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二硫化钼/石墨烯混合纳米片的热输运

Thermal transport in MoS2/Graphene hybrid nanosheets.

作者信息

Zhang Zhongwei, Xie Yuee, Peng Qing, Chen Yuanping

机构信息

Department of Physics, Xiangtan University, Xiangtan 411105, Hunan, People's Republic of China.

出版信息

Nanotechnology. 2015 Sep 18;26(37):375402. doi: 10.1088/0957-4484/26/37/375402. Epub 2015 Aug 27.

Abstract

Heat dissipation is a very critical problem for designing nano-functional devices, including MoS2/graphene heterojunctions. In this paper we investigate thermal transport in MoS2/graphene hybrid nanosheets under various heating conditions, by using molecular dynamics simulation. Diverse transport processes and characteristics, depending on the conducting layers, are found in these structures. The thermal conductivities can be tuned by interlayer coupling, environment temperature, and interlayer overlap. The highest thermal conductivity at room temperature is achieved as more than 5 times of that of single-layer MoS2 when both layers are heated and 100% overlapped. Different transport mechanisms in the hybrid nanosheets are explained by phonon density of states, temperature distribution, and interlayer thermal resistance. Our results could not only provide clues to master the heat transport in functional devices based on MoS2/graphene heterojunctions, but are also useful for analyzing thermal transport in other van der Waals hybrid nanosheets.

摘要

对于包括二硫化钼/石墨烯异质结在内的纳米功能器件设计而言,散热是一个极为关键的问题。在本文中,我们通过分子动力学模拟研究了不同加热条件下二硫化钼/石墨烯混合纳米片的热输运情况。在这些结构中发现了取决于导电层的多种输运过程和特性。热导率可通过层间耦合、环境温度和层间重叠进行调节。当两层均受热且100%重叠时,室温下实现的最高热导率超过单层二硫化钼热导率的5倍。通过声子态密度、温度分布和层间热阻解释了混合纳米片中不同的输运机制。我们的结果不仅可为掌握基于二硫化钼/石墨烯异质结的功能器件中的热输运提供线索,也有助于分析其他范德华混合纳米片中的热输运情况。

相似文献

1
Thermal transport in MoS2/Graphene hybrid nanosheets.二硫化钼/石墨烯混合纳米片的热输运
Nanotechnology. 2015 Sep 18;26(37):375402. doi: 10.1088/0957-4484/26/37/375402. Epub 2015 Aug 27.
2
In-plane and cross-plane thermal conductivities of molybdenum disulfide.二硫化钼的面内和面外热导率
Nanotechnology. 2015 Feb 13;26(6):065703. doi: 10.1088/0957-4484/26/6/065703. Epub 2015 Jan 19.

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