Thermal analysis and hot stage Raman spectroscopy of the basic copper arsenate mineral : euchroite


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

01/04/2010

Resumo

The thermal analysis of euchroite shows two mass loss steps in the temperature range 100 to 105°C and 185 to 205°C. These mass loss steps are attributed to dehydration and dehydroxylation of the mineral. Hot stage Raman spectroscopy (HSRS) has been used to study the thermal stability of the mineral euchroite, a mineral involved in a complex set of equilibria between the copper hydroxy arsenates: euchroite Cu2(AsO4)(OH).3H2O → olivenite Cu2(AsO4)(OH) → strashimirite Cu8(AsO4)4(OH)4.5H2O → arhbarite Cu2Mg(AsO4)(OH)3. Hot stage Raman spectroscopy inolves the collection of Raman spectra as a function of the temperature. HSRS shows that the mineral euchroite decomposes between 125 and 175 °C with the loss of water. At 125 °C, Raman bands are observed at 858 cm-1 assigned to the ν1 AsO43- symmetric stretching vibration and 801, 822 and 871 cm-1 assigned to the ν3 AsO43- (A1) antisymmetric stretching vibration. A distinct band shift is observed upon heating to 275 °C. At 275 °C the four Raman bands are resolved at 762, 810, 837 and 862 cm-1. Further heating results in the diminution of the intensity in the Raman spectra and this is attributed to sublimation of the arsenate mineral. Hot stage Raman spectroscopy is most useful technique for studying the thermal stability of minerals especially when only very small amounts of mineral are available.

Formato

application/pdf

Identificador

http://eprints.qut.edu.au/31834/

Publicador

Springer

Relação

http://eprints.qut.edu.au/31834/2/c31834.pdf

DOI:10.1007/s10973-009-0599-x

Frost, Ray L. & Bahfenne, Silmarilly (2010) Thermal analysis and hot stage Raman spectroscopy of the basic copper arsenate mineral : euchroite. Journal of Thermal Analysis and Calorimetry, 100(1), pp. 89-94.

Direitos

Copyright 2010 Akadémiai Kiadó

The original publication is available at SpringerLink http://www.springerlink.com

Fonte

Chemistry; Faculty of Science and Technology

Palavras-Chave #030600 PHYSICAL CHEMISTRY (INCL. STRUCTURAL) #030606 Structural Chemistry and Spectroscopy #030602 Chemical Thermodynamics and Energetics #copper, arsenate, olivenite, cornwallite, cornubite, clinoclase thermal stage, Raman spectroscopy
Tipo

Journal Article