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二维材料的结构缺陷、力学行为及性能

Structural Defects, Mechanical Behaviors, and Properties of Two-Dimensional Materials.

作者信息

Xiong Zixin, Zhong Lei, Wang Haotian, Li Xiaoyan

机构信息

Center for Advanced Mechanics and Materials, Applied Mechanics Laboratory, Department of Engineering Mechanics, Tsinghua University, Beijing 100084, China.

Midea Group, Foshan 528311, China.

出版信息

Materials (Basel). 2021 Mar 3;14(5):1192. doi: 10.3390/ma14051192.

Abstract

Since the success of monolayer graphene exfoliation, two-dimensional (2D) materials have been extensively studied due to their unique structures and unprecedented properties. Among these fascinating studies, the most predominant focus has been on their atomic structures, defects, and mechanical behaviors and properties, which serve as the basis for the practical applications of 2D materials. In this review, we first highlight the atomic structures of various 2D materials and the structural and energy features of some common defects. We then summarize the recent advances made in experimental, computational, and theoretical studies on the mechanical properties and behaviors of 2D materials. We mainly emphasized the underlying deformation and fracture mechanisms and the influences of various defects on mechanical behaviors and properties, which boost the emergence and development of topological design and defect engineering. We also further introduce the piezoelectric and flexoelectric behaviors of specific 2D materials to address the coupling between mechanical and electronic properties in 2D materials and the interactions between 2D crystals and substrates or between different 2D monolayers in heterostructures. Finally, we provide a perspective and outlook for future studies on the mechanical behaviors and properties of 2D materials.

摘要

自从单层石墨烯剥离成功以来,二维(2D)材料因其独特的结构和前所未有的性能而受到广泛研究。在这些引人入胜的研究中,最主要的关注点一直是它们的原子结构、缺陷以及力学行为和性能,这些是二维材料实际应用的基础。在本综述中,我们首先强调各种二维材料的原子结构以及一些常见缺陷的结构和能量特征。然后,我们总结了二维材料力学性能和行为的实验、计算和理论研究方面的最新进展。我们主要强调了潜在的变形和断裂机制以及各种缺陷对力学行为和性能的影响,这推动了拓扑设计和缺陷工程的出现和发展。我们还进一步介绍了特定二维材料的压电和挠电行为,以探讨二维材料中力学和电学性能之间的耦合以及二维晶体与衬底之间或异质结构中不同二维单层之间的相互作用。最后,我们对二维材料力学行为和性能的未来研究提供了一个观点和展望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/527a/7961825/eb9544339fde/materials-14-01192-g001.jpg

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