| Literature DB >> 24949783 |
Chuanxu Ma1, Haifeng Sun1, Yeliang Zhao1, Bin Li1, Qunxiang Li1, Aidi Zhao1, Xiaoping Wang1, Yi Luo1, Jinlong Yang1, Bing Wang1, J G Hou1.
Abstract
It has long been under debate whether the electron transport performance of graphene could be enhanced by the possible occurrence of van Hove singularities in grain boundaries. Here, we provide direct experimental evidence to confirm the existence of van Hove singularity states close to the Fermi energy in certain ordered grain boundaries using scanning tunneling microscopy. The intrinsic atomic and electronic structures of two ordered grain boundaries, one with alternative pentagon and heptagon rings and the other with alternative pentagon pair and octagon rings, are determined. It is firmly verified that the carrier concentration and, thus, the conductance around ordered grain boundaries can be significantly enhanced by the van Hove singularity states. This finding strongly suggests that a graphene nanoribbon with a properly embedded ordered grain boundary can be a promising structure to improve the performance of graphene-based electronic devices.Entities:
Year: 2014 PMID: 24949783 DOI: 10.1103/PhysRevLett.112.226802
Source DB: PubMed Journal: Phys Rev Lett ISSN: 0031-9007 Impact factor: 9.161