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Thermoelectric power of amorphous compound semiconductors
Authors:Hubert A. Vander Plas  Richard H. Bube
Affiliation:Department of Materials Science and Engineering, Stanford University, Stanford, California 94305, USA
Abstract:Thermoelectric power measurements as a function of temperature have been made on four V–VI amorphous chalcogenides, ten IV–VI amorphous chalcogenides of the GexTe1?x system, and five amorphous IV–V materials. In the IV–V and the intermediate composition IV–VI materials, the charge transport cannot be described on the basis of conduction at only one energy level. The former exhibit characteristics of conduction both in extended states and in localized states at the Fermi level. Transport in the V–VI materials can be formally described in terms of conduction at one level in either the chaotic band or the small polaron models, but the use of a two-channel model with transport simultaneously in both p-type extended and localized states seems the most promising.
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