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Structure and properties of dense silica glass.


ABSTRACT: The O K-edge x-ray Raman scattering (XRS), Brillouin scattering and diffraction studies on silica glass at high pressure have been elucidated in a unified manner using model structures obtained from First-Principles molecular dynamics calculations. This study provides a comprehensive understanding on how the structure is related to the physical and electronic properties. The origin of the "two peak" pattern in the XRS is found to be the result of increased packing of oxygen near the Si and is not a specific sign for sixfold coordination. The compression mechanism involving the presence of 5- and 6-fold coordinated silicon is confirmed. A slight increase in the silicon-oxygen coordination higher than six was found to accompany the increase in the acoustic wave velocity near 140?GPa.

SUBMITTER: Wu M 

PROVIDER: S-EPMC3347315 | biostudies-literature | 2012

REPOSITORIES: biostudies-literature

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Structure and properties of dense silica glass.

Wu Min M   Liang Yunfeng Y   Jiang Jian-Zhong JZ   Tse John S JS  

Scientific reports 20120508


The O K-edge x-ray Raman scattering (XRS), Brillouin scattering and diffraction studies on silica glass at high pressure have been elucidated in a unified manner using model structures obtained from First-Principles molecular dynamics calculations. This study provides a comprehensive understanding on how the structure is related to the physical and electronic properties. The origin of the "two peak" pattern in the XRS is found to be the result of increased packing of oxygen near the Si and is no  ...[more]

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