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High figure of merit of monolayer Sb2Te2Se of ultra low lattice thermal conductivity

机译:超低晶格导热率的单层SB2TE2SE的高峰函数

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摘要

The electronic structure and thermoelectric properties of monolayer Sb2Te2Se are studied by density functional theory and semi-classical Boltzmann transport equation. The Seebeck coefficient for monolayer Sb2Te2Se is very high, comparing with other thermoelectric materials. The strong coupling of acoustic and optical modes enhanced phonon scattering, which will cause lower lattice thermal conductivity. The heavy elements and small band gap cause the low thermal conductivity of monolayer Sb2Te2Se, so the lattice thermal conductivity of monolayer Sb2Te2Se is much lower than other thermoelectric materials. The optimal value Z(e)T of monolayer Sb2Te2Se is so high, mainly due to the very low lattice thermal conductivity. For the better n-type, Z(e)T reaches 1.5 at a temperature of 1000 K, which proves that monolayer Sb2Te2Se is a good choice for thermoelectric materials.
机译:通过密度泛函理论和半典型Boltzmann运输方程研究了单层SB2TE2SE的电子结构和热电性能。 单层SB2TE2SE的塞贝克系数非常高,与其他热电材料相比。 声学和光学模式的强耦合增强了声音散射,这将导致晶格导热率较低。 重量的元件和小带隙导致单层SB2TE2SE的低导热率,因此单层SB2TE2SE的晶格导热率远低于其他热电材料。 单层SB2TE2SE的最佳值Z(e)T非常高,主要是由于晶格导热率非常低。 对于更好的N型,Z(e)T在1000 k的温度下达到1.5,证明单层SB2TE2SE是热电材料的良好选择。

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