note: T = 373K
American Mineralogist, 2008, 93, 1317-1325
9010496 CIFAl6 Ca1.617 K1.842 O24 Si6R -3 :R9.411; 9.411; 9.411
91.48; 91.48; 91.48
832.654Fischer, R. X.; Kahlenberg, V.; Lengauer, C. L.; Tillmanns, E.
Thermal behavior and structural transformation in the chabazite-type zeolite willhendersonite, KCaAl3Si3O12*5H2O Note: T = 423K
American Mineralogist, 2008, 93, 1317-1325
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
9010498 CIFAl2 Ca H12.64 O12.77 Si2P 1 21/c 110.0155; 10.6051; 9.8277
90; 92.409; 90
1042.93Ori, S.; Quartieri, S.; Vezzalini, G.; Dmitriev, V.
Pressure-induced over-hydration and water ordering in gismondine: a synchrotron powder diffraction study Note: ambient pressure
American Mineralogist, 2008, 93, 1393-1403
9010499 CIFAl2 Ca H12.64 O13 Si2P 1 21/c 19.8917; 10.5948; 9.7482
90; 92.2; 90
1020.86Ori, S.; Quartieri, S.; Vezzalini, G.; Dmitriev, V.
Pressure-induced over-hydration and water ordering in gismondine: a synchrotron powder diffraction study Note: pressure = 1.6 GPa
American Mineralogist, 2008, 93, 1393-1403
9010500 CIFAl2 Ca H10 O13 Si2P 1 21/c 19.7975; 10.626; 9.6977
90; 91.225; 90
1009.38Ori, S.; Quartieri, S.; Vezzalini, G.; Dmitriev, V.
Pressure-induced over-hydration and water ordering in gismondine: a synchrotron powder diffraction study Note: pressure = 1.9 GPa
American Mineralogist, 2008, 93, 1393-1403
9010501 CIFAl2 Ca H12.64 O12.95 Si2P 1 21/c 110.0264; 10.6094; 9.8377
90; 92.369; 90
1045.58Ori, S.; Quartieri, S.; Vezzalini, G.; Dmitriev, V.
Pressure-induced over-hydration and water ordering in gismondine: a synchrotron powder diffraction study Note: pressure = 0 after decompression
American Mineralogist, 2008, 93, 1393-1403
9010502 CIFCa Ge2 O5P b a m7.1236; 8.1912; 5.6468
90; 90; 90
329.495Nestola, F.; Nemeth, P.; Angel, R. J.; Buseck, P. R.
Equation of state and crystal structure of a new germanate post-titanite phase Locality: synthetic Note: pressure = 8.6 GPa
American Mineralogist, 2008, 93, 1424-1428
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
9010504 CIFC0.042 Ca5 F0.921 O12.321 P2.883P 63/m9.3648; 9.3648; 6.8879
90; 90; 120
523.136Fleet, M. E.; Liu, X.
Accommodation of the carbonate ion in fluorapatite synthesized at high pressure Locality: synthetic Note: LM130 sample
American Mineralogist, 2008, 93, 1460-1469
9010505 CIFC0.078 Ca5 F0.842 O12.402 P2.895P 63/m9.3679; 9.3679; 6.8885
90; 90; 120
523.528Fleet, M. E.; Liu, X.
Accommodation of the carbonate ion in fluorapatite synthesized at high pressure Locality: synthetic Note: LM136 sample
American Mineralogist, 2008, 93, 1460-1469
9010506 CIFC0.066 Ca5 F0.864 O12.381 P2.883P 63/m9.3659; 9.3659; 6.8901
90; 90; 120
523.426Fleet, M. E.; Liu, X.
Accommodation of the carbonate ion in fluorapatite synthesized at high pressure Locality: synthetic Note: LM142 sample
American Mineralogist, 2008, 93, 1460-1469
9010507 CIFC0.834 Al4.68 Ca3.176 Na0.824 O27.084 S0.146 Si7.32I 4/m12.16711; 12.16711; 7.575466
90; 90; 90
1121.46Antao, S. M.; Hassan, I.
Unusual Al-Si ordering in calcic scapolite, Me79.6, with increasing temperature T = 25 C (HRPXRD)
American Mineralogist, 2008, 93, 1470-1477
9010508 CIFC0.834 Al4.68 Ca3.176 Na0.824 O27.084 S0.146 Si7.32I 4/m12.1667; 12.1667; 7.5758
90; 90; 90
1121.44Antao, S. M.; Hassan, I.
Unusual Al-Si ordering in calcic scapolite, Me79.6, with increasing temperature T = 26 C
American Mineralogist, 2008, 93, 1470-1477
9010509 CIFC0.834 Al4.68 Ca3.176 Na0.824 O27.084 S0.146 Si7.32I 4/m12.1736; 12.1736; 7.5757
90; 90; 90
1122.69Antao, S. M.; Hassan, I.
Unusual Al-Si ordering in calcic scapolite, Me79.6, with increasing temperature T = 101
American Mineralogist, 2008, 93, 1470-1477

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