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纳米复合材料的可调热传输特性

Tunable Thermal Transport Characteristics of Nanocomposites.

作者信息

Srivastava G P, Thomas Iorwerth O

机构信息

School of Physics, University of Exeter, Stocker Road, Exeter EX4 4QL, UK.

出版信息

Nanomaterials (Basel). 2020 Apr 3;10(4):673. doi: 10.3390/nano10040673.

Abstract

We present a study of tunable thermal transport characteristics of nanocomposites by employing a combination of a full-scale semi- approach and a generalised and extended modification of the effective medium theory. Investigations are made for planar superlattices (PSLs) and nanodot superlattices (NDSLs) constructed from isotropic conductivity covalent materials Si and Ge, and NDSLs constructed from anisotropic conductivity covalent-van der Waals materials MoS 2 and WS 2 . It is found that difference in the conductivities of individual materials, period size, volume fraction of insertion, and atomic-level interface quality are the four main parameters to control phonon transport in nanocomposite structures. It is argued that the relative importance of these parameters is system dependent. The equal-layer thickness Si/Ge PSL shows a minimum in the room temperature conductivity for the period size of around 4 nm, and with a moderate amount of interface mass smudging this value lies below the conductivity of SiGe alloy.

摘要

我们通过采用全尺度半经验方法与有效介质理论的广义扩展修正相结合的方式,对纳米复合材料的可调热输运特性进行了研究。对由各向同性导电共价材料硅和锗构建的平面超晶格(PSL)和纳米点超晶格(NDSL),以及由各向异性导电共价-范德华材料二硫化钼和二硫化钨构建的NDSL进行了研究。研究发现,各材料的电导率差异、周期尺寸、插入的体积分数以及原子级界面质量是控制纳米复合结构中声子输运的四个主要参数。有人认为,这些参数的相对重要性取决于系统。等层厚的硅/锗PSL在周期尺寸约为4纳米时,室温电导率出现最小值,并且在界面质量有适度模糊的情况下,该值低于硅锗合金的电导率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3040/7221877/fcdb9d06717e/nanomaterials-10-00673-g001.jpg

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