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Field electron emission characteristics and physical mechanism of individual single-layer graphene
Xiao Z.1; She J.1; Deng S.1; Tang Z.1; Li Z.1; Lu J.2; Xu N.1
2010-11-23
Source PublicationACS Nano
ISSN19360851 1936086X
Volume4Issue:11Pages:6332-6336
Abstract

Due to its difficulty, experimental measurement of field emission from a single-layer graphene has not been reported, although field emission from a two-dimensional (2D) regime has been an attractive topic. The open surface and sharp edge of graphene are beneficial for field electron emission. A 2D geometrical effect, such as massless Dirac fermion, can lead to new mechanisms in field emission. Here, we report our findings from in situ field electron emission characterization on an individual singe-layer graphene and the understanding of the related mechanism. The measurement of field emission from the edges was done using a microanode probe equipped in a scanning electron microscope. We show that repeatable stable field emission current can be obtained after a careful conditioning process. This enables us to examine experimentally the typical features of the field emission from a 2D regime. We plot current versus applied field data, respectively, in ln(I/E ) ∼ 1/E and ln(I/E ) ∼ 1/E coordinates, which have recently been proposed for field emission from graphene in high- and low-field regimes. It is observed that the plots all exhibit an upward bending feature, revealing that the field emission processes undergo from a low- to high-field transition. We discuss with theoretical analysis the physical mechanism responsible for the new phenomena. © 2010 American Chemical Society.

Keyword2d Regime Field Emission Line Current Density Microanode Probe Single-layer Grapheme Upward Bending Fn Plot
DOI10.1021/nn101719r
URLView the original
Language英語English
WOS IDWOS:000284438000006
Scopus ID2-s2.0-78649542357
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Citation statistics
Document TypeJournal article
CollectionUniversity of Macau
Affiliation1.Sun Yat-Sen University
2.Hong Kong University of Science and Technology
Recommended Citation
GB/T 7714
Xiao Z.,She J.,Deng S.,et al. Field electron emission characteristics and physical mechanism of individual single-layer graphene[J]. ACS Nano, 2010, 4(11), 6332-6336.
APA Xiao Z.., She J.., Deng S.., Tang Z.., Li Z.., Lu J.., & Xu N. (2010). Field electron emission characteristics and physical mechanism of individual single-layer graphene. ACS Nano, 4(11), 6332-6336.
MLA Xiao Z.,et al."Field electron emission characteristics and physical mechanism of individual single-layer graphene".ACS Nano 4.11(2010):6332-6336.
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