Zhan Hao, Guo Dan, Xie GuoXin
State Key Laboratory of Tribology, Tsinghua University, Beijing, 100084, China.
Nanoscale. 2019 Jul 28;11(28):13181-13212. doi: 10.1039/c9nr03611c. Epub 2019 Jul 9.
With the increasing interest in nanodevices based on two-dimensional layered materials (2DLMs) after the birth of graphene, the mechanical and coupling properties of these materials, which play an important role in determining the performance and life of nanodevices, have drawn increasingly more attention. In this review, both experimental and simulation methods investigating the mechanical properties and behaviour of 2DLMs have been summarized, which is followed by the discussion of their elastic properties and failure mechanisms. For further understanding and tuning of their mechanical properties and behaviour, the influence factors on the mechanical properties and behaviour have been taken into consideration. In addition, the coupling properties between mechanical properties and other physical properties are summarized to help set up the theoretical blocks for their novel applications. Thus, the understanding of the mechanical and coupling properties paves the way to their applications in flexible electronics and novel electronics, which is demonstrated in the last part. This review is expected to provide in-depth and comprehensive understanding of mechanical and coupling properties of 2DLMs as well as direct guidance for obtaining satisfactory nanodevices from the aspects of material selection, fabrication processes and device design.
自从石墨烯诞生后,随着人们对基于二维层状材料(2DLMs)的纳米器件兴趣日增,这些材料的机械性能和耦合特性在决定纳米器件的性能和寿命方面起着重要作用,已越来越受到关注。在这篇综述中,总结了研究2DLMs机械性能和行为的实验和模拟方法,随后讨论了它们的弹性性能和失效机制。为了进一步理解和调控它们的机械性能和行为,考虑了影响机械性能和行为的因素。此外,总结了机械性能与其他物理性能之间的耦合特性,以帮助为其新应用建立理论框架。因此,对机械性能和耦合特性的理解为它们在柔性电子学和新型电子学中的应用铺平了道路,这在最后一部分得到了体现。这篇综述有望提供对2DLMs机械性能和耦合特性的深入全面理解,并从材料选择、制造工艺和器件设计等方面为获得令人满意的纳米器件提供直接指导。