SEMI OpenIR  > 中科院半导体材料科学重点实验室
Plasmonic Polymer Tandem Solar Cell
Yang J; You JB; Chen CC; Hsu WC; Tan HR; Zhang XW; Hong ZR; Yang Y; Yang, J (reprint author), Univ Calif Los Angeles, Dept Mat Sci & Engn, Los Angeles, CA 90095 USA.
Source PublicationACS NANO
AbstractWe demonstrated plasmonic effects. in an inverted tandem polymer solar cell configuration by blending Au nanoparticles (NPs) into the interconnecting layer (ICL) that connects two subcells. Experimental results showed this plasmonic enhanced, ICL improves both the top and bottom subcells' efficiency simultaneously by enhancing optical absorption. The presence of Au NPs did not cause electrical characteristics to degrade within the tandem cell. As a result, a 20% improvement of power conversion efficiency has been attained by,the light concentration of Au NPs via plasmonic near-field enhancement. The simulated near-field distribution and experimental Raman scattering investigation support our results of plasmonic induced enhancement In solar cell performance. Our finding shows a great potential of Incorporating the plasmonic effect with conventional device structure In achieving highly efficient polymer solar cells.
KeywordPhotovoltaic Cells Absorption Enhancement Self-organization Efficiency Nanoclusters Fluorescence Resonance Design Blends
Subject Area半导体器件
Funding OrganizationONR[N000141110250]; National Science Foundation[CHE0822573]; NSFC[50633050, 20821120293]
Indexed BySCI
Date Available2011-09-14
Document Type期刊论文
Corresponding AuthorYang, J (reprint author), Univ Calif Los Angeles, Dept Mat Sci & Engn, Los Angeles, CA 90095 USA.
Recommended Citation
GB/T 7714
Yang J,You JB,Chen CC,et al. Plasmonic Polymer Tandem Solar Cell[J]. ACS NANO,2011,5(8):6210-6217.
APA Yang J.,You JB.,Chen CC.,Hsu WC.,Tan HR.,...&Yang, J .(2011).Plasmonic Polymer Tandem Solar Cell.ACS NANO,5(8),6210-6217.
MLA Yang J,et al."Plasmonic Polymer Tandem Solar Cell".ACS NANO 5.8(2011):6210-6217.
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