Crystallography Open Database

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9009827 CIFAl Ca Cu O9 Si2C 1 2/m 112.926; 11.496; 4.696
90; 100.81; 90
685.43Groat, L. A.; Hawthorne, F. C.
Refinement of the structure of papagoite, CaCuAlSi2O6(OH)3 Note: U(1,1)(O3) changed from .0068 to match reported Uiso
Mineralogy and Petrology, 1987, 37, 89-96
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
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
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
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
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
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
9017755 CIFAl2.148 Ca2.07 Cl0.86 Fe4.68 H1.14 K0.61 Mg0.06 Mn0.06 Na0.2 O23.14 Si5.972 Ti0.04C 1 2/m 19.9587; 18.2524; 5.3409
90; 105.02; 90
937.649Ren, G.; Li, G.; Shi, J.; Gu, X.; Fan, G.; Yu, A.; Liu, Q.; Shen, G.
Potassic-hastingsite, KCa2(Fe2+4Fe3+)(Si6Al2)O22(OH)2, from the Keshiketeng Banner, Inner Mongolia, China: description of the neotype and its implication
Mineralogy and Petrology, 2020, 114, 403-412
9014333 CIFAl3 Bi0.49 Ca0.23 H6 O14 P1.8 Si0.2 Sr0.28R -3 m :H7.0059; 7.0059; 16.3431
90; 90; 120
694.693Mills, S. J.; Kampf, A. R.; Raudsepp, M.; Birch, W. D.
The crystal structure of waylandite from Wheal Remfry, Cornwall, United Kingdom
Mineralogy and Petrology, 2010, 100, 249-253
1548717 CIFAl4 Fe2 O18 Si5C c c m17.2306; 9.8239; 9.2892
90; 90; 90
1572.4Udo Haefeker; Reinhard Kaindl; Peter Tropper; Hannes Kruger; Volker Kahlenberg; Maria Orlova
Structural investigations of the two polymorphs of synthetic Fe-cordierite and Raman spectroscopy of hexagonal Fe-cordierite
Mineralogy and Petrology, 2014, 108, 469-478
1548718 CIFAl4 Fe2 O18 Si5P 6/m c c9.8801; 9.8801; 9.2852
90; 90; 120
784.95Udo Haefeker; Reinhard Kaindl; Peter Tropper; Hannes Kruger; Volker Kahlenberg; Maria Orlova
Structural investigations of the two polymorphs of synthetic Fe-cordierite and Raman spectroscopy of hexagonal Fe-cordierite
Mineralogy and Petrology, 2014, 108, 469-478
1531372 CIFAl6.78 B3.24 Ca0.1 F0.11 Fe1.8 H3.31 K0.06 Mg0.198 Mn0.018 Na0.64 O30.89 Si5.76 Ti0.11 Zn0.03R 3 m :H15.951; 15.951; 7.164
90; 90; 120
1578.56Ertl, A.; Hughes, J.M.
The crystal structure of an aluminum-rich schorl overgrown by boron-rich olenite from Koralpe, Styria, Austria
Mineralogy and Petrology, 2002, 75, 69-78
9009840 CIFAl9 Ca3 H36 K O51 Si9 SrP 63/m m c13.224; 13.224; 15.988
90; 90; 120
2421.31Ruedinger B; Tillmanns E; Hentschel G
Bellbergite - a new mineral with the zeolite structure type EAB
Mineralogy and Petrology, 1993, 48, 147-152
9009849 CIFAs Cu H O9 Pb2 SP 1 21/m 17.804; 5.89; 8.964
90; 112.29; 90
381.246Zubkova, N. V.; Pushcharovsky, D. Y.; Giester, G.; Tillmanns, E.; Pekov, I. V.; Kleimenov, D. A.
The crystal structure of arsentsumebite, Pb2Cu[(As,S)O4]2(OH) Locality: oxidation zone of the Berezovskoye gold deposit, Middle Urals, Russia
Mineralogy and Petrology, 2002, 75, 79-88
9015195 CIFAs Cu1.45 Fe0.55 O5P n n m8.6235; 8.2757; 5.9501
90; 90; 90
424.632Mills, S. J.; Kampf, A. R.; Poirier, G.; Raudsepp, M.; Steele, I. M.
Auriacusite, Fe3+Cu2+AsO4O, the first M3+ member of the olivenite group, from the Black Pine mine, Montana, USA
Mineralogy and Petrology, 2010, 99, 113-120
9017756 CIFAs0.65 Co1.08 Fe0.72 Ni16.2 S16 Sb3.35I 4/m m m9.7856; 9.7856; 10.7582
90; 90; 90
1030.18Zaccarini, F.; Luca Bindi, L.; Tsikouras, B.; Grammatikopoulos, T.; Stanley, C. J.; Garuti, G.
Arsenotucekite, Ni18Sb3AsS16, a new mineral from the Tsangli chromitites, Othrys ophiolite, Greece
Mineralogy and Petrology, 2020, 114, 435-442
9017754 CIFAs2 Ca H8 O12 Zn2P 1 c 19.416; 5.3; 10.893
90; 91.77; 90
543.354Rieck, B.; Giester, G.; Lengauer, C. L.; Chanmuang, N. C.; Topa, D.
Stergiouite, CaZn2(AsO4)2*4H2O - a new mineral from the Lavrion Mining District, Greece
Mineralogy and Petrology, 2020, 114, 319-327
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

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