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Enhanced performance of dye-sensitized solar cells via plasmonic sandwiched structure
Journal article   Peer reviewed

Enhanced performance of dye-sensitized solar cells via plasmonic sandwiched structure

Su-Jien Lin, Kuang-Che Lee, Jyun-Lin Wu and Jun-Yi Wu
Applied Physics Letters, Vol.99(4), 043306
25/07/2011

Abstract

The plasmonic structure of sandwiched TiO 2 /NPs-Ag/TiO 2 electrodes was fabricated by sputter technology and sol-gel and spin coating procedure to enhance the performance of dye-sensitized solar cells. The improvement of the incident photon to photocurrent efficiency spectrum corresponding to the strong absorption and damping reflection indicated light trapping of plasmonic structure to elongate the optical pathways of photons. More light trapped close to photocurrent collecting electrode provides better charge-collection and light harvesting efficiencies. As a result of improved dye absorption, about 23 enhancement in photocurrent density has been achieved. © 2011 American Institute of Physics.

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