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Enhancing the Thermoelectric Power Factor with Highly Mismatched Isoelectronic Doping

Author(s)
Lee, Joo-Hyoung; Wu, Junqiao; Grossman, Jeffrey C.
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Abstract
We investigate the effect of O impurities on the thermoelectric properties of ZnSe from a combination of first-principles and analytic calculations. It is demonstrated that dilute amounts of O impurities introduce peaks in the density of states (DOS) above the conduction band minimum, and that the charge density near the DOS peaks is substantially attracted toward O atoms due to their high electronegativity. The impurity-induced peaks in the DOS result in a sharp increase of the room-temperature Seebeck coefficient and power factor from those of O-free ZnSe by a factor of 30 and 180, respectively. Furthermore, this effect is found to be absent when the impurity electronegativity well matches the host that it substitutes. The results suggest that highly electronegativity-mismatched alloys can be designed for high performance thermoelectric applications.
Date issued
2010-01
URI
http://hdl.handle.net/1721.1/56609
Department
Massachusetts Institute of Technology. Department of Materials Science and Engineering
Journal
Physical Review Letters
Publisher
American Physical Society
Citation
Lee, Joo-Hyoung, Junqiao Wu, and Jeffrey C. Grossman. “Enhancing the Thermoelectric Power Factor with Highly Mismatched Isoelectronic Doping.” Physical Review Letters 104.1 (2010): 016602. © 2010 American Physical Society.
Version: Final published version
ISSN
0031-9007

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