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Single ZnO nanocactus gas sensor formed by etching of ZnO nanorod

Authors
Ryu, Sung RyongRam, S. D. GopalCho, Hak-dongLee, Dong JinKang, Tae WonWoo, Yongdeuk
Issue Date
Jul-2015
Publisher
ROYAL SOC CHEMISTRY
Citation
NANOSCALE, v.7, no.25, pp 11115 - 11122
Pages
8
Indexed
SCI
SCIE
SCOPUS
Journal Title
NANOSCALE
Volume
7
Number
25
Start Page
11115
End Page
11122
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/25424
DOI
10.1039/c5nr02387d
ISSN
2040-3364
2040-3372
Abstract
Etching of materials on the nanoscale is a challenging but necessary process in nanomaterials science. Gas sensing using a single ZnO nanocactus (NC), which was prepared by facile isotropic nanoetching of zinc oxide nanorods (NR) grown by chemical vapor deposition (CVD) using an organic photoresist (PR) by a thermochemical reaction, is reported in this work. PR consists of carboxylic acid groups (COOH) and cyclopentanone (C5H8O), which can react with zinc and oxygen atoms, respectively, on the surface of a ZnO NR. The thermochemical reaction is controllable by varying the concentration of PR and reaction time. A gas sensor was fabricated using a single NC. Gas sensing was tested using different gases such as CH4, NH3 and carbon monoxide (CO). It was estimated that the surface area of a ZnO NC in the case of 50% PR was found to increase four-fold. When compared with a single ZnO NR gas sensor, the sensitivity of a ZnO NC was found to increase four-fold. This increase in sensitivity is attributed to the increase in surface area of the ZnO NC. The formed single ZnO NC gas sensor has good stability, response and recovery time.
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