材料科学
热电效应
塞贝克系数
电阻率和电导率
热电材料
声子散射
热导率
化学工程
离子
纳米技术
分析化学(期刊)
复合材料
热力学
有机化学
化学
电气工程
物理
工程类
作者
Yubo Luo,Junyou Yang,Qinghui Jiang,Weixin Li,Dan Zhang,Zhiwei Zhou,Yudong Cheng,Yangyang Ren,Xu He
标识
DOI:10.1002/aenm.201600007
摘要
p‐type CuInTe 2 thermoelectric (TE) materials are of great interest for applications in the middle temperature range because of their environmentally benign chemical component and stable phase under operating temperatures. In order to enhance their TE performance to compete with the Pb based TE materials, a progressive regulation of electrical and thermal transport properties has been employed in this work. Anion P and Sb substitution is used to tune the electrical transport properties of CuInTe 2 for the first time, leading to a sharp enhancement in power factor due to the reduction of electrical resistivity by acceptor doping and the increase of the Seebeck coefficient resulted from the improvement of density of states. Concurrently, In 2 O 3 nanoinclusions are introduced through an in situ oxidation between CuInTe 2 and ZnO additives, rendering a great reduction in the thermal conductivity of CuInTe 2 by the extra phonon scattering. Then, by integrating the anion substitution and nanoinclusions, a high power factor of 1445 μW m −1 K −2 and enhanced ZT of 1.61 at 823 K are achieved in the CuInTe 2 based TE material. This implies that the synergistic regulation of electrical and thermal transport properties by anion substitution and in situ nanostructure is a very effective approach to improve the TE performance of CuInTe 2 compounds.
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