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Design of Highly Sensitive C2H5OH Sensors Using Self-Assembled ZnO Nanostructures

Authors
Kim, Kang-MinKim, Hae-RyongChoi, Kwon-IlKim, Hyo-JoongLee, Jong-Heun
Issue Date
10월-2011
Publisher
MDPI
Keywords
ZnO; gas sensor; nanostructures, hierarchical structures; self-assembly
Citation
SENSORS, v.11, no.10, pp.9685 - 9699
Indexed
SCIE
SCOPUS
Journal Title
SENSORS
Volume
11
Number
10
Start Page
9685
End Page
9699
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/111431
DOI
10.3390/s111009685
ISSN
1424-8220
Abstract
Various ZnO nanostructures such as porous nanorods and two hierarchical structures consisting of porous nanosheets or crystalline nanorods were prepared by the reaction of mixtures of oleic-acid-dissolved ethanol solutions and aqueous dissolved Zn-precursor solutions in the presence of NaOH. All three ZnO nanostructures showed sensitive and selective detection of C2H5OH. In particular, ultra-high responses (R-a/R-g = similar to 1,200, R-a: resistance in air, R-g: resistance in gas) to 100 ppm C2H5OH was attained using porous nanorods and hierarchical structures assembled from porous nanosheets, which is one of the highest values reported in the literature. The gas response and linearity of gas sensors were discussed in relation to the size, surface area, and porosity of the nanostructures.
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