Crystallography Open Database

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Searching year of publication is 2009

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9013841 CIFAs H6 K O15 U3C c c m8.193; 11.43; 13.5
90; 90; 90
1264.22Walenta, K.; Hatert, F.; Theye, T.; Lissner, F.; Röller K
Nielsbohrite, a new potassium uranyl arsenate from the uranium deposit of Menzenschwand, southern Black Forest, Germany
European Journal of Mineralogy, 2009, 21, 515-520
9013842 CIFAl2 Ca2 H2 O12 Si3P n c m4.6248; 5.4825; 18.475
90; 90; 90
468.442Detrie, T. A.; Ross, N. L.; Angel, R. J.; Gatta, G. D.
Equation of state and structure of prehnite to 9.8 GPa Note: P = 0.0001 GPa
European Journal of Mineralogy, 2009, 21, 561-570
9013843 CIFAl2 Ca2 H2 O12 Si3P n c m4.5905; 5.4508; 18.397
90; 90; 90
460.328Detrie, T. A.; Ross, N. L.; Angel, R. J.; Gatta, G. D.
Equation of state and structure of prehnite to 9.8 GPa Note: P = 1.952 GPa
European Journal of Mineralogy, 2009, 21, 561-570
9013844 CIFAl2 Ca2 H2 O12 Si3P n c m4.5539; 5.4148; 18.317
90; 90; 90
451.669Detrie, T. A.; Ross, N. L.; Angel, R. J.; Gatta, G. D.
Equation of state and structure of prehnite to 9.8 GPa Note: P = 4.279 GPa
European Journal of Mineralogy, 2009, 21, 561-570
9013845 CIFAl2 Ca2 H2 O12 Si3P n c m4.5414; 5.4023; 18.2913
90; 90; 90
448.759Detrie, T. A.; Ross, N. L.; Angel, R. J.; Gatta, G. D.
Equation of state and structure of prehnite to 9.8 GPa Note: P = 5.111 GPa
European Journal of Mineralogy, 2009, 21, 561-570
9013846 CIFAl2 Ca2 H2 O12 Si3P n c m4.5236; 5.3828; 18.2482
90; 90; 90
444.337Detrie, T. A.; Ross, N. L.; Angel, R. J.; Gatta, G. D.
Equation of state and structure of prehnite to 9.8 GPa Note: P = 6.408 GPa
European Journal of Mineralogy, 2009, 21, 561-570
9013847 CIFAl2 Ca2 H2 O12 Si3P n c m4.5058; 5.3618; 18.208
90; 90; 90
439.891Detrie, T. A.; Ross, N. L.; Angel, R. J.; Gatta, G. D.
Equation of state and structure of prehnite to 9.8 GPa Note: P = 7.818 GPa
European Journal of Mineralogy, 2009, 21, 561-570
9013848 CIFAl2 Ca2 H2 O12 Si3P n c m4.5008; 5.356; 18.196
90; 90; 90
438.638Detrie, T. A.; Ross, N. L.; Angel, R. J.; Gatta, G. D.
Equation of state and structure of prehnite to 9.8 GPa Note: P = 8.207 GPa
European Journal of Mineralogy, 2009, 21, 561-570
9013849 CIFAl2 Ca2 H2 O12 Si3P n c m4.4904; 5.342; 18.174
90; 90; 90
435.953Detrie, T. A.; Ross, N. L.; Angel, R. J.; Gatta, G. D.
Equation of state and structure of prehnite to 9.8 GPa Note: P = 9.03 GPa
European Journal of Mineralogy, 2009, 21, 561-570
9013850 CIFAl2 Ca2 H2 O12 Si3P n c m4.4868; 5.335; 18.168
90; 90; 90
434.889Detrie, T. A.; Ross, N. L.; Angel, R. J.; Gatta, G. D.
Equation of state and structure of prehnite to 9.8 GPa Note: P = 9.345 GPa
European Journal of Mineralogy, 2009, 21, 561-570
9013851 CIFAl2 Ca2 H2 O12 Si3P n c m4.482; 5.3201; 18.161
90; 90; 90
433.043Detrie, T. A.; Ross, N. L.; Angel, R. J.; Gatta, G. D.
Equation of state and structure of prehnite to 9.8 GPa Note: P = 9.75 GPa
European Journal of Mineralogy, 2009, 21, 561-570
9013852 CIFAl0.721 Fe0.219 H4 Mg2.782 O9 Si1.279C -15.327; 9.233; 14.381
90.2; 97.2; 89.97
701.736Zanazzi, P. F.; Comodi, P.; Nazzareni, S.; Andreozzi, G. B.
Thermal behaviour of chlorite: an in situ single-crystal and powder diffraction study Note: T = 25 C
European Journal of Mineralogy, 2009, 21, 581-589
9013853 CIFAl0.721 Fe0.219 H4 Mg2.782 O9 Si1.279C -15.3454; 9.2584; 14.435
90.29; 97.28; 90
708.618Zanazzi, P. F.; Comodi, P.; Nazzareni, S.; Andreozzi, G. B.
Thermal behaviour of chlorite: an in situ single-crystal and powder diffraction study Note: T = 301 C
European Journal of Mineralogy, 2009, 21, 581-589
9013854 CIFAl0.721 Fe0.219 H4 Mg2.782 O9 Si1.279C -15.3504; 9.2661; 14.447
90.31; 97.29; 90
710.444Zanazzi, P. F.; Comodi, P.; Nazzareni, S.; Andreozzi, G. B.
Thermal behaviour of chlorite: an in situ single-crystal and powder diffraction study Note: T = 399 C
European Journal of Mineralogy, 2009, 21, 581-589
9013855 CIFAl0.721 Fe0.219 H4 Mg2.782 O9 Si1.279C -15.3533; 9.2778; 14.464
90.3; 97.27; 90
712.596Zanazzi, P. F.; Comodi, P.; Nazzareni, S.; Andreozzi, G. B.
Thermal behaviour of chlorite: an in situ single-crystal and powder diffraction study Note: T = 502 C
European Journal of Mineralogy, 2009, 21, 581-589
9013856 CIFGa Li O6 Si2P 1 21/c 19.5092; 8.5684; 5.2345
90; 109.86; 90
401.134Camara, F.; Nestola, F.; Angel, R. J.; Ohashi, H.
Spontaneous strain variations through the low-temperature displacive phase transition of LiGaSi2O6 clinopyroxene Note: T = 100 K
European Journal of Mineralogy, 2009, 21, 599-614
9013857 CIFGa Li O6 Si2P 1 21/c 19.5112; 8.5703; 5.2354
90; 109.88; 90
401.326Camara, F.; Nestola, F.; Angel, R. J.; Ohashi, H.
Spontaneous strain variations through the low-temperature displacive phase transition of LiGaSi2O6 clinopyroxene Note: T = 125 K
European Journal of Mineralogy, 2009, 21, 599-614
9013858 CIFGa Li O6 Si2P 1 21/c 19.5134; 8.5705; 5.2372
90; 109.91; 90
401.49Camara, F.; Nestola, F.; Angel, R. J.; Ohashi, H.
Spontaneous strain variations through the low-temperature displacive phase transition of LiGaSi2O6 clinopyroxene Note: T = 150 K
European Journal of Mineralogy, 2009, 21, 599-614
9013859 CIFGa Li O6 Si2P 1 21/c 19.5161; 8.5708; 5.2397
90; 109.92; 90
401.784Camara, F.; Nestola, F.; Angel, R. J.; Ohashi, H.
Spontaneous strain variations through the low-temperature displacive phase transition of LiGaSi2O6 clinopyroxene Note: T = 175 K
European Journal of Mineralogy, 2009, 21, 599-614
9013860 CIFGa Li O6 Si2P 1 21/c 19.5189; 8.5722; 5.2428
90; 109.93; 90
402.18Camara, F.; Nestola, F.; Angel, R. J.; Ohashi, H.
Spontaneous strain variations through the low-temperature displacive phase transition of LiGaSi2O6 clinopyroxene Note: T = 200 K
European Journal of Mineralogy, 2009, 21, 599-614
9013861 CIFGa Li O6 Si2P 1 21/c 19.5193; 8.5713; 5.2466
90; 109.99; 90
402.294Camara, F.; Nestola, F.; Angel, R. J.; Ohashi, H.
Spontaneous strain variations through the low-temperature displacive phase transition of LiGaSi2O6 clinopyroxene Note: T = 225 K
European Journal of Mineralogy, 2009, 21, 599-614
9013862 CIFGa Li O6 Si2P 1 21/c 19.5277; 8.5722; 5.2512
90; 109.99; 90
403.044Camara, F.; Nestola, F.; Angel, R. J.; Ohashi, H.
Spontaneous strain variations through the low-temperature displacive phase transition of LiGaSi2O6 clinopyroxene Note: T = 250 K
European Journal of Mineralogy, 2009, 21, 599-614
9013863 CIFGa Li O6 Si2P 1 21/c 19.5267; 8.5688; 5.2553
90; 110.06; 90
402.977Camara, F.; Nestola, F.; Angel, R. J.; Ohashi, H.
Spontaneous strain variations through the low-temperature displacive phase transition of LiGaSi2O6 clinopyroxene Note: T = 265 K
European Journal of Mineralogy, 2009, 21, 599-614
9013864 CIFGa Li O6 Si2P 1 21/c 19.5405; 8.563; 5.2669
90; 110.15; 90
403.945Camara, F.; Nestola, F.; Angel, R. J.; Ohashi, H.
Spontaneous strain variations through the low-temperature displacive phase transition of LiGaSi2O6 clinopyroxene Note: T = 280 K
European Journal of Mineralogy, 2009, 21, 599-614
9013865 CIFGa Li O6 Si2C 1 2/c 19.5613; 8.5691; 5.2668
90; 110.248; 90
404.852Camara, F.; Nestola, F.; Angel, R. J.; Ohashi, H.
Spontaneous strain variations through the low-temperature displacive phase transition of LiGaSi2O6 clinopyroxene Note: T = 303 K
European Journal of Mineralogy, 2009, 21, 599-614
9013866 CIFGa Li O6 Si2C 1 2/c 19.5614; 8.5698; 5.2677
90; 110.219; 90
405.034Camara, F.; Nestola, F.; Angel, R. J.; Ohashi, H.
Spontaneous strain variations through the low-temperature displacive phase transition of LiGaSi2O6 clinopyroxene Note: T = 323 K
European Journal of Mineralogy, 2009, 21, 599-614
9013867 CIFGa Li O6 Si2C 1 2/c 19.5633; 8.5715; 5.2686
90; 110.223; 90
405.253Camara, F.; Nestola, F.; Angel, R. J.; Ohashi, H.
Spontaneous strain variations through the low-temperature displacive phase transition of LiGaSi2O6 clinopyroxene Note: T = 343 K
European Journal of Mineralogy, 2009, 21, 599-614
9013868 CIFGa Li O6 Si2C 1 2/c 19.5646; 8.5738; 5.2684
90; 110.221; 90
405.407Camara, F.; Nestola, F.; Angel, R. J.; Ohashi, H.
Spontaneous strain variations through the low-temperature displacive phase transition of LiGaSi2O6 clinopyroxene Note: T = 363 K
European Journal of Mineralogy, 2009, 21, 599-614
9013869 CIFGa Li O6 Si2C 1 2/c 19.5666; 8.5753; 5.2691
90; 110.219; 90
405.622Camara, F.; Nestola, F.; Angel, R. J.; Ohashi, H.
Spontaneous strain variations through the low-temperature displacive phase transition of LiGaSi2O6 clinopyroxene Note: T = 383 K
European Journal of Mineralogy, 2009, 21, 599-614
9013870 CIFGa Li O6 Si2C 1 2/c 19.5721; 8.5791; 5.2708
90; 110.218; 90
406.169Camara, F.; Nestola, F.; Angel, R. J.; Ohashi, H.
Spontaneous strain variations through the low-temperature displacive phase transition of LiGaSi2O6 clinopyroxene Note: T = 423 K
European Journal of Mineralogy, 2009, 21, 599-614
9013871 CIFGa Li O6 Si2C 1 2/c 19.5762; 8.5728; 5.2715
90; 110.196; 90
406.155Camara, F.; Nestola, F.; Angel, R. J.; Ohashi, H.
Spontaneous strain variations through the low-temperature displacive phase transition of LiGaSi2O6 clinopyroxene Note: T = 473 K
European Journal of Mineralogy, 2009, 21, 599-614
9013872 CIFGa Li O6 Si2C 1 2/c 19.5859; 8.5911; 5.2731
90; 110.173; 90
407.619Camara, F.; Nestola, F.; Angel, R. J.; Ohashi, H.
Spontaneous strain variations through the low-temperature displacive phase transition of LiGaSi2O6 clinopyroxene Note: T = 573 K
European Journal of Mineralogy, 2009, 21, 599-614
9013873 CIFGa Li O6 Si2C 1 2/c 19.5942; 8.6018; 5.2752
90; 110.169; 90
408.653Camara, F.; Nestola, F.; Angel, R. J.; Ohashi, H.
Spontaneous strain variations through the low-temperature displacive phase transition of LiGaSi2O6 clinopyroxene Note: T = 673 K
European Journal of Mineralogy, 2009, 21, 599-614
9013874 CIFGa Li O6 Si2C 1 2/c 19.5997; 8.6121; 5.2763
90; 110.13; 90
409.564Camara, F.; Nestola, F.; Angel, R. J.; Ohashi, H.
Spontaneous strain variations through the low-temperature displacive phase transition of LiGaSi2O6 clinopyroxene Note: T = 773 K
European Journal of Mineralogy, 2009, 21, 599-614
9013875 CIFGa Li O6 Si2C 1 2/c 19.608; 8.6219; 5.2778
90; 110.119; 90
410.53Camara, F.; Nestola, F.; Angel, R. J.; Ohashi, H.
Spontaneous strain variations through the low-temperature displacive phase transition of LiGaSi2O6 clinopyroxene Note: T = 873 K
European Journal of Mineralogy, 2009, 21, 599-614
9013876 CIFGa Li O6 Si2C 1 2/c 19.6173; 8.6313; 5.2804
90; 110.118; 90
411.581Camara, F.; Nestola, F.; Angel, R. J.; Ohashi, H.
Spontaneous strain variations through the low-temperature displacive phase transition of LiGaSi2O6 clinopyroxene Note: T = 973 K
European Journal of Mineralogy, 2009, 21, 599-614
9013877 CIFGa Li O6 Si2C 1 2/c 19.626; 8.6433; 5.2813
90; 110.098; 90
412.649Camara, F.; Nestola, F.; Angel, R. J.; Ohashi, H.
Spontaneous strain variations through the low-temperature displacive phase transition of LiGaSi2O6 clinopyroxene Note: T = 1073 K
European Journal of Mineralogy, 2009, 21, 599-614
9013878 CIFCa0.433 O3 Si Sr0.567P -16.758; 9.464; 6.7507
83.22; 76.83; 70.33
395.468Dorsam, G.; Liebscher, A.; Wunder, B.; Franz, G.; Gottschalk, M.
Crystal structure refinement of synthetic Ca0.43Sr0.57[SiO3]-walstromite and walstromite-fluid Ca-Sr distribution at upper-mantle conditions
European Journal of Mineralogy, 2009, 21, 705-714
9013879 CIFAs8 Ni11C 1 2/c 19.718; 9.718; 11.177
90; 102.55; 90
1030.33Makovicky, E.; Merlino, S.
OD (order-disorder) character of the crystal structure of maucherite Ni8As11 Note: maucherite-2M polytype
European Journal of Mineralogy, 2009, 21, 855-862
9013880 CIFNi4.5 S4I -4 2 d9.38; 9.38; 22.44
90; 90; 90
1974.37Merlino, S.; Makovicky, E.
OD (order-disorder) character of the crystal structure of godlevskite Ni9S8
European Journal of Mineralogy, 2009, 21, 863-869
9013881 CIFBa2.32 Ca1.6 F2.72 Fe12.64 H9.28 K1.44 Mg0.4 Mn2.52 Na2.68 O73.28 Si16 Ti8 Zr0.16C 1 2/m 110.6785; 13.786; 20.7
90; 94.937; 90
3036.02Sokolova, E.; Camara, F.; Hawthorne, F. C.; Abdu, Y.
From structure topology to chemical composition. VII. Titanium silicates: the crystal structure and crystal chemistry of jinshajiangite
European Journal of Mineralogy, 2009, 21, 871-883
9013882 CIFCr0.328 O5 Ti0.407 V2.263C 1 2/c 110.0299; 5.0505; 6.999
90; 111.13; 90
330.704Armbruster, T.; Galuskin, E. V.; Reznitsky, L. Z.; Sklyarov, E. V.
X-ray structural investigation of the oxyvanite (V3O5) - berdesinskiite (V2TiO5) series: V4+ substituting for octahedrally coordinated Ti4+ Locality: Pereval marble quarry, Sludyanka complex, south of Lake Baikal, Russia Sample: Crystal I-2-7
European Journal of Mineralogy, 2009, 21, 885-891
9013883 CIFCr0.326 Fe0.012 O5 Ti0.54 V2.122C 1 2/c 110.0546; 5.0603; 7.0111
90; 110.845; 90
333.371Armbruster, T.; Galuskin, E. V.; Reznitsky, L. Z.; Sklyarov, E. V.
X-ray structural investigation of the oxyvanite (V3O5) - berdesinskiite (V2TiO5) series: V4+ substituting for octahedrally coordinated Ti4+ Locality: Pereval marble quarry, Sludyanka complex, south of Lake Baikal, Russia Sample: Crystal II-7-21
European Journal of Mineralogy, 2009, 21, 885-891
9013884 CIFAl0.006 Cr0.61 Mg0.004 O5 Ti0.758 V1.622C 1 2/c 110.033; 5.039; 6.988
90; 111.5; 90
328.705Armbruster, T.; Galuskin, E. V.; Reznitsky, L. Z.; Sklyarov, E. V.
X-ray structural investigation of the oxyvanite (V3O5) - berdesinskiite (V2TiO5) series: V4+ substituting for octahedrally coordinated Ti4+ Locality: Pereval marble quarry, Sludyanka complex, south of Lake Baikal, Russia Sample: III-7-22
European Journal of Mineralogy, 2009, 21, 885-891
9013885 CIFAl0.006 Cr0.61 Mg0.004 O5 Ti0.758 V1.622C 1 2/c 110.0448; 5.0393; 6.989
90; 111.486; 90
329.19Armbruster, T.; Galuskin, E. V.; Reznitsky, L. Z.; Sklyarov, E. V.
X-ray structural investigation of the oxyvanite (V3O5) - berdesinskiite (V2TiO5) series: V4+ substituting for octahedrally coordinated Ti4+ Locality: Pereval marble quarry, Sludyanka complex, south of Lake Baikal, Russia Sample: III-9-11
European Journal of Mineralogy, 2009, 21, 885-891
9013886 CIFBe6 Ca4.184 H12 Na1.816 O32.21 Si8P 1 21 17.1222; 19.8378; 9.8071
90; 111.287; 90
1291.1Raade, G.; Grice, J. D.; Cooper, M. A.
Alflarsenite, a new beryllium-silicate zeolite from a syenitic pegmatite in the Larvik plutonic complex, Oslo Region, Norway Locality: Larvik plutonic complex, Oslo Region, Norway
European Journal of Mineralogy, 2009, 21, 893-900
9013887 CIFAl8 Ca2 H18 K2.929 Na O44 Si8P -119.965; 14.274; 8.704
88.37; 125.08; 89.57
2028.21Lengauer, C. L.; Kolitsch, U.; Tillmanns, E.
Florkeite, K3Ca2Na[Al8Si8O32]*12H2O, a new phillipsite-type zeolite from the Bellerberg, East Eifel volcanic are, Germany
European Journal of Mineralogy, 2009, 21, 901-913
9013888 CIFCa7 F0.24 H1.76 O13.76 Si3P b n m5.0696; 11.3955; 23.5571
90; 90; 90
1360.91Galuskin, E. V.; Gazeev, V. M.; Lazic, B.; Armbruster, T.; Galuskina, I. O.; Zadov, A. E.; Pertsev, N. N.; Wrzalik, R.; Dzierzanowski, P.; Gurbanov, A. G.; Bzowska, G.
Chegemite Ca7(SiO4)3(OH)2 - a new humite-group mineral from the Northern Caucasus, Kabardino-Balkaria, Russia Locality: in the high-temperature skarns in calcareous xenoliths in ignimbrites of the Upper Chegem volcanic structure, Northern Caucasus, Kabardino-Balkaria, Russia
European Journal of Mineralogy, 2009, 21, 1045-1059
9013918 CIFCa2 H2.44 K Na2 O26 Si8P 1 2/c 113.704; 6.576; 13.751
90; 105.752; 90
1192.67Zubkova, N. V.; Pekov, I. V.; Pushcharovsky, D. Y.; Chukanov, N. V.
The crystal structure and refined formula of mountainite, KNa2Ca2[Si8O19(OH)]*6H2O Locality: Yubileinaya pegmatite, Lovozero alkaline complex, Kola Peninsula, Russia
Zeitschrift fur Kristallographie, 2009, 224, 389-396
9013948 CIFBr0.81 Cl1.19 Hg11 I2 O4A -17.0147; 11.8508; 12.5985
115.583; 82.575; 100.619
926.998Cooper, M. A.; Hawthorne, F. C.
The crystal structure of tedhadleyite, Hg2+Hg1+10O4I2(Cl,Br)2. from the Clear Creek Claim, San Benito County, California
Mineralogical Magazine, 2009, 73, 227-234
9013949 CIFCu H9 O15.67 Pb5 S6P 1 21/n 112.5631; 8.8963; 18.0132
90; 96.459; 90
2000.47Cooper, M. A.; Hawthorne, F. C.; Moffatt, E.
Steverustite, Pb5(OH)5[Cu(SO3S)3](H2O)2, a new thiosulphate mineral from the Frongoch mine dump, Devils Bridge, Ceredigion, Wales: description and crystal structure Locality: Frongoch mine dump, Devils Bridge, Ceredigion, Wales
Mineralogical Magazine, 2009, 73, 235-250
9013950 CIFAl0.04 As2.98 Ca0.02 Cd2.89 Cu0.44 H8.68 Mn0.52 O20 P1.02 Pb0.04 Zn1.05C 1 2/c 118.062; 9.341; 9.844
90; 96.17; 90
1651.23Elliott, P.; Turner, P.; Jensen, P.; Kolitsch, U.; Pring, A.
Description and crystal structure of nyholmite, a new mineral related to hureaulite, from Broken Hill,New South Wales, Australia Locality: Broken Hill, New South Wales, Australia
Mineralogical Magazine, 2009, 73, 723-735
9013951 CIFAl0.04 Ba1.28 Ca0.4 Fe0.06 H20 K0.3 Mn1.44 Na4.2 Nb1.43 O42 Si8 Sr0.5 Ti4.14P -15.447; 7.157; 47.259
97.759; 92.136; 89.978
1824.2Camara, F.; Sokolova, E.
From structure topology to chemical composition. X. Titanium silicates: the crystal structure and crystal chemistry of nechelyustovite, a group III Ti-disilicate mineral Locality: hydrothermally altered pegmatite, Kirovskii mine, Mt Kukisvumchorr, Khibina alkaline massif, Kola peninsula, Russia
Mineralogical Magazine, 2009, 73, 753-775
9013952 CIFAl1.18 Ca0.02 F1.4 Fe1.04 H0.6 K0.86 Li0.91 Mg1.76 Mn0.09 Na3.12 O22.6 Si7.96 Ti0.02 Zn0.04C 1 2/m 19.7043; 17.7341; 5.2833
90; 104.067; 90
881.974Oberti, R.; Camara, F.; Hawthorne, F. C.; Ball, N. A.
Fluoro-aluminoleakeite, NaNa2(Mg2Al2Li)Si8O22F2, a new mineral of the amphibole group from Norra Karr, Sweden: description and crystal structure
Mineralogical Magazine, 2009, 73, 817-824
9013953 CIFAl0.08 Ba5.22 Ca0.58 F6.02 Fe10.08 H7.98 K0.68 Mg0.16 Mn5.12 Na2.58 Nb0.48 O71.98 Si16 Ti7.44 Zr0.16C -110.6965; 13.7861; 21.478
99.345; 92.315; 89.993
3122.56Camara, F.; Sokolova, E.; Nieto, F.
Camaraite, Ba3NaTi4(Fe2+,Mn)8(Si2O7)4O4(OH,F)7. II. The crystal structure and crystal chemistry of a new group-II Ti-disilicate mineral Locality: the Verkhnee Espe alkaline deposit, Akjailyautas Mountains, Kazakhstan
Mineralogical Magazine, 2009, 73, 855-870
9013982 CIFAl2 Be2 Cs0.75 H6 Li Na0.226 O18.285 Si6R -3 c :H15.955; 15.955; 27.81
90; 90; 120
6130.91Yakubivich, O. V.; Pekov, I. V.; Steele, I. M.; Massa, W.; Chukanov, N. V.
Alkali metals in beryl and their role in the formation of derivative structural motifs: Comparative crystal chemistry of vorobyevite and pezzottaite Locality: Sakavalana granitic pegmatite, Antsirabe, Fianarantsoa Province, Madagascar Note: T = 100 K
Crystallography Reports, 2009, 54, 399-412
9013983 CIFAl2 Be2.34 Cs0.079 H2 Li0.66 Na0.419 O18.19 Si6P 6/m c c9.2101; 9.2101; 9.2179
90; 90; 120
677.16Yakubivich, O. V.; Pekov, I. V.; Steele, I. M.; Massa, W.; Chukanov, N. V.
Alkali metals in beryl and their role in the formation of derivative structural motifs: Comparative crystal chemistry of vorobyevite and pezzottaite Locality: Lipovka pegmatite field, Rezh District, Central Urals, Urals Region, Russia Note: T = 100 K Note: variety vorobyevite Note: Coordinates of O1 and O2 corrected by Yakubivich
Crystallography Reports, 2009, 54, 399-412
9013984 CIFCa3 H6 O10 Si2P 116.33; 5.6389; 11.685
90.08; 126.446; 89.95
865.546Rastsvetaeva, R. K.; Chukanov, N. V.; Zadov, A. E.
Refined structure of afwillite from the northern Baikal region
Crystallography Reports, 2009, 54, 418-422
9013985 CIFAl0.26 Be2 Ca Fe0.97 H8.5 Mg1.61 Mn0.18 O17 P3C 1 2/c 115.876; 11.86; 6.607
90; 95.49; 90
1238.32Rastsvetaeva, R. K.; Rozenberg, K. A.; Chukanov, N. V.; Mockel, S.
The crystal structure of an iron-rich variety of zanazziite belonging to heteropolyhedral framework roscherite-group beryllophosphates
Crystallography Reports, 2009, 54, 568-571
9013986 CIFCa10.381 O28 P7 Th0.119R 3 c :H10.4372; 10.4372; 37.4876
90; 90; 120
3536.6Orlova, A. I.; Khainakov, S. A.; Loginova, E. E.; Oleneva, T. A.; Garcia Granda, S.; Kurazhkovskaya, V. S.
Calcium thorium phosphate (whitlockite-type mineral). Synthesis and structure refinement
Crystallography Reports, 2009, 54, 591-597
9013987 CIFC0.5 H6 Al3 Ca0.03 K0.18 Na3.53 O14.25 Si3P 6312.688; 12.688; 5.189
90; 90; 120
723.437Rozenberg, K. A.; Rastsvetaeva, R. K.; Chukanov, N. V.
Crystal structures of oxalate-bearing cancrinite with an unusual arrangement of CO3 groups and sulfate-rich davyne Locality: Kovdor massif, Kola Peninsula, Russia Note: Enraf Nonius diffractometer
Crystallography Reports, 2009, 54, 793-799
9013988 CIFC0.5 H6 Al3 Ca0.04 K0.15 Na3.58 O14.25 Si3P 6312.688; 12.688; 5.189
90; 90; 120
723.437Rozenberg, K. A.; Rastsvetaeva, R. K.; Chukanov, N. V.
Crystal structures of oxalate-bearing cancrinite with an unusual arrangement of CO3 groups and sulfate-rich davyne Locality: Kovdor massif, Kola Peninsula, Russia Note: Bruker SMART CCD diffractometer
Crystallography Reports, 2009, 54, 793-799
9013989 CIFAl3 Ca Cl K0.39 Na2.61 O14 S0.5 Si3P 6312.773; 12.773; 5.334
90; 90; 120
753.65Rozenberg, K. A.; Rastsvetaeva, R. K.; Chukanov, N. V.
Crystal structures of oxalate-bearing cancrinite with an unusual arrangement of CO3 groups and sulfate-rich davyne
Crystallography Reports, 2009, 54, 793-799
9013990 CIFAl2 H5 O18 Si3.882 Tm0.935 Y2.115P 1 21/n 15.7551; 14.752; 15.906
90; 96.046; 90
1342.9Yakbovich, O. V.; Steele, I. M.
The crystal structure of vyuntspakhite: a redetermination
Crystallography Reports, 2009, 54, 822-830
9013992 CIFAg10.332 As1.602 Cu5.668 S11 Sb0.398P -3 m 17.2567; 7.2567; 11.8193
90; 90; 120
539.015Bindi, L.; Pekov, I. V.
Crystal chemistry of extremely Cu-rich cupropearceite from the Sarbay mine, Northern Kazakhstan Location: Sarbay mine, Northern Kazakhstan
Zapiski Rossiiskogo Mineralogicheskogo Obshchetstva, 2009, 138, 44-50
9013997 CIFH18 Na4 O19 Si4P 1 21/c 19.8744; 12.3981; 14.8973
90; 104.675; 90
1764.29Zubkova, N. V.; Pekov, I. V.; Pushcharovskii, D. Y.; Kazantsev, S. S.
Crystal structure of yegorovite Na4[Si4O8(OH)4]*7H2O
Doklady Earth Sciences, 2009, 427, 814-818
9014000 CIFCu H6 O14 Pb4 S2P -15.796; 7.9471; 7.9836
111.994; 97.765; 100.426
326.939Mereiter, K.
Chenite, Pb4Cu(SO4)2(OH)6, from Susanna mine, Leadhills, Scotland. Note: Crystal is from the Paar et al (1986) mineral description paper
Private communication, 2009
9014019 CIFNi0.493 Ti0.507P m -3 m3.00896; 3.00896; 3.00896
90; 90; 90
27.243Sitepu, H.
Texture and structural refinement using neutron diffraction data from molybdite (MoO3) and calcite (CaCO3) powders and a Ni-rich Ni50.7Ti49.30 alloy Note: Annealed
Powder Diffraction, 2009, 24, 315-326
9014315 CIFNi TiP -37.341; 7.341; 5.26996
90; 90; 120
245.951Sitepu, H.
Texture and structural refinement using neutron diffraction data from molybdite (MoO3) and calcite (CaCO3) powders and a Ni-rich Ni50.7Ti49.30 alloy Note: Aged
Powder Diffraction, 2009, 24, 315-326
9014326 CIFCu1.48 Fe0.54 K0.737 S2I 4/m m m3.846; 3.846; 13.308
90; 90; 90
196.848Pekov, I. V.; Zubkova, N. V.; Lisitsyn, D. V.; Pushcharovsky, D. Y.
Crystal chemistry of murunskite
Doklady Earth Sciences, 2009, 424, 139-141
9014341 CIFCa H7 O15 Si4 VP c m n9.794; 13.67; 9.643
90; 90; 90
1291.04Ishida, N.; Kimata, M.; Nishida, N.; Hatta, T.; Shimizu, M.; Akasaka, T.
Polymorphic relation between cavanite and pentagonite: genetic implications of oxonium ion in cavansite
Journal of Mineralogical and Petrological Sciences, 2009, 104, 241-252
9014622 CIFCa H8 O15 Si4 VC c m 2110.376; 14.062; 8.984
90; 90; 90
1310.83Ishida, N.; Kimata, M.; Nishida, N.; Hatta, T.; Shimizu, M.; Akasaka, T.
Polymorphic relation between cavanite and pentagonite: genetic implications of oxonium ion in cavansite
Journal of Mineralogical and Petrological Sciences, 2009, 104, 241-252
9014636 CIFAl1.98 Ca0.04 F1.02 Fe1.16 H0.98 Li2.56 Mg1.1 Mn0.08 Na0.73 O22.98 Si8 Zn0.02C 1 2/m 19.372; 17.6312; 5.2732
90; 102.247; 90
851.512Oberti, R.; Boiocchi, M.; Ball, N. A.; Hawthorne, F. C.
Fluoro-sodic-ferropedrizite, NaLi2(Fe2+2Al2Li)Si8O22F2, a new mineral of the amphibole group from the Sutlug River, Tuva Republic, Russia: description and crystal structure
Mineralogical Magazine, 2009, 73, 487-494
9014704 CIFCl Cu2 H3 O3P 1 21/n 16.1675; 6.8327; 9.1517
90; 99.492; 90
380.379Malcherek, T.; Schluter, J.
Structures of the pseudo-trigonal polymorphs of Cu2(OH)3Cl Note: Sample #1
Acta Crystallographica, Section B, 2009, 65, 334-341
9014760 CIFBr0.13 Cl4.87 K0.94 Pb2 Tl0.06P 1 21/c 18.8989; 7.9717; 12.5624
90; 90.022; 90
891.169Mitolo, D.; Pinto, D.; Garavelli, A.; Bindi, L.; Vurro, F.
The role of the minor substitutions in the crystal structure of natural challacolloite, KPb2Cl5, and hephaistosite, TiPb2Cl5, from Vulcano (Aeolian Archipelago, Italy)
Mineralogy and Petrology, 2009, 96, 121-128
9014802 CIFAl0.64 Cu3 Fe0.36 K3 O18 S4I 1 2 118.772; 4.967; 18.468
90; 101.66; 90
1686.43Krivovichev, S. V.; Filatov, S. K.; Cherepansky, P. N.
The crystal structure of alumoklyuchevskite, K3Cu3AlO2(SO4)4 Kamchatka Peninsula, Russia, 1975-1976
Geology of Ore Deposits, 2009, 51, 656-662
9014848 CIFAs Ca Cu0.96 H Mg0.04 O5P 21 21 217.3849; 5.8379; 9.1937
90; 90; 90
396.362Sakai, S.; Yoshiasa, A.; Sugiyama, K.; Miyawaki, R.
Crystal structure and chemistry of conichalcite, CaCu(AsO4)(OH)
Journal of Mineralogical and Petrological Sciences, 2009, 104, 125-131
9014910 CIFCu2 O7 V2P 17.687; 5.54982; 10.09
104; 110.45; 46.17
290.958Yashima, M.; Suzuki, R. O.
Electronic structure and magnetic properties of monoclinic beta-Cu2V2O7: A GGA+U study Note: this is a modification of the monoclinic structure from the Calvo & Faggiani (1975) paper, in the triclinic setting
Physical Review B, 2009, 79, 125201-125206
9014987 CIFMo O3P b n m3.9624; 13.86; 3.6971
90; 90; 90
203.041Sitepu, H.
Texture and structural refinement using neutron diffraction data from molybdite (MoO3) and calcite (CaCO3) powders and a Ni-rich Ni50.7Ti49.30 alloy Note: March model
Powder Diffraction, 2009, 24, 315-326
9015129 CIFBa0.02 Ca0.88 H12.88 K1.34 Na1.64 Nb1.12 O34.44 Si8 Sr0.04 Ti2.88C 1 2/m 114.529; 14.203; 7.899
90; 117.37; 90
1447.53Azarova, Y. V.; Shlyukova, Z. V.; Zolotarev, A. A.; Organova, N. I.
Burovaite-Ca, (Na,K)4Ca2(Ti,Nb)8[Si4O12]4(OH,O)8*12H2O, a new labuntsovite-group mineral species and its place in low-temperature mineral formation in pegmatites of the Khibiny Pluton, Kola Peninsula, Russia
Geology of Ore Deposits, 2009, 51, 774-783
9015365 CIFFe Ge2 Li O6P 1 21/c 19.765; 8.721; 5.301
90; 108.49; 90
428.133Nestola, F.; Redhammer, G. J.; Pamato, M. G.; Secco, L.; Dal Negro, A.
High-pressure phase transformation in LiFeGe2O6 pyroxene Note: P = 4.16 GPa
American Mineralogist, 2009, 94, 616-621
9015390 CIFC Ca O3R -3 c :H4.99029; 4.99029; 17.0687
90; 90; 120
368.114Sitepu, H.
Texture and structural refinement using neutron diffraction data from molybdite (MoO3) and calcite (CaCO3) powders and a Ni-rich Ni50.7Ti49.30 alloy Note: March model
Powder Diffraction, 2009, 24, 315-326
9015401 CIFMo O3P b n m3.9624; 13.86; 3.6971
90; 90; 90
203.041Sitepu, H.
Texture and structural refinement using neutron diffraction data from molybdite (MoO3) and calcite (CaCO3) powders and a Ni-rich Ni50.7Ti49.30 alloy Note: Generalized spherical-harmonic model
Powder Diffraction, 2009, 24, 315-326
9015574 CIFBr0.18 Cl4.82 K0.04 Pb2 Tl0.96P 1 21/c 19.0026; 7.9723; 12.5693
90; 90.046; 90
902.116Mitolo, D.; Pinto, D.; Garavelli, A.; Bindi, L.; Vurro, F.
The role of the minor substitutions in the crystal structure of natural challacolloite, KPb2Cl5, and hephaistosite, TiPb2Cl5, from Vulcano (Aeolian Archipelago, Italy)
Mineralogy and Petrology, 2009, 96, 121-128
9015669 CIFCa4.28 Ce0.9 F2.7 Na1.82 Nb0.05 O15.3 Si4 Ti0.86 Zr0.09P 1 21/c 17.421; 5.709; 19.019
90; 101.23; 90
790.34Bellezza, M.; Merlino, S.; Perchiazzi, N.; Raade, G.
<<Johnstrupite>>: a chemical and structural study
Atti della Societa Toscana di Scienze Naturali, Memorie, Serie A, 2009, 114, 1-3
9015803 CIFFe Ge2 Li O6C 1 2/c 19.5; 8.711; 5.127
90; 101.55; 90
415.691Nestola, F.; Redhammer, G. J.; Pamato, M. G.; Secco, L.; Dal Negro, A.
High-pressure phase transformation in LiFeGe2O6 pyroxene Note: P = 4.83 GPa
American Mineralogist, 2009, 94, 616-621
9015813 CIFNi TiP 1 1 21/m2.8758; 4.12644; 4.6325
90; 90; 96.964
54.567Sitepu, H.
Texture and structural refinement using neutron diffraction data from molybdite (MoO3) and calcite (CaCO3) powders and a Ni-rich Ni50.7Ti49.30 alloy Note: Annealed
Powder Diffraction, 2009, 24, 315-326
9015826 CIFAl2.729 Ca1.95 Cr0.052 F0.06 Fe2.65 K0.54 Mg1.393 Mn0.03 Na0.47 O23.94 Si5.92 Ti0.226C 1 2/m 19.937; 18.108; 5.335
90; 105.3; 90
925.952Banno, Y.; Miyawaki, R.; Matsubara, S.; Sato, E.; Nakai, I.; Matsuo, G.; Yamada, S.
Potassic-ferropargasite, a new member of the amphibole group, from Kabutoichiba, Mie Prefecture, central Japan
Journal of Mineralogical and Petrological Sciences, 2009, 104, 374-382
9015847 CIFFe Ge2 Li O6P 1 21/c 19.801; 8.769; 5.331
90; 108.66; 90
434.088Nestola, F.; Redhammer, G. J.; Pamato, M. G.; Secco, L.; Dal Negro, A.
High-pressure phase transformation in LiFeGe2O6 pyroxene Note: P = 2.54 GPa
American Mineralogist, 2009, 94, 616-621
9015870 CIFCu2 O7 V2P 17.8468; 5.6213; 10.18
103.61; 109.71; 45.74
302.746Yashima, M.; Suzuki, R. O.
Electronic structure and magnetic properties of monoclinic beta-Cu2V2O7: A GGA+U study Note: theoretical study, in a triclinic setting
Physical Review B, 2009, 79, 125201-125206
9015923 CIFFe Ge2 Li O6P 1 21/c 19.843; 8.794; 5.352
90; 108.7; 90
438.81Nestola, F.; Redhammer, G. J.; Pamato, M. G.; Secco, L.; Dal Negro, A.
High-pressure phase transformation in LiFeGe2O6 pyroxene Note: P = 1.25 GPa
American Mineralogist, 2009, 94, 616-621
9015978 CIFFe Ge2 Li O6C 1 2/c 19.457; 8.69; 5.113
90; 101.41; 90
411.889Nestola, F.; Redhammer, G. J.; Pamato, M. G.; Secco, L.; Dal Negro, A.
High-pressure phase transformation in LiFeGe2O6 pyroxene Note: P = 6.04 GPa
American Mineralogist, 2009, 94, 616-621
9016022 CIFC Ca O3R -3 c :H4.99026; 4.99026; 17.0684
90; 90; 120
368.103Sitepu, H.
Texture and structural refinement using neutron diffraction data from molybdite (MoO3) and calcite (CaCO3) powders and a Ni-rich Ni50.7Ti49.30 alloy Note: Generalized spherical-harmonic model
Powder Diffraction, 2009, 24, 315-326
9016044 CIFBa Mg2 O7 Si2C 1 2/c 17.24553; 12.71376; 13.74813
90; 90.2107; 90
1266.44Park, C. H.; Choi, Y. N.
Crystal structure of BaMg2Si2O7 and Eu2+ luminescence
Journal of Solid State Chemistry, 2009, 182, 1884-1888
9016067 CIFFe Ge2 Li O6C 1 2/c 19.448; 8.67; 5.101
90; 101.19; 90
409.901Nestola, F.; Redhammer, G. J.; Pamato, M. G.; Secco, L.; Dal Negro, A.
High-pressure phase transformation in LiFeGe2O6 pyroxene Note: P = 6.48 GPa
American Mineralogist, 2009, 94, 616-621
9016086 CIFAl Cu F H5 O4C 1 2/m 112.346; 2.907; 10.369
90; 97.9; 90
368.61Hager, S. L.; Leverett, P.; Williams, P. A.
Possible structural and chemical relationships in the cyanotrichite group
The Canadian Mineralogist, 2009, 47, 635-648
9016129 CIFCa2 O4 SiP b n m5.074; 11.211; 6.753
90; 90; 90
384.142Zadov, A. E.; Gazeev, V. M.; Pertsev, N. N.; Gurbanov, A. G.; Gobechiya, E. R.; Yamnova, N. A.; Chukanov, N. V.
Calcioolivine, gamma-Ca2SiO4, an old and new mineral species Kabarda-Balkaria Republic, Russia
Geology of Ore Deposits, 2009, 51, 741-749
9016227 CIFNi0.493 Ti0.507P m -3 m3.01302; 3.01302; 3.01302
90; 90; 90
27.353Sitepu, H.
Texture and structural refinement using neutron diffraction data from molybdite (MoO3) and calcite (CaCO3) powders and a Ni-rich Ni50.7Ti49.30 alloy Note: Aged
Powder Diffraction, 2009, 24, 315-326
9016258 CIFAs Ca Cu0.87 H Mg0.13 O5P 21 21 217.429; 5.852; 9.215
90; 90; 90
400.618Sakai, S.; Yoshiasa, A.; Sugiyama, K.; Miyawaki, R.
Crystal structure and chemistry of conichalcite, CaCu(AsO4)(OH)
Journal of Mineralogical and Petrological Sciences, 2009, 104, 125-131
9016342 CIFNi TiP 1 1 21/m2.8894; 4.1334; 4.6321
90; 90; 96.929
54.917Sitepu, H.
Texture and structural refinement using neutron diffraction data from molybdite (MoO3) and calcite (CaCO3) powders and a Ni-rich Ni50.7Ti49.30 alloy Note: Aged
Powder Diffraction, 2009, 24, 315-326
9016567 CIFFe Ge2 Li O6C 1 2/c 19.4; 8.64; 5.075
90; 100.91; 90
404.721Nestola, F.; Redhammer, G. J.; Pamato, M. G.; Secco, L.; Dal Negro, A.
High-pressure phase transformation in LiFeGe2O6 pyroxene Note: P = 8.72 GPa
American Mineralogist, 2009, 94, 616-621
9016796 CIFFe H7 Na2 O12 S2P 21 21 217.265; 20.522; 7.12
90; 90; 90
1061.54Scordari, F.; Ventruti, G.
Sideronatrite, Na2Fe(SO4)2(OH)*3H2O: Crystal structure of the orthorhombic polytype and OD character analysis
American Mineralogist, 2009, 94, 1679-1686
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
9017460 CIFBa0.03 Ca6 Cl1.62 Fe2.25 H1.662 Hf0.03 K2.295 Mn0.15 Na12.945 Nb0.03 O74.389 Si26 Sr0.3 Ti0.15 Zr2.79R 3 m :H14.2956; 14.2956; 30.0228
90; 90; 120
5313.57Rastsvetaeva, R. K.; Rozenberg, K. A.; Khomyakov, A. P.
Crystal structure of high-silica K,Na-ordered acentric eudialyte analogue
Doklady Chemistry, 2009, 424, 11-14
9017498 CIFOP 63/m m c2.561; 2.561; 6.575
90; 90; 120
37.346Lundegaard, L. F.; Guillaume, C.; McMahon, M. I.; Gregoryanz, E.; Merlini, M.
On the structure of high-pressure high-temperature eta-O2
Journal of Chemical Physics, 2009, 130
9017515 CIFCu K Na O10 Si4P -16.9704; 8.0111; 9.7896
105.559; 99.534; 114.156
456.317Brandao, P.; Rocha, J.; Reis, M. S.; dos Santos, A. M.; Jin, R.
Magnetic properties of KNaMSi4O10 compounds (M=Mn,Fe,Cu)
Journal of Solid State Chemistry, 2009, 182, 253-258
9017516 CIFFe K Na O10 Si4P -16.9742; 8.1326; 9.9301
105.778; 100.6; 114.262
465.218Brandao, P.; Rocha, J.; Reis, M. S.; dos Santos, A. M.; Jin, R.
Magnetic properties of KNaMSi4O10 compounds (M=Mn,Fe,Cu)
Journal of Solid State Chemistry, 2009, 182, 253-258
9017517 CIFK Mn Na O10 Si4P -16.9851; 8.1825; 9.9747
105.7; 99.507; 114.577
473.339Brandao, P.; Rocha, J.; Reis, M. S.; dos Santos, A. M.; Jin, R.
Magnetic properties of KNaMSi4O10 compounds (M=Mn,Fe,Cu)
Journal of Solid State Chemistry, 2009, 182, 253-258
9017542 CIFAl0.5 Ca1.52 Fe0.3 Mg0.2 Na0.48 O7 Si2P -4 21 m7.7661; 7.7661; 5.0297
90; 90; 90
303.353Wiedenmann, D.; Zaitsev, A. N.; Britvin, S. N.; Krivovichev, S. V.; Keller, J.
Alumoakermanite, (Ca,Na)2(Al,Mg,Fe2+)(Si2O7), a new mineral from the active carbonatite-nephelinite-phonolite volcano Oldoinyo Lengai, northern Tanzania
Mineralogical Magazine, 2009, 73, 373-384
9017543 CIFAl6.32 As0.152 B O17.61 Sb0.238 Si2.61 Ta0.32P n m a4.6818; 11.867; 20.302
90; 90; 90
1127.96Groat, L. A.; Grew, E. S.; Evans, R. J.; Pieczka, A.; Ercit, T. S.
The crystal chemistry of holtite Sample: H1
Mineralogical Magazine, 2009, 73, 1033-1050
9017544 CIFAl6.39 As0.138 B O17.65 Sb0.21 Si2.65 Ta0.23P n m a4.6981; 11.926; 20.413
90; 90; 90
1143.73Groat, L. A.; Grew, E. S.; Evans, R. J.; Pieczka, A.; Ercit, T. S.
The crystal chemistry of holtite Sample: H2
Mineralogical Magazine, 2009, 73, 1033-1050
9017545 CIFAl6.374 As0.052 B O17.156 Sb0.792 Si2.156 Ta0.26P n m a4.69; 11.897; 20.385
90; 90; 90
1137.42Groat, L. A.; Grew, E. S.; Evans, R. J.; Pieczka, A.; Ercit, T. S.
The crystal chemistry of holtite Sample: H3
Mineralogical Magazine, 2009, 73, 1033-1050
9017546 CIFAl6.54 As0.22 B O17.186 Sb0.62 Si2.186 Ta0.11P n m a4.7264; 11.981; 20.566
90; 90; 90
1164.59Groat, L. A.; Grew, E. S.; Evans, R. J.; Pieczka, A.; Ercit, T. S.
The crystal chemistry of holtite Sample: H4
Mineralogical Magazine, 2009, 73, 1033-1050
9017851 CIFFe2 H12 O19.76 S3P 1 21/n 114.3125; 20.1235; 5.431
90; 96.8133; 90
1553.18Ackermann, S.; Lazic, B.; Armbruster, T.; Doyle, S.; Grevel, K. D.; Majzlan, J.
Thermodynamic and crystallographic properties of kornelite [Fe2(SO4)3*~7.75H2O] and paracoquimbite [Fe2(SO4)3*9H2O]
American Mineralogist, 2009, 94, 1620-1628

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