• 微信
  • Facebook
  • 分享链接
ScholarMate
客服热线:400-1616-289
登录注册

Accessing the thermal conductivities of Sb2Te3 and Bi2Te3/Sb2Te3 superlattices by molecular dynamics simulations with a deep neural network potential

Zhang, Pan; Qin, Mi; Zhang, Zhenhua; Jin, Dan; Liu, Yong; Wang, Ziyu; Lu, Zhihong; Shi, Jing; Xiong, Rui*
SCIE
武汉大学; 中国科学院

摘要

Phonon thermal transport is a key feature for the operation of thermoelectric materials, but it is challenging to accurately calculate the thermal conductivity of materials with strong anharmonicity or large cells. In this work, a deep neural network potential (NNP) is developed using a dataset based on density functional theory (DFT) and applied to describe the lattice dynamics of Sb2Te3 and Bi2Te3/Sb2Te3 superlattices. The lattice thermal conductivities of Sb2Te3 are first predicted using equilibrium molecular dynamics (EMD) simulations combined with an NNP and the results match well with experimental values. Then, through further exploration of weighted phase spaces and the Gruneisen parameter, we find that there is a stronger anharmonicity in the out-of-plane direction in Sb2Te3, which is the reason why the thermal conductivities are overestimated more in the out-of-plane direction than in the in-plane direction by solving the phonon Boltzmann transport equation (BTE) with only three-phonon scattering processes being considered. More importantly, the lattice thermal conductivities of Bi2Te3/Sb2Te3 superlattices with different periods are accurately predicted using non-equilibrium molecular dynamics (NEMD) simulations together with an NNP, which serves as a good example to explore the thermal transport physics of superlattices using a deep neural network potential.

关键词

THERMOELECTRIC PERFORMANCE TRANSPORT DEVICES POWER HEAT

出版信息

论文状态
公开发表
期刊名称
Physical Chemistry Chemical Physics
发表日期
2023-2-22
卷
25
期
8
页码
6164-6174
DOI
10.1039/d2cp05590b

学科领域

-

产品服务

  • 科研之友
  • 创新城
  • 科创云

服务支持

  • 帮助中心
  • 隐私政策
  • 服务条款

联系方式

在线客服:【立即咨询】
客服热线:400-1616-289
电子邮箱:support@scholarmate.com

关注或下载科研之友

微信二维码
微信公众号
客户端下载二维码
下载客户端
科研成果科研人员 科研机构 科研动态爱瑞思软件

©2025 深圳市科研之友网络服务有限公司

公安备案图标粤公网安备 44030502000213
粤ICP备 16046710 号粤B2-20110417