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Converting the Conducting Behavior of Graphene Oxides from n-Type to p-Type via Electron-Beam Irradiation

Authors
Mirzaei, AliKwon, Yong JungWu, PingKim, Sang SubKim, Hyoun Woo
Issue Date
Feb-2018
Publisher
American Chemical Society
Keywords
graphene oxide; electron-beam irradiation; oxygen functional group; gas sensor; conducting behavior
Citation
ACS Applied Materials & Interfaces, v.10, no.8, pp 7324 - 7333
Pages
10
Indexed
SCI
SCIE
SCOPUS
Journal Title
ACS Applied Materials & Interfaces
Volume
10
Number
8
Start Page
7324
End Page
7333
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/17819
DOI
10.1021/acsami.7b16458
ISSN
1944-8244
1944-8252
Abstract
We studied the effects of electron-beam irradiation (EBI) on the structural and gas-sensing properties of graphene oxide (GO). To understand the effects of EBI on the structure and gas-sensing behavior of irradiated GO, the treated GO was compared with nonirradiated GO. Characterization results indicated an enhancement in the number of oxygen functional groups that occurs with EBI exposure at 100 kGy and then decreases with doses in the range of 100-500 kGy. Data from Raman spectra indicated that EBI could generate defects, and NO2-sensing results at room temperature showed a decreased NO2 response after exposure to EBI at 100 kGy; further increasing the dose to 500 kGy resulted in p-type semiconducting conductivity. The conversion of GO from n-type to p-type via EBI is explained not only through the generation of holes but also the variation in the amount of residual functional groups, including carboxyl (COOH) and hydroxyl groups (C-OH). The obtained results suggest that EBI can be a useful tool to convert GO into a diverse range of sensing devices.
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