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BULK-PROCESSED, ENHANCED FIGURE-OF-MERIT THERMOELECTRIC MATERIALS
The invention is a bulk-processed thermoelectric material and a method for fabrication. The material measures at least 30 microns in each dimension and has a figure of merit (ZT) greater than 1.0 at any temperature less than 200° C. The material comprises at least two constituents; a host phase and a dispersed second phase. The host phase is a semiconductor or semimetal and the dispersed phase of the bulk-processed material is comprised of a plurality of inclusions. The material has a substantially coherent interface between the host phase and the dispersed phase in at least one crystallographic direction.
BULK-PROCESSED, ENHANCED FIGURE-OF-MERIT THERMOELECTRIC MATERIALS
The invention is a bulk-processed thermoelectric material and a method for fabrication. The material measures at least 30 microns in each dimension and has a figure of merit (ZT) greater than 1.0 at any temperature less than 200° C. The material comprises at least two constituents; a host phase and a dispersed second phase. The host phase is a semiconductor or semimetal and the dispersed phase of the bulk-processed material is comprised of a plurality of inclusions. The material has a substantially coherent interface between the host phase and the dispersed phase in at least one crystallographic direction.
BULK-PROCESSED, ENHANCED FIGURE-OF-MERIT THERMOELECTRIC MATERIALS
MASSENVERARBEITETE WÄRMEELEKTRISCHE MATERIALIEN MIT ERHÖHTER LEISTUNGSZAHL
MATÉRIAU THERMOÉLECTRIQUE TRAITÉ DANS LA MASSE À FACTEUR DE MÉRITE AMÉLIORÉ
WILLIGAN RHONDA R (Autor:in) / OPALKA SUSANNE M (Autor:in) / MANTESE JOSEPH V (Autor:in) / CULP SLADE R (Autor:in) / COVINGTON JEFFERI J (Autor:in)
23.08.2017
Patent
Elektronische Ressource
Englisch
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