热电效应
材料科学
声子散射
热电材料
离子
凝聚态物理
半导体
非谐性
单层
热导率
散射
纳米技术
光电子学
热力学
化学
物理
有机化学
复合材料
光学
作者
Haijun 海俊 Liao 廖,Le 乐 Huang 黄,Xing 兴 Xie 谢,Huafeng 华锋 Dong 董,Fugen 福根 Wu 吴,Zhipeng 志鹏 Sun 孙,Jingbo 京波 Li 李
标识
DOI:10.1088/1674-1056/ace314
摘要
The thermoelectric properties of layered Mo 2 AB 2 ( A = S, Se, Te; B = Cl, Br, I) materials are systematically investigated by first-principles approach. Soft transverse acoustic modes and direct Mo d–Mo d couplings give rise to strong anharmonicities and low lattice thermal conductivities. The double anions with distinctly different electronegativities of Mo 2 AB 2 monolayers can reduce the correlation between electron transport and phonon scattering, and further benefit much to their good thermoelectric properties. Thermoelectric properties of these Mo 2 AB 2 monolayers exhibit obvious anisotropies due to the direction-dependent chemical bondings and transport properties. Furthermore, their thermoelectric properties strongly depend on carrier type (n-type or p-type), carrier concentration and temperature. It is found that n-type Mo 2 AB 2 monolayers can be excellent thermoelectric materials with high electric conductivity, σ , and figures of merit, ZT . Choosing the types of A and B anions of Mo 2 AB 2 is an effective strategy to optimize their thermoelectric performance. These results provide rigorous understanding on thermoelectric properties of double-anions compounds and important guidance for achieving high thermoelectric performance in multi-anion compounds.
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