4.5 Article

Lead telluride as a thermoelectric material for thermoelectric power generation

Journal

PHYSICA B-CONDENSED MATTER
Volume 322, Issue 1-2, Pages 205-223

Publisher

ELSEVIER
DOI: 10.1016/S0921-4526(02)01187-0

Keywords

transport properties; Seebeck coefficient; electrical conductivity; thermal conductivity; lattice thermal conductivity; electronic thermal conductivity; lead telluride; figure of merit; thermoelectrics

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The specialized applications of thermoelectric generators are very successful and have motivated a search for materials with an improved figure of merit Z, and also for materials which operate at elevated temperatures. Lead telluride, PbTe, is an intermediate thermoelectric power generator. Its maximum operating temperature is 900 K. PbTe has a high melting point, good chemical stability, low vapor pressure and good chemical strength in addition to high figure of merit Z. Recently, research in thermoelectricity aims to obtain new improved materials for autonomous sources of electrical power in specialized medical, terrestial and space applications and to obtain an unconventional energy source after the oil crises of 1974. Although the efficiency of thermoelectric generators is rather low, typically similar to 5%, the other advantages, such as compactness, silent, reliability, long life, and long period of operation without attention, led to a wide range of applications. PbTe thermoelectric generators have been widely used by the US army, in space crafts to provide onboard power, and in pacemakers batteries. The general physical properties of lead telluride and factors affecting the figure of merit have been reviewed. Various possibilities of improving the figure of merit of the material have been given, including effect of grain size on reducing the lattice thermal conductivity lambda(L). Comparison of some transport properties of lead telluride with other thermoelectric materials and procedures of preparing compacts with transport properties very close to the single crystal values from PbTe powder by cold and hot-pressing techniques are discussed. (C) 2002 Elsevier Science B.V. All rights reserved.

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