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DOI10.1039/c8ee03374a
Exceptional thermoelectric performance in Mg3Sb0.6Bi1.4 for low-grade waste heat recovery
Imasato K.; Kang S.D.; Snyder G.J.
发表日期2019
ISSN1754-5692
起始页码965
结束页码971
卷号12期号:3
英文摘要Bi2Te3 alloys have been the most widely used n-type material for low temperature thermoelectric power generation for over 50 years, thanks to the highest efficiency in the 300-500 K temperature range relevant for low-grade waste-heat recovery. Here we show that n-type Mg3Sb0.6Bi1.4, with a thermoelectric figure-of-merit zT of 1.0-1.2 at 400-500 K, finally surpasses n-type Bi2Te3. This exceptional performance is achieved by tuning the alloy composition of Mg3(Sb1-xBix)2. The two primary mechanisms of the improvement are the band effective-mass reduction and grain size enhancement as the Mg3Bi2 content increases. The benefit of the effective-mass reduction is only effective up to the optimum composition Mg3Sb0.6Bi1.4, after which a different band dominates charge transport. The larger grains are important for minimizing grain-boundary electrical resistance. Considering the limited choice for low temperature n-type thermoelectric materials, the development of Mg3Sb0.6Bi1.4 is a significant advancement towards sustainable heat recovery technology. © 2019 The Royal Society of Chemistry.
语种英语
scopus关键词Binary alloys; Bismuth compounds; Grain boundaries; Magnesium alloys; Temperature; Thermoelectric equipment; Thermoelectric power; Thermoelectricity; Waste heat; Waste heat utilization; Alloy compositions; Electrical resistances; Low-grade waste heat; Optimum composition; Recovery technology; Thermo-Electric materials; Thermoelectric figure of merit; Thermoelectric performance; Bismuth alloys; efficiency measurement; electrical power; inorganic compound; low temperature; performance assessment; power generation; technological development
来源期刊Energy and Environmental Science
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/162520
作者单位Northwestern University, Evanston, IL 60208, United States; California Institute of Technology, Pasadena, CA 91125, United States
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Imasato K.,Kang S.D.,Snyder G.J.. Exceptional thermoelectric performance in Mg3Sb0.6Bi1.4 for low-grade waste heat recovery[J],2019,12(3).
APA Imasato K.,Kang S.D.,&Snyder G.J..(2019).Exceptional thermoelectric performance in Mg3Sb0.6Bi1.4 for low-grade waste heat recovery.Energy and Environmental Science,12(3).
MLA Imasato K.,et al."Exceptional thermoelectric performance in Mg3Sb0.6Bi1.4 for low-grade waste heat recovery".Energy and Environmental Science 12.3(2019).
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