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首页> 外文期刊>Angewandte Chemie >The Origin of Ultralow Thermal Conductivity in InTe: Lone-Pair-Induced Anharmonic Rattling
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The Origin of Ultralow Thermal Conductivity in InTe: Lone-Pair-Induced Anharmonic Rattling

机译:Inte中超级导热率的起源:孤牌诱导的anharmonic嘎嘎声

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摘要

Understanding the origin of intrinsically low thermal conductivity is fundamentally important to the development of high-performance thermoelectric materials, which can convert waste-heat into electricity. Herein, we report an ultralow lattice thermal conductivity (ca. 0.4 W m(-1) K-1) in mixed valent InTe (that is, In+In3+Te2), which exhibits an intrinsic bonding asymmetry with coexistent covalent and ionic substructures. The phonon dispersion of InTe exhibits, along with low-energy flat branches, weak instabilities associated with the rattling vibrations of In+ atoms along the columnar ionic substructure. These weakly unstable phonons originate from the 5s(2) lone pair of the In+ atom and are strongly anharmonic, which scatter the heat-carrying acoustic phonons through strong anharmonic phonon-phonon interactions, as evident in anomalously high mode Gruneisen parameters. A maximum thermoelectric figure of merit (zT) of about 0.9 is achieved at 600 K for the 0.3 mol% In-deficient sample, making InTe a promising material for mid-temperature thermoelectric applications.
机译:了解本质上低导热率的起源对高性能热电材料的开发至关重要,可以将废热转化为电力。在此,我们在混合价嵌体中报告超级晶格导热率(约0.4WM(-1)K-1)(即+ IN3 + TE2),其表现出具有共同共价和离子结构的内在键合不对称性。 INTE展示的源位分散率以及低能量平坦的分支,弱不稳定性与沿柱状离子芯片结构的+原子的响铃振动相关。这些弱不稳定的声子源自5S(2)孤In +原子,并且是强大的Anharmonic,它通过强大的Anharmonic Shalon-Phonon相互作用散射热携带的声学子宫,如异常高模式Gruneisen参数所示。对于0.3mol%的缺陷样品,在600k下实现约0.9的最大热电值(ZT),以600k为0.3摩尔%的样品,使INTE具有用于中温热电应用的有希望的材料。

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