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Tutti, Faramarz
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author Swamy, Varghese
Dubrovinsky, Leonid S.
Tutti, Faramarz
spellingShingle Swamy, Varghese
Dubrovinsky, Leonid S.
Tutti, Faramarz
Journal of the American Ceramic Society
High‐Temperature Raman Spectra and Thermal Expansion of Wollastonite
Materials Chemistry
Ceramics and Composites
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spelling Swamy, Varghese Dubrovinsky, Leonid S. Tutti, Faramarz 0002-7820 1551-2916 Wiley Materials Chemistry Ceramics and Composites http://dx.doi.org/10.1111/j.1151-2916.1997.tb03113.x <jats:p>Unpolarized single‐crystal Raman spectra in the temperature interval of 298–1235 K and powder X‐ray diffractometry data from room temperature up to 1295 K have been obtained from a natural triclinic wollastonite of almost‐ideal composition. Room‐temperature spectra, along with the temperature dependencies of nine major Raman modes, are presented. The temperature shifts of the Raman modes indicate a discontinuity in the temperature range of 950–980 K. No corresponding changes are observed in the temperature dependencies of the lattice parameters. Thermal expansion coefficients for the lattice parameters in the temperature range of 298–1295 K are given.</jats:p> High‐Temperature Raman Spectra and Thermal Expansion of Wollastonite Journal of the American Ceramic Society
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title High‐Temperature Raman Spectra and Thermal Expansion of Wollastonite
title_unstemmed High‐Temperature Raman Spectra and Thermal Expansion of Wollastonite
title_full High‐Temperature Raman Spectra and Thermal Expansion of Wollastonite
title_fullStr High‐Temperature Raman Spectra and Thermal Expansion of Wollastonite
title_full_unstemmed High‐Temperature Raman Spectra and Thermal Expansion of Wollastonite
title_short High‐Temperature Raman Spectra and Thermal Expansion of Wollastonite
title_sort high‐temperature raman spectra and thermal expansion of wollastonite
topic Materials Chemistry
Ceramics and Composites
url http://dx.doi.org/10.1111/j.1151-2916.1997.tb03113.x
publishDate 1997
physical 2237-2247
description <jats:p>Unpolarized single‐crystal Raman spectra in the temperature interval of 298–1235 K and powder X‐ray diffractometry data from room temperature up to 1295 K have been obtained from a natural triclinic wollastonite of almost‐ideal composition. Room‐temperature spectra, along with the temperature dependencies of nine major Raman modes, are presented. The temperature shifts of the Raman modes indicate a discontinuity in the temperature range of 950–980 K. No corresponding changes are observed in the temperature dependencies of the lattice parameters. Thermal expansion coefficients for the lattice parameters in the temperature range of 298–1295 K are given.</jats:p>
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author Swamy, Varghese, Dubrovinsky, Leonid S., Tutti, Faramarz
author_facet Swamy, Varghese, Dubrovinsky, Leonid S., Tutti, Faramarz, Swamy, Varghese, Dubrovinsky, Leonid S., Tutti, Faramarz
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container_issue 9
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container_title Journal of the American Ceramic Society
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description <jats:p>Unpolarized single‐crystal Raman spectra in the temperature interval of 298–1235 K and powder X‐ray diffractometry data from room temperature up to 1295 K have been obtained from a natural triclinic wollastonite of almost‐ideal composition. Room‐temperature spectra, along with the temperature dependencies of nine major Raman modes, are presented. The temperature shifts of the Raman modes indicate a discontinuity in the temperature range of 950–980 K. No corresponding changes are observed in the temperature dependencies of the lattice parameters. Thermal expansion coefficients for the lattice parameters in the temperature range of 298–1295 K are given.</jats:p>
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spelling Swamy, Varghese Dubrovinsky, Leonid S. Tutti, Faramarz 0002-7820 1551-2916 Wiley Materials Chemistry Ceramics and Composites http://dx.doi.org/10.1111/j.1151-2916.1997.tb03113.x <jats:p>Unpolarized single‐crystal Raman spectra in the temperature interval of 298–1235 K and powder X‐ray diffractometry data from room temperature up to 1295 K have been obtained from a natural triclinic wollastonite of almost‐ideal composition. Room‐temperature spectra, along with the temperature dependencies of nine major Raman modes, are presented. The temperature shifts of the Raman modes indicate a discontinuity in the temperature range of 950–980 K. No corresponding changes are observed in the temperature dependencies of the lattice parameters. Thermal expansion coefficients for the lattice parameters in the temperature range of 298–1295 K are given.</jats:p> High‐Temperature Raman Spectra and Thermal Expansion of Wollastonite Journal of the American Ceramic Society
spellingShingle Swamy, Varghese, Dubrovinsky, Leonid S., Tutti, Faramarz, Journal of the American Ceramic Society, High‐Temperature Raman Spectra and Thermal Expansion of Wollastonite, Materials Chemistry, Ceramics and Composites
title High‐Temperature Raman Spectra and Thermal Expansion of Wollastonite
title_full High‐Temperature Raman Spectra and Thermal Expansion of Wollastonite
title_fullStr High‐Temperature Raman Spectra and Thermal Expansion of Wollastonite
title_full_unstemmed High‐Temperature Raman Spectra and Thermal Expansion of Wollastonite
title_short High‐Temperature Raman Spectra and Thermal Expansion of Wollastonite
title_sort high‐temperature raman spectra and thermal expansion of wollastonite
title_unstemmed High‐Temperature Raman Spectra and Thermal Expansion of Wollastonite
topic Materials Chemistry, Ceramics and Composites
url http://dx.doi.org/10.1111/j.1151-2916.1997.tb03113.x