Formaldehyde gas sensing using metal oxide semiconductor: a brief review

Author:

Ishak Syafiqah,Johari Shazlina,Ramli Muhammad Mahyiddin,Darminto Darminto

Abstract

Purpose This review aims to give an overview about zinc oxide (ZnO) based gas sensors and the role of doping in enhancing the gas sensing properties. Gas sensors based on ZnO thin film are preferred for sensing applications because of their modifiable surface morphology, very large surface-to-volume ratio and superior stability due to better crystallinity. The gas detection mechanism involves surface reaction, in which the adsorption of gas molecules on the ZnO thin film affects its conductivity and reduces its electrical properties. One way to enhance the gas sensing properties is by doping ZnO with other elements. A few of the common and previously used dopants include tin (Sn), nickel (Ni) and gallium (Ga). Design/methodology/approach In this brief review, previous works on doped-ZnO formaldehyde sensing devices are presented and discussed. Findings Most devices provided good sensing performance with low detection limits. The reported operating temperatures were within the range of 200̊C –400̊C. The performance of the gas sensors can be improved by modifying their nanostructures and/or adding dopants. Originality/value As of yet, a specific review on formaldehyde gas sensors based on ZnO metal semiconductors has not been done.

Publisher

Emerald

Subject

Electrical and Electronic Engineering,Industrial and Manufacturing Engineering

Reference97 articles.

1. Synthesis and characterization of ZnO thin film grown by electron beam evaporation;Journal of Applied Physics,2006

2. Investigation of TiO2 thick film capacitors for use as strain gauge sensors;Sensors and Actuators A: Physical,2005

3. Trace determination of free formaldehyde in DTP and DT vaccines and diphtheria-tetanus antigen by single drop microextraction and gas chromatography-mass spectrometry;Journal of Pharmaceutical and Biomedical Analysis,2009

4. Nanocrystalline metal oxides for methane sensors: role of noble metals;Journal of Sensors,2009

5. Sensitivity, selectivity, and stability of gas-sensitive metal-oxide nanostructures;Metal Oxide Nanostructures and Their Applications,2010

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