Article ID Journal Published Year Pages File Type
1797209 Journal of Crystal Growth 2006 5 Pages PDF
Abstract

La0.95Sr0.05CoO3 pellet has been prepared using sol–gel process followed by high temperature sintering and subsequent annealing. The thermoelectric performance was carefully studied from room temperature to 750 K. At room temperature, La0.95Sr0.05CoO3 has a respectable Seebeck coefficient of 252 μV/K. With increasing temperature, both electrical resistivity and thermopower decrease. The conduction behaviors of La0.95Sr0.05CoO3 were explained in terms of small polaron hopping mechanism, in which the transport carriers are positive polarons (CoCo3+4+). The dependence of electrical resistivity and thermopower on temperature could be attributed to the transition of the Co3+ into Co4+ and the increase of the (CoCo3+4+)concentration on the Co sites.

Related Topics
Physical Sciences and Engineering Physics and Astronomy Condensed Matter Physics
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