The electrical resistivity of melt quenched Ge-Te glasses containing Ag has been studied as a function of pressure at different temperatures in a Bridgman anvil set-up. The samples are found to exhibit a continuous decrease in electrical resistivity with pressure and metallization around 5 GPa. The pressure dependence of conductivity activation energy ( E ) also confirms the continuous metallization of Ag x Ge 15 Te 85- x glasses. The variation of E with composition at different pressures has been found to exhibit anomalies at x = 5 and x = 18.5. A plausible explanation based on the bonding considerations, topological thresholds and density variations with composition has been provided to understand the conductivity activation energy of Ag-Ge-Te and other chalcogenide glasses.
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Ramesh et al. (1999) studied this question.
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