Abstract
AbstractThis paper presents tables of key thermoelectric properties, which define thermoelectric conversion efficiency, for a wide range of inorganic materials. The twelve families of materials included in these tables are primarily selected on the basis of well established, internationally-recognized performance and promise for current and future applications: tellurides, skutterudites, half Heuslers, Zintls, Mg–Sb antimonides, clathrates, FeGa3-type materials, actinides and lanthanides, oxides, sulfides, selenides, silicides, borides and carbides. As thermoelectric properties vary with temperature, data are presented at room temperature to enable ready comparison, and also at a higher temperature appropriate to peak performance. An individual table of data and commentary are provided for each family of materials plus source references for all the data.
Funder
EU
Scientific and Technological Research Council of Turkey
UK Engineering and Physical Sciences Research Council
National Natural Science Foundation of China
National Science Fund
National Key Research
Development Program of China
Leverhulme Trust
Subject
Materials Chemistry,General Energy,Materials Science (miscellaneous)
Cited by
72 articles.
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