4.7 Article

Enhancement of gas sensor response of nanocrystalline zinc oxide for ammonia by plasma treatment

Journal

APPLIED SURFACE SCIENCE
Volume 309, Issue -, Pages 46-53

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.apsusc.2014.04.158

Keywords

Zinc oxide; Oxygen plasma; Oxygen vacancies; Surface treatment; Gas sensing; Sol-gel

Funding

  1. National Science Foundation (NSF) of USA [0933069]
  2. Div Of Civil, Mechanical, & Manufact Inn
  3. Directorate For Engineering [0933069] Funding Source: National Science Foundation

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The effect of oxygen plasma treatment on nanocrystalline ZnO thin film based gas sensor was investigated. ZnO thin films were synthesized on alkali-free glass substrates by a sol-gel process. ZnO thin films were treated with oxygen plasma to change the number of vacancies/defects in ZnO. The effect of oxygen plasma on the structural, electrical, optical and gas sensing properties was investigated as a function of plasma treatment time. The results suggest that the microstructure and the surface morphology can be tuned by oxygen plasma treatment. The optical transmission in the visible range varies after the oxygen plasma treatment. Moreover, it is found that the oxygen plasma has significant impact on the electrical properties of ZnO thin films indicating a variation of resistivity. The oxygen plasma treated ZnO thin film exhibits an enhanced sensing response towards NH3 in comparison with that of the as-deposited ZnO sensor. When compared with the as-deposited ZnO film, the sensing response was improved by 50% for the optimum oxygen plasma treatment time of 8 min. The selectivity of 8 min plasma treated ZnO sensor was also examined for an important industrial gas mixture of H-2, CH4 and NH3. (C) 2014 Elsevier B.V. All rights reserved.

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