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Title: Resistive hydrogen sensing response of Pd-decorated ZnO “nanosponge” film
Authors: Zhao, M
Wong, MH 
Man, HC 
Ong, CW 
Issue Date: Oct-2017
Source: Sensors and actuators. B, Chemical, Oct. 2017, v. 249, p. 624-631
Abstract: Hydrogen (H2)-induced resistive response of palladium (Pd)-decorated zinc oxide “nanosponge” (Pd/ns-ZnO) film was studied at different operation temperatures with and without UV illumination. The as-deposited ns-ZnO film, fabricated using a supersonic cluster beam deposition system, was highly porous and composed of ∼5 nm nanoclusters embedded in an amorphous matrix. After annealed at 500 °C for 1 h, the film was found to contain loosely connected 13 nm crystallites and had a porosity of 73%. The Pd/ns-ZnO film sensor at 20 °C showed a sensor response of 82 and a response time of 1 s for 2% H2. After heated slightly to 80 °C, the sensor response was increased by 43 times, and the response and recovery times dropped to 0.3 s and 18 s, respectively. This performance is superior to those of many other metal oxide nanomaterials operating at temperatures > 200 °C. The sensing properties of the Pd/ns-ZnO film showed little degradation when UV illumination was applied, but the sensing stability was improved. A reaction model was proposed to give an explanation to the gas sensing process. The influences of increasing the operation temperature and UV illumination are discussed.
Keywords: H2 sensor
ZnO film
High porosity
Fast response
UV assisted gas detection
Publisher: Elsevier BV
Journal: Sensors and actuators. B, Chemical 
ISSN: 0925-4005
EISSN: 1873-3077
DOI: 10.1016/j.snb.2017.04.020
Rights: © 2017 Elsevier B.V. All rights reserved.
© 2017. This manuscript version is made available under the CC-BY-NC-ND 4.0 license https://creativecommons.org/licenses/by-nc-nd/4.0/
The following publication Zhao, M., Wong, M. H., Man, H. C., & Ong, C. W. (2017). Resistive hydrogen sensing response of Pd-decorated ZnO “nanosponge” film. Sensors and Actuators, B: Chemical, 249, 624–631 is available at https://doi.org/10.1016/j.snb.2017.04.020.
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