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Highly Tunable Charge Transport in Layer-by-Layer Assembled Graphene Transistors

Authors
Hwang, HyunminJoo, PiljaeKang, Moon SungAhn, GukmoonHan, Joong TarkKim, Byeong-SuCho, Jeong Ho
Issue Date
Mar-2012
Publisher
AMER CHEMICAL SOC
Keywords
graphene; layer-by-layer assembly; nitrogen doping; ambipolar to unipolar transition; transistor
Citation
ACS NANO, v.6, no.3, pp.2432 - 2440
Journal Title
ACS NANO
Volume
6
Number
3
Start Page
2432
End Page
2440
URI
http://scholarworks.bwise.kr/ssu/handle/2018.sw.ssu/12485
DOI
10.1021/nn2047197
ISSN
1936-0851
Abstract
We demonstrate a controlled, systematic method to tune the charge transport in graphene field-effect transistors based on alternating layer-by-layer assembly of positively and negatively charged graphene oxide followed by thermal reduction. Surprisingly, tuning the number of bilayers of thermally reduced graphene oxide multilayer films allowed achieving either ambipolar or unipolar (both n- and p-type) transport In graphene transistors. On the basis of X-ray photoemission spectroscopy, Raman spectroscopy, time-of-flight secondary ion mass spectrometry, and temperature-dependent charge transport measurements, we found that nitrogen atoms from the functional groups of positively charged graphene oxide are incorporated Into the reduced graphene oxide films and substitute carbon atoms during the thermal reduction. This nitrogen-doping process occurs in different degrees for graphene multilayers with varying numbers of bilayers and thereby results in the interesting transition in the electrical behavior In graphene multilayer transistors. We believe that such a versatile method to control the charge transport in graphene muttilayers will further promote their applications in solution-processable electronic devices based on graphene.
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