Highly sensitive hydrogen detection of catalyst-free ZnO nanorod networks suspended by lithography-assisted growth
- Authors
- Huh, Junghwan; Park, Jonghyurk; Kim, Gyu Tae; Park, Jeong Young
- Issue Date
- 25-2월-2011
- Publisher
- IOP PUBLISHING LTD
- Citation
- NANOTECHNOLOGY, v.22, no.8
- Indexed
- SCIE
SCOPUS
- Journal Title
- NANOTECHNOLOGY
- Volume
- 22
- Number
- 8
- URI
- https://scholar.korea.ac.kr/handle/2021.sw.korea/113041
- DOI
- 10.1088/0957-4484/22/8/085502
- ISSN
- 0957-4484
- Abstract
- We have successfully demonstrated a ZnO nanorod-based 3D nanostructure to show a high sensitivity and very fast response/recovery to hydrogen gas. ZnO nanorods have been synthesized selectively over the pre-defined area at relatively low temperature using a simple self-catalytic solution process assisted by a lithographic method. The conductance of the ZnO nanorod device varies significantly as the concentration of the hydrogen is changed without any additive metal catalyst, revealing a high sensitivity to hydrogen gas. Its superior performance can be explained by the porous structure of its three-dimensional network and the enhanced surface reaction of the hydrogen molecules with the oxygen defects resulting from a high surface-to-volume ratio. It was found that the change of conductance follows a power law depending on the hydrogen concentration. A Langmuir isotherm following an ideal power law and a cross-over behavior of the activation energy with respect to hydrogen concentration were observed. This is a very novel and intriguing phenomenon on nanostructured materials, which suggests competitive surface reactions in ZnO nanorod gas sensors. S Online supplementary data available from stacks. iop.org/Nano/22/085502/mmedia
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