Raman spectroscopic study of the multi-anion mineral dixenite CuMn2+14Fe3+(AsO3)5(SiO4)2(AsO4)(OH)6


Autoria(s): Frost, Ray L.; Bahfenne, Silmarilly
Data(s)

10/04/2010

Resumo

The mixed anion mineral dixenite has been studied by Raman spectroscopy, complimented with infrared spectroscopy. The Raman spectrum of dixenite shows bands at 839 and 813 cm-1 assigned to the (AsO3)3- symmetric and antisymmetric stretching modes. The most intense Raman band of dixenite is the band at 526 cm-1 and is assigned to the ν2 AsO33- bending mode. DFT calculations enabled the position of AsO22- symmetric stretching mode at 839 cm-1, the antisymmetric stretching mode at 813 cm-1, and the deformation mode at 449 cm-1 to be calculated. Raman bands at 1026 and 1057 cm-1 are assigned to the SiO42- symmetric stretching vibrations and at 1349 and 1386 cm-1 to the SiO42- antisymmetric stretching vibrations. Both Raman and infrared spectra indicate the presence of water in the structure of dixenite. This brings into question the commonly accepted formula of dixenite as CuMn2+14Fe3+(AsO3)5(SiO4)2(AsO4)(OH)6. The formula may be better written as CuMn2+14Fe3+(AsO3)5(SiO4)2(AsO4)(OH)6•xH2O.

Formato

application/pdf

Identificador

http://eprints.qut.edu.au/31715/

Publicador

John Wiley & Sons

Relação

http://eprints.qut.edu.au/31715/1/c31715.pdf

DOI:10.1002/jrs.2368

Frost, Ray L. & Bahfenne, Silmarilly (2010) Raman spectroscopic study of the multi-anion mineral dixenite CuMn2+14Fe3+(AsO3)5(SiO4)2(AsO4)(OH)6. Journal of Raman Spectroscopy, 41(4), pp. 465-468.

Direitos

Copyright 2010 John Wiley & Sons

The definitive version is available at www3.interscience.wiley.com

Fonte

Chemistry; Faculty of Science and Technology

Palavras-Chave #030603 Colloid and Surface Chemistry #030600 PHYSICAL CHEMISTRY (INCL. STRUCTURAL) #030606 Structural Chemistry and Spectroscopy #dixenite, arsenate, arsenite, silicate, Raman and infrared spectroscopy
Tipo

Journal Article