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Effect of silver doping on the structure and phase separation of sulfur-rich As–S glasses: Raman and SEM studies
Authors:F Kyriazis  A Chrissanthopoulos  V Dracopoulos  M Krbal  T Wagner  M Frumar  SN Yannopoulos  
Institution:aFoundation for Research and Technology Hellas, Institute of Chemical Engineering and High Temperature Chemical Processes (FORTH/ICE-HT), P.O. Box 1414, GR-26 504 Patras, Greece;bDepartment of Chemistry, University of Patras, GR-26 504 Patras, Greece;cDepartment of Inorganic Chemistry, Faculty of Chemical-Technology, University of Pardubice, Legion´s sq. 565, 53210, Czech Republic
Abstract:We report on the structural details and microphase separation of the bulk glasses Agx·(As33S67)100-x for 0less-than-or-equals, slantxless-than-or-equals, slant25. Glass–glass phase separation occurs over a wide range of Ag content, i.e. 4less-than-or-equals, slantxless-than-or-equals, slant20. An off-resonant polarized Raman spectroscopic study has been carried out to elucidate structural aspects at the short- and medium-range structural order of the glasses. Analysis of Raman spectra revealed quantitative changes of the sulfur-rich microenvironments that reduce upon adding Ag. Scanning electron microscopy combined with X-rays microanalysis have been utilized to examine the type and extent of phase separation, and to provide quantitative details on the atomic concentrations in the Ag-poor and Ag-rich phases. It has been shown that at not, vert, similar7 at.% Ag the Ag-rich phase percolates through the structure; this effect can be associated with an ionic-to-superionic behavior of these glasses in accordance with similar studies on the stoichiometric arsenic sulfide glass; although the phase separation observed in the present glasses is qualitatively different.
Keywords:Raman scattering  Fast ion conduction  Chalcogenides  Scanning electron microscopy  Phases and equilibria  Medium-range order  Short-range order  Calorimetry  Glass transition
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