EXAFS and Raman spectroscopy study of binary indium fluoride glasses
Identifieur interne : 000063 ( Main/Exploration ); précédent : 000062; suivant : 000064EXAFS and Raman spectroscopy study of binary indium fluoride glasses
Auteurs : RBID : ISTEX:10853_1996_Article_BF00360746.pdfAbstract
Extended X-ray absorption fine spectroscopy (EXAFS) and Raman scattering studies of InF3-BaF2 and InF3-SrF2 binary glasses are reported. For all compositions, the local structure of the glasses is built with InF6 units. For all glasses studied, the indium neighbour's number and the In-F mean bond length are equal to the values of the InF3 crystalline phase (6 and 0.205 nm, respectively).
DOI: 10.1007/BF00360746
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<author><name>V. Mastelaro</name>
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<author><name>S. Ribeiro</name>
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<author><name>Y. Messaddeo</name>
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<front><div type="abstract" xml:lang="eng">Extended X-ray absorption fine spectroscopy (EXAFS) and Raman scattering studies of InF3-BaF2 and InF3-SrF2 binary glasses are reported. For all compositions, the local structure of the glasses is built with InF6 units. For all glasses studied, the indium neighbour's number and the In-F mean bond length are equal to the values of the InF3 crystalline phase (6 and 0.205 nm, respectively).</div>
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<abstract lang="eng">Extended X-ray absorption fine spectroscopy (EXAFS) and Raman scattering studies of InF3-BaF2 and InF3-SrF2 binary glasses are reported. For all compositions, the local structure of the glasses is built with InF6 units. For all glasses studied, the indium neighbour's number and the In-F mean bond length are equal to the values of the InF3 crystalline phase (6 and 0.205 nm, respectively).</abstract>
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<titleInfo><title>Journal of Materials Science</title>
<partNumber>Year: 1996</partNumber>
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