Nanocomposites from Solution‐Synthesized PbTe‐BiSbTe Nanoheterostructure with Unity Figure of Merit at Low‐Medium Temperatures (500–600 K)
Biao Xu, Matthias T. Agne, Tianli Feng, Thomas C. Chasapis, Xiulin Ruan, Yilong Zhou, Haimei Zheng, Je‐Hyeong Bahk 等 11 位
Iowa State University Northwestern University Purdue University West Lafayette Lawrence Berkeley National Laboratory
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摘要与影响
A scalable, low-temperature solution process is used to synthesize precursor material for Pb-doped Bi0.7Sb1.3Te3 thermoelectric nanocomposites. The controllable Pb-doping leads to the increase in the optical bandgap, thus delaying the onset of bipolar conduction. Furthermore, the solution synthesis enables nanostructuring, which greatly reduces thermal conductivity. As a result, this material exhibits a zT = 1 over the 513–613 K range.
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材料 / 化学Advanced Thermoelectric Materials and Devices
Thermal properties of materials · Thermal Radiation and Cooling Technologies
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