Crystallography Open Database

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9017070 CIFCa0.058 H Mn1.942 Na O9 Si3P -17.70244; 6.9003; 6.7447
90.4159; 94.0442; 102.801
348.599Williams, E. R.; Weller, M. T.
A variable-temperature neutron diffraction study of serandite: A Mn-silicate framework with a very strong, two-proton site, hydrogen bond Note: T = 298 K
American Mineralogist, 2014, 99, 1755-1760
9017071 CIFCa0.074 H Mn1.926 Na O9 Si3P -17.7283; 6.9174; 6.7608
90.362; 94.016; 102.822
351.464Williams, E. R.; Weller, M. T.
A variable-temperature neutron diffraction study of serandite: A Mn-silicate framework with a very strong, two-proton site, hydrogen bond Note: T = 575 K
American Mineralogist, 2014, 99, 1755-1760
9017072 CIFCa0.074 H Mn1.926 Na O9 Si3P -17.7513; 6.9384; 6.7761
90.307; 94.019; 102.858
354.335Williams, E. R.; Weller, M. T.
A variable-temperature neutron diffraction study of serandite: A Mn-silicate framework with a very strong, two-proton site, hydrogen bond Note: T = 800 K
American Mineralogist, 2014, 99, 1755-1760
9017073 CIFH28 K0.216 Mg2 N0.784 Na O22 P2P m n b6.9661; 25.236; 11.2919
90; 90; 90
1985.08Yang, H.; Martinelli, L.; Tasso, F.; Sprocati, A. R.; Pinzari, F.; Liu, Z.; Downs, R. T.; Sun, H. J.
A new biogenic, struvite-related phosphate, the ammonium-analog of hazenite, (NH4)NaMg2(PO4)2*14H2O
American Mineralogist, 2014, 99, 1761-1766
9017074 CIFAl3.08 B3 Ca0.07 Cr3.47 F0.25 Fe0.01 H3.02 K0.02 Mg2.25 Na0.87 O30.75 Si5.96 V0.22R 3 m :H16.0277; 16.0277; 7.3085
90; 90; 120
1625.93Reznitskii, L.; Clark, C. M.; Hawthorne, F. C.; Grice, J. D.; Skogby, H.; Halenius, U.; Bosi, F.
Chromo-alumino-povondraite, NaCr3(Al4Mg2)(Si6O18)(BO3)3(OH)3O, a new mineral species of the tourmaline supergroup
American Mineralogist, 2014, 99, 1767-1773
9017075 CIFH12 N2 O12 S2 UP 1 21/c 17.736; 7.3712; 20.856
90; 102.123; 90
1162.76Pekov, I. V.; Krivovichev, S. V.; Yapaskurt, V. O.; Chukanov, N. V.; Belakovskiy, D. I.
Beshtauite, (NH4)2(UO2)(SO4)2*2H2O, a new mineral from Mount Beshtau, Northern Caucasus, Russia
American Mineralogist, 2014, 99, 1783-1787
9017076 CIFCr2 Fe O4P n m a9.0633; 2.95793; 10.6391
90; 90; 90
285.219Ishii, T.; Kojitani, H.; Tsukamoto, S.; Fujino, K.; Mori, D.; Inaguma, Y.; Tsujino, N.; Yoshino, T.; Yamazaki, D.; Higo, Y.; Funakoshi, K.; Akaogi, M.
High-pressure phase transitions in FeCr2O4 and structure analysis of new post- spinel FeCr2O4 and Fe2Cr2O5 phases with meteoritical and petrological implications
American Mineralogist, 2014, 99, 1788-1797
9017077 CIFCr2 Fe O4C m c m2.88445; 9.5207; 9.7532
90; 90; 90
267.842Ishii, T.; Kojitani, H.; Tsukamoto, S.; Fujino, K.; Mori, D.; Inaguma, Y.; Tsujino, N.; Yoshino, T.; Yamazaki, D.; Higo, Y.; Funakoshi, K.; Akaogi, M.
High-pressure phase transitions in FeCr2O4 and structure analysis of new post- spinel FeCr2O4 and Fe2Cr2O5 phases with meteoritical and petrological implications
American Mineralogist, 2014, 99, 1788-1797
9017078 CIFCr2 Fe2 O5P b a m9.6642; 12.5; 2.9023
90; 90; 90
350.605Ishii, T.; Kojitani, H.; Tsukamoto, S.; Fujino, K.; Mori, D.; Inaguma, Y.; Tsujino, N.; Yoshino, T.; Yamazaki, D.; Higo, Y.; Funakoshi, K.; Akaogi, M.
High-pressure phase transitions in FeCr2O4 and structure analysis of new post- spinel FeCr2O4 and Fe2Cr2O5 phases with meteoritical and petrological implications
American Mineralogist, 2014, 99, 1788-1797
9017079 CIFH Mg0.5 O2 Si0.5P n n m4.733; 4.325; 2.842
90; 90; 90
58.176Bindi, L.; Nishi, M.; Tsuchiya, J.; Irifune, T.
Crystal chemistry of dense hydrous magnesium silicates: The structure of phase H, MgSiH2O4, synthesized at 45 GPa and 1000 C
American Mineralogist, 2014, 99, 1802-1805
9017080 CIFAl0.07 Be2.93 Ca1.08 H1.84 K Na0.02 O30.92 Si12 Y0.91 Yb0.01P 6/m c c10.3476; 10.3476; 13.761
90; 90; 120
1276.03Hawthorne, F. C.; Abdu, Y. A.; Ball, N. A.; Cerny, P.; Kristiansen, R.
Agakhanovite-(Y), ideally (YCa)2KBe3Si12O30, a new milarite-group mineral from the Heftetjern pegmatite, Tordal, Southern Norway: description and crystal structure
American Mineralogist, 2014, 99, 2084-2088
9017081 CIFH6 Mo2 O11 ThP 1 21/c 19.6797; 10.3771; 9.3782
90; 90; 90
942.014Orlandi, P.; Biagioni, C.; Bindi, L.; Nestola, F.
Ichnusaite, Th(MoO4)2*3H2O, the first natural thorium molybdate: occurrence, description, and crystal structure
American Mineralogist, 2014, 99, 2089-2094
9017082 CIFAl1.99 Fe0.04 O4 Zn0.97F d -3 m :28.0912; 8.0912; 8.0912
90; 90; 90
529.711Fregola, R. A.; Skogby, H.; Bosi, F.; D'Ippolito V; Andreozzi, G. B.; Halenius, U.
Optical absorption spectroscopy study of the causes for color variations in natural Fe-bearing gahnite: Insights from iron valency and site distribution data Note: Sample Ni8967d
American Mineralogist, 2014, 99, 2187-2195
9017083 CIFAl1.98 Fe0.1 Mg0.01 O4 Zn0.91F d -3 m :28.0954; 8.0954; 8.0954
90; 90; 90
530.536Fregola, R. A.; Skogby, H.; Bosi, F.; D'Ippolito V; Andreozzi, G. B.; Halenius, U.
Optical absorption spectroscopy study of the causes for color variations in natural Fe-bearing gahnite: Insights from iron valency and site distribution data Note: Sample Ni8967e
American Mineralogist, 2014, 99, 2187-2195
9017084 CIFAl1.98 Fe0.1 Mg0.01 O4 Zn0.91F d -3 m :28.0944; 8.0944; 8.0944
90; 90; 90
530.34Fregola, R. A.; Skogby, H.; Bosi, F.; D'Ippolito V; Andreozzi, G. B.; Halenius, U.
Optical absorption spectroscopy study of the causes for color variations in natural Fe-bearing gahnite: Insights from iron valency and site distribution data Note: Sample Sp2781_6a
American Mineralogist, 2014, 99, 2187-2195
9017085 CIFAl1.92 Fe0.35 Mg0.03 O4 Zn0.7F d -3 m :28.1103; 8.1103; 8.1103
90; 90; 90
533.471Fregola, R. A.; Skogby, H.; Bosi, F.; D'Ippolito V; Andreozzi, G. B.; Halenius, U.
Optical absorption spectroscopy study of the causes for color variations in natural Fe-bearing gahnite: Insights from iron valency and site distribution data Note: Sample Sp2781_6c
American Mineralogist, 2014, 99, 2187-2195
9017086 CIFAl0.22 Cr0.3 Fe2.15 Mg0.26 O4 Si0.08A m a m9.8; 9.6; 2.87
90; 90; 90
270.01Koch-Muller M; Mugnaioli, E.; Rhede, D.; Speziale, S.; Kolb, U.; Wirth, R.
Synthesis of a quenchable high-pressure form of magnetite (h-Fe3O4) with composition Fe1(Fe2+0.75Mg0.26)Fe2(Fe3+0.70Cr0.15Al0.11Si0.04)2O4 Note: Sample Crystal 1
American Mineralogist, 2014, 99, 2405-2415
9017087 CIFAl0.22 Cr0.3 Fe2.15 Mg0.26 O4 Si0.08A m a m9.8; 9.6; 2.87
90; 90; 90
270.01Koch-Muller M; Mugnaioli, E.; Rhede, D.; Speziale, S.; Kolb, U.; Wirth, R.
Synthesis of a quenchable high-pressure form of magnetite (h-Fe3O4) with composition Fe1(Fe2+0.75Mg0.26)Fe2(Fe3+0.70Cr0.15Al0.11Si0.04)2O4 Note: Sample Crystal 2
American Mineralogist, 2014, 99, 2405-2415
9017088 CIFCa0.96 Ce0.01 H4 O17 Si6 Yb0.01 Zr0.99C 1 2/m 114.0178; 14.1289; 7.8366
90; 109.436; 90
1463.64Mesto, E.; Kaneva, E.; Schingaro, E.; Vladykin, N.; Lacalamita, M.; Scordari, F.
Armstrongite from Khan Bogdo (Mongolia): Crystal structure determination and implications for zeolite-like cation exchange properties
American Mineralogist, 2014, 99, 2424-2432
9017089 CIFAl0.38 Fe0.3 Ni0.32I m -3 m3.0214; 3.0214; 3.0214
90; 90; 90
27.582Bindi, L.; Yao, N.; Lin, C.; Hollister, L. S.; MacPherson, G. J.; Poirier, G. R.; Andronicos, C. L.; Distler, V. V.; Eddy, M. P.; Kostin, A.; Kryachko, V.; Steinhardt, W. M.; Yudovskaya, M.
Steinhardtite, a new body-centered-cubic allotropic form of aluminum from the Khatyrka CV3 carbonaceous chondrite
American Mineralogist, 2014, 99, 2433-2436
9017090 CIFFe1.946 O3I 1 2/a 17.3951; 5.0117; 5.4417
90; 95.666; 90
200.695Peterson, K. M.; Heaney, P. J.; Post, J. E.; Eng, P. J.
A refined monoclinic structure for a variety of "hydrohematite" Note: T = 38 C
American Mineralogist, 2015, 100, 570-579
9017091 CIFH2 O10 S Sb4P c a 215.7563; 11.2538; 14.8627
90; 90; 90
962.809Roper, A. J.; Leverett, P.; Murphy, T. D.; Williams, P. A.; Hibbs, D. E.
Klebelsbergite, Sb4O4SO4(OH)2: Stability relationships, formation in nature, and refinement of its structure
American Mineralogist, 2015, 100, 602-607
9017092 CIFFe2.017 Mg1.983 O5C m c m2.8889; 9.7282; 12.5523
90; 90; 90
352.767Ballaran, T. B.; Uenver-Thiele L; Woodland, A. B.
Complete substitution of Fe2+ by Mg in Fe4O5: The crystal structure of the Mg2Fe2O5 end-member
American Mineralogist, 2015, 100, 628-632
9017093 CIFAl Li O10 Si4P 1 2/c 111.22955; 5.1396; 11.7514
90; 141.312; 90
423.952Ross, N. L.; Zhao, J.; Slebodnick, C.; Spencer, E. C.; Chakoumakos, B. C.
Petalite under pressure: Elastic behavior and phase stability Note: P = 0.0001 GPa
American Mineralogist, 2015, 100, 714-721
9017094 CIFAl Li O10 Si4P 1 2/c 111.2067; 5.1228; 11.716
90; 141.243; 90
421.069Ross, N. L.; Zhao, J.; Slebodnick, C.; Spencer, E. C.; Chakoumakos, B. C.
Petalite under pressure: Elastic behavior and phase stability Note: P = 0.32 GPa
American Mineralogist, 2015, 100, 714-721
9017095 CIFAl Li O10 Si4P 1 2/c 111.1895; 5.11; 11.6872
90; 141.19; 90
418.826Ross, N. L.; Zhao, J.; Slebodnick, C.; Spencer, E. C.; Chakoumakos, B. C.
Petalite under pressure: Elastic behavior and phase stability Note: P = 0.56 GPa
American Mineralogist, 2015, 100, 714-721
9017096 CIFAl Li O10 Si4P 1 2/c 111.1705; 5.0963; 11.6569
90; 141.134; 90
416.413Ross, N. L.; Zhao, J.; Slebodnick, C.; Spencer, E. C.; Chakoumakos, B. C.
Petalite under pressure: Elastic behavior and phase stability Note: P = 0.89 GPa
American Mineralogist, 2015, 100, 714-721
9017097 CIFAl Li O10 Si4P 1 2/c 111.1425; 5.0723; 11.6092
90; 141.074; 90
412.257Ross, N. L.; Zhao, J.; Slebodnick, C.; Spencer, E. C.; Chakoumakos, B. C.
Petalite under pressure: Elastic behavior and phase stability Note: P = 1.25 GPa
American Mineralogist, 2015, 100, 714-721
9017098 CIFAl3 Li3 O30 Si12P 1 2/c 110.8301; 5.053; 33.59
90; 140.665; 90
1165.15Ross, N. L.; Zhao, J.; Slebodnick, C.; Spencer, E. C.; Chakoumakos, B. C.
Petalite under pressure: Elastic behavior and phase stability Note: P = 2.71 GPa
American Mineralogist, 2015, 100, 714-721
9017099 CIFAl0.62 Ca0.11 F0.03 Fe0.486 H1.97 K0.067 Mg3.884 Mn0.01 Na2.829 O23.97 Si8C 1 2/m 19.8087; 17.8448; 5.2905
90; 103.66; 90
899.826Oberti, R.; Boiocchi, M.; Hawthorne, F. C.; Ball, N. A.; Harlow, G. E.
Eckermannite revised: The new holotype from the Jade Mine Tract, Myanmar-crystal structure, mineral data, and hints on the reasons for the rarity of eckermannite Note: Sample AMNH H108401
American Mineralogist, 2015, 100, 909-914
9017100 CIFCa1.39 Cl0.72 Fe0.26 H0.28 Mn3.41 O12.28 P3P 63/m9.504; 9.504; 6.347
90; 90; 120
496.492Tait, K.; Ball, N. A.; Hawthorne, F. C.
Pieczkaite, ideally Mn5(PO4)3Cl, a new apatite-supergroup mineral from Cross Lake, Manitoba, Canada: Description and crystal structure
American Mineralogist, 2015, 100, 1047-1052
9017101 CIFCs0.44 H20.16 Hf0.04 K0.48 Na7.04 Nb0.08 O70.08 Si24 Y0.68 Zr3.28C 1 2/m 114.5975; 14.11; 14.4394
90; 90.0399; 90
2974.09Agakhanov, A. A.; Pautov, L. A.; Karpenko, V. Y.; Sokolova, E.; Abdu, Y. A.; Hawthorne, F. C.; Pekov, I. V.; Siidra, O. I.
Yusupovite, Na2Zr(Si6O15)(H2O)3, a new mineral species from the Darai-Pioz alkaline massif and its implications as a new microporous filter for large ions
American Mineralogist, 2015, 100, 1502-1508
9017102 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.7903; 4.7903; 15.72
90; 90; 120
312.398Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run1-p0 Note: P = .0001 GPa
American Mineralogist, 2015, 100, 2625-2629
9017103 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.6581; 4.6581; 14.213
90; 90; 120
267.075Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run1-p1 Note: P = 22.50 GPa
American Mineralogist, 2015, 100, 2625-2629
9017104 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.6554; 4.6554; 14.149
90; 90; 120
265.565Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run1-p2 Note: P = 23.65 GPa
American Mineralogist, 2015, 100, 2625-2629
9017105 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.6473; 4.6473; 14.075
90; 90; 120
263.257Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run1-p3 Note: P = 25.34 GPa
American Mineralogist, 2015, 100, 2625-2629
9017106 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.6416; 4.6416; 13.967
90; 90; 120
260.597Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run1-p4 Note: P = 27.45 GPa
American Mineralogist, 2015, 100, 2625-2629
9017107 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.6301; 4.6301; 13.83
90; 90; 120
256.764Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run1-p5 Note: P = 30.48 GPa
American Mineralogist, 2015, 100, 2625-2629
9017108 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.6278; 4.6278; 13.797
90; 90; 120
255.897Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run1-p6 Note: P = 31.19 GPa
American Mineralogist, 2015, 100, 2625-2629
9017109 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.6193; 4.6193; 13.696
90; 90; 120
253.091Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run1-p7 Note: P = 33.56 GPa
American Mineralogist, 2015, 100, 2625-2629
9017110 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.61; 4.61; 13.582
90; 90; 120
249.975Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run1-p8 Note: P = 36.20 GPa
American Mineralogist, 2015, 100, 2625-2629
9017111 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.6024; 4.6024; 13.517
90; 90; 120
247.959Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run1-p9 Note: P = 37.58 GPa
American Mineralogist, 2015, 100, 2625-2629
9017112 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.5927; 4.5927; 13.332
90; 90; 120
243.535Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run1-p10 Note: P = 40.80 GPa
American Mineralogist, 2015, 100, 2625-2629
9017113 CIFC Ca0.04 Mn0.96 O3P -12.936; 4.841; 5.568
100.82; 94.93; 90.18
77.429Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run1-p11 Note: P = 44.46 GPa
American Mineralogist, 2015, 100, 2625-2629
9017114 CIFC Ca0.04 Mn0.96 O3P -12.928; 4.816; 5.545
101.71; 94.99; 89.9
76.264Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run1-p11a Note: P = 46.79 GPa
American Mineralogist, 2015, 100, 2625-2629
9017115 CIFC Ca0.04 Mn0.96 O3P -12.934; 4.839; 5.557
101.87; 95.29; 89.73
76.872Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run1-p12 Note: P = 44.01 GPa
American Mineralogist, 2015, 100, 2625-2629
9017116 CIFC Ca0.04 Mn0.96 O3P -12.94; 4.856; 5.584
101.99; 95.58; 89.65
77.604Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run1-p13 Note: P = 41.55 GPa
American Mineralogist, 2015, 100, 2625-2629
9017117 CIFC Ca0.04 Mn0.96 O3P -12.9539; 4.843; 5.588
101.78; 95.09; 90.45
77.921Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run1-p14 Note: P = 35.67 GPa
American Mineralogist, 2015, 100, 2625-2629
9017118 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.7799; 4.7799; 15.694
90; 90; 120
310.529Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run2-p0 Note: P = .0001 GPa
American Mineralogist, 2015, 100, 2625-2629
9017119 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.7788; 4.7788; 15.685
90; 90; 120
310.208Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run2-p1 Note: P = .22 GPa
American Mineralogist, 2015, 100, 2625-2629
9017120 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.7753; 4.7753; 15.636
90; 90; 120
308.786Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run2-p2 Note: P = .79 GPa
American Mineralogist, 2015, 100, 2625-2629
9017121 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.7714; 4.7714; 15.578
90; 90; 120
307.138Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run2-p3 Note: P = 1.62 GPa
American Mineralogist, 2015, 100, 2625-2629
9017122 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.7654; 4.7654; 15.531
90; 90; 120
305.442Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run2-p4 Note: P = 2.12 GPa
American Mineralogist, 2015, 100, 2625-2629
9017123 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.7581; 4.7581; 15.473
90; 90; 120
303.37Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run2-p5 Note: P = 2.66 GPa
American Mineralogist, 2015, 100, 2625-2629
9017124 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.7426; 4.7426; 15.368
90; 90; 120
299.351Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run2-p6 Note: P = 3.57 GPa
American Mineralogist, 2015, 100, 2625-2629
9017125 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.7409; 4.7409; 15.319
90; 90; 120
298.183Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run2-p7 Note: P = 4.39 GPa
American Mineralogist, 2015, 100, 2625-2629
9017126 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.7415; 4.7415; 15.308
90; 90; 120
298.044Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run2-p8 Note: P = 4.74 GPa
American Mineralogist, 2015, 100, 2625-2629
9017127 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.7388; 4.7388; 15.287
90; 90; 120
297.296Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run2-p9 Note: P = 5.20 GPa
American Mineralogist, 2015, 100, 2625-2629
9017128 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.7332; 4.7332; 15.1926
90; 90; 120
294.763Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run2-p10 Note: P = 6.33 GPa
American Mineralogist, 2015, 100, 2625-2629
9017129 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.7248; 4.7248; 15.1242
90; 90; 120
292.395Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run2-p11 Note: P = 7.01 GPa
American Mineralogist, 2015, 100, 2625-2629
9017130 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.7177; 4.7177; 15.043
90; 90; 120
289.952Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run2-p12 Note: P = 8.33 GPa
American Mineralogist, 2015, 100, 2625-2629
9017131 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.7146; 4.7146; 14.9903
90; 90; 120
288.556Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run2-p13 Note: P = 9.17 GPa
American Mineralogist, 2015, 100, 2625-2629
9017132 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.7087; 4.7087; 14.9313
90; 90; 120
286.702Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run2-p14 Note: P = 9.82 GPa
American Mineralogist, 2015, 100, 2625-2629
9017133 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.7017; 4.7017; 14.855
90; 90; 120
284.389Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run2-p15 Note: P = 10.88 GPa
American Mineralogist, 2015, 100, 2625-2629
9017134 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.6955; 4.6955; 14.7918
90; 90; 120
282.433Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run2-p16 Note: P = 11.90 GPa
American Mineralogist, 2015, 100, 2625-2629
9017135 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.6929; 4.6929; 14.7382
90; 90; 120
281.098Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run2-p17 Note: P = 12.73 GPa
American Mineralogist, 2015, 100, 2625-2629
9017136 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.6826; 4.6826; 14.613
90; 90; 120
277.488Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run2-p18 Note: P = 14.82 GPa
American Mineralogist, 2015, 100, 2625-2629
9017137 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.6775; 4.6775; 14.528
90; 90; 120
275.273Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run2-p19 Note: P = 16.42 GPa
American Mineralogist, 2015, 100, 2625-2629
9017138 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.6679; 4.6679; 14.4441
90; 90; 120
272.561Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run2-p20 Note: P = 17.66 GPa
American Mineralogist, 2015, 100, 2625-2629
9017139 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.6686; 4.6686; 14.401
90; 90; 120
271.83Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run2-p21 Note: P = 18.69 GPa
American Mineralogist, 2015, 100, 2625-2629
9017140 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.6641; 4.6641; 14.341
90; 90; 120
270.175Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run2-p22 Note: P = 19.78 GPa
American Mineralogist, 2015, 100, 2625-2629
9017141 CIFC Ca0.04 Mn0.96 O3R -3 c :H4.6624; 4.6624; 14.33
90; 90; 120
269.771Merlini, M.; Hanfland, M.; Gemmi, M.
The MnCO3-II high-pressure polymorph of rhodocrosite Note: Sample run2-p23 Note: P = 20.24 GPa
American Mineralogist, 2015, 100, 2625-2629
9017142 CIFH18 Mg1.09 Na0.91 O13 PP -16.9296; 11.9767; 14.9436
92.109; 102.884; 105.171
1160.88Kampf, A. R.; Mills, S. J.; Nash, B. P.; Jensen, M.; Nikischer, T.
Apexite, NaMg(PO4)*9H2O, a new struvite-type phase with a heteropolyhedral cluster
American Mineralogist, 2015, 100, 2695-2701
9017143 CIFCa9 Fe0.048 Mg0.952 Na0.98 O28 P7R 3 c :H10.3444; 10.3444; 37.0182
90; 90; 120
3430.49Xie, X.; Yang, H.; Gu, X.; Downs, R. T.
Chemical composition and crystal structure of merrillite from the Suizhou meteorite
American Mineralogist, 2015, 100, 2753-2756
9017144 CIFAl0.235 Fe1.765 O3P n a 215.0647; 8.7131; 9.3842
90; 90; 90
414.118Xu, Huifang; Lee, Seungyeol; Xu, Hongwu
Luogufengite: A new nano-mineral of Fe2O3 polymorph with giant coercive field
American Mineralogist, 2017, 102, 711-719
9017145 CIFC31 H32 Cr0.02 Fe0.05 N4 Ni0.93P -18.4416; 10.8919; 7.2749
90.465; 113.158; 78.08
599.743Hummer, D. R.; Noll, B. C.; Hazen, R. M.; Downs, R. T.
Crystal structure of abelsonite, the only known crystalline geoporphyrin Note: T = 100 K
American Mineralogist, 2017, 102, 1129-1132
9017146 CIFAl2 Ca6 H66 O51 S3P 3 1 c11.171; 11.171; 21.364
90; 90; 120
2308.86Gatta, G. D.; Halenius, U.; Bosi, F.; Canadillas-Delgado L; Fernandez-Diaz M T
Minerals in cement chemistry: A single-crystal neutron diffraction study of ettringite, Ca6Al2(SO4)3(OH)12·27H2O
American Mineralogist, 2019, 104, 73-78
9017147 CIFAl0.877 Fe0.123 H24 K0.879 O20 S2 Tl0.121P a -312.203; 12.203; 12.203
90; 90; 90
1817.19Biagioni, C.; Mauro, D.; Pasero, M.; Bonaccorsi, E.; Lepore, G. O.; Zaccarini, F.; Skogby, H.
Crystal-chemistry of sulfates from the Apuan Alps (Tuscany, Italy). VI. Tl-bearing alum-(K) and voltaite from the Fornovolasco mining complex
American Mineralogist, 2020, 105, 1088-1098
9017148 CIFAl Fe6.44 H24 K1.872 Mg1.56 O66 S12 Tl0.128F d -3 c :227.2635; 27.2635; 27.2635
90; 90; 90
20264.9Biagioni, C.; Mauro, D.; Pasero, M.; Bonaccorsi, E.; Lepore, G. O.; Zaccarini, F.; Skogby, H.
Crystal-chemistry of sulfates from the Apuan Alps (Tuscany, Italy). VI. Tl-bearing alum-(K) and voltaite from the Fornovolasco mining complex
American Mineralogist, 2020, 105, 1088-1098
9017149 CIFCa H8 O10 V2P -18.534; 8.556; 7.015
101.53; 114.97; 103.38
425.242Ahmed, F. R.; Barnes, W. H.
The crystal structure of rossite
The Canadian Mineralogist, 1963, 7, 713-726
9017150 CIFAs1.02 Ir0.05 Os0.01 Pt0.35 Rh0.31 Ru0.29 S0.98P a -35.788; 5.788; 5.788
90; 90; 90
193.903Szymanski, J. T.
The crystal structure of platarsite, Pt(As,S)2, and a comparison with sperrylite, PtAs2
The Canadian Mineralogist, 1979, 17, 117-123
9017152 CIFAl1.97 Ca Fe0.03 H6 O30 Pb3 Si10P 3 1 c8.56; 8.56; 20.19
90; 90; 120
1281.19Lam, A. E.; Groat, L. A.
The crystal structure of wickenburgite, Pb3CaAl[AlSi10O27](H2O)3, a sheet structure Sample: UBC refinement
The Canadian Mineralogist, 1994, 32, 525-532
9017153 CIFAl1.81 Ca Fe0.19 H6 O30 Pb3 Si10P 3 1 c8.546; 8.546; 20.168
90; 90; 120
1275.61Lam, A. E.; Groat, L. A.
The crystal structure of wickenburgite, Pb3CaAl[AlSi10O27](H2O)3, a sheet structure Sample: UMAN refinement
The Canadian Mineralogist, 1994, 32, 525-532
9017154 CIFCl1.29 Cu3.99 H6.71 O6.71P 63/m m c6.6733; 6.6733; 9.185
90; 90; 120
354.235Burns, P. C.; Cooper, M. A.; Hawthorne, F. C.
Claringbullite: A Cu oxysalt with Cu in trigonal-prismatic coordination
The Canadian Mineralogist, 1995, 33, 633-639
9017155 CIFCu3 H7 O8 S0.5C m c 212.989; 16.97; 14.812
90; 90; 90
751.314Orlandi, P.; Bonaccorsi, E.
Montetrisaite, a new hydroxy-hydrated copper sulfate species from Monte Trisa, Vicenza, Italy
The Canadian Mineralogist, 2009, 47, 143-151
9017156 CIFAl2.842 F0.054 Fe0.07 H1.946 K0.865 Mg0.036 Na0.135 O11.946 Si3.044 Ti0.006C 1 2/c 15.1969; 9.0138; 20.0835
90; 95.763; 90
936.033Elmi, C.; Brigatti, M. F.; Guggenheim, S.; Pasquali, L.; Montecchi, M.; Malferrari, D.; Nannarone, S.
Sodian muscovite-2M1: crystal chemistry and surface features
The Canadian Mineralogist, 2013, 51, 5-14
9017157 CIFCa H24 Na1.496 O26 V5P 1 21/n 110.0099; 21.8472; 11.1504
90; 116.584; 90
2180.67Kampf, A. R.; Hughes, J. M.; Marty, J.; Brown, F. H.
Nashite, Na3Ca2[(V4+V5+9)O28]*24H2O, a new mineral species from the Yellow Cat Mining District, Utah and the Slick Rock Mining District, Colorado: crystal structure and descriptive mineralogy
The Canadian Mineralogist, 2013, 51, 27-37
9017158 CIFAl0.18 Cl Fe1.82 H17.568 K0.108 N3.892 Na O18 S4I 41/a c d :218.261; 18.261; 11.562
90; 90; 90
3855.51Mitolo, D.; Demartin, F.; Garavelli, A.; Campostrini, I.; Pinto, D.; Gramaccioli, C. M.; Acquafredda, P.; Kolitsch, U.
Adranosite-(Fe), (NH4)4NaFe2(SO4)4Cl(OH)2, a new ammonium sulfate chloride from La Fossa Crater, Vulcano, Aeolian Islands, Italy
The Canadian Mineralogist, 2013, 51, 57-66
9017159 CIFAl0.005 Ba0.785 Ca0.215 F Fe0.63 K0.07 Mg0.395 Mn0.15 Na0.715 Nb0.045 O8 Si2 Sr0.07 Ti0.835 Zr0.01P -15.396; 7.071; 10.226
99.73; 99.55; 90.09
379.056Sokolova, E.; Hawthorne, F. C.; Abdu, Y. A.
From structure topology to chemical composition. XV. Titanium silicates: revision of the crystal structure and chemical formula of schullerite, Na2Ba2Mg2Ti2(Si2O7)2O2F2, from the Eifel volcanic region, Germany
The Canadian Mineralogist, 2013, 51, 715-772
9017160 CIFAl0.08 Ca7.53 Fe0.25 H1.45 Mg0.11 Mn0.56 Na1.67 O28 P7R 3 c :H10.3926; 10.3926; 37.1694
90; 90; 120
3476.68Cooper, M. A.; Hawthorne, F. C.; Abdu, Y. A.; Ball, N. A.; Ramik, R. A.; Tait, K. T.
Wopmayite, ideally Ca6Na3[]Mn(PO4)3(PO3OH)4, a new phosphate mineral from the Tanco Mine, Bernic Lake, Manitoba: description and crystal structure
The Canadian Mineralogist, 2013, 51, 93-106
9017161 CIFAl F1.02 Fe0.04 H33.96 Mg0.81 Mn0.07 O24.98 S2 Zn0.04P -16.644; 6.749; 14.892
79.664; 80.113; 63.487
584.648Peterson, R. C.; Joy, B. R.
Wilcoxite MgAl(SO4)2F*17H2O, from Rico, Colorado: occurrence and crystal structure
The Canadian Mineralogist, 2013, 51, 107-117
9017162 CIFB22 Ca4 Cl H18 K O46P 16.535; 24.185; 6.589
92.626; 119.132; 97.298
895.288Poulin, R. S.; Grice, J. D.
Volkovskite, a complex borate mineral: refined crystallographic data and optics
The Canadian Mineralogist, 2013, 51, 157-169
9017163 CIFAl0.338 Fe2.662 H20.001 K O30 P6P 3 1 c9.044; 9.044; 16.706
90; 90; 120
1183.38Hu, Z. B.; Wang, C. X.; Tong, C. Q.; Huang, Y. X.; Pan, Y.; Mi, J. X.
Crystal structure and magnetic property of synthetic gengenbachite, KH8(Fe2.66Al0.34)(PO4)6*6H2O
The Canadian Mineralogist, 2013, 51, 223-232
9017164 CIFAs H3 O6 Zn2P 1 21/c 112.8052; 7.9249; 10.2173
90; 104.433; 90
1004.13Hawthorne, F. C.; Abdu, Y. A.; Tait, K. T.
Hydrogen bonding in the crystal structure of legrandite: Zn2(AsO4)(OH)(H2O)
The Canadian Mineralogist, 2013, 51, 233-241
9017165 CIFAl0.01 Ca0.18 Fe0.22 H17.22 Mg1.02 Mn3.1 O29.28 Si8 Ti0.02 Zn0.11C 1 2/m 114.1686; 17.8583; 5.2919
90; 105.878; 90
1287.91Hawthorne, F. C.; Abdu, Y. A.; Tait, K. T.; Back, M. E.
The crystal structure of yofortierite
The Canadian Mineralogist, 2013, 51, 243-251
9017166 CIFBe2.264 Ca1.161 Fe0.917 H6 O17 Si4.736P 1 21/c 18.7499; 4.916; 31.431
90; 90.1574; 90
1351.98Grice, J. D.; Kristiansen, R.; Friis, H.; Rowe, R.; Poirier, G. G.; Selbekk, R. S.; Cooper, M. A.; Larsen, A. O.
Ferrochiavennite, a new beryllium silicate zeolite from syenite pegmatites in the Larvik Plutonic Complex, Oslo Region, Southern Norway
The Canadian Mineralogist, 2013, 51, 285-296
9017167 CIFCa0.94 H19 K0.01 Na0.04 O23 Sr0.01 V5P -19.7212; 10.2598; 10.5928
89.999; 77.083; 69.887
963.551Kampf, A. R.; Hughes, J. M.; Marty, J.; Nash, B.
Wernerbaurite, {[Ca(H2O)7]2(H2O)2(H3O)2}{V10O28}, and schindlerite, {[Na2(H2O)10](H3O)4}{V10O28}, the first hydronium-bearing decavanadate minerals
The Canadian Mineralogist, 2013, 51, 297-312
9017168 CIFCa0.02 H16 K0.18 Na0.79 O21 Sr0.01 V5P -18.5143; 10.4283; 11.2827
68.595; 87.253; 67.112
854.077Kampf, A. R.; Hughes, J. M.; Marty, J.; Nash, B.
Wernerbaurite, {[Ca(H2O)7]2(H2O)2(H3O)2}{V10O28}, and schindlerite, {[Na2(H2O)10](H3O)4}{V10O28}, the first hydronium-bearing decavanadate minerals
The Canadian Mineralogist, 2013, 51, 297-312
9017169 CIFAs0.9 Pb1.6 S17 Sb8.8 Tl1.7P -18.15; 8.716; 21.579
85.18; 96.94; 88.6
1515.33Orlandi, P.; Biagioni, C.; Moelo, Y.; Bonaccorsi, E.; Paar, W. H.
Lead-antimony sulfosalts from Tuscany (Italy). XIII. Protochabourneite, ~Tl2Pb(Sb9-8As1-2)S10S17, from the Monte Arsiccio mine: occurrence, crystal structure, and relationship with chabourneite
The Canadian Mineralogist, 2013, 51, 475-494
9017170 CIFAl1.96 Cl Fe0.04 H15 O13 SC 1 2/c 111.9246; 16.134; 7.4573
90; 125.815; 90
1163.43Chukanov, N. V.; Krivovichev, S. V.; Chernyatieva, A. P.
Vendidaite, Al2(SO4)(OH)3Cl*6H2O, a new mineral from La Vendida copper mine, Antofagasta region, Chile
The Canadian Mineralogist, 2013, 51, 559-568
9017171 CIFC F2 Li Na3 O15 P3 Y3P 2 2 211.167; 11.164; 11.162
90; 90; 90
1391.55McDonald, A. M.; Back, M. E.; Gault, R. A.; Horvath, L.
Peatite-(Y) and ramikite-(Y), two new Na-Li-Y±Zr phosphate-carbonate minerals from the Poudrette pegmatite, Mont Saint-Hilaire, Quebec
The Canadian Mineralogist, 2013, 51, 569-596
9017172 CIFC2 H2 Li2 Na6 O34 P6 Y3 Zr3P 110.9977; 10.9985; 10.9966
90.074; 89.984; 89.969
1330.13McDonald, A. M.; Back, M. E.; Gault, R. A.; Horvath, L.
Peatite-(Y) and ramikite-(Y), two new Na-Li-Y±Zr phosphate-carbonate minerals from the Poudrette pegmatite, Mont Saint-Hilaire, Quebec
The Canadian Mineralogist, 2013, 51, 569-596
9017173 CIFCa0.26 Fe1.4 Mg0.02 Mn1.31 O8 P2 Zn0.01P 1 21/c 18.8052; 11.4793; 6.1388
90; 99.192; 90
612.527Tait, K. T.; Hawthorne, F. C.; Wise, M. A.
The crystal chemistry of the graftonite-beusite minerals Notes: Sample B1
The Canadian Mineralogist, 2013, 51, 653-662
9017174 CIFCa0.36 Fe0.67 Mg0.21 Mn1.75 O8 P2 Zn0.01P 1 21/c 18.79; 11.5382; 6.1654
90; 99.199; 90
617.258Tait, K. T.; Hawthorne, F. C.; Wise, M. A.
The crystal chemistry of the graftonite-beusite minerals Notes: Sample B2
The Canadian Mineralogist, 2013, 51, 653-662
9017175 CIFCa0.36 Fe0.67 Mg0.21 Mn1.75 O8 P2 Zn0.01P 1 21/c 18.7919; 11.5414; 6.1669
90; 99.192; 90
617.725Tait, K. T.; Hawthorne, F. C.; Wise, M. A.
The crystal chemistry of the graftonite-beusite minerals Notes: Sample B3
The Canadian Mineralogist, 2013, 51, 653-662
9017176 CIFCa0.2 Fe1.22 Mg0.24 Mn1.33 O8 P2 Zn0.01P 1 21/c 18.775; 11.437; 6.133
90; 99.192; 90
607.602Tait, K. T.; Hawthorne, F. C.; Wise, M. A.
The crystal chemistry of the graftonite-beusite minerals Notes: Sample B4
The Canadian Mineralogist, 2013, 51, 653-662
9017177 CIFCa0.58 Fe1.65 Mg0.15 Mn0.61 O8 P2 Zn0.01P 1 21/c 18.7994; 11.5702; 6.1365
90; 99.192; 90
616.739Tait, K. T.; Hawthorne, F. C.; Wise, M. A.
The crystal chemistry of the graftonite-beusite minerals Notes: Sample B5
The Canadian Mineralogist, 2013, 51, 653-662
9017178 CIFCa0.57 Fe1.59 Mg0.02 Mn0.81 O8 P2 Zn0.01P 1 21/c 18.788; 11.583; 6.141
90; 99.3; 90
616.885Tait, K. T.; Hawthorne, F. C.; Wise, M. A.
The crystal chemistry of the graftonite-beusite minerals Notes: Sample B6
The Canadian Mineralogist, 2013, 51, 653-662
9017179 CIFCa0.37 Fe1.51 Mg0.11 Mn1.01 O8 P2P 1 21/c 18.8072; 11.5131; 6.1372
90; 99.243; 90
614.221Tait, K. T.; Hawthorne, F. C.; Wise, M. A.
The crystal chemistry of the graftonite-beusite minerals Notes: Sample B7 Note: O7 y-coordinate edited by author
The Canadian Mineralogist, 2013, 51, 653-662
9017180 CIFAl1.953 Ca2.922 Fe0.1 Mg0.003 Mn0.048 O12 Si2.955 Ti0.02I a -3 d11.8514; 11.8514; 11.8514
90; 90; 90
1664.6Antao, S. M.
Is near-endmember birefringent grossular non-cubic? New evidence from synchrotron diffraction Note: sample 1, Quebec-b phase-1
The Canadian Mineralogist, 2013, 51, 771-784
9017181 CIFAl1.953 Ca2.922 Fe0.1 Mg0.003 Mn0.048 O12 Si2.955 Ti0.02I a -3 d11.8436; 11.8436; 11.8436
90; 90; 90
1661.31Antao, S. M.
Is near-endmember birefringent grossular non-cubic? New evidence from synchrotron diffraction Note: sample 1, Quebec-b phase-2
The Canadian Mineralogist, 2013, 51, 771-784
9017182 CIFAl1.709 Ca2.994 Cr0.216 Fe0.046 Mg0.003 Mn0.036 O12 Si2.943 Ti0.054I a -3 d11.87707; 11.87707; 11.87707
90; 90; 90
1675.44Antao, S. M.
Is near-endmember birefringent grossular non-cubic? New evidence from synchrotron diffraction Note: sample 2, Quebec-g phase-1
The Canadian Mineralogist, 2013, 51, 771-784
9017183 CIFAl1.709 Ca2.994 Cr0.216 Fe0.046 Mg0.003 Mn0.036 O12 Si2.943 Ti0.054I a -3 d11.86193; 11.86193; 11.86193
90; 90; 90
1669.04Antao, S. M.
Is near-endmember birefringent grossular non-cubic? New evidence from synchrotron diffraction Note: sample 2, Quebec-g phase-2
The Canadian Mineralogist, 2013, 51, 771-784
9017184 CIFAl1.1 Ca2.955 Fe0.864 Mg0.048 Mn0.023 O12 Si2.94 Ti0.07I a -3 d11.94161; 11.94161; 11.94161
90; 90; 90
1702.9Antao, S. M.
Is near-endmember birefringent grossular non-cubic? New evidence from synchrotron diffraction Note: sample 3, Tanzania phase-1
The Canadian Mineralogist, 2013, 51, 771-784
9017185 CIFAl1.1 Ca2.955 Fe0.864 Mg0.048 Mn0.023 O12 Si2.94 Ti0.07I a -3 d11.95012; 11.95012; 11.95012
90; 90; 90
1706.54Antao, S. M.
Is near-endmember birefringent grossular non-cubic? New evidence from synchrotron diffraction Note: sample 3, Tanzania phase-2
The Canadian Mineralogist, 2013, 51, 771-784
9017186 CIFAl1.877 Ca2.964 Fe0.116 Mg0.012 Mn0.012 O12 Si2.973 Ti0.008I a -3 d11.85584; 11.85584; 11.85584
90; 90; 90
1666.47Antao, S. M.
Is near-endmember birefringent grossular non-cubic? New evidence from synchrotron diffraction Note: sample 4, Afghanistan single-phase
The Canadian Mineralogist, 2013, 51, 771-784
9017187 CIFAs4 Cu6 S9P 19.103; 9.86; 9.111
90.27; 109.53; 107.58
729.618Bindi, L.; Makovicky, E.; Nestola, F.; Battisti, L. D.
Sinnerite, Cu6As4S9, from the Lengenbach Quarry, Binn Valley, Switzerland: Description and re-investigation of the crystal structure
The Canadian Mineralogist, 2013, 51, 851-860
9017188 CIFBa0.095 Ca0.35 F0.165 Fe0.05 H6.8 K0.075 Mg0.085 Mn0.185 Na0.965 Nb0.23 O12.335 Si2 Sr0.225 Ti1.465 Zr0.005P -15.387; 7.091; 15.473
96.58; 93.948; 89.818
585.763Camara, F.; Sokolova, E.; Abdu, Y.; Hawthorne, F. C.; Khomyakov, A. P.
Kolskyite, (Ca[_])Na2Ti4(Si2O7)2O4(H2O)7, a group-IV Ti-disilicate mineral from the Khibiny alkaline massif, Kola Peninsula, Russia: Description and crystal structure
The Canadian Mineralogist, 2013, 51, 921-936
9017189 CIFAl4.842 B1.598 Ca1.898 Mg2.733 Na0.102 O20 Si2.827P -110.022; 10.406; 8.643
106.41; 95.992; 124.38
672.788Grice, J. D.; Belley, P. M.; Fayek, M.
Serendibite, a complex chemical borosilicate mineral from Pontiac, Quebec: Description, chemical composition, and crystallographic data
The Canadian Mineralogist, 2014, 52, 1-14
9017190 CIFB Fe0.1 H2 Mn1.9 Na O11 Si3P -16.837; 7.575; 8.841
99.91; 102.19; 102.78
424.812Haring, M. M. M.; McDonald, A. M.
Steedeite, NaMn2[Si3BO9](OH)2: characterization, crystal-structure determination, and origin
The Canadian Mineralogist, 2014, 52, 47-60
9017191 CIFF Fe0.036 Mn1.964 O4 PI 1 2/a 112.109; 6.5162; 10.117
90; 106.16; 90
766.737Vignola, P.; Gatta, G. D.; Hatert, F.; Guastoni, A.; Bersani, D.
On the crystal-chemistry of a near-endmember triplite, Mn2+2(PO4)F, from the Codera Valley (Sondrio Province, Central Alps, Italy)
The Canadian Mineralogist, 2014, 52, 235-245
9017192 CIFAl5.688 B3 Ca0.424 Fe2.517 H7 Mg0.795 Na0.576 O31 Si6R 3 m :H16.0047; 16.0047; 7.212
90; 90; 120
1599.86Gadas, P.; Novak, M.; Cempirek, J.; Filip, J.; Galiova, M. V.; Groat, L. A.; Vsiansky, D.
Mineral assemblages, compositional variation, and crystal structure of feruvitic tourmaline from a contaminated anatectic pegmatite at Mirosov near Strazek, Moldanubian zone, Czech Republic Note: site occupancies from typical X-ray diffraction analysis
The Canadian Mineralogist, 2014, 52, 285-301
9017193 CIFAl5.592 B3 Ca0.494 F0.06 Fe2.472 H4.648 Mg0.939 Mn0.03 Na0.451 O30.94 Si5.88 Ti0.084 Zn0.006R 3 m :H16.0047; 16.0047; 7.212
90; 90; 120
1599.86Gadas, P.; Novak, M.; Cempirek, J.; Filip, J.; Galiova, M. V.; Groat, L. A.; Vsiansky, D.
Mineral assemblages, compositional variation, and crystal structure of feruvitic tourmaline from a contaminated anatectic pegmatite at Mirosov near Strazek, Moldanubian zone, Czech Republic Note: site occupancies from electron density approximation
The Canadian Mineralogist, 2014, 52, 285-301
9017194 CIFB2 Ba2 Ca O14 Si4I -4 2 m10.9515; 10.9515; 10.3038
90; 90; 90
1235.79Kampf, A. R.; Peterson, R. C.; Joy, B. R.
Itsiite, Ba2Ca(BSi2O7)2, a new mineral species from Yukon, Canada: description and crystal structure
The Canadian Mineralogist, 2014, 52, 401-407
9017195 CIFAg3.5 Cu24.5 Te35C 1 2/c 117.906; 17.927; 21.23
90; 98.081; 90
6747.18Bindi, L.; Pinch, W. W.
Cameronite, Cu5-x(Cu,Ag)3+xTe10 (x = 0.43), from the Good Hope mine, Vulcan, Colorado: Crystal structure and revision of the chemical formula
The Canadian Mineralogist, 2014, 52, 423-432
9017196 CIFCs0.04 Cu3.99 K2.85 Na O18 Rb0.08 S4 Zn0.02P n 21 a14.281; 4.9478; 24.1127
90; 90; 90
1703.79Pekov, I. V.; Zubkova, N. V.; Yapaskurt, V. O.; Belakovskiy, D. I.; Chukanov, N. V.; Lykova, I. S.; Savelyev, D. P.; Sidorov, E. G.; Pushcharovsky, D. Y.
Wulffite, K3NaCu4O2(SO4)4, and parawulffite, K5Na3Cu8O4(SO4)8, two new minerals from fumarole sublimates of the Tolbachik volcano, Kamchatka, Russia
The Canadian Mineralogist, 2014, 52, 699-716
9017197 CIFCs0.14 Cu7.95 K4.75 Na2.95 O36 Rb0.25 S8 Zn0.04P 1 2/c 113.9043; 4.9765; 23.5855
90; 90.209; 90
1631.98Pekov, I. V.; Zubkova, N. V.; Yapaskurt, V. O.; Belakovskiy, D. I.; Chukanov, N. V.; Lykova, I. S.; Savelyev, D. P.; Sidorov, E. G.; Pushcharovsky, D. Y.
Wulffite, K3NaCu4O2(SO4)4, and parawulffite, K5Na3Cu8O4(SO4)8, two new minerals from fumarole sublimates of the Tolbachik volcano, Kamchatka, Russia
The Canadian Mineralogist, 2014, 52, 699-716
9017198 CIFAl0.01 Ba0.61 Ca0.26 F0.74 Fe0.04 H5.26 K0.13 Mg0.01 Mn0.68 Na2.22 Nb0.76 O19.26 Si4 Sr0.2 Ti2.09P -15.437; 7.141; 21.69
92.97; 96.07; 90.01
836.268Camara, F.; Sokolova, E.; Abdu, Y. A.; Hawthorne, F. C.
Saamite, Ba[]TiNbNa3Ti(Si2O7)2O2(OH)2(H2O)2, a group-III Ti-disilicate mineral from the Khibiny alkaline massif, Kola Peninsula, Russia: description and crystal structure
The Canadian Mineralogist, 2014, 52, 745-761
9017199 CIFCu0.55 Fe0.13 Ga0.19 In0.08 S Zn0.08F -4 3 m5.368; 5.368; 5.368
90; 90; 90
154.681Marquez-Zavalia M F; Galliski, M. A.; Drabek, M.; Vymazalova, A.; Watanabe, Y.; Murakami, H.; Bernhardt, H. J.
Ishiharaite, (Cu,Ga,Fe,In,Zn)S, a new mineral from the Capillitas mine, Northwestern Argentina
The Canadian Mineralogist, 2015, 52, 969-980
9017200 CIFAl0.59 Ca0.17 F0.42 Fe4.53 H1.58 K0.27 Mg0.06 Mn0.31 Na2.51 O23.58 Si7.41 Ti0.06 Zn0.01C 1 2/m 19.919; 18.0885; 5.344
90; 103.813; 90
931.091Lussier, A. J.; Hawthorne, F. C.; Abdu, Y. A.; Ball, N. A.; Tait, K. T.; Back, M. E.; Steede, A. H.; Taylor, R.; McDonald, A. M.
Ferro-ferri-nyboite, NaNa2(Fe2+3Fe3+2)Si8O22(OH)2, a new clinoamphibole from Mont Saint-Hilaire, Quebec, Canada: description and crystal structure
The Canadian Mineralogist, 2015, 52, 1019-1026
9017201 CIFBe2 Fe2 H12 Mn O22 P4P 31 2 19.404; 9.404; 15.92
90; 90; 120
1219.27Cooper, M. A.; Hawthorne, F. C.
The crystal structure of faheyite, Mn2+Fe3+2[Be2(PO4)4](H2O)6: a new twist for the [Be(PPhi4)2] chain
The Canadian Mineralogist, 2015, 53, 199-208
9017202 CIFAl0.92 B4 Ca1.582 Fe0.08 H2 Mn0.88 O24 Si4 Y2.752 Yb0.386P 1 2/a 118.609; 4.6307; 10.143
90; 111.475; 90
813.371Miyawaki, R.; Momma, K.; Yokoyama, K.; Shigeoka, M.; Matsubara, S.; Ito, M.; Nakai, I.; Kristiansen, R.
Mn-bearing hellandite-(Y) from the Heftetjern pegmatite, Tordal, Norway
The Canadian Mineralogist, 2015, 53, 345-356
9017203 CIFAl0.164 Ca0.277 Fe2.454 H18 Mg1.545 Mn0.961 Na0.569 O26 P4P 1 2/a 115.1045; 7.1629; 9.8949
90; 110.64; 90
1001.84Kampf, A. R.; Elliott, P.; Nash, B. P.; Chiappino, L.; Varvello, S.
Jahnsite-(NaMnMg), a new jahnsite-group mineral from the Sapucaia mine, Brazil and the White Rock No. 2 quarry, Australia
The Canadian Mineralogist, 2018, 56, 871-882
9017204 CIFAl1.82 Ca0.39 H16 K0.01 Mg2.08 Mn1.66 Na0.03 O26 P4P 1 2/a 115.0357; 6.9408; 9.9431
90; 110.827; 90
969.857Elliott, P.; Willis, A. C.
Whiteite-(MnMnMg), a new jahnsite-group mineral from Iron Monarch, South Australia: Description and crystal structure Note: Not all hydrogens were located
The Canadian Mineralogist, 2019, 57, 215-223
9017205 CIFCa0.25 Fe4 H18 Mn1.4 Na0.05 O26 P4P 1 2/a 115.1559; 7.1478; 10.0209
90; 112.059; 90
1006.11Vignola, P.; Hatert, F.; Rotiroti, N.; Nestola, F.; Risplendente, A.; Vanini, F.
Jahnsite-(MnMnFe), Mn2+Mn2+Fe22+Fe23+(PO4)4(OH)2*8H2O, a new phosphate mineral from the Malpensata pegmatite, Olgiasca, Colico municipality, Lecco province, Italy
The Canadian Mineralogist, 2019, 57, 225-233
9017206 CIFAl0.36 Ca0.25 Fe1.85 H22 Mg1.26 Mn2.02 Na0.2 O26 P4P 1 2/a 115.177; 7.176; 10.006
90; 111.01; 90
1017.31Vignola, P.; Hatert, F.; Baijot, M.; Rotiroti, N.; Risplendente, A.; Varvello, S.
Jahnsite-(MnMnMg), Mn2+Mn2+Mg2+2Fe3+2(PO4)4(OH)2*8H2O, a new phosphate mineral species from Sapucaia pegmatite, Sapucaia Do Norte, Galileia, Minas Gerais, Brazil
The Canadian Mineralogist, 2019, 57, 363-370
9017207 CIFCa O4 SB m m b6.992; 6.999; 6.24
90; 90; 90
305.367Hartman, P.
On the unit cell dimensions and bond lengths of anhydrite Note: this is a re-indexed structure of Hawthorne and Ferguson (1975)
European Journal of Mineralogy, 1989, 1, 721-722
9017208 CIFC20 H36P 21 21 2112.356; 12.762; 11.427
90; 90; 90
1801.89Franzini, L.; Pasero, M.; Perchiazzi, N.
Re-discovery and re-definition of dinite, C20H36, a forgotten organic mineral from Garfagnana, northern Tuscany, Italy
European Journal of Mineralogy, 1991, 3, 855-861
9017209 CIFCa2 H2 O9 S2I 1 2 112.035; 6.9294; 12.6705
90; 90.266; 90
1056.65Ballirano, P.; Maras, A.; Meloni, S.; Caminiti, R.
The monoclinic I2 structure of bassanite, calcium sulphate hemihydrate
European Journal of Mineralogy, 2001, 13, 985-993
9017211 CIFAl0.824 Ca3 Fe1.176 O8 TiP m m a5.42; 11.064; 5.5383
90; 90; 90
332.115Sharygin, V. V.; Lazic, B.; Armbruster, T. M.; Murashko, M. N.; Wirth, R.; Galuskina, I. O.; Galuskin, E. V.; Vapnik, Y.; Britvin, S. N.; Logvinova, A. M.
Shulamitite Ca3TiFe3+AlO8 - a new perovskite-related mineral from Hatrurim Basin, Israel
European Journal of Mineralogy, 2013, 25, 97-111
9017212 CIFBa O24 Si7 Yb6P 1 21/m 15.5173; 27.26; 6.815
90; 106.73; 90
981.601Wierzbicka-Wieczorek M; Kolitsch, U.
BaYb6(Si2O7)2(Si3O10) - the first silicate containing both Si2O7 and Si3O10 groups: synthesis, crystal chemistry and topology
European Journal of Mineralogy, 2013, 25, 509-517
9017213 CIFAl Cs0.02 K0.83 Na0.15 O8 Si3C 1 2/m 18.5497; 13.0216; 7.1843
90; 115.988; 90
718.959Angel, R. J.; Ross, N. L.; Zhao, J.; Sochalski-Kolbus L; Kruger, H.; Schmidt, B. C.
Structural controls on the anisotropy of tetrahedral frameworks: the example of monoclinic feldspars Note: Sample H002
European Journal of Mineralogy, 2013, 25, 597-614
9017214 CIFAl K0.93 Na0.07 O8 Si3C 1 2/m 18.5739; 12.9874; 7.2018
90; 116.042; 90
720.521Angel, R. J.; Ross, N. L.; Zhao, J.; Sochalski-Kolbus L; Kruger, H.; Schmidt, B. C.
Structural controls on the anisotropy of tetrahedral frameworks: the example of monoclinic feldspars Note: Sample H003
European Journal of Mineralogy, 2013, 25, 597-614
9017215 CIFAl K0.92 Na0.08 O8 Si3C 1 2/m 18.5739; 12.9874; 7.2018
90; 116.042; 90
720.521Angel, R. J.; Ross, N. L.; Zhao, J.; Sochalski-Kolbus L; Kruger, H.; Schmidt, B. C.
Structural controls on the anisotropy of tetrahedral frameworks: the example of monoclinic feldspars Note: Gemini RT Data, Sample H003
European Journal of Mineralogy, 2013, 25, 597-614
9017216 CIFAl K0.92 Na0.08 O8 Si3C 1 2/m 18.575; 12.984; 7.2008
90; 116.028; 90
720.41Angel, R. J.; Ross, N. L.; Zhao, J.; Sochalski-Kolbus L; Kruger, H.; Schmidt, B. C.
Structural controls on the anisotropy of tetrahedral frameworks: the example of monoclinic feldspars Note: T = 293 K, Sample H003_RTend
European Journal of Mineralogy, 2013, 25, 597-614
9017217 CIFAl K0.92 Na0.08 O8 Si3C 1 2/m 18.5752; 12.986; 7.2013
90; 116.023; 90
720.619Angel, R. J.; Ross, N. L.; Zhao, J.; Sochalski-Kolbus L; Kruger, H.; Schmidt, B. C.
Structural controls on the anisotropy of tetrahedral frameworks: the example of monoclinic feldspars Note: T = 293 K, Sample H003_RT
European Journal of Mineralogy, 2013, 25, 597-614
9017218 CIFAl K0.92 Na0.08 O8 Si3C 1 2/m 18.6159; 12.9806; 7.1991
90; 115.956; 90
723.93Angel, R. J.; Ross, N. L.; Zhao, J.; Sochalski-Kolbus L; Kruger, H.; Schmidt, B. C.
Structural controls on the anisotropy of tetrahedral frameworks: the example of monoclinic feldspars Note: T = 600 K, Sample H003
European Journal of Mineralogy, 2013, 25, 597-614
9017219 CIFAl K0.92 Na0.08 O8 Si3C 1 2/m 18.6609; 12.977; 7.2003
90; 115.876; 90
728.124Angel, R. J.; Ross, N. L.; Zhao, J.; Sochalski-Kolbus L; Kruger, H.; Schmidt, B. C.
Structural controls on the anisotropy of tetrahedral frameworks: the example of monoclinic feldspars Note: T = 900 K, Sample H003
European Journal of Mineralogy, 2013, 25, 597-614
9017220 CIFAl K0.92 Na0.08 O8 Si3C 1 2/m 18.6849; 12.9747; 7.203
90; 115.819; 90
730.638Angel, R. J.; Ross, N. L.; Zhao, J.; Sochalski-Kolbus L; Kruger, H.; Schmidt, B. C.
Structural controls on the anisotropy of tetrahedral frameworks: the example of monoclinic feldspars Note: T = 1075 K, Sample H003
European Journal of Mineralogy, 2013, 25, 597-614
9017221 CIFAl1.04 Ba0.02 K0.4 Na0.58 O8 Si2.96C 1 2/m 18.3463; 12.9877; 7.1683
90; 116.18; 90
697.324Angel, R. J.; Ross, N. L.; Zhao, J.; Sochalski-Kolbus L; Kruger, H.; Schmidt, B. C.
Structural controls on the anisotropy of tetrahedral frameworks: the example of monoclinic feldspars Note: Sample San40, cation-exchanged sanidine
European Journal of Mineralogy, 2013, 25, 597-614
9017222 CIFAl Ba0.02 K0.98 O8 Si3C 1 2/m 18.6032; 13.0237; 7.1885
90; 115.994; 90
723.961Angel, R. J.; Ross, N. L.; Zhao, J.; Sochalski-Kolbus L; Kruger, H.; Schmidt, B. C.
Structural controls on the anisotropy of tetrahedral frameworks: the example of monoclinic feldspars Note: Sample San100
European Journal of Mineralogy, 2013, 25, 597-614
9017223 CIFAl3.1 Ca2.5 Cl1.9 F2.1 Fe0.3 K6.5 Mg0.1 Na1.6 O29 Si9.6P m m n :27.0618; 38.42; 6.5734
90; 90; 90
1783.46Sharygin, V. V.; Pekov, I. V.; Zubkova, N. V.; Khomyakov, A. P.; Stoppa, F.; Pushcharovsky, D. Y.
Umbrianite, K7Na2Ca2[Al3Si10O29]F2Cl2, a new mineral species from melilitolite of the Pian di Celle volcano, Umbria, Italy
European Journal of Mineralogy, 2013, 25, 655-669
9017224 CIFAl0.38 As3 Ca0.73 Cu0.4 Fe0.9 K0.3 Mn0.13 Na1.69 O12 Zn0.32C 1 2/c 112.64; 13.007; 6.7
90; 113.828; 90
1007.64Krivovichev, S. V.; Vergasova, L. P.; Filatov, S. K.; rybin D S; Britvin, S. N.; Ananiev, V. V.
Hatertite, Na2(Ca,Na)(Fe3+,Cu)2(AsO4)3, a new alluaudite-group mineral from Tolbachik fumaroles, Kamchatka peninsula, Russia
European Journal of Mineralogy, 2013, 25, 683-691
9017225 CIFAs Cu5 H8 O15P m n 213.0113; 14.259; 14.932
90; 90; 90
641.152Mills, S. J.; Kampf, A. R.; McDonald, A. M.; Bindi, L.; Christy, A. G.; Kolitsch, U.; Favreau, G.
The crystal structure of parnauite: a copper arsenate-sulphate with translational disorder of structural rods
European Journal of Mineralogy, 2013, 25, 693-704
9017226 CIFAs0.5 Cu2.5 H2.15 O6.575P m n 213.0088; 14.212; 14.89
90; 90; 90
636.712Mills, S. J.; Kampf, A. R.; McDonald, A. M.; Bindi, L.; Christy, A. G.; Kolitsch, U.; Favreau, G.
The crystal structure of parnauite: a copper arsenate-sulphate with translational disorder of structural rods
European Journal of Mineralogy, 2013, 25, 693-704
9017227 CIFAs Cu4.5 O15.25 S0.5P 1 1 216.02; 13.99; 15.42
90; 90; 90.01
1298.67Mills, S. J.; Kampf, A. R.; McDonald, A. M.; Bindi, L.; Christy, A. G.; Kolitsch, U.; Favreau, G.
The crystal structure of parnauite: a copper arsenate-sulphate with translational disorder of structural rods Note: theoretical data
European Journal of Mineralogy, 2013, 25, 693-704
9017228 CIFBa0.5 Cu O10 Si4 Sr0.5P 4/n c c :27.2958; 7.2958; 15.396
90; 90; 90
819.509Knight, K. S.; Marshall, W. G.; Henderson, C. M. B.; Chamberlain, A. A.
Equation of state and a high-pressure structural phase transition in the gillespite-structured phase Ba0.5Sr0.5CuSi4O10 Note: P = 4.13 GPa
European Journal of Mineralogy, 2013, 25, 909-917
9017229 CIFBa0.5 Cu O10 Si4 Sr0.5P 4 21 2 (a-1/4,b+1/4,c)7.2623; 7.2623; 15.252
90; 90; 90
804.406Knight, K. S.; Marshall, W. G.; Henderson, C. M. B.; Chamberlain, A. A.
Equation of state and a high-pressure structural phase transition in the gillespite-structured phase Ba0.5Sr0.5CuSi4O10 Note: P = 4.77 GPa
European Journal of Mineralogy, 2013, 25, 909-917
9017230 CIFPb5.38 S15.5 Sb6.62P -14.1192; 17.4167; 19.1664
96.127; 90.015; 91.229
1366.88Orlandi, P.; Biagioni, C.; Moelo, Y.; Bonaccorsi, E.
Lead-antimony sulfosalts from Tuscany (Italy). XIV. Disulfodadsonite, Pb11Sb13S30(S2)0.5, a new mineral from the Ceragiola marble quarry, Apuan Alps: occurrence and crystal structure
European Journal of Mineralogy, 2013, 25, 1005-1016
9017231 CIFAl0.16 Ca0.6 Ce0.3 Fe0.68 La0.1 Mn1.18 Nb1.54 Nd0.1 O14 Th0.28 Ti1.3 Y0.2 Zr1.56C 1 2/c 17.3119; 14.179; 10.17
90; 90.072; 90
1054.38Chukanov, N. V.; Krivovichev, S. V.; Pakhomova, A. S.; Pekov, I. V.; Schafer, C.; Vigasina, M. F.; Van, K. V.
Laachite, (Ca,Mn)2Zr2Nb2TiFeO14, a new zirconolite-related mineral from the Eifel volcanic region, Germany
European Journal of Mineralogy, 2011, 26, 103-111
9017232 CIFBa0.507 Fe0.508 Mn3.492 O8P 1 2/n 110.0001; 5.7465; 9.8076
90; 90.713; 90
563.556Biagioni, C.; Capalbo, C.; Lezzerini, M.; Pasero, M.
Ferrihollandite, BaMn4+6Fe3+2O16, from Apuan Alps, Tuscany, Italy: description and crystal structure
European Journal of Mineralogy, 2014, 26, 171-178
9017233 CIFC H2 Fe2 O5P 1 21/a 112.5; 9.5; 3.2
90; 97.6; 90
376.662Pignatelli, I.; Mugnaioli, E.; Mosser-Ruck R; Barres, O.; Kolb, U.; Michau, N.
A multi-technique, micrometer- to atomic-scale description of a synthetic analogue of chukanovite, Fe2(CO3)(OH)2
European Journal of Mineralogy, 2014, 26, 221-229
9017234 CIFAl5.7 B3 Ca0.06 Cr0.72 Fe0.18 H3.96 Mg2.52 Na0.64 O31 Si5.88R 3 m :H15.926; 15.926; 7.21
90; 90; 120
1583.72Vereshchagin, O. S.; Rozhdestvenskaya, I. V.; Frank-Kamenetskaya O V; Zolotarev, A. A.
Ion substitutions and structural adjustment in Cr-bearing tourmalines Note: Sample 1
European Journal of Mineralogy, 2014, 26, 309-321
9017235 CIFAl5.91 B3 Ca0.02 Cr0.72 Fe0.09 H3.68 K0.01 Mg2.34 Na0.76 O31 Si5.94R 3 m :H15.933; 15.933; 7.213
90; 90; 120
1585.78Vereshchagin, O. S.; Rozhdestvenskaya, I. V.; Frank-Kamenetskaya O V; Zolotarev, A. A.
Ion substitutions and structural adjustment in Cr-bearing tourmalines Note: Sample 2
European Journal of Mineralogy, 2014, 26, 309-321
9017236 CIFAl5.85 B3 Ca0.13 Cr0.81 Fe0.09 H3.4 Mg2.25 Na0.63 O31 Si6R 3 m :H15.933; 15.933; 7.213
90; 90; 120
1585.78Vereshchagin, O. S.; Rozhdestvenskaya, I. V.; Frank-Kamenetskaya O V; Zolotarev, A. A.
Ion substitutions and structural adjustment in Cr-bearing tourmalines Note: Sample 3
European Journal of Mineralogy, 2014, 26, 309-321
9017237 CIFAl6.15 B3 Ca0.41 Cr0.18 H3.56 Mg2.79 Na0.43 O31 Si5.88R 3 m :H15.921; 15.921; 7.194
90; 90; 120
1579.22Vereshchagin, O. S.; Rozhdestvenskaya, I. V.; Frank-Kamenetskaya O V; Zolotarev, A. A.
Ion substitutions and structural adjustment in Cr-bearing tourmalines Note: Sample 4
European Journal of Mineralogy, 2014, 26, 309-321
9017238 CIFAl0.036 Ca0.026 Ce0.101 Cr1.62 Fe5.42 La0.176 Mn0.072 Na0.03 Nb0.018 O38 Pb0.105 Sn0.018 Sr0.533 Ti12.42 U0.407 V0.18 Y0.205R -3 :H10.3719; 10.3719; 20.8752
90; 90; 120
1944.81Biagioni, C.; Orlandi, P.; Pasero, M.; Nestola, F.; Bindi, L.
Mapiquiroite, (Sr,Pb)(U,Y)Fe2(Ti,Fe3+)18O38, a new member of the crichtonite group from the Apuan Alps, Tuscany, Italy
European Journal of Mineralogy, 2014, 26, 427-437
9017239 CIFAl0.036 Ca0.014 Ce0.021 Cr0.018 Fe6.682 La0.009 Mn0.005 Na0.019 Nb0.036 O38 Pb0.248 Sn18 Sr0.312 Ti12.078 U0.858 V0.378 Y0.07 Zn0.304R -3 :H10.3854; 10.3854; 20.8942
90; 90; 120
1951.65Biagioni, C.; Orlandi, P.; Pasero, M.; Nestola, F.; Bindi, L.
Mapiquiroite, (Sr,Pb)(U,Y)Fe2(Ti,Fe3+)18O38, a new member of the crichtonite group from the Apuan Alps, Tuscany, Italy
European Journal of Mineralogy, 2014, 26, 427-437
9017240 CIFCl6 Cu7 O8 Se2P 1 21/c 110.958; 14.483; 10.494
90; 113.61; 90
1526.04Vergasova, L. P.; Semenova, T. F.; Krivovichev, S. V.; Filatov, S. K.; Zolotarev, A. A.; Ananiev, V. V.
Nicksobolevite, Cu7(SeO3)2O2Cl6, a new complex copper oxoselenite chloride from Tolbachik fumaroles, Kamchatka peninsula, Russia
European Journal of Mineralogy, 2014, 26, 439-449
9017241 CIFH28 Mn4 Nb6 O33C 1 2/m 115.3444; 9.4158; 11.2858
90; 118.632; 90
1431.18Friis, H.; Larsen, A. O.; Kampf, A. R.; Evans, R. J.; Selbekk; Sanchez, A. A.; Kihle, J.
Peterandresenite, Mn4Nb6O19*14H2O, a new mineral containing the Lindqvist ion from a syenite pegmatite of the Larvik Plutonic Complex, southern Norway
European Journal of Mineralogy, 2014, 26, 567-576
9017242 CIFAs9 Fe9.508 H120 O104 Sb3P 63/m16.0916; 16.0916; 21.7127
90; 90; 120
4869.04Pekov, I. V.; Zubkova, N. V.; Gottlicher, J.; Yapaskurt, V. O.; Chukanov, N. V.; Lykova, I. S.; Belakovskiy, D. I.; Jensen, M. C.; Leising, J. F.; Nikischer, A. J.; Pushcharovsky, D. Y.
Whitecapsite, a new hydrous iron and trivalent antimony arsenate mineral from the White Caps mine, Nevada, USA Note: Not all H atoms could be located
European Journal of Mineralogy, 2014, 26, 577-587
9017243 CIFAl0.3 Ca0.35 Fe1.45 Mg1.15 Na0.15 O12 P0.09 Ti0.15 V2.91P -18.1758; 9.8292; 6.694
105.041; 102.04; 106.025
476.024Pekov, I. V.; Zubkova, N. V.; Yapaskurt, V. O.; Kartashov, P. M.; Polekhovsky, Y. S.; Murashko, M. N.; Pushcharovsky, D. Y.
Koksharovite, CaMg2Fe3+4(VO4)6, and grigorievite, Cu3Fe3+2Al2(VO4)6, two new howardevansite-group minerals from volcanic exhalations
European Journal of Mineralogy, 2014, 26, 667-677
9017244 CIFAl2.2 Ca0.2 Cu1.99 Fe1.6 Mg0.64 O24 P0.06 Ti0.2 V5.94P -18.0217; 9.6858; 6.5475
103.645; 102.369; 106.281
452.598Pekov, I. V.; Zubkova, N. V.; Yapaskurt, V. O.; Kartashov, P. M.; Polekhovsky, Y. S.; Murashko, M. N.; Pushcharovsky, D. Y.
Koksharovite, CaMg2Fe3+4(VO4)6, and grigorievite, Cu3Fe3+2Al2(VO4)6, two new howardevansite-group minerals from volcanic exhalations
European Journal of Mineralogy, 2014, 26, 667-677
9017245 CIFBi0.9 Ca0.17 Cu5.81 H3 O18 Pb0.95 Se4P 4/n :29.86; 9.86; 9.7
90; 90; 90
943.03Mills, S. J.; Kampf, A. R.; Christy, A. G.; Housley, R. M.; Thorne, B.; Chen, Y. S.; Steele, I. M.
Favreauite, a new selenite mineral from the El Dragon mine, Bolivia Note: T = 100 K
European Journal of Mineralogy, 2014, 26, 771-781
9017246 CIFCa0.25 Ce0.18 Dy0.1 Er0.08 Fe0.09 Gd0.07 La0.07 Mn0.61 Na0.1 Nd0.09 O28 Pr0.02 Si12 Sm0.03 Y1.17 Yb0.06I b a m7.5549; 15.2342; 19.6418
90; 90; 90
2260.63Kampf, A. R.; Housley, R. M.
Chiappinoite-(Y), Y2Mn(Si3O7)4, a new layer silicate found in peralkaline syenitic ejecta from the Agua de Pau volcano, Azores
European Journal of Mineralogy, 2015, 27, 91-97
9017247 CIFAl6.423 Ca6 Cl1.191 Fe0.388 H3.618 O17.809 Si0.189I -4 3 d12.0285; 12.0285; 12.0285
90; 90; 90
1740.34Galuskin, E. V.; Galuskina, I. O.; Kusz, J.; Gfeller, F.; Armbruster, T.; Bailau, R.; Dulski, M.; Gazeev, V. M.; Pertsev, N. N.; Zadov, A. E.; Dzierzanowski, P.
Mayenite supergroup, part II: Chlorkyuygenite from Upper Chegem, Northern Caucasus, Kabardino-Balkaria, Russia, a new microporous mineral with "zeolitic" H2O
European Journal of Mineralogy, 2015, 27, 113-122
9017248 CIFAl6.664 Ca6 F0.947 Fe0.224 H3.958 O18.053 Si0.112I -4 3 d11.966; 11.966; 11.966
90; 90; 90
1713.35Galuskin, E. V.; Gfeller, F.; Armbruster, T.; Galuskina, I. O.; Vapnik, Y.; Dulski, M.; Murashko, M.; Dzierzanowski, P.; Sharygin, V. V.; Krivovichev, S. V.; Wirth, R.
Mayenite supergroup, part III: fluormayenite, Ca12Al14O32[[]4F2], and fluorkyuygenite, Ca12Al14O32[(H2O)4F2], two new minerals from pyrometamorphic rocks of the Hatrurim Complex, South Levant
European Journal of Mineralogy, 2015, 27, 123-136
9017249 CIFAl6.838 Ca5.981 F1.053 Fe0.135 H1.053 Mg0.02 Na0.019 O16.593I -4 3 d11.9894; 11.9894; 11.9894
90; 90; 90
1723.43Galuskin, E. V.; Gfeller, F.; Armbruster, T.; Galuskina, I. O.; Vapnik, Y.; Dulski, M.; Murashko, M.; Dzierzanowski, P.; Sharygin, V. V.; Krivovichev, S. V.; Wirth, R.
Mayenite supergroup, part III: fluormayenite, Ca12Al14O32[[]4F2], and fluorkyuygenite, Ca12Al14O32[(H2O)4F2], two new minerals from pyrometamorphic rocks of the Hatrurim Complex, South Levant
European Journal of Mineralogy, 2015, 27, 123-136
9017250 CIFCl6.951 Cu0.14 K2.949 Mg0.09 Rb0.03 Zn1.84P -16.7737; 10.5715; 11.073
117.93; 106.909; 90.389
660.609Pekov, I. V.; Zubkova, N. V.; Yapaskurt, V. O.; Lykova, I. S.; Belakovskiy, D. I.; Vigasina, M. F.; Sidorov, E. G.; Britvin, S. N.; Pushcharovsky, D. Y.
New zinc and potassium chlorides from fumaroles of the Tolbachik volcano, Kamchatka, Russia: mineral data and crystal chemistry. I. Mellizinkalite, K3Zn2Cl7
European Journal of Mineralogy, 2015, 27, 247-253
9017251 CIFAl2 Ca0.03 H14 Mn0.97 O16 P2P -110.049; 10.205; 6.083
91.79; 99.7; 98.02
607.921Mills, S. J.; Grey, I. E.; Kampf, A. R.; Birch, W. D.; Macrae, C. M.; Smith, J. B.; Keck, E.
Kayrobertsonite, MnAl2(PO4)2(OH)2*6H2O, a new phosphate mineral related to nordgauite Note: T = 100 K
European Journal of Mineralogy, 2016, 28, 649-654
9017252 CIFAl1.76 Fe2.24 H44 Mg Mn4 O56 P8 Zn4I 1 2/m 125.333; 6.299; 15.161
90; 90.03; 90
2419.28Mills, S. J.; Grey, I. E.; Kampf, A. R.; Macrae, C. M.; Smith, J. B.; Davidson, C. J.; Glenn, A. M.
Ferraioloite, MgMn2+4(Fe2+0.5Al3+0.5)4Zn4(PO4)8(OH)4(H2O)20, a new secondary phosphate mineral from the Foote mine, USA
European Journal of Mineralogy, 2016, 28, 655-661
9017253 CIFFe H11 O10 SR -3 :H24.199; 24.199; 7.6476
90; 90; 120
3878.38Ventruti, G.; Ventura, G. D.; Bellatreccia, F.; Lacalamita, M.; Schingaro, E.
Hydrogen bond system and vibrational spectroscopy of the iron sulfate fibroferrite, Fe(OH)SO4*5H2O
European Journal of Mineralogy, 2016, 28, 943-952
9017254 CIFAl0.01 Ca0.7 Fe3.23 H18 Mg1.33 Mn0.59 Na0.17 O26 P4P 1 2/a 114.975; 7.1645; 9.928
90; 110.65; 90
996.725Elliott, P.
Jahnsite-(CaFeMg), a new mineral from Tom's quarry, South Australia: description and crystal structure
European Journal of Mineralogy, 2016, 28, 991-996
9017255 CIFFe2.44 H18 Mg0.06 Mn1.2 O23 P3 Zn1.166P m a b11.044; 25.431; 6.412
90; 90; 90
1800.87Grey, I. E.; Kampf, A. R.; Keck, E.; MacRae, C. M.; Cashion, J. D.; Gozukara, Y.
Crystal chemistry of schoonerite-group minerals Note: sample ICG-14, T = 100 K
European Journal of Mineralogy, 2018, 30, 621-634
9017256 CIFAs2.86 Ca0.708 Fe3 Mn0.652 O19.928 P1.684I m m a26.188; 7.36; 10.367
90; 90; 90
1998.17Grey, I. E.; Mumme, W. G.; Hochleitner, R.
Trimeric As3+3O6 clusters in walentaite: crystal structure and revised formula
European Journal of Mineralogy, 2019, 31, 111-116
9017257 CIFAl0.04 Fe2.07 H19 Mg0.06 Mn1.53 O23 P3 Zn1.3P 1 21/m 16.307; 11.074; 13.085
90; 99.62; 90
901.054Kampf, A. R.; Grey, I. E.; MacRae, C. M.; Keck, E.
Manganflurlite, ZnMn32+Fe3+(PO4)3(OH)2(H2O)7·2H2O, a new schoonerite-related mineral from the Hagendorf-Sud pegmatite Note: T = 100 K
European Journal of Mineralogy, 2019, 31, 127-134
9017258 CIFFe4.44 H5.88 Mn0.52 O17 P3 Zn0.04B b m m14.0016; 16.8593; 5.1831
90; 90; 90
1223.51Grey, I. E.; Kampf, A. R.; Keck, E.; Cashion, J. D.; MacRae, C. M.; Gozukara, Y.; Peterson, V. K.; Shanks, F. L.
The rockbridgeite group approved and a new member, ferrorockbridgeite, (Fe2+,Mn2+)2(Fe3+)3(PO4)3(OH)4(H2O), described from the Hagendorf Sud pegmatite, Oberpfalz, Bavaria Note: neutron powder on sample IGC90
European Journal of Mineralogy, 2019, 31, 389-397
9017259 CIFFe4.17 H5.78 Mn0.77 O17 P3 Zn0.06B b m m13.995; 16.884; 5.1866
90; 90; 90
1225.55Grey, I. E.; Kampf, A. R.; Keck, E.; Cashion, J. D.; MacRae, C. M.; Gozukara, Y.; Peterson, V. K.; Shanks, F. L.
The rockbridgeite group approved and a new member, ferrorockbridgeite, (Fe2+,Mn2+)2(Fe3+)3(PO4)3(OH)4(H2O), described from the Hagendorf Sud pegmatite, Oberpfalz, Bavaria Note: X-ray single crystal on sample IGC29 Note: T = 100 K
European Journal of Mineralogy, 2019, 31, 389-397
9017260 CIFAl0.02 Ba0.38 Ca0.04 Fe2.08 H3 Mn1.86 Na0.02 O15 P3 Sr0.6P 1 21/m 19.183; 12.349; 5.0081
90; 100.23; 90
558.894Elliott, P.
Strontioperloffite, SrMn22+Fe32+PO43+OH3, a new bjarebyite-group mineral from the Spring Creek mine, South Australia, Australia
European Journal of Mineralogy, 2019, 31, 549-555
9017261 CIFFe3.85 H8.74 Mn3 O24.08 P4P 1 2/a 113.909; 5.186; 12.159
90; 98.88; 90
866.541Sejkora, J.; Grey, I. E.; Kampf, A. R.
Kenngottite, Mn32+Fe43+(PO4)4(OH)6(H2O)2: a new phosphate mineral from Krasno near Horni Slavkov, Czech Republic Note: water and hydroxyl groups are not well located
European Journal of Mineralogy, 2019, 31, 629-636
9017262 CIFAl1.96 Ca2 Fe0.1 H10 Mg0.06 Mn0.38 O20 P3C 1 2/c 110.021; 24.137; 6.226
90; 91.54; 90
1505.38Grey, I. E.; Kampf, A. R.; Smith, J. B.; MacRae, C. M.; Keck, E.
Fanfaniite, Ca4Mn2+Al4(PO4)6(OH,F)4*12H2O, a new mineral with a montgomeryite-type structure
European Journal of Mineralogy, 2019, 31, 647-652
9017263 CIFAl4 Ca3.091 Fe0.568 Mg0.14 Mn1.178 O40 P6P -120.067; 13.197; 6.255
89.35; 91.21; 112.2
1533.33Grey, I. E.; Kampf, A. R.; Smith, J. B.; Williams, T.; MacRae, C. M.
The calcioferrite group approved and kingsmountite redefined Note: sample K5, T = 100 K
European Journal of Mineralogy, 2019, 31, 1007-1014
9017264 CIFBi0.01 Co1.932 Fe0.06 Ni Pb0.01 S4F d -3 m :29.3933; 9.3933; 9.3933
90; 90; 90
828.809Skacha, P.; Sejkora, J.; Plasil, J.; Dolnicek, Z.; Ulmanova, J.
Grimmite, NiCo2S4, a new thiospinel from Pribram, Czech Republic
European Journal of Mineralogy, 2021, 33, 175-187
9017265 CIFC2 H4 Fe O6C 1 2/c 112.011; 5.557; 9.92
90; 128.53; 90
517.958Echigo, T.; Kimata, M.
Single-crystal X-ray diffraction and spectroscopic studies on humboldtine and lindbergite: weak Jahn-Teller effect of Fe2+ ion
Physics and Chemistry of Minerals, 2008, 35, 467-475
9017266 CIFAl2 Be2 Cs0.717 Li Na0.121 O18 Si6R -3 c :H15.9615; 15.9615; 27.8568
90; 90; 120
6146.24Gatta, D. G.; Adamo, I.; Meven, M.; Lambruschi, E.
A single-crystal neutron and X-ray diffraction of pezzottaite Note: X-ray data, T = 298 K
Physics and Chemistry of Minerals, 2012, 39, 829-840
9017267 CIFAl2 Be2.078 Cs0.96 Li0.922 Na0.143 O18 Si6R -3 c :H15.95; 15.95; 27.86
90; 90; 120
6138.09Gatta, D. G.; Adamo, I.; Meven, M.; Lambruschi, E.
A single-crystal neutron and X-ray diffraction of pezzottaite Note: Neutron data, T = 2.3 K
Physics and Chemistry of Minerals, 2012, 39, 829-840
9017268 CIFCr Na O6 Si2C 1 2/c 19.524; 8.672; 5.2411
90; 107.36; 90
413.156Posner, E. S.; Dera, P.; Downs, R. T.; Lazarz, J. D.; Irmen, P.
High-pressure single-crystal X-ray diffraction study of jadeite and kosmochlor Note: P = 2.1 GPa
Physics and Chemistry of Minerals, 2014, 41, 695-707
9017269 CIFCr Na O6 Si2C 1 2/c 19.197; 8.327; 5.0572
90; 106.23; 90
371.863Posner, E. S.; Dera, P.; Downs, R. T.; Lazarz, J. D.; Irmen, P.
High-pressure single-crystal X-ray diffraction study of jadeite and kosmochlor Note: P = 18.5 GPa
Physics and Chemistry of Minerals, 2014, 41, 695-707
9017270 CIFCr Na O6 Si2C 1 2/c 19.084; 8.077; 4.9544
90; 105.7; 90
349.95Posner, E. S.; Dera, P.; Downs, R. T.; Lazarz, J. D.; Irmen, P.
High-pressure single-crystal X-ray diffraction study of jadeite and kosmochlor Note: P = 31.3 GPa
Physics and Chemistry of Minerals, 2014, 41, 695-707
9017271 CIFCr Na O6 Si2C 1 2/c 19.076; 7.971; 4.9309
90; 105.56; 90
343.651Posner, E. S.; Dera, P.; Downs, R. T.; Lazarz, J. D.; Irmen, P.
High-pressure single-crystal X-ray diffraction study of jadeite and kosmochlor Note: P = 35.3 GPa
Physics and Chemistry of Minerals, 2014, 41, 695-707

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