School of Chemistry, University of Nottingham, University Park, Nottingham NG7 2RD, UK.
Chem Soc Rev. 2015 May 21;44(10):3143-76. doi: 10.1039/c4cs00499j. Epub 2015 Mar 26.
The presence of defects in graphene has an essential influence on its physical and chemical properties. The formation, behaviour and healing of defects are determined by energetic characteristics of atomic scale structure changes. In this article, we review recent studies devoted to atomic scale reactions during thermally activated and irradiation-induced processes in graphene. The formation energies of vacancies, adatoms and topological defects are discussed. Defect formation, healing and migration are quantified in terms of activation energies (barriers) for thermally activated processes and by threshold energies for processes occurring under electron irradiation. The energetics of defects in the graphene interior and at the edge is analysed. The effects of applied strain and a close proximity of the edge on the energetics of atomic scale reactions are overviewed. Particular attention is given to problems where further studies are required.
石墨烯中的缺陷对其物理和化学性质有重要影响。缺陷的形成、行为和愈合取决于原子尺度结构变化的能量特征。本文综述了最近关于在热激活和辐照诱导过程中石墨烯中原子尺度反应的研究。讨论了空位、吸附原子和拓扑缺陷的形成能。用热激活过程的激活能(势垒)和电子辐照下发生的过程的阈值能来量化缺陷的形成、愈合和迁移。分析了石墨烯内部和边缘的缺陷的能态。综述了施加应变和边缘接近对原子尺度反应能态的影响。特别关注了需要进一步研究的问题。