REFINED RELATIONSHIP BETWEEN THE POSITION OF THE FUNDAMENTAL OH STRETCHING AND THE FIRST OVERTONES FOR CLAYS

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dc.contributor.author Petit S.
dc.contributor.author Decarreau A.
dc.contributor.author Martin F.
dc.contributor.author Buchet R.
dc.date.accessioned 2022-11-05T05:56:24Z
dc.date.available 2022-11-05T05:56:24Z
dc.date.issued 2004
dc.identifier https://www.elibrary.ru/item.asp?id=13803196
dc.identifier.citation Physics and Chemistry of Minerals, 2004, 31, 9, 585-592
dc.identifier.issn 0342-1791
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/39531
dc.description.abstract The aim of this paper is to determine a relationship between the wavenumbers of the first OH-stretching overtones (W2OH) and the wavenumbers of the OH-stretching fundamentals (WOH) to help to interpret the near-infrared (NIR) spectra. The first overtone (2OH) bands appear at wavenumbers less than twice those of the fundamental bands (OH), due to the anharmonic character of vibrations, X = W2OH/2 - WOH, with X being the anharmonicity constant. Talc samples with various crystal chemistries are used to solve the equation and the experimental data are well fitted with X = –85.6 cm–1. As far as the authors are aware, it is the first time that the anharmonicity constant for the OH-stretching vibrations is determined for phyllosilicates. The anharmonicity constant remains almost unchanged for several types of clay samples. Therefore the relation, established from talc samples because their absorption bands are narrow and their wavenumber range of OH vibrations is wide, can be used for any other clay minerals.
dc.subject Infrared spectroscopy
dc.subject Near-infrared spectroscopy
dc.subject Clay minerals
dc.subject Anharmonicity
dc.subject Crystal chemistry
dc.title REFINED RELATIONSHIP BETWEEN THE POSITION OF THE FUNDAMENTAL OH STRETCHING AND THE FIRST OVERTONES FOR CLAYS
dc.type Статья


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