热电效应
材料科学
热电材料
声子散射
散射
有效质量(弹簧-质量系统)
凝聚态物理
固溶体
电子迁移率
合金
塞贝克系数
电子能带结构
载流子
载流子散射
热导率
光电子学
热力学
冶金
复合材料
物理
光学
量子力学
作者
Xiaohua Liu,Tiejun Zhu,Heng Wang,Lipeng Hu,Hanhui Xie,Guangyu Jiang,G. Jeffrey Snyder,Xinbing Zhao
标识
DOI:10.1002/aenm.201300174
摘要
Abstract Understanding the electron and phonon transport characteristics is crucial for designing and developing high performance thermoelectric materials. Weak scattering effects on charge carriers, characterized by deformation potential and alloy scattering potential, are favorable for thermoelectric solid solutions to enable high carrier mobility and thereby promising thermoelectric performance. Mg 2 (Si,Sn) solid solutions have attracted much attention due to their low cost and environmental compatibility. Usually, their high thermoelectric performance with ZT ∼ 1 is ascribed to the band convergence and reduced lattice thermal conductivity caused by alloying. In this work, both a low deformation potential Ξ = 13 eV and a low alloy scattering potential U = 0.7 eV are found for the thermoelectric alloys by characterizing and modeling of thermoelectric transport properties. The band convergence is also verified by the increased density‐of‐states effective mass. It is proposed that, in addition to band convergence and reduced lattice thermal conductivity, the low deformation potential and alloy scattering potential are additional intrinsic features that contribute to the high thermoelectric performance of the solid solutions.
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