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重叠石墨烯同质结结构中的宏观负微分热阻

Macroscopic negative differential thermal resistance in the overlapping graphene homojunction structure.

作者信息

Wu Rui, Tian He, Zhu Zhengqiang, Liu Yanming, Xing Chao-Yang, Zhang Gang, Ren Tian-Ling

机构信息

School of Integrated Circuit and the Beijing National Research Center for Information Science and Technology (BNRist), Tsinghua University, Beijing 100084, China.

Beijing Institute of Aerospace Control Devices, Beijing 100094, China.

出版信息

iScience. 2023 Jul 27;26(8):107493. doi: 10.1016/j.isci.2023.107493. eCollection 2023 Aug 18.

Abstract

As one of the most potential ways to manipulate heat, thermal functional devices have achieved several breakthroughs in recent years, but are still limited to theoretical simulations. One of its theoretical bases is the existence of the negative differential thermal resistance (NDTR). However, most of the existing systems where the phenomenon of NDTR is found are atomic-level systems. In order to realize the macroscopic NDTR and provide effective theoretical guidance and support for the practical realization of thermal functional devices, we construct the overlapping graphene homojunction model, using the negative thermal expansion property of graphene to modify the overlapping area, and thus regulating the heat flow. The COMSOL-MATLAB co-simulation is used to perform calculations through negative feedback loops. It is found that the NDTR phenomenon exists under certain parameter conditions, which can provide new ideas and bring more opportunities for the experimental realization of nonlinear thermal functional devices.

摘要

作为最具潜力的热操控方式之一,热功能器件近年来已取得多项突破,但仍局限于理论模拟。其理论基础之一是负微分热阻(NDTR)的存在。然而,现有的发现NDTR现象的系统大多是原子级系统。为了实现宏观的NDTR,并为热功能器件的实际实现提供有效的理论指导和支持,我们构建了重叠石墨烯同质结模型,利用石墨烯的负热膨胀特性来改变重叠区域,从而调节热流。通过COMSOL-MATLAB联合仿真,利用负反馈回路进行计算。结果发现,在一定参数条件下存在NDTR现象,这可为非线性热功能器件的实验实现提供新思路并带来更多机遇。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/adc9/10425946/103eccba99ed/fx1.jpg

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