College of Chemistry and Molecular Science, Wuhan University, Wuhan, 430072, China.
Nanoscale. 2015 May 28;7(20):9105-21. doi: 10.1039/c5nr01420d.
The controllable synthesis of uniform graphene with a specific layer number is crucial for both fundamental research and emerging applications due to the high sensitivity of the various extraordinary physicochemical properties of graphene to its layer numbers. However, the excessive segregation of extra C, the inactivation of the self-limiting of Cu and the superabundant nucleation at grain boundaries and defect sites render that the controllable synthesis of uniform graphene is still a challenge. By the employment of various solid and liquid metals with quasi-atomically smooth surfaces to avoid defects or grain boundaries, a series of studies have been performed and significant improvements have been achieved in the controllable synthesis of uniform graphene films. In this review, the representative strategies of designing catalytic substrates, including polycrystalline metals, single-crystalline metals, binary metal alloys and liquid metals, are highlighted. The future of the controllable synthesis of uniform graphene is also discussed.
可控合成具有特定层数的均匀石墨烯对于基础研究和新兴应用都至关重要,因为石墨烯的各种非凡物理化学性质对其层数高度敏感。然而,由于额外 C 的过度偏析、Cu 的自限性失活以及晶界和缺陷部位的超量成核,使得均匀石墨烯的可控合成仍然是一个挑战。通过使用各种具有准原子平滑表面的固体和液体金属来避免缺陷或晶界,一系列研究已经开展,并在均匀石墨烯薄膜的可控合成方面取得了显著进展。在这篇综述中,重点介绍了设计催化衬底的代表性策略,包括多晶金属、单晶金属、双金属合金和液态金属。还讨论了均匀石墨烯可控合成的未来发展方向。