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二维层状材料的独特面内断裂行为。

Distinctive in-Plane Cleavage Behaviors of Two-Dimensional Layered Materials.

机构信息

Physics Department, Southern University of Science and Technology , Shenzhen 518055, People's Republic of China.

Department of Chemical Engineering, Kansas State University , Manhattan, Kansas 66506, United States.

出版信息

ACS Nano. 2016 Sep 27;10(9):8980-8. doi: 10.1021/acsnano.6b05063. Epub 2016 Sep 13.

Abstract

Mechanical exfoliation from bulk layered crystal is widely used for preparing two-dimensional (2D) layered materials, which involves not only out-of-plane interlayer cleavage but also in-plane fracture. Through a statistical analysis on the exfoliated 2D flakes, we reveal the in-plane cleavage behaviors of six representative layered materials, including graphene, h-BN, 2H phase MoS2, 1T phase PtS2, FePS3, and black phosphorus. In addition to the well-known interlayer cleavage, these 2D layered materials show a distinctive tendency to fracture along certain in-plane crystallography orientations. With theoretical modeling and analysis, these distinct in-plane cleavage behaviors can be understood as a result of the competition between the release of the elastic energy and the increase of the surface energy during the fracture process. More importantly, these in-plane cleavage behaviors provide a fast and noninvasive method using optical microscopy to identify the lattice direction of mechanical exfoliated 2D layered materials.

摘要

机械剥离大块层状晶体被广泛用于制备二维(2D)层状材料,其不仅涉及面外层间劈开,还涉及面内断裂。通过对剥离的二维薄片进行统计分析,我们揭示了六种代表性层状材料(包括石墨烯、h-BN、2H 相 MoS2、1T 相 PtS2、FePS3 和黑磷)的面内劈裂行为。除了众所周知的层间劈开外,这些 2D 层状材料还表现出沿某些面内结晶学取向断裂的明显趋势。通过理论建模和分析,可以将这些明显的面内劈裂行为理解为在断裂过程中,释放弹性能量和增加表面能之间的竞争结果。更重要的是,这些面内劈裂行为提供了一种快速、非侵入性的方法,可使用光学显微镜来识别机械剥离的 2D 层状材料的晶格方向。

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