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本征响尾蛇诱导的 Zintl 型 TlInTe 低热导率。

Intrinsic Rattler-Induced Low Thermal Conductivity in Zintl Type TlInTe.

机构信息

Department of Chemistry, Indian Institute of Science Education and Research (IISER) , Pune 411008, India.

出版信息

J Am Chem Soc. 2017 Mar 29;139(12):4350-4353. doi: 10.1021/jacs.7b01434. Epub 2017 Mar 14.

Abstract

Understanding the nature of chemical bonding and lattice dynamics together with their influence on phonon-transport is essential to explore and design crystalline solids with ultralow thermal conductivity for various applications including thermoelectrics. TlInTe, with interlocked rigid and weakly bound substructures, exhibits lattice thermal conductivity as low as ca. 0.5 W/mK near room temperature, owing to rattling dynamics of weakly bound Tl cations. Large displacements of Tl cations along the c-axis, driven by electrostatic repulsion between localized electron clouds on Tl and Te ions, are akin to those of rattling guests in caged-systems. Heat capacity of TlInTe exhibits a broad peak at low-temperatures due to contribution from Tl-induced low-frequency Einstein modes as also evidenced from THz time domain spectroscopy. First-principles calculations reveal a strong coupling between large-amplitude coherent optic vibrations of Tl-rattlers along the c-axis, and acoustic phonons that likely causes the low lattice thermal conductivity in TlInTe.

摘要

了解化学键和晶格动力学的本质及其对声子输运的影响,对于探索和设计具有超低热导率的晶体固体至关重要,这些晶体固体在包括热电学在内的各种应用中具有重要意义。TlInTe 具有互锁的刚性和较弱结合的亚结构,由于较弱结合的Tl 阳离子的颤动动力学,在室温附近表现出低至约 0.5 W/mK 的晶格热导率。Tl 阳离子沿 c 轴的大位移是由 Tl 和 Te 离子上局部电子云之间的静电排斥驱动的,类似于笼状体系中颤动客体的位移。TlInTe 的热容在低温下表现出宽峰,这归因于 Tl 诱导的低频爱因斯坦模式的贡献,这也可以从太赫兹时域光谱中得到证明。第一性原理计算揭示了 Tl 颤动子沿 c 轴的大振幅相干光学振动与声子之间的强耦合,这可能导致 TlInTe 中的低晶格热导率。

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