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扫描隧道显微镜对剥离石墨烯单层中褶皱的电学性质的表征。

Scanning tunneling microscopy characterization of the electrical properties of wrinkles in exfoliated graphene monolayers.

机构信息

Division of Chemistry and Chemical Engineering, Kavli Nanoscience Institute, California Institute of Technology, MC 127-72, Pasadena, California 91125, USA.

出版信息

Nano Lett. 2009 Dec;9(12):4446-51. doi: 10.1021/nl902729p.

Abstract

We report on the scanning tunneling microscopy study of a new class of corrugations in exfoliated monolayer graphene sheets, that is, wrinkles approximately 10 nm in width and approximately 3 nm in height. We found such corrugations to be ubiquitous in graphene and have distinctly different properties when compared to other regions of graphene. In particular, a "three-for-six" triangular pattern of atoms is exclusively and consistently observed on wrinkles, suggesting the local curvature of the wrinkle provides a sufficient perturbation to break the 6-fold symmetry of the graphene lattice. Through scanning tunneling spectroscopy, we further demonstrate that the wrinkles have lower electrical conductance and are characterized by the presence of midgap states, which is in agreement with recent theoretical predictions. The observed wrinkles are likely important for understanding the electrical properties of graphene.

摘要

我们报告了在剥离的单层石墨烯片上发现的一类新的波纹结构,即宽度约为 10nm、高度约为 3nm 的皱纹。我们发现这种波纹在石墨烯中普遍存在,与石墨烯的其他区域具有明显不同的性质。特别是,在褶皱上观察到了一个“三对六”的原子三角形图案,这是褶皱的局部曲率足以打破石墨烯晶格的六重对称性的充分扰动。通过扫描隧道谱,我们进一步证明了褶皱的电导较低,并具有中间带状态的特征,这与最近的理论预测一致。所观察到的褶皱对于理解石墨烯的电学性质可能很重要。

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