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金属与石墨烯的相互作用:取决于石墨烯的层数。

Interaction between metal and graphene: dependence on the layer number of graphene.

机构信息

Interdisciplinary School of Green Energy, Ulsan National Institute of Science and Technology (UNIST), Banyeon-ri 100, Ulsan 689-805, Korea.

出版信息

ACS Nano. 2011 Jan 25;5(1):608-12. doi: 10.1021/nn103004c. Epub 2010 Dec 21.

Abstract

The interaction between graphene and metal was investigated by studying the G band splitting in surface-enhanced Raman scattering (SERS) spectra of single-, bi-, and trilayer graphene. The Ag deposition on graphene induced large enhancement of the Raman signal of graphene, indicating SERS of graphene. In particular, the G band was split into two distinct peaks in the SERS spectrum of graphene. The extent of the G band splitting was 13.0 cm(-1) for single-layer, 9.6 cm(-1) for bilayer, and 9.4 cm(-1) for trilayer graphene, whereas the G band in the SERS spectrum of a thick multilayer was not split. The average SERS enhancement factor of the G band was 24 for single-layer, 15 for bilayer, and 10 for trilayer graphene. These results indicate that there is a correlation between SERS enhancement factor and the extent of the G band splitting, and the strongest interaction occurs between Ag and single-layer graphene. Furthermore, the Ag deposition on graphene can induce doping of graphene. The intensity ratio of 2D and G bands (I(2D)/I(G)) decreased after Ag deposition on graphene, indicating doping of graphene. From changes in positions of G and 2D bands after the metal deposition on graphene, Ag deposition induced n-doping of graphene, whereas Au deposition induced p-doping.

摘要

通过研究单层、双层和三层石墨烯的表面增强拉曼散射(SERS)谱中 G 带分裂,研究了石墨烯与金属的相互作用。石墨烯上的 Ag 沉积导致石墨烯的拉曼信号大大增强,表明了石墨烯的 SERS 效应。特别是,在石墨烯的 SERS 谱中,G 带分裂成两个明显的峰。单层石墨烯的 G 带分裂程度为 13.0 cm(-1),双层石墨烯为 9.6 cm(-1),三层石墨烯为 9.4 cm(-1),而多层石墨烯的 G 带在 SERS 谱中未分裂。G 带的平均 SERS 增强因子为单层 24,双层 15,三层 10。这些结果表明,SERS 增强因子与 G 带分裂程度之间存在相关性,并且 Ag 与单层石墨烯之间的相互作用最强。此外,石墨烯上的 Ag 沉积可以诱导石墨烯掺杂。在石墨烯上沉积 Ag 后,2D 和 G 带的强度比(I(2D)/I(G))降低,表明石墨烯发生了掺杂。从金属沉积在石墨烯上后 G 和 2D 带的位置变化来看,Ag 沉积导致了石墨烯的 n 型掺杂,而 Au 沉积导致了 p 型掺杂。

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