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Proceedings Paper

Plasmonic nanostructures for photo-catalytic reactors
Author(s): K. P. Chiu; N. L. Wu; C. S. Wu; Y. H. Fu; C. H. Chu; H. Y. Chung; F. H. Chen; L. D. Lin; L. H. Huang; C. D. Shue; D. P. Tsai
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Paper Abstract

3D-FDTD is used to compute the electromagnetic response of various plasmonic nanostructures. Results of computation and simulation are used to design the contact area of the photo-catalytic reactors. Novel nano-fabrication techniques are developed to implement large surface area of plasmonic nanostructures for photo-catalytic reactors. Measurement and analysis of the photo-catalytic process happened in the newly designed photo-chemical reactors clearly demonstrate better efficiency of some photo-catalytic chemical process such as the decomposition of the Methyl Orange to carbon dioxide and water.

Paper Details

Date Published: 2 September 2009
PDF: 8 pages
Proc. SPIE 7392, Metamaterials: Fundamentals and Applications II, 73920B (2 September 2009); doi: 10.1117/12.829023
Show Author Affiliations
K. P. Chiu, National Taiwan Univ. (Taiwan)
N. L. Wu, National Taiwan Univ. (Taiwan)
C. S. Wu, National Taiwan Univ. (Taiwan)
Y. H. Fu, National Taiwan Univ. (Taiwan)
C. H. Chu, National Taiwan Univ. (Taiwan)
H. Y. Chung, National Taiwan Univ. (Taiwan)
F. H. Chen, National Taiwan Univ. (Taiwan)
L. D. Lin, National Taiwan Univ. (Taiwan)
L. H. Huang, National Taiwan Univ. (Taiwan)
C. D. Shue, National Taiwan Univ. (Taiwan)
D. P. Tsai, National Taiwan Univ. (Taiwan)
Research Ctr. for Applied Sciences (Taiwan)
National Applied Research Labs. (Taiwan)


Published in SPIE Proceedings Vol. 7392:
Metamaterials: Fundamentals and Applications II
Mikhail A. Noginov; Nikolay I. Zheludev; Allan D. Boardman; Nader Engheta, Editor(s)

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