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Reduced graphene oxide/maghemite nanocomposite for detection of hydrocarbon vapor using surface plasmon resonance


Citation

A. A. Alwahib and A. R. Sadrolhosseini and An'amt, M.N. and H. N. Lim and M. H. Yaacob and M. H. Abu Bakar and H. N. Ming and M. A. Mahdi (2016) Reduced graphene oxide/maghemite nanocomposite for detection of hydrocarbon vapor using surface plasmon resonance. IEEE Photonics Journal, 8 (4). pp. 1-9. ISSN 1943-0655

Abstract

In this paper, a reduced graphene oxide/maghemite (rGO/��Fe2O3) nanocomposite film was used as the sensing layer using surface plasmon resonance (SPR) technique. The fabricated SPR sensor was based on a trilayer structure in which the rGO/��Fe2O3 nanocomposite layer was sandwiched between two gold layers. The SPR sensor was tested with hydrocarbon materials such as acetone, ethanol, methanol, and propanol. Based on the findings, the resonance angle shift with the presence of acetone is 1.891°, the largest among other hydrocarbon materials. The sensitivity of resonance angle shift toward acetone concentration is 0.0368°/%. These results demonstrate the massive potential of rGO/��Fe2O3 nanocomposite material for optical sensing applications.

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Additional Metadata

Item Type: Indexed Article
Collection Type: Institution
Date: August 2016
Journal or Publication Title: IEEE Photonics Journal
ISSN: 1943-0655
Uncontrolled Keywords: Graphene: maghemite: nanocomposite thin film: surface plasmon resonance.
Faculty/Centre/Office: Faculty of Earth Sciences
URI: http://discol.umk.edu.my/id/eprint/7565
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