The structural analysis of (1 - y)GeS2 . yAg(2)S ternary glasses has been carried out using X-ray absorption spectroscopy, anomalous wide angle X-ray scattering and small angle X-ray scattering. All the results are consistent among themselves, and a combined analysis has provided straightforward structural conclusions about the homogeneous distribution of the Ag+ cations in the glassy matrix. This improved understanding of the local and medium range order has allowed a discussion of the validity of the various structural models suggested to explain the ionic transport process at the atomic level. This process cannot be explained by a phase-separation model but by correlated Ag+ jumps promoted by their large variety of sites.
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ECOLE NATL SUPER ELECTROCHIM & ELECTROMET GRENOBLE,ENERGET ELECTROCHIM LAB,F-38401 ST MARTIN HERES,FRANCEECOLE NATL SUPER ELECTROCHIM & ELECTROMET GRENOBLE,ENERGET ELECTROCHIM LAB,F-38401 ST MARTIN HERES,FRANCE
RIBES, M
BARRAU, B
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ECOLE NATL SUPER ELECTROCHIM & ELECTROMET GRENOBLE,ENERGET ELECTROCHIM LAB,F-38401 ST MARTIN HERES,FRANCEECOLE NATL SUPER ELECTROCHIM & ELECTROMET GRENOBLE,ENERGET ELECTROCHIM LAB,F-38401 ST MARTIN HERES,FRANCE
BARRAU, B
SOUQUET, JL
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ECOLE NATL SUPER ELECTROCHIM & ELECTROMET GRENOBLE,ENERGET ELECTROCHIM LAB,F-38401 ST MARTIN HERES,FRANCEECOLE NATL SUPER ELECTROCHIM & ELECTROMET GRENOBLE,ENERGET ELECTROCHIM LAB,F-38401 ST MARTIN HERES,FRANCE