化学计量学
热电效应
材料科学
兴奋剂
半导体
电子迁移率
电阻率和电导率
热电材料
散射
键能
分析化学(期刊)
凝聚态物理
物理
热力学
光电子学
物理化学
化学
分子
光学
电气工程
有机化学
工程类
色谱法
作者
Kunpeng Zhao,Anders B. Blichfeld,Hongyi Chen,Qingfeng Song,Tiansong Zhang,Chenxi Zhu,Dudi Ren,Riley Hanus,Pengfei Qiu,Bo B. Iversen,Fangfang Xu,G. Jeffrey Snyder,Xun Shi,Lidong Chen
标识
DOI:10.1021/acs.chemmater.7b01687
摘要
Thermoelectric materials require an optimal carrier concentration to maximize electrical transport and thus thermoelectric performance. Element doping and composition off-stoichiometry are the two general and effective approaches for optimizing carrier concentrations, which have been successfully applied in almost all semiconductors. In this study, we propose a new strategy called bonding energy variation to tune the carrier concentrations in Cu2Se-based liquid-like thermoelectric compounds. By utilizing the different bond features in Cu2Se and Cu2S, alloying S at the Se sites successfully increases the bonding energy to fix Cu atoms in the crystal lattice to suppress the formation of Cu vacancies, leading to greatly reduced carrier concentrations toward the optimal value. Via a combination of the lowered electrical and lattice thermal conductivities and the relatively good carrier mobility caused by the weak alloy scattering potential, ultrahigh zT values are achieved in slightly S-doped Cu2Se with a maximal value of 2.0 at 1000 K, 30% higher than that in nominally stoichiometric Cu2Se.
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