Crystallography Open Database

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Searching space group like 'P n n m'

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9012583 CIFNi Sb2P n n m5.1837; 6.3184; 3.4808
90; 90; 90
114.006Kjekshus, A.; Peterzens, P. G.; Rakke, T.; Andresen, A. F.
Compounds with the marcasite type crystal structure. XIII. Structural and magnetic properties of CrtFe1-tAs2, CrtFe1-tSb2, Fe1-tNitAs2 and Fe1-tNitSb2 Sample: NiSb2
Acta Chemica Scandinavica A, 1979, 33, 469-480
9013067 CIFFe S2P n n m4.4446; 5.4246; 3.3864
90; 90; 90
81.647Rieder, M.; Crelling, J. C.; Sustai, O.; Drabek, M.; Weiss, Z.; Klementova, M.
Arsenic in iron disulfides in a brown coal from the North Bohemian Basin, Czech Republic Sample: As-free marcasite
International Journal of Coal Geology, 2007, 71, 115-121
9013068 CIFAs0.4 Fe S1.6P n n m4.449; 5.432; 3.391
90; 90; 90
81.95Rieder, M.; Crelling, J. C.; Sustai, O.; Drabek, M.; Weiss, Z.; Klementova, M.
Arsenic in iron disulfides in a brown coal from the North Bohemian Basin, Czech Republic Sample: Natural As-marcasite
International Journal of Coal Geology, 2007, 71, 115-121
9013419 CIFBP n n m5.0576; 5.6245; 6.9884
90; 90; 90
198.795Zarechnaya, E. Y.; Dubrovinsky, L.; Dubrovinskaia, N.; Filinchuk, Y.; Chernyshov, D.; Dmitriev, V.; Miyajima, N.; El Goresy, A.; Braun, H. F.; Van Smaalen, S.; Kantor, I.; Kantor, A.; Prakapenka, V.; Hanfland, M.; Mikhaylushkin, A. S.; Abrikosov, I. A.; Simak, S. I.
Superhard semiconducting optically transparent high pressure phase of boron Note: crystal quenched from 20 GPa, 1700 K
Physical Review Letters, 2009, 102, 185501-1185501-4
9013942 CIFCu3 H4 Mo O8P n n m8.5201; 12.545; 6.0794
90; 90; 90
649.795Burns, P. C.
The crystal structure of szenicsite, Cu3MoO4(OH)4
Mineralogical Magazine, 1998, 62, 461-469
9013999 CIFAs0.02 Cu0.94 H O5 P0.98 Zn1.06P n n m8.323; 8.251; 5.861
90; 90; 90
402.493Williams, P. A.; Leverett, P.; Birch, W. D.; Hibbs, D. E.; Kilitsch, U.; Mihajlovic, T.
Zinc-rich zincolibethenite from Broken Hill, New South Wales Note: z-coordinate of O3 altered by communication with authors, April 2010
Australian Journal of Mineralogy, 2006, 12, 3-7
9014026 CIFCl10 Cu6.15 K0.62 O8 Pb1.45 Se2 ZnP n n m9.132; 19.415; 13.213
90; 90; 90
2342.64Shuvalov, R. R.; Vergasova, L. P.; Semenova, T. F.; Filatov, S. K.; Krivovichev, S. V.; Siidra, O. I.; Rudashevsky, N. S.
Prewittite, KPb1.5Cu6Zn(SeO3)2O2Cl10, a new mineral from Tolbachik fumaroles, Kamchatka peninsula, Russia: Description and crystal structure
American Mineralogist, 2013, 98, 463-469
9014569 CIFC24 H48 Ca12 K7.11 O112 U8P n n m17.015; 18.048; 18.394
90; 90; 90
5648.55Hughes Kubatko, K. A.; Burns, P. C.
The crystal structure of a novel uranyl tricarbonate, K2Ca3[(UO2)(CO3)3]2(H2O)6
The Canadian Mineralogist, 2004, 42, 997-1003
9014615 CIFCr H2 O2P n n m4.8691; 4.3184; 2.9594
90; 90; 90
62.226Jahn, S.; Wunder, B.; Koch-Muller M; Tarrieu, L.; Pohle, M.; Watenphul, A.; Taran, M. N.
Pressure-induced hydrogen bond symmetrisation in guyanaite, B-CrOOH: evidence from spectroscopy and ab initio simulations Sample: Run #630
European Journal of Mineralogy, 2012, 24, 839-850
9015092 CIFAs2 Fe0.37 Ni0.63P n n m5.3971; 6.1893; 2.9539
90; 90; 90
98.673Kjekshus, A.; Peterzens, P. G.; Rakke, T.; Andresen, A. F.
Compounds with the marcasite type crystal structure. XIII. Structural and magnetic properties of CrtFe1-tAs2, CrtFe1-tSb2, Fe1-tNitAs2 and Fe1-tNitSb2
Acta Chemica Scandinavica A, 1979, 33, 469-480
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
9015967 CIFCr H2 O2P n n m4.8623; 4.2972; 2.9567
90; 90; 90
61.778Jahn, S.; Wunder, B.; Koch-Muller M; Tarrieu, L.; Pohle, M.; Watenphul, A.; Taran, M. N.
Pressure-induced hydrogen bond symmetrisation in guyanaite, B-CrOOH: evidence from spectroscopy and ab initio simulations Sample: Run LT9
European Journal of Mineralogy, 2012, 24, 839-850
9017079 CIFH Mg0.5 O2 Si0.5P n n m4.733; 4.325; 2.842
90; 90; 90
58.176Bindi, L.; Nishi, M.; Tsuchiya, J.; Irifune, T.
Crystal chemistry of dense hydrous magnesium silicates: The structure of phase H, MgSiH2O4, synthesized at 45 GPa and 1000 C
American Mineralogist, 2014, 99, 1802-1805
9017428 CIFFe Se2P n n m4.804; 5.781; 3.5817
90; 90; 90
99.471Lavina, B.; Downs, R. T.; Sinogeikin, S.
The structure of ferroselite, FeSe2, at pressures up to 46 GPa and temperatures down to 50 K: A single-crystal micro-diffraction analysis Note: P = 0.0 GPa
Crystals, 2018, 8
9017429 CIFFe Se2P n n m4.771; 5.756; 3.5663
90; 90; 90
97.937Lavina, B.; Downs, R. T.; Sinogeikin, S.
The structure of ferroselite, FeSe2, at pressures up to 46 GPa and temperatures down to 50 K: A single-crystal micro-diffraction analysis Note: P = 1.7 GPa
Crystals, 2018, 8
9017430 CIFFe Se2P n n m4.751; 5.729; 3.5467
90; 90; 90
96.536Lavina, B.; Downs, R. T.; Sinogeikin, S.
The structure of ferroselite, FeSe2, at pressures up to 46 GPa and temperatures down to 50 K: A single-crystal micro-diffraction analysis Note: P = 3.83 GPa
Crystals, 2018, 8
9017431 CIFFe Se2P n n m4.698; 5.667; 3.5088
90; 90; 90
93.417Lavina, B.; Downs, R. T.; Sinogeikin, S.
The structure of ferroselite, FeSe2, at pressures up to 46 GPa and temperatures down to 50 K: A single-crystal micro-diffraction analysis Note: P = 8.1 GPa
Crystals, 2018, 8
9017432 CIFFe Se2P n n m4.603; 5.581; 3.4492
90; 90; 90
88.608Lavina, B.; Downs, R. T.; Sinogeikin, S.
The structure of ferroselite, FeSe2, at pressures up to 46 GPa and temperatures down to 50 K: A single-crystal micro-diffraction analysis Note: P = 17.3 GPa
Crystals, 2018, 8
9017433 CIFFe Se2P n n m4.555; 5.524; 3.409
90; 90; 90
85.777Lavina, B.; Downs, R. T.; Sinogeikin, S.
The structure of ferroselite, FeSe2, at pressures up to 46 GPa and temperatures down to 50 K: A single-crystal micro-diffraction analysis Note: P = 24.4 GPa
Crystals, 2018, 8
9017434 CIFFe Se2P n n m4.488; 5.471; 3.3734
90; 90; 90
82.83Lavina, B.; Downs, R. T.; Sinogeikin, S.
The structure of ferroselite, FeSe2, at pressures up to 46 GPa and temperatures down to 50 K: A single-crystal micro-diffraction analysis Note: P = 32 GPa
Crystals, 2018, 8

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