Crystallography Open Database

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9009350 CIFAl2 H18 Mn O18 P2P -15.257; 10.363; 7.04
105.44; 113.07; 78.69
338.294Leavens, P. B.; Rheingold, A. L.
Crystal structures of gordonite, MgAl2(PO4)2(OH)2(H2O)6*2H2O, and its Mn analog
Neues Jahrbuch fur Mineralogie, Monatshefte, 1988, 1988, 265-270
9009359 CIFAl0.54 Cu Fe5.46 H16 O28 P4P -17.653; 7.873; 10.19
67.57; 69.17; 64.93
500.076Giuseppetti, G.; Mazzi, F.; Tadini, C.
The crystal structure of chalcosiderite, CuFe3+6(PO4)4(OH)8*4H2O
Neues Jahrbuch fur Mineralogie, Monatshefte, 1989, 1989, 227-239
9009384 CIFAs2 Cl4 Fe H4 O8 Pb4P -16.53; 10.23; 5.588
96.4; 89.5; 97.8
367.523Giuseppetti, G.; Mazzi, F.; Tadini, C.
The crystal structure of nealite: Pb4Fe(AsO3)2Cl4*2H2O
Neues Jahrbuch fur Mineralogie, Monatshefte, 1993, 1993, 278-288
9009402 CIFC2 H6 Ca O7P -16.097; 7.145; 8.434
76.54; 70.3; 70.75
323.495Basso, R.; Lucchetti, G.; Zefiro, L.; Palenzona, A.
Caoxite, Ca(H2O)3(C2O4), a new mineral from the Cerchiara mine, northern Apennines, Italy
Neues Jahrbuch fur Mineralogie, Monatshefte, 1997, 1997, 84-96
9009472 CIFAl Ca16 H28 Na O82 Si23P -19.74; 9.74; 22.4
95.7; 91.5; 120
1824.13Merlino, S.
Gyrolite: its crystal structure and crystal chemistry Note: x-coordinate of O102 adjusted to match reported bond lengths Note: occupancies invented to match formula
Mineralogical Magazine, 1988, 52, 377-387
9009486 CIFCl4 F H3 O2 Pb3P -18.574; 8.045; 7.276
89.96; 102.05; 103.45
476.758Merlino, S.; Pasero, M.; Perchiazzi, N.
Fiedlerite: revised chemical formula [Pb3Cl4F(OH)*H2O], OD description and crystal structure refinement of the two MDO polytypes Note: 1A polytype
Mineralogical Magazine, 1994, 58, 69-78
9009516 CIFAl6 H16 O28 P4 Zn0.927P -17.419; 7.629; 9.905
69.17; 69.88; 64.98
462.236Kolitsch, U.; Giester, G.
The crystal structure of faustite and its copper analogue turquoise
Mineralogical Magazine, 2000, 64, 905-913
9009517 CIFAl3 Cu0.452 H8 O14 P2P -17.41; 7.633; 9.904
68.42; 69.65; 65.05
459.808Kolitsch, U.; Giester, G.
The crystal structure of faustite and its copper analogue turquoise
Mineralogical Magazine, 2000, 64, 905-913
9009519 CIFAs2 Cu0.4 Fe0.4 H4.4 O10 Pb Zn1.2P -15.55; 5.62; 7.621
68.59; 69.17; 69.51
200.104Effenberger, H.; Krause, W.; Bernhardt, H. J.; Martin, M.
On the symmetry of tsumcorite group minerals based on the new species rappoldite and zincgartrellite
Mineralogical Magazine, 2000, 64, 1109-1126
9009526 CIFC2 Ce2 Na2 O12 Si TiP -17.56; 13.957; 5.04
101.12; 70.87; 100.02
489.462Shumyatskaya, N. G.; Voronkov, A. A.; Ilyukhin, V. V.; Belov, N. V.
Tundrite, Na2Ce2TiO2[SiO4](CO3)2 - refinement of the crystal structure and chemical formula Note: y(O11) adjusted to match reported bond lengths
Soviet Physics Crystallography, 1976, 21, 399-405
9009533 CIFCa6 H2 O13 Si3P -16.85; 6.95; 12.9
90.75; 97.33; 98.25
602.506Ganiev, R. M.; Ilyukhin, V. V.; Belov, N. V.
Crystal structure of cement phase Y=Ca6[Si2O7][SiO4](OH)2
Doklady Akademii Nauk SSSR, 1970, 190, 831-834
9009538 CIFNa O7 Si2 ZrP -19; 5.34; 6.96
92; 116; 88
300.39Khalikov, A. D.; Khomyakov, A. P.; Makhmudov, S. A.
Crystal structure of keldyshite NaZr[Si2O6OH]
Doklady Akademii Nauk SSSR, 1978, 238, 573-575
9009553 CIFH O5 P Zn2P -15.5517; 5.7001; 6.4707
102.67; 102.81; 86.88
194.805Genkina, E. A.; Maksimov, B. A.; Mel'nikov, O. K.
Crystal structure of synthetic tarbutite Zn2[PO4](OH)
Doklady Akademii Nauk SSSR, 1985, 282, 314-317
9009568 CIFFe2 H2 O10 Te3P -17.9; 8; 7.62
96.73; 95; 84.47
474.636Pertlik, F.
Der strukturtyp von emmonsit, {Fe2[TeO3]3*H2O}*xH2O (x=0-1)
Tschermaks Mineralogische und Petrographische Mitteilungen, 1972, 18, 157-168
9009574 CIFAl2 H34 O28.4 S3P -17.425; 26.975; 6.0608
90.03; 97.66; 91.94
1202.38Menchetti, S.; Sabelli, C.
Alunogen. Its structure and twinning Locality: grotta dell'allume, Vulcano Island, Italy
Tschermaks Mineralogische und Petrographische Mitteilungen, 1974, 21, 164-178
9009596 CIFFe2 H14 Mn O16 P2P -110.228; 9.837; 7.284
90.17; 98.44; 117.44
641.284Fanfani, L.; Tomassini, M.; Zanazzi, P. F.; Zanzari, A. R.
The crystal structure of strunzite, a contribution to the crystal chemistry of basic ferric-manganous hydrated phosphates
Tschermaks Mineralogische und Petrographische Mitteilungen, 1978, 25, 77-87
9009603 CIFAs2 H4 O10 Zn3P -16.71; 8.989; 14.533
105.59; 93.44; 108.68
789.532Riffel, H.; Keller, P.; Hess, H.
Die kristallstruktur von warikahnit, Zn3[(H2O)2|(AsO4)2]
Tschermaks Mineralogische und Petrographische Mitteilungen, 1980, 27, 187-199
9009607 CIFCu H18 O22 S2 U2P -18.903; 9.499; 6.812
109.87; 112.01; 100.4
469.944Mereiter, K.
Die kristallstruktur des johannits, Cu(UO2)2(OH)2(SO4)2*8H2O
Tschermaks Mineralogische und Petrographische Mitteilungen, 1982, 30, 47-57
9009609 CIFAs2 Bi4 H4 O16 UP -17.135; 10.426; 5.494
101.47; 110.82; 88.2
374.036Mereiter, K.
The crystal structure of walpurgite,(UO2)Bi4O4(AsO4)2*2H2O
Tschermaks Mineralogische und Petrographische Mitteilungen, 1982, 30, 129-139
9009616 CIFK2 O15 Si6 TiP -17.25; 7.474; 6.909
105.59; 112.81; 99.28
317.198Gebert, W.; Medenbach, O.; Florke, O. W.
Darstellung und kristallographie von K2TiSi6O15 - isotyp mit dalyit K2ZrSi6O15 Locality: synthetic
Tschermaks Mineralogische und Petrographische Mitteilungen, 1983, 31, 69-79
9009623 CIFCa4.567 F2.6 Fe0.167 H0.4 Mn0.167 Na1.6 O15.4 Si4 Ti0.167 Zr1.333P -111.0149; 10.9409; 7.3534
109.35; 109.879; 83.434
786.298Merlino, S.; Perchiazzi, N.
The crystal structure of hiortdahlite I
Tschermaks Mineralogische und Petrographische Mitteilungen, 1985, 34, 297-310
9009624 CIFC3 H20 Ca3 F Na O25 S UP -19.634; 9.635; 14.391
91.41; 92.33; 120.26
1151.29Mereiter, K.
Crystal structure and crystallographic properties of a schrockingerite from Joachimsthal Locality: Joachimsthal, Czech Republic
Tschermaks Mineralogische und Petrographische Mitteilungen, 1986, 35, 1-18
9009649 CIFAl1.5 Cu10 H12 K0.5 O48 Si14.5P -113.634; 13.687; 14.522
110.833; 107.208; 105.68
2195.01Pluth, J. J.; Smith, J. V.
Arizona porphyry copper/hydrothermal deposits II: Crystal structure of ajoite, (K+Na)3Cu20Al3Si29O76(OH)16*~8H2O
Proceedings of the National Academy of Sciences of the United States of America, 2002, 99, 11002-11005
9009704 CIFAs2 Ca2 Co0.35 H1.02 Mg0.65 O10P -15.874; 6.943; 5.537
97.3; 108.7; 108.1
196.762Catti M; Ferraris G; Ivaldi G
Hydrogen bonding in the crystalline state. Structure of talmessite, Ca2(Mg,Co)(AsO4)2*2H2O, and crystal chemistry of related minerals Locality: Bou-Azzer, Morocco
Bulletin de Mineralogie, 1977, 100, 230-236
9009706 CIFCa2 Fe H8 O12 P2P -16.447; 6.816; 5.898
101.64; 104.24; 70.76
235.108Catti, M.; Ferraris, G.; Ivaldi, G.
Refinement of the crystal structure of anapaite, Ca2Fe(PO4)2*4H2O: hydrogen bonding and relationships with the bihydrated phase
Bulletin de Mineralogie, 1979, 102, 314-318
9009707 CIFAs2 Ca H6 Mn O10P -18.459; 7.613; 6.968
82.21; 98.25; 95.86
438.42Catti, M.; Chiari, G.; Ferraris, G.
Fluckite, CaMn(HAsO4)2*2H2O, a structure related by pseudo-polytypism to krautite MnHAsO4*H2O Locality: Sainte Marie-aux-Mines, Alsace, France
Bulletin de Mineralogie, 1980, 103, 129-134
9009708 CIFAs4 Ca5 H15.16 O25P -18.294; 6.722; 11.198
106.16; 92.94; 99.2
588.904Catti, M.; Chiari, G.; Ferraris, G.
The structure of ferrarisite, Ca5(HAsO4)2(AsO4)2*9H2O: disorder, hydrogen bonding, and polymorphism with guerinite Locality: Sainte Marie-aux-Mines, Alsace, France
Bulletin de Mineralogie, 1980, 103, 541-546
9009718 CIFAl H35 O52 P4 Th U7P -110.953; 18.567; 13.504
72.64; 68.2; 84.21
2433.54Piret, P.; Deliens, M.
Les phosphates d'uranyle et d'aluminium de Kobokobo IX. L'althupite AlTh(UO2)[(UO2)3O(OH)PO4)2]2(OH)3*15H2O, nouveau mineral; proprietes et structure cristalline Note: Sample is form Kobokobo, Kivu, Zaire
Bulletin de Mineralogie, 1987, 110, 65-72
9009726 CIFFe0.2 Mn9 O28 Sb2 Si3.8 Zn6P -15.544; 11.683; 9.134
92.06; 101.19; 76.34
563.921Kato, T.
The crystal structure of yeatmanite
Mineralogical Journal, 1986, 13, 53-64
9009777 CIFBi4 O7P -16.7253; 6.995; 7.7961
72.566; 88.842; 76.925
340.39Dinnebier, R. E.; Ibberson, R. M.; Ehrenberg, H.; Jansen, M.
The crystal structures of the binary valence compound Bi3BiO7 and isotypic Bi3SbO7 as determined by high resolution X-ray and neutron powder diffraction
Journal of Solid State Chemistry, 2002, 163, 332-339
9009778 CIFBi3 O7 SbP -16.6044; 7.0146; 7.6048
73.388; 89.225; 76.19
327.278Dinnebier, R. E.; Ibberson, R. M.; Ehrenberg, H.; Jansen, M.
The crystal structures of the binary valence compound Bi3BiO7 and isotypic Bi3SbO7 as determined by high resolution X-ray and neutron powder diffraction
Journal of Solid State Chemistry, 2002, 163, 332-339
9009826 CIFCa4.74 F2.5 Na1.38 O15.5 Si4 Y0.88 ZrP -111.012; 10.342; 7.359
89.92; 109.21; 90.06
791.421Merlino, S.; Perchiazzi, N.
The crystal structure of hiortdahlite II Note: this is a polytype of Hiortdahlite I
Mineralogy and Petrology, 1987, 37, 25-35
9009828 CIFAl Fe0.5 H13.5 O9 PP -15.19; 10.419; 7.033
105; 111.31; 70.87
330.494Hawthorne, F. C.
Sigloite: The oxidation mechanism in [M2(PO4)2(OH)2(H21O)2] structures
Mineralogy and Petrology, 1988, 38, 201-211
9009843 CIFAs2 Cl4 Fe H4 O8 Pb4P -16.548; 10.243; 5.587
96.2; 89.6; 97.7
369.165Pertlik, F.; Schnorrer, G.
A re-appraisal of the chemical formula of nealite, Pb4Fe(AsO3)2Cl4*2H2O, on the basis of a crystal structure determination
Mineralogy and Petrology, 1993, 48, 193-200
9009927 CIFCa2 H4 Mg O10 P2P -15.7344; 6.78; 5.4413
97.29; 108.56; 107.28
185.681Brotherton, P. D.; Maslen, E. N.; Pryce, M. W.; White, A. H.
Crystal structure of collinsite
Australian Journal of Chemistry, 1974, 27, 653-656
9009949 CIFAl1.8 B Ca1.65 Fe0.2 H0.5 Mg0.1 Mn1.2 O16 Si4P -17.162; 9.207; 8.972
91.84; 98.16; 77.34
571.39Belokoneva E L; Pletnev P A; Spiridonov E M
Crystal structure of low-manganese tinzenite (severginite) Note: O2 position not included in the paper, so we deduced it from the reported bondlengths Locality: Tungatarovskoe manganese deposit, Izhevsk, Udmurt Republic, Russia
Crystallography Reports, 1997, 42, 934-937
9009953 CIFAl1.88 B Ca1.42 Fe0.21 H0.5 Mg0.03 Mn1.46 O16 Si4P -17.154; 9.126; 8.949
91.88; 98.8; 77.05
562.694Belokoneva E L; Goryunova A N; Pletnev P A; Spiridonov E M
Crystal structure of high-manganese tinzenite from the Falotta deposit in Switzerland
Crystallography Reports, 2001, 46, 30-32
9010026 CIFCa1.02 H10 O15 V4P -16.36; 18.09; 6.276
110.18; 101.62; 82.86
662.672Konnert, J. A.; Evans, H. T.
Crystal structure and crystal chemistry of melanovanadite, a natural vanadium bronze Locality: Minas Ragra, Cerro de Pasco, Peru
American Mineralogist, 1987, 72, 637-644
9010047 CIFFe2 O9 Si3P -122.2; 22.2; 17.835
125.03; 95.98; 120
5199.1Guggenheim, S.; Eggleton, R. A.
Stilpnomelane and parsettensite: A distance least squares (DLS) study
American Mineralogist, 1994, 79, 438-442
9010049 CIFCa1.71 Fe0.68 H Mn0.32 Na0.25 O15 Sc0.91 Si5 Sn0.04P -17.536; 11.734; 6.748
91.7; 93.86; 104.53
575.643Orlandi, P.; Pasero, M.; Vezzalini, G.
Scandiobabingtonite, a new mineral from the Baveno pegmatite, Piedmont, Italy
American Mineralogist, 1998, 83, 1330-1334
9010242 CIFC H K O3P -16.1443; 5.2974; 4.2133
95.109; 100.743; 108.934
125.784Allan, D. R.; Marshall, W. G.; Pulham, C. R.
The high-pressure crystal structure of potassium hydrogen carbonate (KHCO3) Sample: P = 5.5 GPa
American Mineralogist, 2007, 92, 1018-1025
9010251 CIFC D K O3P -16.3043; 5.3587; 4.2501
95.132; 101.113; 109.326
131.116Allan, D. R.; Marshall, W. G.; Pulham, C. R.
The high-pressure crystal structure of potassium hydrogen carbonate (KHCO3) Sample: P = 3.45 GPa
American Mineralogist, 2007, 92, 1018-1025
9010252 CIFC D K O3P -16.2435; 5.3363; 4.2448
95.216; 100.935; 109.167
129.358Allan, D. R.; Marshall, W. G.; Pulham, C. R.
The high-pressure crystal structure of potassium hydrogen carbonate (KHCO3) Sample: P = 4.10 GPa
American Mineralogist, 2007, 92, 1018-1025
9010253 CIFC D K O3P -16.1858; 5.3147; 4.233
95.253; 100.793; 109.016
127.485Allan, D. R.; Marshall, W. G.; Pulham, C. R.
The high-pressure crystal structure of potassium hydrogen carbonate (KHCO3) Sample: P = 4.77 GPa
American Mineralogist, 2007, 92, 1018-1025
9010254 CIFC D K O3P -16.1393; 5.2958; 4.2228
95.297; 100.665; 108.892
125.931Allan, D. R.; Marshall, W. G.; Pulham, C. R.
The high-pressure crystal structure of potassium hydrogen carbonate (KHCO3) Sample: P = 5.38 GPa
American Mineralogist, 2007, 92, 1018-1025
9010255 CIFC D K O3P -16.0938; 5.2765; 4.2139
95.306; 100.539; 108.786
124.432Allan, D. R.; Marshall, W. G.; Pulham, C. R.
The high-pressure crystal structure of potassium hydrogen carbonate (KHCO3) Sample: P = 6.02 GPa
American Mineralogist, 2007, 92, 1018-1025
9010256 CIFC D K O3P -16.0564; 5.261; 4.2047
95.293; 100.438; 108.689
123.174Allan, D. R.; Marshall, W. G.; Pulham, C. R.
The high-pressure crystal structure of potassium hydrogen carbonate (KHCO3) Sample: P = 6.57 GPa
American Mineralogist, 2007, 92, 1018-1025
9010257 CIFC D K O3P -16.0237; 5.2476; 4.1958
95.292; 100.348; 108.578
122.074Allan, D. R.; Marshall, W. G.; Pulham, C. R.
The high-pressure crystal structure of potassium hydrogen carbonate (KHCO3) Sample: P = 7.18 GPa
American Mineralogist, 2007, 92, 1018-1025
9010258 CIFC D K O3P -15.9935; 5.2346; 4.1889
95.298; 100.273; 108.498
121.061Allan, D. R.; Marshall, W. G.; Pulham, C. R.
The high-pressure crystal structure of potassium hydrogen carbonate (KHCO3) Sample: P = 7.61 GPa
American Mineralogist, 2007, 92, 1018-1025
9010259 CIFC D K O3P -15.9577; 5.2189; 4.1792
95.306; 100.155; 108.412
119.822Allan, D. R.; Marshall, W. G.; Pulham, C. R.
The high-pressure crystal structure of potassium hydrogen carbonate (KHCO3) Sample: P = 8.30 GPa
American Mineralogist, 2007, 92, 1018-1025
9010368 CIFBe4 Ca2 Fe0.52 H16 Li0.17 Mg0.05 Mn4.14 O34 P6P -16.788; 9.972; 10.014
73.84; 85.34; 87.44
648.74Atencio, D.; Matioli, P. A.; Smith, J. B.; Chukanov, N. V.; Coutinho, J. M. V.; Rastsvetaeva, R. K.; Mockel, S.
Footemineite, the Mn-analog of atencioite, from the Foote mine, Kings Mountain, Cleveland County, North Carolina, U.S.A., and its relationship with other roscherite-group minerals Locality: Foote mine, Kings Mountain, Cleveland County, North Carolina, USA
American Mineralogist, 2008, 93, 1-6
9010494 CIFAl3 Ca0.982 H14 K1.14 O17.11 Si3P -19.248; 9.259; 9.533
92.313; 92.761; 89.981
814.671Fischer, R. X.; Kahlenberg, V.; Lengauer, C. L.; Tillmanns, E.
Thermal behavior and structural transformation in the chabazite-type zeolite willhendersonite, KCaAl3Si3O12*5H2O Note: Room temperature
American Mineralogist, 2008, 93, 1317-1325
9010495 CIFAl3 Ca0.987 H4.68 K1.537 O15.82 Si3P -19.205; 9.231; 9.442
92.55; 93.086; 90.519
800.29Fischer, R. X.; Kahlenberg, V.; Lengauer, C. L.; Tillmanns, E.
Thermal behavior and structural transformation in the chabazite-type zeolite willhendersonite, KCaAl3Si3O12*5H2O Note: T = 373K
American Mineralogist, 2008, 93, 1317-1325
9010566 CIFBa2 Fe0.22 H Mn2 O13 P0.46 S0.34 Si2.17 Ti0.78P -16.999; 14.748; 5.386
93.62; 89.98; 95.5
552.277McDonald, A. M.; Grice, J. D.; Chao, G. Y.
The crystal structure of yoshimuraite, a layered Ba-Mn-Ti silicophosphate, with comments on five-coordinated Ti
The Canadian Mineralogist, 2000, 38, 649-656
9010590 CIFAl1.984 B Ca2 Fe0.958 H Mg0.059 O16 Si4P -17.152; 9.206; 8.962
91.84; 98.17; 77.33
569.858Filip, J.; Kolitsch, U.; Novak, M.; Schneeweiss, O.
The crystal structure of near-end-member ferroaxinite from an iron-contaminated pegmatite at Malesov, Czech Republic Locality: Malesov, Czech Republic
The Canadian Mineralogist, 2006, 44, 1159-1170
9010597 CIFCa2 Fe0.06 H4 Mg0.92 Mn0.01 O10 P2P -15.729; 6.778; 5.444
97.31; 108.56; 107.25
185.565Herwig, S.; Hawthorne, F. C.
The topology of hydrogen bonding in brandtite, collinsite and fairfieldite
The Canadian Mineralogist, 2006, 44, 1181-1196
9010598 CIFCa2 Fe0.23 H4 Mg0.01 Mn0.73 O10 P2P -15.795; 6.576; 5.496
102.39; 108.63; 90.29
193.23Herwig, S.; Hawthorne, F. C.
The topology of hydrogen bonding in brandtite, collinsite and fairfieldite
The Canadian Mineralogist, 2006, 44, 1181-1196
9010600 CIFD42 Fe4.633 O46 S6P -17.3926; 18.3806; 7.3361
93.933; 102.212; 98.9
957.232Majzlan, J.; Kiefer, B.
An X-ray and neutron-diffraction study of synthetic ferricopiapite, Fe14/3(SO4)6(OD,OH)2(D2O,H2O)20, and ab-initio calculations on the structure of magnesiocopiapite MgFe4(SO4)6(OH)2(H2O)20 Locality: synthetic
The Canadian Mineralogist, 2006, 44, 1227-1237
9010601 CIFFe4 H42 Mg O46 S6P -17.5515; 18.601; 7.446
95.49; 102.71; 98.71
999.446Majzlan, J.; Kiefer, B.
An X-ray and neutron-diffraction study of synthetic ferricopiapite, Fe14/3(SO4)6(OD,OH)2(D2O,H2O)20, and ab-initio calculations on the structure of magnesiocopiapite MgFe4(SO4)6(OH)2(H2O)20 Note: hypothetical structure from ab-initio calculations
The Canadian Mineralogist, 2006, 44, 1227-1237
9010606 CIFCa1.62 Cs0.9 Fe0.06 H K1.08 Mn0.3 Na Nb0.04 O20 Si7 Ti0.93P -110.4191; 12.2408; 7.0569
90.857; 99.193; 91.895
887.791Uvarova, Y. A.; Sokolova, E.; Hawthorne, F. C.; Agakhanov, A. A.; Pautov, L. A.; Karpenko, V. Y.
The crystal chemistry of senkevichite, CsKNaCa2TiO[Si7O18(OH)], from the Dara-I-Pioz alkaline massif, northern Tajikistan
The Canadian Mineralogist, 2006, 44, 1341-1348
9010612 CIFCl Pb21.994 S60 Sb26.006P -18.276; 17.392; 19.505
83.527; 77.882; 89.215
2727.27Makovicky, E.; Topa, D.; Mumme, W. G.
The crystal structure of dadsonite Sample: 8-angstrom structure
The Canadian Mineralogist, 2006, 44, 1499-1512
9010613 CIFCl0.5 Pb10.57 S30 Sb13.43P -14.1382; 17.394; 19.071
96.442; 90.113; 90.775
1363.93Makovicky, E.; Topa, D.; Mumme, W. G.
The crystal structure of dadsonite Sample: 4-angstrom structure
The Canadian Mineralogist, 2006, 44, 1499-1512
9010637 CIFB2.84 Ca4.58 F2 H5.96 Na9.34 O44 Si13.16P -19.5437; 9.5349; 14.0268
108.943; 74.154; 119.78
1038.08McDonald, A. M.; Chao, G. Y.
Martinite, a new hydrated sodium calcium fluorborosilicate species from Mont Saint-Hilaire, Quebec: description, structure determination and genetic implications Note: changed F(y) to match reported bond distances Locality: Poudrette quarry, Mont Saint-Hilaire, Rouville County, Quebec, Canada
The Canadian Mineralogist, 2007, 45, 1281-1292
9010641 CIFBa0.04 Ca6.16 F1.63 K1.93 Li6 Na2.39 O66.37 Rb0.03 Si24 Sr0.17 Ti4P -19.8156; 9.8249; 17.3087
99.209; 94.67; 119.839
1403.74Uvarova Yu, A.; Sokolova, E.; Hawthorne, F. C.; Agakhanov, A. A.; Pautov, L. A.
The crystal chemistry of faizievite, K2Li6Na(Ca6Na)Ti4[Si6O18]2[Si12O30]F2, a novel structure based on intercalated blocks of the baratovite and berezanskite structures Locality: Dara-i-Poiz glacier, Alai mountain ridge, Tien-Shan Mountains, Tajikistan
The Canadian Mineralogist, 2008, 46, 163-171
9010663 CIFC2 H0.25 Ca0.039 Ce1.03 La0.621 Na1.906 Nb0.109 Nd0.229 O12.11 Pr0.081 Si Sm0.014 Ti0.875P -17.576; 13.9252; 5.029
99.981; 70.791; 100.947
488.363Grice, J. D.; Rowe, R.; Poirier, G.; Wight, Q.
Tundrite-(Ce) from Mount Saint-Hilaire, Quebec: Crystal-structure analysis and species characterization
The Canadian Mineralogist, 2008, 46, 413-422
9010668 CIFAl0.152 Ca0.29 Cs0.09 F Fe5.64 H4 K0.75 Li1.14 Mg0.04 Mn0.9 Na0.8 Nb0.24 O30 Pb0.02 Si7.848 Sn0.09 Ta0.04 Ti1.56 Zn0.04 Zr0.16P -15.3745; 11.9299; 11.6509
113.325; 94.524; 103.08
656.214Uvarova, Y. A.; Sokolova, E.; Hawthorne, F. C.; Agakhanov, A. A.; Pautov, L. A.
The crystal structure of nalivkinite, a new lithium member of the astrophyllite group Locality: Tien-Shan Mountains, northern Tajikistan
The Canadian Mineralogist, 2008, 46, 651-659
9010675 CIFFe3 H9 O14 P2 PbP -15.309; 7.211; 7.349
87.74; 86.38; 71.4
266.061Kolitsch, U.; Bernhardt, H.-J.; Krause, W.; Blass, G.
Pattersonite, PbFe3(PO4)2(OH)4[(H2O)0.5(OH)0.5]2, a new supergene phosphate mineral: description and crystal structure
European Journal of Mineralogy, 2008, 20, 281-288
9010745 CIFAg Cr2 H4 O10 ScP -15.586; 6.054; 7.432
110.74; 90.21; 117.34
204.564Kolitsch, U.; Fleck, M.
Third update on compounds with krohnkite-type chains: the crystal structure of wendwilsonite [Ca2Mg(AsO4)2*2H2O] and the new triclinic structure types of synthetic AgSc(CrO4)2*2H2O and M2Cu(Cr2O7)2*2H2O (M = Rb, Cs) Locality: synthetic
European Journal of Mineralogy, 2006, 18, 471-482
9010746 CIFCr4 Cu H4 O16 Rb2P -17.272; 7.648; 7.772
91.89; 99.72; 115.79
380.839Kolitsch, U.; Fleck, M.
Third update on compounds with krohnkite-type chains: the crystal structure of wendwilsonite [Ca2Mg(AsO4)2*2H2O] and the new triclinic structure types of synthetic AgSc(CrO4)2*2H2O and M2Cu(Cr2O7)2*2H2O (M = Rb, Cs) Locality: synthetic
European Journal of Mineralogy, 2006, 18, 471-482
9010747 CIFCr4 Cs2 Cu H4 O16P -17.462; 7.819; 7.847
93.19; 99.57; 116.34
400.23Kolitsch, U.; Fleck, M.
Third update on compounds with krohnkite-type chains: the crystal structure of wendwilsonite [Ca2Mg(AsO4)2*2H2O] and the new triclinic structure types of synthetic AgSc(CrO4)2*2H2O and M2Cu(Cr2O7)2*2H2O (M = Rb, Cs) Locality: synthetic
European Journal of Mineralogy, 2006, 18, 471-482
9010962 CIFD22 Mg O15 SP -16.7508; 6.8146; 17.2924
88.118; 89.481; 62.6891
706.446Fortes, A. D.; Wood, I. G.; Knight, K. S.
The crystal structure and thermal expansion tensor of MgSO4-11D2O (meridianiite) determined by neutron powder diffraction Locality: synthetic Sample: T = 250 K
Physics and Chemistry of Minerals, 2008, 35, 207-221
9010963 CIFD22 Mg O15 SP -16.7275; 6.7814; 17.318
88.206; 89.447; 62.608
701.142Fortes, A. D.; Wood, I. G.; Knight, K. S.
The crystal structure and thermal expansion tensor of MgSO4-11D2O (meridianiite) determined by neutron powder diffraction Locality: synthetic Sample: T = 4.2 K
Physics and Chemistry of Minerals, 2008, 35, 207-221
9010975 CIFCl H11 Mg2 O7P -18.65; 6.27; 7.43
101.97; 104; 73.18
370.154de Wolff, P. M.; Walter-Levy L
The crystal structure of Mg2(OH)3(Cl,Br)*4H2O
Acta Crystallographica, 1953, 6, 40-44
9011043 CIFCa4 H2 O11 Si3P -110.32; 7.36; 7.04
90; 106.4; 90
512.969Gard, J. A.; Taylor, H. F. W.
The crystal structure of foshagite
Acta Crystallographica, 1960, 13, 785-793
9011046 CIFAs9 Pb5 S18P -122.78; 8.33; 7.9
90; 97.4; 90
1486.6Le Bihan, M. T.
Contribution a l'etude structurale des sulfures d'arsenic et de plomb. Structure de la baumhauerite
Acta Crystallographica, 1961, 14, 1210-1211
9011099 CIFCl Fe2 O12 Te4P -18.89; 5.08; 6.63
103.17; 107.08; 77.87
275.366Dusausoy, Y.; Protas, J.
Determination et etude de la structure cristalline de la rodalquilarite, chlorotellurite acide de fer
Acta Crystallographica, Section B, 1969, 25, 1551-1558
9011147 CIFH9 N Na O8 PP -110.636; 6.9187; 6.4359
90.46; 97.87; 109.2
442.331Ferraris, G.; Franchini-Angela M
Hydrogen bonding in the crystalline state. Crystal structure and twinning of NaNH4HPO4*4H2O (Stercorite)
Acta Crystallographica, Section B, 1974, 30, 504-510
9011168 CIFH28 Mg3 N2 O24 P4P -110.728; 7.67; 6.702
97.87; 96.97; 104.74
521.225Catti, M.; Franchini-Angela M
Hydrogen bonding in the crystalline state. Structure of Mg3(NH4)2(HPO4)4*8H2O (hannayite), and crystal-chemical relationships with schertelite and struvite
Acta Crystallographica, Section B, 1976, 32, 2842-2848
9011201 CIFAl7.76 Ca3.44 Na0.56 O32 Si8.24P -18.183; 12.883; 14.186
93.38; 115.87; 90.82
1341.96Facchinelli, A.; Bruno, E.; Chiari, G.
The structure of bytownite quenched from 1723 K Locality: satellite dyke, Traversella stock, Sesia Lanzo zone, Western Alps, Italy Sample: BytQ, P-1 model
Acta Crystallographica, Section B, 1979, 35, 34-42
9011208 CIFO21 S6 Sb2P -16.644; 12.39; 9.678
92.69; 82.29; 96.88
783.412Douglade, J.; Mercier, R.
Structure cristalline du disulfate d'antimoine(III) Sb2(S2O7)3
Acta Crystallographica, Section B, 1979, 35, 1062-1067
9011215 CIFC4 H4 Cu Na2 O10P -13.583; 9.649; 7.549
109.07; 76.38; 103.32
236.358Chananont, P.; Nixon, P. E.; Waters, J. M.; Water, T. N.
The structure of disodium catena-bis(mu-oxalato)-cuprate(II) dihydrate
Acta Crystallographica, Section B, 1980, 36, 2145-2147
9011233 CIFCu3 O8 V2P -15.196; 5.355; 6.505
69.22; 88.69; 68.08
155.733Coing-Boyat J
Structure de la variete ordinaire, triclinique, de l'orthovanadate de cuivre(II), Cu3(VO4)2
Acta Crystallographica, Section B, 1982, 38, 1546-1548
9011239 CIFAs2 Ca3 H22 O19P -112.563; 12.181; 6.205
88.94; 91.67; 113.44
870.796Catti, M.; Ivaldi, G.
On the topotactic dehydration Ca3(AsO4)2*11H2O (phaunouxite) -> Ca3(AsO4)2*10H2O (rauenthalite), and the structures of both minerals
Acta Crystallographica, Section B, 1983, 39, 4-10
9011240 CIFAs2 Ca3 H20 O18P -112.564; 12.169; 6.195
89.09; 79.69; 118.58
812.654Catti, M.; Ivaldi, G.
On the topotactic dehydration Ca3(AsO4)2*11H2O (phaunouxite) -> Ca3(AsO4)2*10H2O (rauenthalite), and the structures of both minerals
Acta Crystallographica, Section B, 1983, 39, 4-10
9011254 CIFC12 Cl3 Cr2 F2 N8 O14P -110.71; 9.047; 8.785
111.25; 100.44; 86.6
780.18Marsh, R. E.; Herbstein, F. H.
More space-group changes
Acta Crystallographica, Section B: Structural Science, 1988, 44, 77-88
9011342 CIFCu5 H10 O30 Pb2 Se6 U2P -111.955; 10.039; 5.639
89.78; 100.36; 91.34
665.556Ginderow, D.; Cesbron, F.
Structure de la demesmaekerite,Pb2Cu5(SeO3)6(UO2)2(OH)6*2H2O Locality: Musoni, Kolwezi, Shaba, Zaire Note: anisoB's from ICSD
Acta Crystallographica, Section C, 1983, 39, 824-827
9011354 CIFC2 H10 Cu2 O20 U3P -17.767; 6.924; 7.85
92.16; 90.89; 93.48
421.018Ginderow, D.; Cesbron, F.
Structure de la roubaultite, Cu2(UO2)3(CO3)2O2(OH)2(H2O)4 Note: anisoB's from ICSD
Acta Crystallographica, Section C, 1985, 41, 654-657
9011390 CIFH54.684 Mg3 O56 V10P -110.4834; 10.7309; 21.2293
90.751; 97.866; 103.663
2296.24Iida, A.; Ozeki, T.
Mg2Na2V10O28*20H2O and Mg3V10O28*28H2O
Acta Crystallographica, Section C, 2004, 60, i43-i46
9011397 CIFFe2.75 Na O10 Si3P -110.3355; 10.7847; 8.9142
105.048; 96.461; 125.302
738.372Burt, J. B.; Downs, R. T.; Costin, G.
Single-crystal X-ray refinement of wilkinsonite, Na2Fe2+4Fe3+2Si6O20.
Acta Crystallographica, Section E, 2007, 63, i122-i124
9011430 CIFAl8.05 Fe1.05 Mg3.15 O20 Si1.75P -19.97; 10.34; 8.62
107.4; 95.2; 123.8
666.618Merlino, S.
Crystal structure of sapphirine-1Tc Note: polytype sapphirine-1Tc
Zeitschrift fur Kristallographie, 1980, 151, 91-100
9011508 CIFCu2 H14 O18 S2 Zn3P -15.4143; 6.336; 10.47
94.32; 90.06; 90.27
358.149Adiwidjaja, G.; Friese, K.; Klaska, K. H.; Schluter, J.
The crystal structure of christelite Zn3Cu2(SO4)2(OH)6*4(H2O) Note: anisoU's from ICSD
Zeitschrift fur Kristallographie, 1996, 211, 518-521
9011512 CIFAl H3 O3P -14.9997; 5.1681; 4.9832
97.444; 118.688; 104.661
104.386Clark, G. R.; Rodgers, K. A.; Henderson, G. S.
The crystal chemistry of doyleite, Al(OH)~3~
Zeitschrift f"ur Kristallographie, 1998, 213, 96-100
9011519 CIFAl2 H18 Mn O18 P2P -110.205; 10.504; 7.01
90.38; 110.1; 71.82
666.159Adiwidjaja, G.; Friese, K.; Klaska, K. H.; Schluter, J.
The crystal structure of kastningite (Mn,Fe,Mg)(H2O)4[Al2(OH)2(H2O)2(PO4)2]*2H2O - a new hydroxyl aquated orthophosphate hydrate mineral Locality: Waidhaus, Bavaria, Germany Note: changed sign of Oh1(y)
Zeitschrift fur Kristallographie, 1999, 214, 465-468
9011528 CIFCr2 H4 K2 Mg O10P -15.674; 6.462; 7.517
110.38; 95.24; 109.86
236.026Fleck, M.; Kolitsch, U.
Natural and synthetic compounds with krohnkite-type chains. An update
Zeitschrift fur Kristallographie, 2003, 218, 553-567
9011529 CIFH4 K2 Mg Mo2 O10P -15.884; 6.491; 7.7
111.67; 96.59; 108.62
249.795Fleck, M.; Kolitsch, U.
Natural and synthetic compounds with krohnkite-type chains. An update
Zeitschrift fur Kristallographie, 2003, 218, 553-567
9011530 CIFH4 K2 Mn O10 Se2P -15.674; 6.608; 7.523
110.31; 95.69; 108.35
244.099Fleck, M.; Kolitsch, U.
Natural and synthetic compounds with krohnkite-type chains. An update
Zeitschrift fur Kristallographie, 2003, 218, 553-567
9011531 CIFCa2 Fe0.89 H4 Mg0.11 O10 P2P -15.48; 5.759; 6.569
90.18; 102.62; 108.45
191.32Fleck, M.; Kolitsch, U.
Natural and synthetic compounds with krohnkite-type chains. An update
Zeitschrift fur Kristallographie, 2003, 218, 553-567
9011532 CIFCr4 H4 K2 O16 ZnP -16.794; 7.735; 7.834
88.97; 80.9; 64.57
366.545Fleck, M.; Kolitsch, U.
Natural and synthetic compounds with krohnkite-type chains. An update
Zeitschrift fur Kristallographie, 2003, 218, 553-567
9011533 CIFCa O3 SiP -16.596; 9.223; 6.554
83.75; 77.28; 70.07
365.385Joswig, W.; Paulus, E. F.; Winkler, B.; Milman, V.
The crystal structure of CaSiO3-walstromite, a special isomorph of wollastonite-II
Zeitschrift fur Kristallographie, 2003, 218, 811-818
9011795 CIFFe2 H16 O17 S2P -19.148; 10.922; 7.183
90.29; 90.79; 107.36
684.897Scordari, F.
The crystal structure of hohmannite, Fe2(H2O)4[(SO4)2O]*4H2O and its relationship to amaranite, Fe2(H2O)4[(SO4)2O]*3H2O Locality: synthetic
Mineralogical Magazine, 1978, 42, 144-146
9011815 CIFAs2 Co H4 Ni0.64 O10 Pb Zn0.36P -15.595; 5.572; 7.593
70.19; 70.41; 69.23
201.911Effenberger, H.; Krause, W.; Bernhardt, H. J.; Martin, M.
On the symmetry of tsumcorite group minerals based on the new species rappoldite and zincgartrellite
Mineralogical Magazine, 2000, 64, 1109-1126
9011841 CIFCa2 Fe H8 O12 P2P -16.39; 6.86; 5.89
101; 104; 71
235.099Rumanova, I. M.; Znamenskaya, M. N.
The crystal structure of anapaite
Soviet Physics Crystallography, 1961, 5, 650-658
9011845 CIFCa7 F4 Mn Na5 O32 Si8 Ti Zr2P -110.12; 11.39; 7.27
91.33; 99.67; 111.83
763.478Shibaeva, R. P.; Simonov, V. I.; Belov, N. V.
Crystal structure of the Ca,Na,Zr,Ti silicate rosenbuschite, Ca3.5Na2.5Zr(Ti,Mn,Nb)[Si2O7]2F2O(F,O) Locality: Kol'skii Peninsula, Russia
Soviet Physics Crystallography, 1963, 8, 406-413
9011853 CIFCa6 Na O18 Si4 TiP -19.667; 5.731; 7.334
90; 101.05; 101.31
390.74Cannillo, E.; Mazzi, F.; Rossi, G.
Crystal structure of gotzenite
Soviet Physics Crystallography, 1972, 16, 1026-1030
9011863 CIFH3 Na7 O26 P2 Si4 Ti4P -15.34; 14.26; 14.229
102.55; 105.87; 89.1
1016.21Rastsvetaeva, R. K.; Sirota, M. I.; Belov, N. V.
Crystal structure of betalomonosovite
Soviet Physics Crystallography, 1975, 20, 158-160
9011868 CIFB2 Ca H10 O9P -17.845; 6.525; 8.124
111.62; 111.19; 73.44
354.887Kazanskaya, E. V.; Chemodina, T. N.; Egorov-Tismenko Y K; Simonov, M. A.; Belov, N. V.
Refined crystal structure of pentahydroborite Ca(B2O(OH)6)*(H2O)2
Soviet Physics Crystallography, 1977, 22, 35-36
9011891 CIFFe K Na O10 Si4P -16.98; 8.24; 9.98
114.2; 80.23; 115.6
472.143Golovachev, V. P.; Drozdov, Y. N.; Kuz'min, E. A.; Belov, N. V.
The crystal structure of phenaxite FeNaK(Si4O10)(KNaFe[Si4O10])
Soviet Physics Doklady, 1971, 15, 902-904
9011895 CIFNa5 O13 P Si2 Ti2P -15.49; 7.11; 14.5
101; 96; 90
552.434Belov, N. V.; Gavrilova, G. S.; Solov'eva, L. P.; Khalilov, A. D.
The refined structure of lomonosovite
Soviet Physics Doklady, 1977, 22, 422-424
9011921 CIFB2 Ca H8 O8P -17.8; 5.7; 7.95
108.5; 101.5; 108.5
299.656Egorov-Tismenko Y K; Gushchina, A. E.; Shashkin, D. N.; Simonov, M. A.; Belov, N. V.
The crystal structure of frolovite CaB2O4(H2O)4 = Ca(B(OH)4)2
Doklady Akademii Nauk SSSR, 1972, 202, 78-80
9011927 CIFC4 H2 Al F4 Na7 O12P -16.472; 6.735; 8.806
92.5; 97.33; 119.32
329.43Tjy, C. T. L.; Pobedimskaya, E. A.; Fundamenskii, V. S.; Nadezhina, T. N.; Khomyakov, A. P.
The crystal structure of barentsite Note: y(O1) corrected
Doklady Akademii Nauk SSSR, 1983, 273, 699-704
9012056 CIFCr2 K2 O7P -17.42; 13.399; 7.3845
98.03; 90.88; 96.18
722.403Brunton, G.
Refinement of the structure of K2Cr2O7
Materials Research Bulletin, 1973, 8, 271-274
9012229 CIFCl Fe2 H3 O12 Te4P -15.103; 6.653; 9.012
73.4; 78.03; 76.76
282.09Feger, C. R.; Kolis, J. W.; Gorny, K.; Pennington, C.
Rodalquilarite revisited: the hydrothermal synthesis and structural reinvestigation of H3Fe2(TeO3)4Cl
Journal of Solid State Chemistry, 1999, 143, 254-259
9012246 CIFH6 In2 Na2 O17 P4P -19.30131; 9.4976; 9.2685
98.71; 98.953; 60.228
699.418Mi, J. X.; Huang, Y. X.; Mao, S. Y.; Huang, X. D.; Wei, Z. B.; Huang, Z. L.; Zhao, J. T.
Hydrothermal synthesis and crystal structure of Na2In2[PO3(OH)]4*H2O with a new structure type
Journal of Solid State Chemistry, 2001, 157, 213-219
9012336 CIFAs Co H3 O5P -17.865; 15.699; 6.719
94.25; 96.89; 90.28
821.277Zettler, F.; Riffel, H.; Hess, H.; Keller, P.
Cobalthydrogenarsenat-monohydrat. Darstellung und kristallstruktur
Zeitschrift fur Anorganische und Allgemeine Chemie, 1979, 454, 134-144
9012360 CIFH10 Mn O9 SP -16.36; 10.77; 6.16
80.3; 110.1; 106
379.62Caminiti, R.; Marongiu, G.; Paschina, G.
A comparative X-ray diffraction study of aqueous MnSO4 and crystals of MnSO4*5H2O Locality: synthetic
Zeitschrift fur Naturforschung A, 1982, 37, 581-586
9012508 CIFC6 Cd N5 S2P -112.46; 9.07; 7.52
121.8; 123.4; 83.9
582.41Marsh, R. E.; Schomaker, V.
Some incorrect space groups in Inorganic Chemistry, Volume 16
Inorganic Chemistry, 1979, 18, 2331-2336
9012511 CIFC4 H4 Cu Na2 O10P -17.536; 9.473; 3.576
81.9; 103.77; 108.09
235.071Gleizes, A.; Maury, F.; Galy, J.
Crystal structure and magnetism of solum bis(oxalato)cuprate(II) dihydrate, Na2Cu(C2O4)2*2H2O. A deductive proposal for the structure of copper oxalate, CuC2O4*xH2O (0 < x < 1)
Inorganic Chemistry, 1980, 19, 2074-2078
9012528 CIFH2 In O5 PP -15.4342; 5.5508; 6.5446
97.593; 94.558; 107.565
185.064Tang, X. J.; Lachgar, A.
The missing link: synthesis, crystal structure, and thermogravimetric studies of InPO4*H2O
Inorganic Chemistry, 1998, 37, 6181-6185
9012617 CIFFe0.9 H12 K3 Mn0.7 Na4 O28 Si8 Ti0.4P -110.244; 11.924; 5.276
103.491; 96.96; 91.945
620.766Rastsvetaeva, R. K.; Rekhlova, O. Y.; Khomyakov, A. P.
Crystal structure of a new natural Na,K,Fe silicate
Crystallography Reports, 1991, 36, 500-503
9012649 CIFC H3 Ba1.27 Ca0.21 F Fe0.675 K0.2 Mn0.375 Na1.95 Nb0.05 O13 Si2 Sr0.32 Ti0.95P -15.399; 7.016; 16.254
102.44; 93.18; 90.1
600.251Zhou, H.; Rastsvetaeva, R. K.; Khomyakov, A. P.; Ma, Z.; Shi, N.
Crystal structure of new micalike titanosilicate - bussenite, Na2Ba2Fe2+[TiSi2O7][CO3]O(OH)(H2O)F
Crystallography Reports, 2002, 47, 43-46
9012668 CIFC2 B3.468 F2 Mg9 O58 Pb14.144 Si10.532P -19.3409; 9.3579; 18.8333
80.365; 75.816; 59.87
1378.47Yakubovich, O. V.; Massa, W.; Chukanov, N. V.
Crystal structure of britvinite [Pb7(OH)3F(BO3)2(CO3)][Mg4.5(OH)3(Si5O14)]: A new layered silicate with an original type of silicon-oxygen networks
Crystallography Reports, 2008, 53, 206-215
9012687 CIFNa2 O7 Si2 ZrP -16.66; 8.83; 5.42
92.75; 94.25; 72.33
302.756Voronkov, A. A.; Shumyatskaya, N. G.; Pyatenko, Y. A.
Crystal structure of a new natural modification of Na2Zr[Si2O7]
Journal of Structural Chemistry, 1970, 11, 866-867
9012785 CIFCu H4 O6 UP -17.855; 5.449; 6.089
91.44; 101.9; 89.2
254.929Rosenzweig, A.; Ryan, R. R.
Vandenbrandeite CuUO2(OH)4
Crystal Structure Communications, 1977, 6, 53-56
9012840 CIFAs2 Cu5 H4 O12P -16.121; 6.251; 6.79
92.93; 111.3; 107.47
227.109Sieber, N. H. W.; Hofmeister, W.; Tillmanns, E.; Abraham, K.
Neue mineraldaten fur kupferphosphate und -arsenate von Reichenbach/Odw
Fortschritte der Mineralogie, 1984, 62, 231-232
9012854 CIFAs6 Cu5 H18 Na O34 Sb0.96 Ti1.04P -17.0308; 9.8823; 10.6754
106.973; 104.274; 93.839
679.756Hawthorne, F. C.; Cooper, M. A.; Paar, W. H.
The crystal structure of braithwaiteite
Journal of Coordination Chemistry, 2008, 61, 15-29
9012889 CIFCa0.94 Fe6.06 O21 Si7P -16.6213; 7.5506; 17.3806
114.267; 82.684; 94.576
785.349Burnham, C. W.
The crystal structure of pyroxferroite from Mare Tranquillitatis
Proceedings of the Second Lunar Science Conference, 1971, 1, 47-57
9012890 CIFCa O3 SiP -17.94; 7.32; 7.07
90.03; 95.37; 103.43
397.818Ito, Tei-ichi; Sadanaga, Ryoichi; Tak'euchi, Yoshio; Tokonami, Masayasu
The Existence of Partial Mirrors in Wollastonite
Proceedings of the Japan Academy, 1969, 45, 913-918
9012897 CIFFe H Li O5 PP -15.347; 7.284; 5.132
109.15; 97.9; 106.52
175.051Yakubovich, O. V.; Urusov, V. S.
The structure and electron density of Fe2+ -bearing tavorite in relation to the genetic crystal chemistry of secondary phosphates of lithium pegmatites
Geochemistry International, 1997, 35, 630-638
9012902 CIFFe K Na O10 Si4P -18.142; 9.954; 6.983
100.21; 114.13; 105.87
469.098Rozhdestvenskaya, I. V.; Bannova, I. I.; Nikishova, L. V.; Soboleva, T. V.
The crystal structure of fenaksite K2Na2Fe2Si8O20
Doklady Earth Sciences, 2004, 398, 1029-1033
9012921 CIFCa9 H22 O32 Si6P -110.576; 7.265; 10.931
101.3; 96.98; 109.65
759.496Bonaccorsi, E.; Merlino, S.; Taylor, H. F. W.
The crystal structure of jennite, Ca9Si6O18(OH)6*8H2O
Cement and Concrete Research, 2004, 34, 1481-1488
9013110 CIFP4P -111.45; 5.503; 11.261
71.84; 90.37; 71.56
635.231Simon, A.; Borrmann, H.; Craubner, H.
Crystal structure of ordered white phosphorus (β-P) Sample: at T = 158.15 K Note: beta phase; transforms from alpha phase at T = 196.75 K
Phosphorus and Sulfur and the Related Elements, 1987, 30, 507-510
9013389 CIFCa0.129 Fe4.759 Mg0.327 Na1.871 O20 Si5.914 TiP -110.415; 10.84; 8.931
105.107; 96.61; 125.398
746.778Grew, E. S.; Halenius, U.; Pasero, M.
The crystal-chemistry of aenigmatite revisited: electron microprobe data, structure refinement and Mossbauer spectroscopy of aenigmatite from Vesteroya (Norway)
European Journal of Mineralogy, 2008, 20, 983-991
9013425 CIFAl1.2 Be2 Ca3.5 Fe10.3 Mg0.5 Na0.5 O40 Si8.8 Ti1.2P -110.352; 10.744; 8.864
105.73; 96.16; 124.91
733.912Yakubovich, O. V.; Malinovskii, Y. A.; Polyakov, V. O.
Crystal structure of makarochkinite of the Il'menskii National Forest, Russia
Kristallografiya, 1990, 35, 1388-1394
9013735 CIFAl2 Ca4 F8 H10 O13 P2P -16.1933; 9.871; 13.58
89.716; 75.303; 88.683
802.825Kampf, A. R.; Colombo, F.; Simmons, W. B.; Falster, A. U.; Nizamoff, J. W.
Galliskiite, Ca4Al2(PO4)2F8*5H2O, a new mineral from the Gigante granitic pegmatite, Cordoba province, Argentina Cordoba province, Argentina
American Mineralogist, 2010, 95, 392-396
9013736 CIFH14 O23 P4 Zn6P -18.299; 9.616; 12.175
71.68; 82.02; 80.18
905.065Elliott, P.; Giester, G.; Libowitzky, E.; Kolitsch, U.
Description and crystal structure of liversidgeite, Zn6(PO4)4*7H2O, a new mineral from Broken Hill, New South Wales, Australia
American Mineralogist, 2010, 95, 397-404
9013786 CIFCa4.04 F2 H5.84 Na4.6 O41 Si16P -19.589; 9.613; 12.115
96.62; 92.95; 119.81
954.823McDonald, A. M.; Chao, G. Y.
Lalondeite, a new hydrated Na-Ca fluorosilicate species from Mont Saint-Hilaire, Quebec: Description and crystal structure Locality: Poudrette quarry, Mont Saint-Hilaire, Quesbec, Canada
The Canadian Mineralogist, 2009, 47, 181-191
9013790 CIFFe O9 S2P -14.801; 8.271; 8.311
70.605; 89.959; 89.951
311.294Peterson, R. C.; Valyashko, E.; Wang, R.
The atomic structure of (H3O)Fe3+(SO4)2 and rhomboclase, (H5O2)Fe3+(SO4)2*2H2O Locality: synthetic
The Canadian Mineralogist, 2009, 47, 625-634
9013808 CIFAl0.24 Cs0.04 F0.13 Fe4.6 H4.13 K1.8 Mn1.98 Na Nb1.46 O30.86 Si7.76 Ti0.54P -15.4022; 11.8844; 11.6717
112.99; 94.588; 103.166
659.655Camara, F.; Sokolova, E.; Abdu, Y.; Hawthorne, F. C.
The crystal structures of niobophyllite, kupletskite-(Cs) and Sn-rich astrophyllite: Revisions to the crystal chemistry of the astrophyllite-group minerals
The Canadian Mineralogist, 2010, 48, 1-16
9013809 CIFAl0.08 Ca0.35 Cs1.42 F0.71 Fe1.98 H4.29 K0.36 Li0.67 Mg0.11 Mn3.74 Na0.79 Nb0.46 O30.29 Pb0.06 Si7.92 Sr0.02 Ti1.54 Zn0.5P -15.385; 11.935; 11.7793
113.117; 94.614; 103.075
666.002Camara, F.; Sokolova, E.; Abdu, Y.; Hawthorne, F. C.
The crystal structures of niobophyllite, kupletskite-(Cs) and Sn-rich astrophyllite: Revisions to the crystal chemistry of the astrophyllite-group minerals
The Canadian Mineralogist, 2010, 48, 1-16
9013810 CIFAl0.16 Ca0.16 Cs0.02 F0.65 Fe6.46 H0.35 K1.7 Mg0.02 Mn0.44 Na0.96 Nb0.44 O30.35 Pb0.02 Si7.84 Sn0.62 Ta0.02 Ti0.74 Zn0.02 Zr0.16P -15.3866; 11.8821; 11.6794
113.019; 94.578; 103.12
658.092Camara, F.; Sokolova, E.; Abdu, Y.; Hawthorne, F. C.
The crystal structures of niobophyllite, kupletskite-(Cs) and Sn-rich astrophyllite: Revisions to the crystal chemistry of the astrophyllite-group minerals
The Canadian Mineralogist, 2010, 48, 1-16
9013812 CIFC H4 Ba6 Fe9 O41 P2 Si8P -15.3437; 11.6726; 14.68
91.337; 96.757; 103.233
883.961Kampf, A. R.; Rossman, G. R.; Steele, I. M.; Pluth, J. J.; Dunning, G. E.; Walstrom, R. E.
Devitoite, a new heterophyllosilicate mineral with astrophyllite-like layers from eastern Fresno County, California
The Canadian Mineralogist, 2010, 48, 29-40
9013824 CIFBa0.51 Cr1.12 O14.489 Si0.978 Ti2.8 V3.08P -17.5208; 7.643; 9.5724
110.204; 103.338; 98.281
487.14Armbruster, T.; Kadiyski, M.; Reznitsky, L. Z.; Sklyarov, E. V.; Galuskin, E. V.
Batisivite, the first silicate related to the derbylite-hemloite group
European Journal of Mineralogy, 2008, 20, 975-981
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
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
9013901 CIFAs2 Ca2.5 H8 O10.5P -18.286; 6.673; 9.743
86.58; 111.1; 99.74
495.351Catti, M.; Ivaldi, G.
Mechanism of the reaction Ca5H2(AsO4)4*9H2O (ferrarisite) -> Ca5H2(AsO4)4*5H2O) (dimorph of vladimirite), and structure of the latter phase Note: formed by dehydrating ferrarisite at 60 C Locality: Sainte-Marie-aux-Mines (Alsace), France
Zeitschrift fur Kristallographie, 1981, 157, 119-130
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
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
9014010 CIFB H3 O3P -17.05; 7.05; 6.57
92.5; 101.17; 120
273.621Zachariasen, W. H.
The crystal lattice of boric acid, BO3H3
Zeitschrift fur Kristallographie, 1934, 88, 150-161
9014030 CIFAs10 Cu13 H50 O63P -16.424; 14.37; 16.559
102.882; 101.036; 98.022
1435.81Sejkora, J.; Plasil, J.; Ondrus, P.; Veselovsky, F.; Cisarova, I.; Hlousek, J.
Slavkovite, Cu13(AsO4)6(AsO3OH)4*23H2O, a new mineral species from Horni Slavkov and Jachymov, Czech Republic: Description and crystal-structure determination
The Canadian Mineralogist, 2010, 48, 1157-1170
9014105 CIFAl0.03 Ca2 Fe1.366 H Mg0.344 Mn0.26 O15 Si5P -17.48; 12.159; 6.678
86.1; 93.92; 112.08
560.91Armbruster, T.
Cation distribution in Mg, Mn-bearing babingtonite from Arvigo, Val Calanca, Grisons, Switzerland Note: Sample NMBE 34974
Schweizerische Mineralogische und Petrographische Mitteilungen, 2000, 80, 279-284
9014126 CIFAl0.07 Ca2 Fe1.72 H Mg0.04 Mn0.17 O15 Si5P -17.497; 12.225; 6.71
86.18; 93.9; 112.27
567.231Tagai, T.; Joswig, W.; Fuess, H.
Neutron diffraction study of babingtonite at 80 K Note: T = 80 K
Mineralogical Journal, 1990, 15, 8-18
9014177 CIFAl4 Ba0.08 Fe2.26 H4 Mg0.74 O26 P3.92 Sr1.92 V0.08P -15.457; 9.131; 9.769
108.47; 91.72; 97.44
456.5Leone, P.; Palvadeau, P.; Moelo, Y.
Structure cristalline d'un nouvel hydroxyphosphate naturel de strontium, fer et aluminium (lulzacite), Sr2Fe(Fe0,63Mg0,37)2Al4(PO4)4(OH)10
Chimie de l'etat Solide et Cristallochimie, 2000, 3, 301-308
9014197 CIFAs4 H22 Mg3.5 O26 Zn1.5P -17.797; 11.44; 6.616
115.31; 95.77; 93.87
526.762Dorner, R.; Weber, K.
Die Kristallstruktur von Chudobait, (Mg,Zn)5H2[AsO4]4*10H2O Note: many positional parameters were edited according to ICSD because they were missing negative signs
Naturwissenschaften, 1976, 63, 243-243
9014227 CIFB11 Ca0.087 H7 O22 Sr1.913P -16.6378; 6.7387; 20.982
87.86; 82.696; 60.476
809.684Grice, J. D.; Pring, A.
Veatchite: structural relationships of the three polytypes Note: low-T, low-P polytype veatchite-1A
American Mineralogist, 2012, 97, 489-495
9014258 CIFAl3 H13 O16 P2P -17.386; 7.716; 11.345
99.773; 91.141; 115.58
571.551Kampf, A. R.; Mills, S. J.; Rossman, G. R.; Steele, I. M.; Pluth, J. J.; Favreau, G.
Afmite, Al3(OH)4(H2O)3(PO4)(PO3OH)*H2O,a new mineral from Fumade, Tarn, France: description and crystal structure T = 298 K
European Journal of Mineralogy, 2011, 23, 269-277
9014271 CIFAl2 Ca0.07 F2 Fe0.04 H10 Mg0.01 Mn0.87 O13 P2 Zn0.01P -19.887; 9.796; 6.054
92.7; 99.83; 97.1
571.913Birch, W. D.; Grey, I. E.; Mills, S. J.; Pring, A.; Bougerol, C.; Ribabldi-Tunnicliffe A; Wilson, N. C.; Keck, E.
Nordgauite, MnAl2(PO4)2(F,OH)2*5H2O, a new mineral from the Hagendorf-Sud pegmatite, Bavaria, Germany: description and crystal structure
Mineralogical Magazine, 2011, 75, 269-278
9014277 CIFCu2.937 H26 O34 S2 U4P -18.6744; 8.8692; 10.009
72.105; 70.544; 76.035
682.606Plasil, J.; Fejfarova, K.; Wallwork, K. S.; Dusek, M.; Skoda, R.; Sejkora, J.; Cejka, J.; Veselovsky, F.; Hlousek, J.; Meisser, N.; Brugger, J.
Crystal structure of pseudojohannite, with a revised formula, Cu3(OH)2[(UO2)4O4(SO4)2](H2O)12
American Mineralogist, 2012, 97, 1796-1803
9014294 CIFCa4 F3 Na2 O15 Si4 Y ZrP -111.012; 10.342; 7.359
89.92; 109.21; 90.06
791.421Merlino, S.; Perchiazzi, N.
The crystal structure of hiortdahlite II
Mineralogy and Petrology, 2010, 37, 25-35
9014322 CIFC6 H34.56 Ca4 F2 Mg O39.28 U2P -113.569; 13.419; 11.622
115.82; 107.61; 92.84
1774.63Mereiter, K.
The crystal structure of albrechtschraufite, MgCa4F2[UO2(CO3)3]2*17-18H2O
Mineralogy and Petrology, 2013, pre-print
9014358 CIFAl7.371 B1.967 Fe0.605 Mg0.24 O18.484 Si1.82P -17.9696; 8.1559; 11.3607
110.364; 110.881; 84.67
646.409Grew, E. S.; Armbruster, T.; Lazic, P.; Yates, M. G.; Medenbach, O.; Huijsmans, J. P. P.
Werdingite from a pegmatite at Almgjotheii, Rogaland, Norway: The role of iron in a borosilicate with a mullite-type structure
European Journal of Mineralogy, 2011, 23, 577-589
9014362 CIFCa3 O5 SiP -111.67; 14.24; 13.72
105.5; 94.33; 90
2190.32Golovastikov, N.; Matveeva, R.; Belov, N.
Crystal structure of tricalcium silicate, 3CaO.SiO2 = C3S
Kristallografiya, 1975, 20, 721-729
9014374 CIFAl F9 H2 O Pb3P -15.6637; 5.8659; 12.7041
98.725; 94.02; 90.683
416.045Kampf, A. R.; Yang, H.; Downs, R. T.; Pinch, W. W.
The crystal structures and Raman spectra of aravaipaite and calcioaravaipaite
American Mineralogist, 2011, 96, 402-407
9014375 CIFCa0.62 Cs0.04 F0.35 Fe3.15 H4.65 K0.76 Mg0.18 Mn2.96 Na0.5 Nb0.3 O30.65 Rb0.18 Si8 Sn0.12 Ti1.58 Zn0.01 Zr0.01P -15.3868; 11.9141; 11.7171
112.978; 94.641; 103.189
661.831Stepanov, A. V.; Bekenova, G. K.; Levin, V. L.; Sokolova, E.; Hawthorne, F. C.; Dobrovol'skaya, E. A.
Tarbagataite, (K,_)2(Ca,Na)(Fe2+,Mn)7Ti2(Si4O12)2O2(OH)4(OH,F), a new astrophyllite-group mineral species from the Verkhnee Espe Deposit, Akjailyautas Mountains, Kazakhstan: Description and crystal structure
The Canadian Mineralogist, 2012, 50, 159-168
9014385 CIFAs4 Ca Cu10 H10 O34 Te4P -18.9925; 10.1291; 8.9971
102.668; 92.49; 70.434
752.989Kampf, A. R.; Mills, S. J.
The role of hydrogen in tellurites: crystal structure refinements of juabite, poughite and rodalquilarite
Journal of Geosciences, 2011, 56, 235-247
9014451 CIFH0.066 Na1.934 O7 Si2 ZrP -16.617; 8.813; 5.426
87.26; 85.68; 71.75
299.553Pekov, I. V.; Zubkova, N. V.; Pushcharovsky, D. Y.; Kolitsch, U.; Tillmanns, E.
Refined crystal structure of parakeldyshite and genetic crystal chemistry of zirconium minerals with [Si2O7] diorthogroups
Crystallography Reports, 2007, 52, 1066-1071
9014504 CIFAs2 Ca H4 O8P -18.558; 7.697; 5.721
92.583; 109.867; 109.983
327.494Chiari, G.; Ferraris, G.
The crystal structure of calcium dihydrogen arsenate, Ca(H2AsO4)2
Atti della Accademia delle Scienze di Torino, Classe di Scienze Fisiche, Matematiche e Naturali, 1971, 105, 725-743
9014507 CIFH47.64 Mg Na4 O51.82 V10P -19.0425; 11.3303; 11.7353
105.222; 97.377; 100.791
1119.46Colombo, F.; Baggio, R.; Kampf, A. R.
The crystal structure of the elusive huemulite
The Canadian Mineralogist, 2011, 49, 849-864
9014529 CIFCa4.52 F3 Mn0.41 Na1.88 O15 Si4 Zr1.19P -110.97; 10.943; 7.365
109.63; 109.65; 83.39
784.247Bellezza, M.; Merlino, S.; Perchiazzi, N.
Distinct domains in "guarinite" from Monte Somma, Italy: Crystal structures and crystal chemistry Note: "Guarinite" Domain IV
The Canadian Mineralogist, 2012, 50, 531-548
9014680 CIFC4 H6 Ca O6P -15.9466; 10.2247; 16.6496
72.213; 79.718; 89.791
947.062Herdtweck, E.; Kornprobst, T.; Sieber, R.; Straver, L.; Plank, J.
Crystal structure, synthesis, and properties of tri-calcium di-citrate tetra-hydrate [Ca3(C6H5O7)2(H2O)2]*2H2O Notwe: polymorph of earlandite
Zeitschrift fur Anorganische und Allgemeine Chemie, 2011, 637, 655-659
9014700 CIFAl H44 Na3 O50 V10P -18.668; 10.295; 12.908
105.826; 97.899; 103.385
1053.06Rakovan, J.; Schmidt, G. R.; Gunter, M. E.; Nash, B.; Marty, J.; Kampf, A. R.; Wise, W. S.
Hughesite, Na3Al(V10O28)*22H2O, a new member of the pascoite family of minerals from the Sunday mine, San Miguel county, Colorado
The Canadian Mineralogist, 2011, 49, 1253-1265
9014906 CIFCa0.51 Fe0.33 Mg0.35 Mn3.81 O15 Si5P -16.6818; 7.633; 11.795
105.49; 92.49; 94.01
577.092Leverett, P.; Williams, P. A.; Hibbs, D. E.
Ca-Mg-Fe-rich rhodonite from the Morro da Mina mine, Conselheiro Lafaiete, Minas Gerais, Brazil
The Mineralogical Record, 2008, 39, 125-130
9014911 CIFCa0.055 Fe0.08 Mg0.055 Mn0.215 Na4.75 Nb0.255 O13 P Si2 Ta0.005 Ti1.415 Zr0.055P -15.417; 7.119; 14.487
99.957; 96.711; 90.36
546.286Camara, F.; Sokolova, E.; Hawthorne, F. C.; Abdu, Y.
From structure topology to chemical composition. IX. Titanium silicates: revision of the crystal chemistry of lomonosovite and murmanite, Group-IV minerals
Mineralogical Magazine, 2008, 72, 1207-1228
9014918 CIFCa6 Cl0.286 H1.72 O12.714 Si3P -16.8126; 6.9416; 12.9412
90.582; 97.552; 98.251
600.143Armbruster, T.; Lazic, B.; Gfeller, F.; Galuskin, E. V.; Galuskina, I. O.; Savelyeva, V. B.; Zadov, A. E.; Pertsev, N. N.; Dzierzanowski, P.
Chlorine content and crystal chemistry of dellaite from the Birkhin gabbro massif, Eastern Siberia, Russia Note: Cl-containing dellaite
Mineralogical Magazine, 2011, 75, 379-394
9014967 CIFAs Fe2 H19 O18 SP -17.549; 10.305; 10.904
115.136; 99.798; 92.864
749.581Majzlan, J.; Lazic, B.; Armbruster, T.; Johnson, M. B.; White, M. A.; Fisher, R. A.; Plasil, J.; Loun, J.; Skoda, R.; Novak, M.
Crystal structure, thermodynamic properties, and paragenesis of bukovskyite, Fe2(AsO4)(SO4)(OH)*9H2O
Journal of Mineralogical and Petrological Sciences, 2012, 107, 133-148
9014976 CIFCa4.71 F3 Mn0.67 Na1.62 O15 Si4 Ti0.26 Zr0.74P -110.934; 10.991; 7.366
109.43; 109.6; 83.56
786.429Biagioni, C.; Merlino, S.; Parodi, G. C.; Perchiazzi, N.
Crystal chemistry of minerals of the wohlerite group from the Los Archipelago, Guinea
The Canadian Mineralogist, 2012, 50, 593-609
9014978 CIFAg4 As5.78 S15 Sb1.22 Tl5P -18.92; 9.429; 20.062
79.66; 88.84; 62.72
1471.6Bindi, L.; Nestola, F.; Guastoni, A.; Peruzzo, L.; Ecker, M.; Carampin, R.
Raberite, Ti5Ag4As6SbS15, a new Ti-bearing sulfosalt from Lengenbach quarry, Binn valley, Switzerland: description and crystal structure
Mineralogical Magazine, 2012, 76, 1153-1163
9015032 CIFFe O3 SiP -16.628; 7.467; 22.607
115.32; 80.56; 95.49
997.26Weber, H. P.
Ferrosilite III, the high-temperature polymorph of FeSiO3
Acta Crystallographica, Section C, 1983, 39, 1-3
9015062 CIFAl2 As2 H18 Mg O18P -15.4363; 10.5; 7.075
97.701; 110.295; 102.021
360.987Meisser, N.; Brugger, J.; Krivovichev, S.; Armbruster, T.; Favreau, G.
Description and crystal structure of maghrebite, MgAl2(AsO4)2(OH)2*8H2O, from Aghbar, Anti-Atlas, Morocco: first arsenate in the laueite mineral group
European Journal of Mineralogy, 2012, 24, 717-726
9015063 CIFAg0.29 As1.73 Pb2.956 S18 Sb7.794 Tl1.23P -18.0929; 8.761; 22.497
90.868; 97.247; 90.793
1581.96Orlandi, P.; Biagioni, C.; Bonaccorsi, E.; Moelo, Y.; Paar, W. H.
Lead-antimony sulfosalts from Tuscany (Italy). XII. Boscardinite, TiPb4(Sb7As2)S9S18, a new mineral species from the Monte Arsiccio mine: Occurrence and crystal structure Monte Arsiccio, near Sant'Anna di Stazzema, Apuan Alps, Tuscany, Italy
The Canadian Mineralogist, 2012, 50, 235-251
9015111 CIFCl Fe2 H3 O12 Te4P -15.1129; 6.6481; 9.0079
73.347; 78.053; 76.709
282.2Kampf, A. R.; Mills, S. J.
The role of hydrogen in tellurites: crystal structure refinements of juabite, poughite and rodalquilarite
Journal of Geosciences, 2011, 56, 235-247
9015113 CIFAl0.08 Ca0.96 F0.16 Fe6.55 H12.38 K0.14 Mg0.14 Mn0.35 Na0.12 Nb0.06 O34.64 Si7.92 Ti1.86 Zr0.04P -15.329; 11.803; 11.822
101.14; 98.224; 102.442
699.079Khomyakov, A. P.; Cámara F; Sokolova, E.; Abdu, Y.; Hawthorne, F. C.
Sveinbergeite, Ca(Fe2+6Fe3+)Ti2(Si4O12)2O2(OH)5(H2O)4, a new astrophyllite-group mineral from the Larvik Plutonic Complex, Oslo Region, Norway: description and crystal structure
Mineralogical Magazine, 2011, 75, 2687-2702
9015119 CIFN4 O14 P2 TeP -111.51; 6.484; 6.329
118.15; 105.8; 84.36
400.48Durif, A.; Averbuch-Pouchot, M. T.; Guitel, J. C.
Structures de deux phosphotellurates. Te(OH)6((NH4)2HPO4)2 and Te(OH)6(Na2HPO4)(H2O)
Acta Crystallographica, Section B, 1979, 35, 1444-1447
9015182 CIFCu29 S16P -113.409; 13.4051; 15.4852
90.022; 90.021; 90.02
2783.45Mumme, W. G.; Gable, R. W.; Petricek, V.
The crystal structure of roxbyite, Cu58S32
The Canadian Mineralogist, 2012, 50, 423-430
9015224 CIFAs2 Cu5 O12P -16.121; 6.251; 6.79
92.93; 111.3; 107.47
227.109Tillmanns, E.; Hofmeister, W.; Petitjean, K.
Cornubite, Cu5(AsO4)2(OH)4, first occurence of single crystals, mineralogical description and crystal structure
Bulletin of the Geological Society of Finland, 1985, 57, 119-127
9015225 CIFAl13.571 B3.58 Fe0.8 Mg1.634 O37 Si4P -17.98539; 8.15541; 11.4021
110.436; 110.872; 84.678
649.732Grew, E. S.; Armbruster, T.; Lazic, P.; Yates, M. G.; Medenbach, O.; Huijsmans, J. P. P.
Werdingite from a pegmatite at Almgjotheii, Rogaland, Norway: The role of iron in a borosilicate with a mullite-type structure
European Journal of Mineralogy, 2011, 23, 577-589
9015227 CIFCa3.46 F2 Na2.1 O20 Si8 Sr0.3P -17.788; 18.941; 6.995
90.17; 116.78; 94.16
918.013Rozhdestvenskaya, I. V.; Nikishova, L. V.
Crystal structure of Na(Ca,Sr)2Si4O10F strontium agrellite from Yakutian charoitites: agrellite polytypes
Crystallography Reports, 1998, 43, 589-597
9015312 CIFAs2 Ca H4 O8P -18.558; 7.697; 5.721
92.35; 109.52; 109.59
329.621Ferraris, G.; Jones, D. W.; Yerkess, J.
A neutron diffraction study of the crystal structure of calcium bis(dihydrogen arsenate), Ca(H2AsO4)2
Acta Crystallographica, Section B, 1972, 28, 2430-2437
9015413 CIFFe1.74 H12 K2.92 Mg0.14 Mn1.36 Na2.44 O28 Si8 Ti0.76P -110.1978; 12.0155; 5.2263
103.439; 96.02; 91.683
618.46Khomyakov, A. P.; Camara, F.; Sokolova, E.; Abdu, Y.; Hawthorne, F. C.
Paraershovite, Na3K3Fe3+2(Si4O10OH)2(OH)2(H2O)4, a new mineral species from the Khibina Alkaline massif, Kola Peninsula, Russia: Description and crystal structure
The Canadian Mineralogist, 2010, 48, 279-290
9015421 CIFCa3 O5 SiP -111.67; 14.24; 13.72
105.3; 94.2; 90
2192.84Golovastikov, N.; Matveeva, R.; Belov, N.
Crystal structure of tricalcium silicate, 3CaO*SiO2 = C3S
Kristallografiya, 1975, 20, 721-729
9015424 CIFAl Ca2 F9 PbP -15.3815; 5.3846; 12.2034
91.364; 101.11; 91.525
346.72Kampf, A. R.; Yang, H.; Downs, R. T.; Pinch, W. W.
The crystal structures and Raman spectra of aravaipaite and calcioaravaipaite
American Mineralogist, 2011, 96, 402-407
9015452 CIFAl0.02 Ba3.92 Ca0.1 Fe0.18 Mg0.14 Mn0.38 Na2.16 Nb0.02 O26 P0.82 S1.02 Si4 Sr0.08 Ti2.96P -15.4234; 7.131; 14.785
98.442; 94.579; 90.009
563.757Sokolova, E.; Camara, F.; Hawthorne, F. C.
From structure topology to chemical composition. XI. Titanium silicates: crystal structures of innelite-1T and innelite-2M from the Inagli massif, Yakutia, Russia, and the crystal chemistry of innelite Note: this is the polytype innelite-1T
Mineralogical Magazine, 2011, 75, 2495-2518
9015455 CIFCa0.105 Fe0.075 H4 K0.025 Mg0.035 Mn0.165 Na1.645 Nb0.255 O11 Si2 Ti1.605 Zr0.005P -15.3875; 7.0579; 12.176
93.511; 107.943; 90.093
439.538Camara, F.; Sokolova, E.; Hawthorne, F. C.; Abdu, Y.
From structure topology to chemical composition. IX. Titanium silicates: revision of the crystal chemistry of lomonosovite and murmanite, Group-IV minerals
Mineralogical Magazine, 2008, 72, 1207-1228
9015497 CIFAg9 As6 Hg0.5 S12.14 Te1.86P -17.832; 8.606; 10.755
95.563; 95.88; 116.79
635.282Guastoni, A.; Bindi, L.; Nestola, F.
Debattistiite, Ag9Hg0.5As6S12Te2, a new Te-bearing sulfosalt from Lengenbach quarry, Binn valley, Switzerland: description and crystal structure
Mineralogical Magazine, 2012, 76, 743-750
9015501 CIFAs2 Cu0.4 H8 O12 Zn2.6P -15.9756; 7.6002; 5.4471
84.2892; 90.492; 87.9958
245.988Hawthorne, F. C.; Cooper, M. A.; Abdu, Y. A.; Ball, N. A.; Back, M. E.; Tait, K. T.
Davidlloydite, ideally Zn3(AsO4)2(H2O)4, a new arsenate mineral from the Tsumeb mine, Otjikoto (Oshikoto) region, Namibia: description and crystal structure
Mineralogical Magazine, 2012, 76, 45-57
9015549 CIFAs2 S3P -15.7577; 8.7169; 10.2682
78.152; 75.817; 89.861
488.377Kampf, A. R.; Downs, R. T.; Housley, R. M.; Jenkins, R. A.; Hyrsl, J.
Anorpiment, As2S3, the triclinic dimorph of orpiment
Mineralogical Magazine, 2011, 75, 2857-2867
9015578 CIFCa0.33 Fe2 H7 Na0.67 O12 P2P -16.317; 7.698; 9.768
105.53; 99.24; 90.09
451.224Mills, S. J.; Birch, W. D.; Kampf, A. R.; Christy, A. G.; Pluth, J. J.; Pring, A.; Raudsepp, M.; Chen, Y. S.
Kapundaite, (Na,Ca)2Fe3+4(PO4)4(OH)3*5H2O, a new phosphate species from Toms quarry, South Australia: Description and structural relationship to melonjosephite
American Mineralogist, 2010, 95, 754-760
9015588 CIFCu5 H14 O18 S2P -16.064; 11.012; 5.49
102.68; 92.43; 92.06
356.956Strandberg, H.; Langer, V.; Johansson, L. G.
Structure of Cu2.5(OH)3SO4*2H2O: a novel corrosion product of copper
Acta Chemica Scandinavica, 1995, 49, 5-10
9015622 CIFCa5 H18 O32 Si9P -19.69; 7.28; 22.02
92.7; 100.1; 110.9
1418.48Merlino, S.
Okenite, Ca10Si18O46*18H2O: the first example of a chain and sheet silicate
American Mineralogist, 1983, 68, 614-622
9015676 CIFAs H O5 Zn2P -15.638; 5.827; 6.692
103.25; 104.37; 87.72
207.268Hawthorne, F. C.
Paradamite
Acta Crystallographica, Section B, 1979, 35, 720-722
9015679 CIFH47.44 Mg Na4 O51.72 V10P -19.0453; 11.3337; 11.7372
105.223; 97.383; 100.79
1120.3Colombo, F.; Baggio, R.; Kampf, A. R.
The crystal structure of the elusive huemulite
The Canadian Mineralogist, 2011, 49, 849-864
9015732 CIFAl0.05 Ca2 Fe1.703 H Mg0.187 Mn0.06 O15 Si5P -17.458; 12.168; 6.675
86.12; 93.86; 112.27
558.71Armbruster, T.
Cation distribution in Mg, Mn-bearing babingtonite from Arvigo, Val Calanca, Grisons, Switzerland
Schweizerische Mineralogische und Petrographische Mitteilungen, 2000, 80, 279-284
9015780 CIFBa Cr2 O11 PP -19.333; 7.779; 7.526
106.28; 105.37; 94.14
499.356Averbuch-Pouchot, M. T.; Durif, A.; Guitel, J. C.
Existence d'un nouvel anion condense: Cr2PO10. Structures cristallines de deux phosphochromates de baryum: BaHCr2PO10*H2O et BaHCr2PO10*3H2O
Acta Crystallographica, Section B, 1977, 33, 1431-1435
9015801 CIFCs H5 O12 Se U2P -18.6877; 8.7164; 8.9589
95.964; 99.155; 117.318
582.847Wylie, E. M.; Burns, P. C.
Crystal structures of six new uranyl selenate and selenite compounds and their relationship with uranyl mineral structures Note: Compound 3
The Canadian Mineralogist, 2012, 50, 147-157
9015880 CIFFe3 H14 O16 P2P -17.989; 9.321; 4.629
97.34; 95.96; 108.59
320.184Chukanov, N. V.; Scholz, R.; Aksenov, S. M.; Rastsvetaeva, R. K.; Pekov, I. V.; Belakovskiy, D. I.; Krambrock, K.; Paniago, R. M.; Righi, A.; Martins, R. F.; Belotti, F. M.; Bermanec, V.
Metavivianite, Fe2+Fe3+2(PO4)2(OH)2*6H2O: new data and formula revision
Mineralogical Magazine, 2012, 76, 725-741
9015884 CIFAl0.08 Ca2 Fe1.513 H Mg0.197 Mn0.21 O15 Si5P -17.469; 12.161; 6.675
86.09; 93.94; 112.21
559.398Armbruster, T.
Cation distribution in Mg, Mn-bearing babingtonite from Arvigo, Val Calanca, Grisons, Switzerland Note: Sample Arvigo 1, NMBE 34973
Schweizerische Mineralogische und Petrographische Mitteilungen, 2000, 80, 279-284
9015889 CIFCa Cl2 H8 O4P -16.5932; 6.3673; 8.5606
97.83; 93.5; 110.58
331.003Leclaire, A.; Borel, M. M.
Liaisons hydrogene et coordination du calcium dans les cristaux de CaCl2*4H2O alpha
Acta Crystallographica, Section B, 1979, 35, 585-588
9015895 CIFCa6 H2 O13 Si3P -16.8155; 6.9363; 12.8904
90.652; 97.659; 98.195
597.495Armbruster, T.; Lazic, B.; Gfeller, F.; Galuskin, E. V.; Galuskina, I. O.; Savelyeva, V. B.; Zadov, A. E.; Pertsev, N. N.; Dzierzanowski, P.
Chlorine content and crystal chemistry of dellaite from the Birkhin gabbro massif, Eastern Siberia, Russia Note: Cl-free dellaite
Mineralogical Magazine, 2011, 75, 379-394
9015984 CIFCa2 Fe2 H O15 Si5P -112.234; 6.707; 7.682
93.97; 111.53; 85.25
583.826Kosoi, A. L.
Structure of babingtonite
Kristallografiya, 1975, 20, 730-739
9016125 CIFCa3 O5 SiP -111.6389; 14.1716; 13.6434
104.982; 94.622; 90.107
2166.2De la Torre, A. G.; De Vera, R. N.; Cuberos, A. J. M.; Aranda, M. A. G.
Crystal structure of low magnesium-content alite: application to Rietveld quantitative phase analysis
Cement and Concrete Research, 2008, 38, 1261-1269
9016162 CIFAs Cu H3 O5P -16.433; 8.093; 15.764
86.65; 84.35; 84.47
811.928Prencipe, M.; Pushcharovsky, D. Y.; Sarp, H.; Ferraris, G.
Comparative crystal chemistry of geminite Cu[AsO3OH]H2O and related minerals
Moscow University Geology Bulletin, 1996, 51, 51-58
9016168 CIFN2 O13 P4 SiP -115.14; 7.684; 4.861
97.86; 96.74; 83.89
553.971Durif, A.; Averbuch-Pouchot, M. T.; Guitel, J. C.
Structure cristalline de (N H4)2 Si P4 O13: un nouvel exemple de silicium hexacoordine
Acta Crystallographica, Section B, 1976, 32, 2957-2960
9016204 CIFH O5 P Zn2P -15.499; 5.654; 6.465
102.85; 102.77; 86.83
191.12Fanfani, L.; Zanazzi, P. F.
Dati strutturali sulla tarbuttite
Periodico di Mineralogia, 1965, 34, 539-545
9016284 CIFCa5.1 H3.92 Na3.62 O43.96 Si16P -19.576; 9.577; 16.438
85.85; 75.23; 60.142
1261.54Yakovenchuk, V. N.; Ivanyuk, G. Y.; Pakhomovsky, Y. A.; Selivanova, E. A.; Mikhailova, J. A.; Krivovichev, S. V.; Zolotarev, A. A.; Zalkind, O. A.
Ellingsenite, Na5Ca6Si18O38(OH)13*6H2O, a new martinite-related mineral species from phonolite of the Aris alkaline complex, Namibia Note: This is reported as an incomplete structure
The Canadian Mineralogist, 2011, 49, 1165-1173
9016314 CIFAl0.56 Fe1.44 H14 Mn O16 P2P -110.277; 9.826; 7.205
90.077; 98.865; 118.442
629.77Grey, I. E.; Macrae, C. M.; Keck, E.; Birch, W. D.
Aluminium-bearing strunzite derived from jahnsite at the Hagendorf-Sud pegmatite, Germany
Mineralogical Magazine, 2012, 76, 1165-1174
9016330 CIFH8 Mg O12 P2 ZrP -15.3049; 9.3372; 9.6282
97.348; 91.534; 90.512
472.79Hawthorne, F. C.; Simmons, W. B.
The crystal structure of zigrasite, MgZr(PO4)2(H2O)4, a heteropolyhedral framework structure
Mineralogical Magazine, 2010, 74, 567-575
9016341 CIFAs4 Ca Cu4 H22 O26P -16.439; 7.999; 10.849
85.78; 81.22; 85.05
549.139Sejkora, J.; Plasil, J.; Veselovsky, F.; Cisarova, I.; Hlousek, J.
Ondrusite, CaCu4(AsO4)2(AsO3OH)2*10H2O, a new mineral species from the Jachymov ore district, Czech Republic: Description and crystal-structure determination
The Canadian Mineralogist, 2011, 49, 885-897
9016407 CIFBa Cr2 O13 PP -110.189; 8.207; 7.749
108.8; 107.14; 89.04
583.971Averbuch-Pouchot, M. T.; Durif, A.; Guitel, J. C.
Existence d'un nouvel anion condense: Cr2PO10. Structures cristallines de deux phosphochromates de baryum: BaHCr2PO10*H2O et BaHCr2PO10*3H2O
Acta Crystallographica, Section B, 1977, 33, 1431-1435
9016479 CIFAl H Li O5 PP -15.18; 7.15; 5.004
112.12; 97.8; 67.88
159.051Baur, W. H.
Die Kristallstruktur des Edelamblygonits LiAlPO4(OH,F)
Acta Crystallographica, 1959, 12, 988-994
9016498 CIFAl H Na2 O9 Si3P -17.2474; 7.6813; 8.6432
90.835; 99.771; 122.581
396.295Williams, E. R.; Weller, M. T.
A variable-temperature neutron diffraction study of ussingite; a strong asymmetric hydrogen bond in an aluminosilicate framework Note: T = 4 K
Physics and Chemistry of Minerals, 2012, 39, 471-478
9016530 CIFO10 Si3 Sr Y2P -16.757; 6.885; 9.273
72.42; 86.37; 88.37
410.405Wierzbicka-Wieczorek M; Kolitsch, U.; Tillmanns, E.
Synthesis and structural study of five new trisilicates, BaREE2Si3O10 (REE = Gd, Er, Yb, Sc) and SrY2Si3O10, including a review on the geometry of the Si3O10 unit
European Journal of Mineralogy, 2010, 22, 245-258
9016534 CIFAs2 H16 Mg Mn2 O18 Pb2P -15.0528; 5.7671; 14.617
85.656; 82.029; 88.728
420.583Chukanov, N. V.; Pekov, I. V.; Johsson, E.; Zubkova, N. V.; Filinchuk, Y. E.; Belakovskiy, D. I.; Pushcharovsky, D. Y.
Langbanshyttanite, a new low-temperature arsenate mineral with a novel structure from Langban, Sweden
European Journal of Mineralogy, 2011, 23, 675-681
9016553 CIFO3 Si SrP -16.874; 6.894; 9.717
85.01; 110.57; 104.01
418.298Machida, K. I.; Adachi, G. Y.; Shiokawa, J.; Shimada, M.; Koizumi, M.; Suito, K.; Onodera, A.
High-pressure synthesis, crystal structures, and luminescences properties of europium(II) metasilicate and europium(II)-activated calcium and strontium metasilicates Note: known as the delta-phase
Inorganic Chemistry, 1982, 21, 1512-1519
9016612 CIFAs6.36 H3.56 K1.61 N0.39 O S13 Sb1.64P -19.704; 11.579; 12.102
112.82; 103.44; 90.49
1211.64Biagioni, C.; Bonaccorsi, E.; Pasero, M.; Moelo, Y.; Ciriotti, M. E.; Bersani, D.; Callegari, A. M.; Boiocchi, M.
Ambrinoite, (K,NH4)2(As,Sb)8S13*H2O, a new mineral from Upper Susa Valley, Piedmont, Italy: The first natural (K,NH4)-hydrated sulfosalt
American Mineralogist, 2011, 96, 878-887
9016614 CIFDy0.239 H52 O66 S4 U8 Y1.98P -114.0743; 17.4174; 17.7062
75.933; 128.001; 74.419
2776.99Plasil, J.; Dusek, M.; Novak, M.; Cejka, J.; Cisarova, I.; Skoda, R.
Sejkoraite-(Y), a new member of the zippeite group containing trivalent cations from Jachymov (St. Joachimsthal), Czech Republic: Description and crystal structure refinement
American Mineralogist, 2011, 96, 983-991
9016645 CIFCa2 F H3 O5 SiP -110.999; 8.176; 5.6678
94.24; 89; 90.18
508.22Biagioni, C.; Bonaccorsi, E.; Merlino, S.
Crystal structure of bultfonteinite, Ca4[SiO3(OH)]2F2*2H2O, from N'chwaning II mine (Kalahari Manganese Field, Republic of South Africa)
Atti della Societa Toscana di Scienze Naturali, Memorie, Serie A, 2010, 115, 9-15
9016665 CIFCa4.64 F3 Mn0.45 Na1.62 O15 Si4 Zr1.29P -110.973; 10.306; 7.367
90.03; 109.63; 90.11
784.696Bellezza, M.; Merlino, S.; Perchiazzi, N.
Distinct domains in "guarinite" from Monte Somma, Italy: Crystal structures and crystal chemistry Note: "Guarinite" Domain I
The Canadian Mineralogist, 2012, 50, 531-548
9016689 CIFCr Mn2 O9 Pb2P -15.0278; 7.5865; 10.2808
91.968; 99.405; 109.159
363.813Kampf, A. R.; Mills, S. J.; Housley, R. M.; Bottrill, R. S.; Kolitsch, U.
Reynoldsite, Pb2Mn4+2O5(CrO4), a new phyllomanganate-chromate from the Blue Bell claims, California and the Red Lead mine, Tasmania
American Mineralogist, 2012, 97, 1187-1192
9016690 CIFBa Ca2 O9 Si3P -16.733; 9.608; 6.685
69.64; 102.29; 96.89
395.65Basciano, L. C.
Mineralogy and crystal structures of barium silicate minerals from Fresno County, California
Master's Thesis, University of British Columbia, 1999, 1999, 1-164
9016694 CIFBa Ca2 O9 Si3P -16.7335; 9.6142; 6.6859
69.638; 102.281; 96.855
396.009Barkley, M. C.; Downs, R. T.; Yang, H.
Structure of walstromite, BaCa2Si3O9, and its relationship to CaSiO3-walstromite and wollastonite-II
American Mineralogist, 2011, 96, 797-801
9016702 CIFCu5 Li2 O14 Si4P -17.404; 7.754; 5.455
90.52; 106.27; 114.64
270.4Kawamura, K.; Kawahara, A.; Iiyama, J. T.
The crystal structure of Li2Cu5(Si2O7)2 and the proposal of new values for the effective iconic radii of Cu2+
Acta Crystallographica, Section B, 1978, 34, 3181-3185
9016960 CIFAl3 H30 O28 P S2P -110.341; 10.96; 11.1446
86.985; 65.727; 75.064
1110.49Galli, E.; Brigatti, M. F.; Malferrari, D.; Sauro, F.; de Waele, J.
Rossiantonite, Al3(PO4)(SO4)2(OH)2(H2O)10*4H2O, a new hydrated aluminum phosphate-sulfate mineral from Chimanta massif, Venezuela: Description and crystal structure
American Mineralogist, 2013, 98, 1906-1913
9017059 CIFCa0.835 Fe0.86 H48 Mg2.24 Mn1.02 O58 Sb0.225 W8.72 Zn0.6P -111.986; 13.2073; 17.6891
69.69; 85.364; 64.875
2370.35Kampf, A. R.; Hughes, J. M.; Nash, B. P.; Wright, S. E.; Rossman, G. R.; Marty, J.
Ophirite, Ca2Mg4[Zn2Mn3+2(H2O)2(Fe3+W9O34)2]*46H2O, a new mineral with a heteropolytungstate tri-lacunary Keggin anion
American Mineralogist, 2014, 99, 1045-1051
9017061 CIFCa0.1 Li0.725 Mg0.19 Mn3.71 Na0.275 O15 Si5P -17.5391; 11.7475; 6.7137
93.024; 95.147; 106.266
566.611Nagashima, M.; Armbruster, T.; Kolitsch, U.; Pettke, T.
The relation between Li <-> Na substitution and hydrogen bonding in five-periodic single-chain silicates nambulite and marsturite: A single-crystal X-ray study
American Mineralogist, 2014, 99, 1462-1470
9017062 CIFCa0.05 H Li0.821 Mg0.26 Mn3.69 Na0.179 O15 Si5P -17.5372; 11.7267; 6.7078
93.057; 95.147; 106.24
565.017Nagashima, M.; Armbruster, T.; Kolitsch, U.; Pettke, T.
The relation between Li <-> Na substitution and hydrogen bonding in five-periodic single-chain silicates nambulite and marsturite: A single-crystal X-ray study
American Mineralogist, 2014, 99, 1462-1470
9017063 CIFCa0.212 H Li0.276 Mg0.22 Mn3.568 Na0.724 O15 Si5P -17.6115; 11.734; 6.7324
92.876; 94.846; 106.65
572.278Nagashima, M.; Armbruster, T.; Kolitsch, U.; Pettke, T.
The relation between Li <-> Na substitution and hydrogen bonding in five-periodic single-chain silicates nambulite and marsturite: A single-crystal X-ray study
American Mineralogist, 2014, 99, 1462-1470
9017064 CIFCa0.912 Fe0.11 H Li0.062 Mg0.07 Mn2.908 Na0.938 O15 Si5P -17.697; 11.72; 6.771
92.4; 94.41; 106.83
581.593Nagashima, M.; Armbruster, T.; Kolitsch, U.; Pettke, T.
The relation between Li <-> Na substitution and hydrogen bonding in five-periodic single-chain silicates nambulite and marsturite: A single-crystal X-ray study
American Mineralogist, 2014, 99, 1462-1470
9017068 CIFCa0.056 H Mn1.944 Na O9 Si3P -17.6844; 6.8913; 6.73493
90.4576; 94.0805; 102.777
346.835Williams, 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 = 4 K
American Mineralogist, 2014, 99, 1755-1760
9017069 CIFCa0.053 H Mn1.947 Na O9 Si3P -17.6888; 6.8934; 6.73781
90.4467; 94.0672; 102.777
347.296Williams, 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 = 150 K
American Mineralogist, 2014, 99, 1755-1760
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
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
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
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
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
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
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
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
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
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
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
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
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
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
9017295 CIFCa Cl2 O4P -16.593; 6.364; 8.557
97.77; 93.52; 110.56
330.776Thewalt, U.; Bugg, C. E.
Crystal structure of calcium chloride tetrahydrate
Acta Crystallographica, Section B, 1973, 29, 615-617
9017344 CIFC H6 Mn N2 O14 P3P -19.747; 9.751; 7.689
99.92; 105.88; 100.08
673.084Averbuch-Pouchot M T; Durif, A.
Crystal chemistry of cyclo-hexaphosphates. IX. structure of tetraammonium dimanganese cyclo-hexaphosphate oxalate hexahydrate
Acta Crystallographica, Section C, 1990, 46, 965-968
9017354 CIFCa0.968 H4 O8 V1.885P -16.2059; 7.0635; 7.7516
93.166; 96.548; 105.883
323.359Kobsch, A.; Downs, R. T.; Domanik, K. J.
Redetermination of metarossite, CaV5+2O6*2H2O
Acta Crystallographica, Section E, 2016, 72, 1280-1284
9017355 CIFAl0.09 Ca1.925 Fe1.615 H K0.015 Mg0.13 Mn0.3 Na0.015 O15 Si4.915P -17.509; 11.697; 6.719
91.433; 93.886; 104.255
570.132Araki, T.; Zoltai, T.
Crystal structure of babingtonite
Zeitschrift fur Kristallographie, 1972, 135, 355-373
9017364 CIFAl3.71 Ca1.72 Na0.28 O16 Si4.29P -18.188; 12.822; 14.196
93.37; 116.04; 90.87
1335.38Chiari, G.; Benna, P.; Bruno, E.
The structure of bytownite (An85). A new refinement
Zeitschrift fur Kristallographie, 1984, 169, 35-49
9017441 CIFFe H Li O5 PP -15.3528; 7.2896; 5.1187
109.359; 97.733; 106.359
174.984Marx, N.; Croguennec, L.; Carlier, D.; Wattiaux, A.; Le Cras, F.; Suard, E.; Delmas, C.
The structure of tavorite LiFePO4(OH) from diffraction and GGA + U studies and its preliminary electrochemical characterization
Dalton Transactions, 2010, 39, 5108-5116
9017455 CIFB2 Ca H8 O8P -17.774; 5.68; 8.136
113.15; 101.67; 107.87
292.206Simonov, M. A.; Kazanskaya, E. V.; Egorov-Tismenko Y K; Zhelezi, E. P.; Belov, N. V.
Refinement of the crystal-structure of frolovite, Ca[B(OH)4]2 Note: T = 18 C
Doklady Akademii Nauk SSSR, 1976, 230, 91-94
9017456 CIFB2 Ca H8 O8P -17.745; 5.667; 8.102
113.24; 101.54; 107.92
289.121Simonov, M. A.; Kazanskaya, E. V.; Egorov-Tismenko Y K; Zhelezi, E. P.; Belov, N. V.
Refinement of the crystal-structure of frolovite, Ca[B(OH)4]2 Note: T = -140 C
Doklady Akademii Nauk SSSR, 1976, 230, 91-94
9017459 CIFAl0.1 Be4 Ca2 Fe2.5 H16 Mg2.2 Mn0.2 O34 P6P -16.668; 9.879; 9.883
73.53; 85.6; 86.93
622.127Rastsvetaeva, R. K.; Barinova, A. V.; Chukanov, N. V.; Pietraszko, A.
Crystal structure of a magnesium-rich triclinic analogue of greifensteinite
Doklady Chemistry, 2004, 398, 191-195
9017468 CIFH11 Na1.43 Nb1.56 O22 Si4 Ti1.395 Zn1.2P -18.975; 8.979; 12.135
74.328; 80.651; 73.959
900.819Pekov, I. V.; Lykova, I. S.; Chukanov, N. V.; Yapaskurt, V. O.; Belakovskiy, D. I.; Zolotarev, A. A.; Zubkova, N. V.
Zvyaginite, NaZnNb2Ti[Si2O7]2O(OH,F)3(H2O)4+x(x<1), a new mineral of the epistolite group from the Lovozero alkaline pluton, Kola Peninsula, Russia
Geology of Ore Deposits, 2014, 56, 644-656
9017473 CIFFe3 H28 O30 S4P -16.319; 6.4521; 15.3158
85.855; 89.828; 79.065
611.46Mereiter, K.
Experimental crystal structure determination
ICSD Communications, 2018, 2018
9017474 CIFFe H7 O8 SP -16.6548; 8.9204; 11.6053
97.26; 95.634; 90.383
679.979Mereiter, K.
Experimental crystal structure determination Note: T = 296 K
ICSD Communications, 2018, 2018
9017475 CIFFe H7 O8 SP -16.6278; 8.8605; 11.579
97.564; 95.709; 90.355
670.595Mereiter, K.
Experimental crystal structure determination Note: T = 100 K
ICSD Communications, 2018, 2018
9017476 CIFFe2 H22 O23 S3P -16.18; 23.583; 6.54
94.14; 101.68; 96.35
923.305Mereiter, K.
Experimental crystal structure determination
ICSD Communications, 2020, 2020
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
9017594 CIFCl2 Cu9 O18 V4P -16.4344; 8.3232; 9.1726
105.338; 96.113; 107.642
442.05Pekov, I. V.; Zubkova, N. V.; Zelenski, M. E.; Yapaskurt, V. O.; Polekhovsky, Y. S.; Fadeeva, O. A.; Pushcharovsky, D. Y.
Yaroshevskite, Cu9O2(VO4)4Cl2, a new mineral from the Tolbachik volcano, Kamchatka, Russia
Mineralogical Magazine, 2013, 77, 107-116
9017603 CIFAs0.98 Cu1.98 H2.955 O6 P0.01 Si0.01 Zn0.02P -15.378; 8.962; 9.841
75.26; 83.56; 79.97
450.545Elliott, P.; Kolitsch, U.; Willis, A. C.; Libowitzky, E.
Description and crystal structure of domerockite, Cu4(AsO4)(AsO3OH)(OH)3*H2O a new mineral from the Dome Rock mine, South Australia
Mineralogical Magazine, 2013, 77, 509-522
9017604 CIFAs2 Ca H4 O8P -18.5606; 7.6926; 5.7206
92.605; 109.9; 109.902
327.479Ondrus, P.; Skala, R.; Plasil, J.; Sejkora, J.; Veselovsky, F.; Cejka, J.; Kallistova, A.; Hlousek, J.; Fejfarova, K.; Skoda, R.; Dusek, M.; Gabasova, A.; Machovic, V.; Lapcak, L.
Svenekite, Ca[AsO2(OH)2]2. a new mineral from Jachymov, Czech Republic
Mineralogical Magazine, 2013, 77, 2711-2724
9017608 CIFAl As3 Ca2 Cu H14 O19P -16.053; 10.2329; 12.9112
87.572; 78.48; 78.697
768.403Kampf, A. R.; Mills, S. J.; Housley, R. M.; Rossman, G. R.; Nash, B. P.; Dini, M.; Jenkins, R. A.
Joteite, Ca2CuAl[AsO4][AsO3(OH)]2(OH)2*5H2O, a new arsenate with a sheet structure and unconnected acid arsenate groups
Mineralogical Magazine, 2013, 77, 2811-2823
9017613 CIFBa0.28 Ca0.87 F0.38 Fe9.62 H16.06 K0.53 Mg0.07 Mn5.97 Na0.72 Nb3.734 O76.84 Si20 Sr0.03 Ti0.93 Zn0.15P -15.3761; 27.506; 18.697
140.301; 93.032; 95.664
1720.94Camara, F.; Sokolova, E.; Hawthorne, F. C.; Rowe, R.; Grice, J. D.; Tait, K. T.
Veblenite, K2[_]2Na(Fe2+5Fe3+4Mn2+7[_])Nb3Ti(Si2O7)2(Si8O22)2O6(OH)10(H2O)3, a new mineral from Seal Lake, Newfoundland and Labrador: mineral description, crystal structure, and a new veblenite Si8O22 ribbon
Mineralogical Magazine, 2013, 77, 2955-2974
9017624 CIFAs4 H16 O20 UP -110.749; 5.044; 19.1778
89.872; 121.534; 76.508
852.039Plasil, J.; Hlousek, J.; Skoda, R.; Novak, M.; Sejkora, J.; Cejka, J.; Veselovsky, F.; Majzlan, J.
Vysokyite, U4+[AsO2(OH)2]4*4H2O, a new mineral from Jachymov, Czech Republic
Mineralogical Magazine, 2013, 77, 3055-3066
9017638 CIFAs3.94 Ca0.26 Cu3.91 H22.46 Mg0.14 Mn0.46 O26 Si0.06P -16.4298; 7.9716; 10.707
85.737; 80.944; 84.982
538.854Plasil, J.; Kasatkin, A. V.; Skoda, R.; Skacha, P.
Klajite, MnCu4(AsO4)2(AsO3OH)2(H2O)10, from Jachymov (Czech Republic): the second world occurrence
Mineralogical Magazine, 2014, 78, 119-129
9017652 CIFC4 H3.36 Ca0.62 Ce4 Nb0.48 O25.68 Si2 Ti1.52P -15.009; 7.533; 15.407
103.061; 91.006; 109.285
531.839Yakovenchuk, V. N.; Krivovichev, S. V.; Ivanyuk, G. Y.; Pakhomovsky, Y. A.; Selivanova, E. A.; Zhitova, E. A.; Kalashnikova, G. O.; Zolotarev, A. A.; Mikhailova, J. A.; Kadyrova, G. I.
Kihlmanite-(Ce), Ce2TiO2[SiO4](HCO3)2(H2O), a new rare-earth mineral from the pegmatites of the Khibiny alkaline massif, Kola Peninsula, Russia
Mineralogical Magazine, 2014, 78, 483-496
9017659 CIFH14 Na14 O50 S10 U2P -15.4581; 11.3288; 18.4163
104.786; 90.092; 96.767
1092.77Kampf, A. R.; Plasil, J.; Kasatkin, A. V.; Marty, J.
Belakovskiite, Na7(UO2)(SO4)4(SO3OH)(H2O)3, a new uranyl sulfate mineral from the Blue Lizard mine, San Juan County, Utah, USA
Mineralogical Magazine, 2014, 78, 639-649
9017669 CIFAl2 Fe0.921 H17.913 O18 P2P -15.24; 10.567; 6.968
106.82; 110.77; 72.23
336.356Gatta, G. D.; Vignola, P.; Meven, M.
On the complex H-bonding network in paravauxite, Fe2+Al2(PO4)2(OH)2*8H2O: A single-crystal neutron diffraction study
Mineralogical Magazine, 2014, 78, 841-850
9017672 CIFH8.5 O66.5 S5 Sb31.5P -111.4292; 29.772; 11.2989
91.152; 119.266; 92.624
3346.44Bindi, L.; Biagioni, C.; Ceccantini, L.; Batoni, M.; Menchetti, S.
Coquandite, Sb6+xO8+x(SO4)(OH)x*(H2O)1-x (x=0.3), from the Cetine mine, Tuscany, Italy: crystal structure and revision of the chemical formula
Mineralogical Magazine, 2014, 78, 871-888
9017678 CIFAs4 Co0.25 Cu4 H20 Ni0.75 O25P -16.401; 8.0041; 10.3969
85.824; 79.873; 84.655
521.232Plasil, J.; Sejkora, J.; Skoda, R.; Novak, M.; Kasatkin, A. V.; Skacha, P.; Veselovsky, F.; Fejfarova, K.; Ondrus, P.
Hlousekite, (Ni,Co)Cu4(AsO4)2(AsO3OH)2(H2O)9, a new member of the lindackerite supergroup from Jachymov, Czech Republic
Mineralogical Magazine, 2014, 78, 1341-1353
9017682 CIFAs2 Cu4 O9P -16.4271; 7.6585; 8.2249
98.396; 112.42; 98.397
361.114Pekov, I. V.; Zubkova, N. V.; Yapaskurt, V. O.; Belakovskiy, D. I.; Vigasina, M. F.; Sidorov, E. G.; Pushcharovsky, D. Y.
New arsenate minerals from the Arsenatnaya fumarole, Tolbachik volcano, Kamchatka, Russia. II. Ericlaxmanite and kozyrevskite, two natural modifications of Cu4O(AsO4)2
Mineralogical Magazine, 2014, 78, 1553-1569
9017685 CIFBi O8 S2 TlP -17.378; 10.657; 10.657
61.31; 70.964; 70.964
680.177Siidra, O. I.; Vergasova, L. P.; Krivovichev, S. V.; Kretser, Y. L.; Zaitsev, A. N.; Filatov, S. K.
Unique thallium mineralization in the fumaroles of Tolbachik volcano, Kamchatka Peninsula, Russia. I. Markhininite, TlBi(SO4)2
Mineralogical Magazine, 2014, 78, 1687-1698
9017693 CIFAs1.95 Cu4.99 O10 S0.02 V0.01 Zn0.04P -15.145; 6.2557; 6.2766
100.064; 96.351; 95.1
196.474Pekov, I. V.; Zubkova, N. V.; Yapaskurt, V. O.; Belakovskiy, D. I.; Vigasina, M. F.; Sidorov, E. G.; Pushcharovsky, D. Y.
New arsenate minerals from the Arsenatnaya fumarole, Tolbachik volcano, Kamchatka, Russia. III. Popovite, Cu5O2(AsO4)2
Mineralogical Magazine, 2015, 79, 133-143
9017694 CIFAl0.02 As0.96 Ca0.02 F0.04 H3.96 Mg0.38 Mn9.56 Na2.12 O38 Si10.74 V0.32P -19.7354; 9.9572; 9.0657
92.691; 117.057; 105.323
740.37Camara, F.; Bittarello, E.; Ciriotti, M. E.; Nestola, F.; Radica, F.; Marchesini, M.
As-bearing new mineral species from Valletta mine, Maira Valley, Piedmont, Italy: II. braccoite, NaMn5[Si5AsO17(OH)](OH), description and crystal structure
Mineralogical Magazine, 2015, 79, 171-189
9017701 CIFBi2 O9 S2P -16.7386; 11.1844; 14.1754
80.082; 88.462; 89.517
1052.01Pinto, D.; Garavelli, A.; Balic-Zunic T
The crystal structure of baliczunicite, Bi2O(SO4)2, a new natural bismuth oxide sulfate
Mineralogical Magazine, 2015, 79, 597-611
9017709 CIFAl0.982 Fe1.368 H18 Mg0.27 Mn0.37 O18 P2 Zn0.03P -15.316; 10.62; 7.118
107.33; 111.33; 72.22
348.453Grey, I. E.; Keck, E.; Mumme, W. G.; Pring, A.; Macrae, C. M.; Glenn, A. M.; Davidson, C. J.; Shanks, F. L.; Mills, S. J.
Kummerite, Mn2+Fe3+Al(PO4)2(OH)2*8H2O, a new laueite-group mineral from the Hagendorf Sud pegmatite, Bavaria, with ordering of Al and Fe3+
Mineralogical Magazine, 2016, 80, 1243-1254
9017710 CIFCa2.01 Ce0.03 Dy0.08 Er0.05 F2.88 Fe0.07 Gd0.08 La0.01 Lu0.01 Mn0.31 Na2.83 Nb0.23 Nd0.03 O15.12 Si4 Sm0.02 Ta0.01 Ti0.76 Y1.21 Yb0.04 Zr0.11P -19.575; 5.685; 7.279
89.985; 100.933; 101.3
381.211Camara, F.; Sokolova, E.; Abdu, Y. A.; Hawthorne, F. C.; Charrier, T.; Dorcet, V.; Carpentier, J. F.
Fogoite-(Y), Na3Ca2Y2Ti(Si2O7)2OF3, a group I TS-block mineral from the Lagoa do Fogo, the Fogo volcano, Sao Miguel Island, the Azores: Description and crystal structure
Mineralogical Magazine, 2017, 81, 369-381
9017726 CIFAs5 Pd16 SbP -17.3344; 7.387; 7.5255
98.869; 102.566; 119.096
331.19Karimova, O. V.; Zolotarev, A. A.; Johanson, B. S.; Evstigneeva, T. L.
The crystal structure of arsenopalladinite, Pd8As2.5Sb0.5, and its relation to mertieite-II, Pd8Sb2.5As0.5
Mineralogical Magazine, 2020, 84, 746-752
9017741 CIFBa0.57 Ca2 O9 Pb0.43 Si3P -16.73527; 9.57172; 6.68718
110.176; 102.606; 83.206
394.465Holtstam, D.; Camara, F.; Karlsson, A.
Instalment of the margarosanite group, and data on walstromite-margarosanite solid solutions from the Jakobsberg Mn-Fe deposit, Varmland, Sweden
Mineralogical Magazine, 2021, 85, 224-232
9017744 CIFC4 H2 Ca1.089 Ce1.911 O13P -16.3916; 6.4005; 12.3898
100.884; 96.525; 100.492
483.635Walter, F.; Bojar, H. P.; Hollerer, C. E.; Mereiter, K.
The crystal structure of galgenbergite-(Ce), CaCe2(CO3)4H2O
Mineralogy and Petrology, 2013, 107, 189-199
9017745 CIFCu5 H14 O18 S2P -16.0731; 11.0597; 5.5094
102.883; 92.348; 92.597
359.867Pekov, I. V.; Zubkova, N. V.; Yapaskurt, V. O.; Belakovskiy, D. I.; Chukanov, N. V.; Kasatkin, A. V.; Kuznetsov, A. M.; Pushcharovsky, D. Y.
Kobyashevite, Cu5(SO4)2(OH)6*4H2O, a new devilline-group mineral from the Vishnevye Mountains, South Urals, Russia
Mineralogy and Petrology, 2013, 107, 201-210
9017746 CIFAl0.01 Ca2 Fe1.6 H Mg0.07 Mn0.32 O15 Si5P -17.4753; 11.6397; 6.6897
91.594; 93.934; 104.312
562.074Nagashima, M.; Mitani, K.; Akasaka, M.
Structural variation of babingtonite depending on cation distribution at the octahedral sites Note: Sample 1
Mineralogy and Petrology, 2014, 108, 287-301
9017747 CIFAl0.02 Ca2 Fe1.49 H Mg0.21 Mn0.28 O15 Si5P -17.4771; 11.6376; 6.6841
91.591; 93.861; 104.337
561.633Nagashima, M.; Mitani, K.; Akasaka, M.
Structural variation of babingtonite depending on cation distribution at the octahedral sites Note: Sample 2
Mineralogy and Petrology, 2014, 108, 287-301
9017748 CIFAl0.04 Ca2 Fe1.72 H Mg0.13 Mn0.11 O15 Si5P -17.4664; 11.6276; 6.6813
91.564; 93.889; 104.203
560.441Nagashima, M.; Mitani, K.; Akasaka, M.
Structural variation of babingtonite depending on cation distribution at the octahedral sites Note: Sample 3
Mineralogy and Petrology, 2014, 108, 287-301
9017749 CIFAl0.05 Ca2 Fe1.74 H Mg0.03 Mn0.18 O15 Si5P -17.4692; 11.6315; 6.6865
91.589; 93.873; 104.208
561.264Nagashima, M.; Mitani, K.; Akasaka, M.
Structural variation of babingtonite depending on cation distribution at the octahedral sites Note: Sample 4
Mineralogy and Petrology, 2014, 108, 287-301
9017750 CIFAl0.02 Ca2 Fe1.5 H Mg0.13 Mn0.35 O15 Si5P -17.478; 11.6418; 6.6892
91.564; 93.937; 104.326
562.313Nagashima, M.; Mitani, K.; Akasaka, M.
Structural variation of babingtonite depending on cation distribution at the octahedral sites Note: Sample 5
Mineralogy and Petrology, 2014, 108, 287-301
9017751 CIFAl0.06 Ca2 Fe1.73 H Mg0.11 Mn0.1 O15 Si5P -17.4672; 11.6235; 6.6805
91.53; 93.88; 104.222
560.211Nagashima, M.; Mitani, K.; Akasaka, M.
Structural variation of babingtonite depending on cation distribution at the octahedral sites Note: Sample 7
Mineralogy and Petrology, 2014, 108, 287-301
9017752 CIFAl0.03 Ca2 Fe1.2 H Mg0.03 Mn0.74 O15 Si5P -17.4967; 11.6632; 6.7014
91.602; 93.989; 104.574
565.086Nagashima, M.; Mitani, K.; Akasaka, M.
Structural variation of babingtonite depending on cation distribution at the octahedral sites Note: Sample 6
Mineralogy and Petrology, 2014, 108, 287-301
9017800 CIFAl2 B Ca1.3 H Mn1.7 O16 Si4P -17.165; 9.12; 8.947
91.9; 98.8; 76.9
562.721Basso, R.; Della Giusta, A.; Vlaic, G.
La struttura della tinzenite
Periodico di Mineralogia, 1973, 425, 369-379
9017832 CIFAl2 H32.8 O28.4 S3P -17.425; 26.975; 6.0608
90.03; 97.66; 91.94
1202.38Menchetti, S.; Sabelli, C.
Alunogen. Its structure and twinning
Tschermaks Mineralogische und Petrographische Mitteilungen, 1974, 21, 164-178
9017833 CIFAs0.44 Bi3 H O10 P0.45 V1.1P -16.909; 7.401; 9.399
110.72; 106.05; 92.2
427.008Walenta, K.; Dunn, P. J.; Hentschel, G.; Mereiter, K.
Schumacherit, ein neues Wismutmineral von Schneeberg in Sachsen Note: structure determined after the paper was published: Schumacherite, Bi3O(OH)((V0.55,As0.22,P0.23)O4)2, using a triclinic reduced cell instead of the non-reduced cell applied in the publication
Tschermaks Mineralogische und Petrographische Mitteilungen, 1983, 31, 165-173
9017838 CIFBa0.04 Ca0.12 Fe0.36 H1.6 K0.16 Mg0.14 Mn0.44 Na0.46 Nb0.82 O41.42 Si8 Ti5.32 Zn2.62 Zr0.24P -18.743; 8.698; 11.581
91.54; 98.29; 105.65
837.184Pekov, I. V.; Britvin, S. N.; Zubkova, N. V.; Chukanov, N. V.; Bryzfalov, I. A.; Lykova, I. S.; Belakovskiy, D. I.; Pushcharovsky, D. Y.
Vigrishinite, Zn2Ti4-xSi4O14(OH,H2O,[_])8, a new mineral from Lovozero alkaline massif (Kola Peninsula, Russia)
Zapiski Rossiiskogo Mineralogicheskogo Obshchetstva, 2012, 141, 12-27
9017852 CIFC2 H12 Al2 Ca O14P -15.71; 6.54; 14.64
81.8; 83.9; 86.5
537.469Stachowicz, M.; Parafiniuk, J.; Wilson, C.; Coles, S.; Wozniak, K.
Applications of Hirshfeld surfaces to mineralogy: An example of alumohydrocalcite, and the classification of the dundasite group minerals
American Mineralogist, 2015, 100, 110-119
9017871 CIFCa O3 SiP -16.697; 9.2986; 6.6501
83.458; 76.226; 69.581
376.722Brenker, F. E.; Nestola, F.; Brenker, L.; Peruzzo, L.; Harris, J. W.
Origin, properties, and structure of breyite: The second most abundant mineral inclusion in super-deep diamonds
American Mineralogist, 2021, 106, 38-43
9017886 CIFFe H7 O8 SP -16.6559; 8.9161; 11.6069
97.221; 95.655; 90.412
679.885Majzlan, J.; Dachs, E.; Benisek, A.; Plasil, J.; Sejkora, J.
Thermodynamics, crystal chemistry and structural complexity of the Fe(SO4)(OH)(H2O)x phases: Fe(SO4)(OH), metahohmannite, butlerite, parabutlerite, amarantite, hohmannite, and fibroferrite
European Journal of Mineralogy, 2018, 30, 259-275
9017891 CIFAl F Fe0.02 H34 Mg0.98 O25 S2P -16.6749; 6.773; 14.9076
79.604; 80.163; 62.475
584.9Mauro, D.; Biagioni, C.; Pasero, M.; Skogby, H.
Crystal-chemistry of sulfates From the Apuan Alps (Tuscany, Italy). III. Mg-rich sulfate assemblages from the Fornovolasco mining complex
Atti della Societa Toscana di Scienze Naturali, Memorie, Serie A, 2019, 126, 33-44
9017909 CIFFe2 H16 O17 S2P -19.1428; 10.9346; 7.2168
90.547; 90.612; 107.375
688.463Ventruti, G.; Ventura, G. D.; Orlando, R.; Scordari, F.
Structure refinement, hydrogen-bond system and vibrational spectroscopy of hohmannite, Fe3+2[O(SO4)2]*8H2O
Mineralogical Magazine, 2015, 79, 11-24
9017911 CIFFe H7 O8 SP -18.976; 11.678; 6.698
95.65; 90.36; 97.2
693.052Susse, P.
Crystal structure of amarantite
Naturwissenschaften, 1967, 54, 642-643
9017913 CIFFe H7 O8 SP -18.935; 11.631; 6.661
95.58; 90.28; 97.28
683.293Giacovazzo, C.; Menchetti, S.
Sulla struttura della amarantite
Rendiconti della Societa Italiana di Mineralogia e Petrologia, 1969, 25, 399-406
9017917 CIFFe2 H22 O23 S3P -16.1741; 23.5062; 6.5282
85.633; 101.553; 83.745
918.034Westland, R. E.
New phases in the hydrous ferric sulfate system, a supporting argument that the mineral lausenite is of formula Fe2(SO4)3*5H2O and the crystal structure refinement and hydrogen bonding scheme of the minerals quenstedtite and romerite
Master's, 2012
9017918 CIFFe3 H28 O30 S4P -16.4274; 15.249; 6.3464
89.72; 100.79; 85.96
609.4Westland, R. E.
New phases in the hydrous ferric sulfate system, a supporting argument that the mineral lausenite is of formula Fe2(SO4)3*5H2O and the crystal structure refinement and hydrogen bonding scheme of the minerals quenstedtite and romerite
Master's, 2012
9017919 CIFFe2.937 H28 Mg0.063 O30 S4P -16.4512; 15.3227; 6.3253
90.131; 100.9; 85.966
612.414Mauro, D.; Biagioni, C.; Pasero, M.; Zaccarini, F.
Crystal-chemistry of sulfates from Apuan Alps (Tuscany, Italy). II. Crystal structure and hydrogen bonding system of romerite, Fe2+Fe3+2(SO4)4(H2O)14
Atti della Societa Toscana di Scienze Naturali, Memorie, Serie A, 2019, 125, 5-11
9017920 CIFFe2.68 H28 O30 S4P -16.448; 15.248; 6.307
90.14; 100.93; 94.12
607.195Wang, Q.; Li, W.
Crystal structure of a new ferric sulfate mineral
Kexue Tongbao, 1988, 33, 1783-1787

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