Galiotis Costas, Frank Otakar, Koukaras Emmanuel N, Sfyris Dimitris
Institute of Chemical Engineering Sciences, Foundation of Research and Technology-Hellas (FORTH/ICE-HT), 26504 Patras, Greece; email:
Annu Rev Chem Biomol Eng. 2015;6:121-40. doi: 10.1146/annurev-chembioeng-061114-123216. Epub 2015 Apr 16.
The mechanical properties of 2D materials such as monolayer graphene are of extreme importance for several potential applications. We summarize the experimental and theoretical results to date on mechanical loading of freely suspended or fully supported graphene. We assess the obtained axial properties of the material in tension and compression and comment on the methods used for deriving the various reported values. We also report on past and current efforts to define the elastic constants of graphene in a 3D representation. Current areas of research that are concerned with the effect of production method and/or the presence of defects upon the mechanical integrity of graphene are also covered. Finally, we examine extensively the work related to the effect of graphene deformation upon its electronic properties and the possibility of employing strained graphene in future electronic applications.
二维材料(如单层石墨烯)的力学性能对于多种潜在应用极为重要。我们总结了迄今为止关于自由悬浮或完全支撑的石墨烯机械加载的实验和理论结果。我们评估了材料在拉伸和压缩时获得的轴向性能,并对用于推导各种报道值的方法进行了评论。我们还报告了过去和当前为在三维表示中定义石墨烯弹性常数所做的努力。当前与生产方法的影响和/或缺陷的存在对石墨烯机械完整性的影响相关的研究领域也在讨论范围内。最后,我们广泛研究了与石墨烯变形对其电子性能的影响以及在未来电子应用中使用应变石墨烯的可能性相关的工作。