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Smrčok, L’ubomír, Kolesnikov, Alexander I., Rieder, Milan (2012) Combined inelastic neutron scattering and solid-state DFT study of dynamics of hydrogen atoms in trioctahedral 1M phlogopite. Physics and Chemistry of Minerals, 39 (9) 779-787 doi:10.1007/s00269-012-0532-x

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Reference TypeJournal (article/letter/editorial)
TitleCombined inelastic neutron scattering and solid-state DFT study of dynamics of hydrogen atoms in trioctahedral 1M phlogopite
JournalPhysics and Chemistry of Minerals
AuthorsSmrčok, L’ubomírAuthor
Kolesnikov, Alexander I.Author
Rieder, MilanAuthor
Year2012 (October)Volume39
Page(s)779-787Issue9
PublisherSpringer Science and Business Media LLC
DOIdoi:10.1007/s00269-012-0532-xSearch in ResearchGate
Mindat Ref. ID153785Long-form Identifiermindat:1:5:153785:1
GUID0c02d8cf-210c-4ffa-b447-3ba5a57ac6d2
Full ReferenceSmrčok, L’ubomír, Kolesnikov, Alexander I., Rieder, Milan (2012) Combined inelastic neutron scattering and solid-state DFT study of dynamics of hydrogen atoms in trioctahedral 1M phlogopite. Physics and Chemistry of Minerals, 39 (9) 779-787 doi:10.1007/s00269-012-0532-x
Plain TextSmrčok, L’ubomír, Kolesnikov, Alexander I., Rieder, Milan (2012) Combined inelastic neutron scattering and solid-state DFT study of dynamics of hydrogen atoms in trioctahedral 1M phlogopite. Physics and Chemistry of Minerals, 39 (9) 779-787 doi:10.1007/s00269-012-0532-x
In(2012, October) Physics and Chemistry of Minerals Vol. 39 (9) Springer Science and Business Media LLC

References Listed

These are the references the publisher has listed as being connected to the article. Please check the article itself for the full list of references which may differ. Not all references are currently linkable within the Digital Library.

Brandenburg K (2006) Diamond. Version 3.2 h. Crystal impact GbR, Bonn, Germany
Dove MT (2002) An introduction to the use of neutron scattering methods in mineral sciences. Eur J Miner 14:202–224
Jiménez-Ruiz M, Ferrage E, Delville A, Michot LJ (2012) Anisotropy on the collective dynamics of water confined in swelling clay minerals. J Phys Chem A. doi: 10.1021/jp201543t
Korzhinskii DS (1937) Petrological analysis of phlogopite and muscovite deposits in East Siberia [in Russian]. In: PMTatarinov (ed) Micas of the USSR [in Russian]. ONTI-NKTP-SSSR, Leningrad, Moskva, pp 93–114
Mellini M (1982) The crystal structure of lizardite 1T: hydrogen bonds and polytypism. Am Miner 67:587–598
Mitchell PCH, Parker SF, Ramirez-Cuesta AJ, Tomkinson J (2005) Vibrational spectroscopy with neutrons. World Scientific, Singapore
Neumann DA (1995) Quasielastic and inelastic neutron scattering studies of layered silicates. In: Pinnavaia TJ, Thorpe MF (eds) In access in nanoporpous materials. Plenum, New York, pp 381–404
Portmann S, Luthi HP (2000) MOLEKEL: an interactive molecular graphics tool. Chimia 54:766–769
Reznitsky LZ (1978) Mineral associations of magnesial skarns in Sludyanka phlogopite deposits. In: Shmakin BM (ed) Mineralogy of Cisbaikalia, a guide-book for Baikal excursions of the XIth general meeting of the international mineralogical association. USSR Academy of Sciences, Siberian Branch, Irkutsk, pp 169–183
Not Yet Imported: Journal of Computer-Aided Molecular Design - journal-article : 10.1023/A:1008193805436

If you would like this item imported into the Digital Library, please contact us quoting Journal ID 40431
Spek AL (2009) Structure validation in chemical crystallography. Acta Cryst D65:148–155
Steinfink H (1962) Crystal structure of a trioctahedral mica: phlogopite. Am Miner 47:886–896
Stevens RE (1946) A system for calculating analyses of micas and related minerals to end members. US Geol Surv Bull 950:101–119
Ushakova EN (1971) Biotites of metamorphic rocks [in Russian]. Publishing House Nauka, Moskva, p 346


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