Electrical activity of metal vacancies in Pb/sub 1-x/Sn/sub x/Te solid solutions and thermoelectric properties of compositions for p-type leg of middle-temperature range thermogenerator

M. Fedorov, M. Vedernikov, E. A. Gurieva, L. V. Prokof’eva, Y. Ravich
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引用次数: 4

Abstract

The maximum densities of holes generated by cation vacancies, as well as thermoelectric parameters of (Pb/sub 1-x/Sn/sub x/)/sub 1-y/Te/sub y/ solid solutions with tin content x in the range from 0.4 to 0.6, were studied. It is shown that each vacancy produces four holes in the valence band and that only for small x can the concept of a doubly charged vacancy be used. The maximum figure of merit Z is (1.0-1.1) /spl times/ 10/sup -3/ K/sup -1/ at T = 800-850 K. The relatively high value of Z achieved without doping is due to the high electrical conductivity provided, first, by the small effective mass of holes and, second, by the high electrical activity of the vacancies.
Pb/sub - 1-x/Sn/sub -x/ Te固溶体中金属空位的电活性及p型热发生器支腿组合物的热电性能
研究了锡含量x在0.4 ~ 0.6范围内的(Pb/sub - 1-x/Sn/sub -x/)/sub - 1-y/Te/sub -y固溶体的最大空穴密度和热电参数。结果表明,每个空位在价带中产生4个空穴,并且只有在x较小的情况下才能使用双带电空位的概念。在T = 800-850 K时,最大质量系数Z为(1.0-1.1)/spl倍/ 10/sup -3/ K/sup -1/。在没有掺杂的情况下获得的相对高的Z值是由于高导电性,首先是由于空穴的有效质量小,其次是由于空位的高电活性。
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