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Hybrid Fe2O3/CNT thin films for gas sensor applications

Author(s)
Chaitongrat, Buaworn
Chaisitsak, Sutichai
Date Issued
August 13, 2018
Type
Conference Paper
DOI
10.1109/ICEAST.2018.8434510
Abstract
Thin films of Fe nanoparticles (NPs)/CNT networks were synthesized through vertical floating catalyst chemical vapor deposition technique (FC-CVD) and collected directly onto a cellulose membrane filter. Fe NPs/CNT films were transferred onto glass (or Si) substrates simply by dissolving filters, and then annealed in air at a low temperature for 8 hrs to create Fe2O3 NPs. The effect of annealing temperature ranging from 150 to 550°C on the morphology and structures of the Fe2O3/CNTs films was investigated by field emission scanning electron microscopy (FE-SEM), thermogravimetric analysis (TGA), differential thermal analysis (DTA), X-ray photoelectron spectroscopy (XPS) and Raman spectroscopy. Fe2O3/CNTs film-based sensors were tested against LPG gas under room temperature. LPG sensing-performance (sensor response and response/recovery time) of the Fe2O3/CNTs films-based sensor varied depending on the annealing temperature. The results of this study reinforce the potential of hybrid Fe2O3/CNTs films as a sensing material for LPG detection at low operating temperature.
Citation
Iceast 2018 4th International Conference on Engineering Applied Sciences and Technology Exploring Innovative Solutions for Smart Society, 2018
Subjects

carbon nanotubes

Fe2O3

gas sensor

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