材料科学
塞贝克系数
热电效应
热导率
热电材料
兴奋剂
有效质量(弹簧-质量系统)
声子散射
声子
电阻率和电导率
热的
分析化学(期刊)
光电子学
凝聚态物理
热力学
复合材料
化学
物理
量子力学
色谱法
作者
Li Wang,Tian Xu,Zheng Ma,Abubakar Yakubu Haruna,Qinghui Jiang,Yubo Luo,Junyou Yang
标识
DOI:10.1088/0256-307x/38/9/097201
摘要
Thermoelectric performance of InSb is restricted by its low Seebeck coefficient and high thermal conductivity. Here, CuCl is employed to optimize simultaneously the electrical and thermal transport properties of InSb. The substitution of Cl for Sb results in enhanced electron effective mass, leading to high Seebeck coefficient of –159.9 μV/K and high power factor of 31.5 μW⋅cm −1 ⋅K −2 at 733 K for InSb + 5 wt% CuCl sample. In addition, CuCl doping creates hierarchical architectures composed of Cu 9 In 4 , Sb, Cu 2 Sb in InSb, leading to a strengthened phonon scattering in a wide wavelength (i.e., nano to meso scale), thus a low lattice thermal conductivity of 2.97 W⋅m −1 ⋅K −1 at 733 K in InSb + 5 wt% CuCl. As a result, a maximum ZT of 0.77 at 733 K has been achieved for the InSb + 5 wt% CuCl sample, increasing by ∼ 250% compared to pristine InSb.
科研通智能强力驱动
Strongly Powered by AbleSci AI