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A Graphene Surface Force Balance

delete2014-09-15
delete24
delete
OA
AI
J
Jude Britton
N
Nico E. A. Cousens
S
Samuel W. Coles
C
Christian D. van Engers
V
Vitaliy Babenko
A
Adrian T. Murdock
A
Antal A. Koós
S
Susan Perkin *
N
Nicole Grobert
DOI:10.1021/la5028493delete
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Abstract

Abstract

En 中文
We report a method for transferring graphene, grown by chemical vapor deposition, which produces ultraflat graphene surfaces (root-mean-square roughness of 0.19 nm) free from polymer residues over macroscopic areas (>1 cm(2)). The critical step in preparing such surfaces involves the use of an intermediate mica template, which itself is atomically smooth. We demonstrate the compatibility of these model surfaces with the surface force balance, opening up the possibility of measuring normal and lateral forces, including friction and adhesion, between two graphene sheets either in contact or across a liquid medium. The conductivity of the graphene surfaces allows forces to be measured while controlling the surface potential. This new apparatus, the graphene surface force balance, is expected to be of importance to the future understanding of graphene in applications from lubrication to electrochemical energy storage systems.
Keywords:
CHEMICAL-VAPOR-DEPOSITION
LARGE-AREA GRAPHENE
FEW-LAYER GRAPHENE
MICA SURFACES
RAMAN-SPECTROSCOPY
HYDRATION FORCES
HIGH-QUALITY
FILMS
THICKNESS
GRAPHITE
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Langmuir cover
Langmuir
IF:
3.9
Papers:
5.4W
Citations:
10.6W

Organization

U
university of oxford
Scholars:
9.8W
Papers: 8.6W
Citations: 137