Probing interlayer shear thermal deformation in atomically-thin van der Waals layered materials

Le Zhang, Han Wang, Xinrong Zong, Yongheng Zhou, Taihong Wang, Lin Wang, Xiaolong Chen

科研成果: 期刊稿件文章同行评审

9 引用 (Scopus)

摘要

Atomically-thin van der Waals layered materials, with both high in-plane stiffness and bending flexibility, offer a unique platform for thermomechanical engineering. However, the lack of effective characterization techniques hinders the development of this research topic. Here, we develop a direct experimental method and effective theoretical model to study the mechanical, thermal, and interlayer properties of van der Waals materials. This is accomplished by using a carefully designed WSe2-based heterostructure, where monolayer WSe2 serves as an in-situ strain meter. Combining experimental results and theoretical modelling, we are able to resolve the shear deformation and interlayer shear thermal deformation of each individual layer quantitatively in van der Waals materials. Our approach also provides important interlayer coupling information as well as key thermal parameters. The model can be applied to van der Waals materials with different layer numbers and various boundary conditions for both thermally-induced and mechanically-induced deformations.

源语言英语
文章编号3996
期刊Nature Communications
13
1
DOI
出版状态已出版 - 12月 2022

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