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Division of Energy & Environmental Technology
1. Journal Articles
Surface Plasmon-Enhanced Light-Emission Mechanism of Ag-Coated ZnO/Al2O3 Core/Shell Nanorod Structures
Noh, Bum-Young
;
Baek, Seong-Ho
;
Jung, Yong-Il
;
Kim, Jae Hyun
;
Park, Il-Kyu
Division of Energy & Environmental Technology
1. Journal Articles
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Title
Surface Plasmon-Enhanced Light-Emission Mechanism of Ag-Coated ZnO/Al2O3 Core/Shell Nanorod Structures
Issued Date
2013-05
Citation
Noh, Bum-Young. (2013-05). Surface Plasmon-Enhanced Light-Emission Mechanism of Ag-Coated ZnO/Al2O3 Core/Shell Nanorod Structures. Journal of Nanoscience and Nanotechnology, 13(5), 3335–3340. doi: 10.1166/jnn.2013.7299
Type
Article
Author Keywords
Surface Plasmon
;
ZnO Nanorods
;
Ag Nanoparticle
;
Forster Energy Transfer
ISSN
1533-4880
Abstract
Surface plasmon (SP)-enhanced light emission mechanism has been investigated for the Ag-coated ZnO/Al2O3 core/shell nanorods (NRs). Structural characterizations showed that the ZnO NRs were covered by conformal Al2O3 layer and coated by Ag nanoparticles (NPs). The optical studies by photoluminescence (PL) showed abnormal variation of PL intensity with increasing the thickness of Al 2O3. For the Ag NPs-coated ZnO NRs without Al 2O3 shell layer, the PL emission quenched due to direct transfer of the photo-excited electrical carriers from ZnO NRs to Ag NPs. With thin Al2O3 layers less than 15 nm, the PL intensity increased with increasing the thickness of Al2O3 layers due to weakening of the Förster-type energy transfer while strong SP-mediated PL emission enhancement. For thicker Al2O3 layers than 15 nm, however, the PL intensity decreased with increasing the thickness of Al2O3 layers due to weakening of SP-mediated PL emission enhancement. Copyright © 2013 American Scientific Publishers.
URI
http://hdl.handle.net/20.500.11750/2434
DOI
10.1166/jnn.2013.7299
Publisher
American Scientific Publishers
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