热电效应
材料科学
热电材料
环境友好型
功勋
工程物理
无量纲量
纳米技术
热导率
光电子学
复合材料
热力学
生态学
生物
物理
工程类
作者
Wei‐Di Liu,Lei Yang,Zhi‐Gang Chen,Jin Zou
标识
DOI:10.1002/adma.201905703
摘要
Abstract Due to the nature of their liquid‐like behavior and high dimensionless figure of merit, Cu 2 X (X = Te, Se, and S)‐based thermoelectric materials have attracted extensive attention. The superionicity and Cu disorder at the high temperature can dramatically affect the electronic structure of Cu 2 X and in turn result in temperature‐dependent carrier‐transport properties. Here, the effective strategies in enhancing the thermoelectric performance of Cu 2 X‐based thermoelectric materials are summarized, in which the proper optimization of carrier concentration and minimization of the lattice thermal conductivity are the main focus. Then, the stabilities, mechanical properties, and module assembly of Cu 2 X‐based thermoelectric materials are investigated. Finally, the future directions for further improving the energy conversion efficiency of Cu 2 X‐based thermoelectric materials are highlighted.
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