热电效应
热电材料
材料科学
声子
热导率
凝聚态物理
功勋
平均自由程
声子散射
半导体
兴奋剂
散射
工程物理
光电子学
热力学
物理
复合材料
光学
作者
Wen Li,Siqi Lin,Binghui Ge,Jiong Yang,Wenqing Zhang,Yanzhong Pei
标识
DOI:10.1002/advs.201600196
摘要
Conventional strategies for advancing thermoelectrics by minimizing the lattice thermal conductivity focus on phonon scattering for a short mean free path. Here, a design of slow phonon propagation as an effective approach for high‐performance thermoelectrics is shown. Taking Ag 8 SnSe 6 as an example, which shows one of the lowest sound velocities among known thermoelectric semiconductors, the lattice thermal conductivity is found to be as low as 0.2 W m −1 K −1 in the entire temperature range. As a result, a peak thermoelectric figure of merit zT > 1.2 and an average zT as high as ≈0.8 are achieved in Nb‐doped materials, without relying on a high thermoelectric power factor. This work demonstrates not only a guiding principle of low sound velocity for minimal lattice thermal conductivity and therefore high zT , but also argyrodite compounds as promising thermoelectric materials with weak chemical bonds and heavy constituent elements.
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