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Thermal and Thermoelectric Transport in Nanostructures and Low-Dimensional Systems

机译:纳米结构和低维系统中的热和热电传输

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摘要

Significant progress has been made in recent studies of thermal and thermoelectric transport phenomena in nanostructures and low-dimensional systems. This article reviews several intriguing quantum and classical size effects on thermal and thermoelectric properties that have been predicted by theoretical calculations or observed in experiments. Attention is focused on the Casimir limit in phonon boundary scattering and the effect of phonon confinement on the lattice thermal conductivity of semiconductor nanowires (NWs) and nanomeshes; the effects of thickness, lateral size, and interface interaction on the lattice thermal conductivity of carbon nanotubes (CNTs) and graphene; and the phonon-drag thermopower and quantum size effects on the thermoelectric power factor in semiconductor NWs. Further experimental and theoretical investigations are suggested for better understanding of some of these nanoscale transport phenomena.
机译:在最近对纳米结构和低维系统中的热和热电传输现象的研究中取得了重大进展。本文回顾了通过理论计算预测或在实验中观察到的对热和热电性质的一些有趣的量子和经典尺寸效应。注意力集中在声子边界散射中的卡西米尔极限以及声子约束对半导体纳米线(NWs)和纳米网格的晶格热导率的影响。厚度,横向尺寸和界面相互作用对碳纳米管和石墨烯的晶格热导率的影响;声子拖曳热功率和量子尺寸对半导体NW中热电功率因数的影响。建议进一步的实验和理论研究,以更好地理解其中的某些纳米级迁移现象。

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    Li Shi;

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    Department of Mechanical Engineering, Texas Materials Institute, The University of Texas, Austin, Texas, USA;

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