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- W3106818215 abstract "Abstract Dye-sensitized solar cells (DSSCs) have recently gained much attention, due to the low-cost materials and their cheaper manufacturing techniques. However, these cells show a weak response to incident solar photons, resulting in poor power-conversion efficiency. In this paper, we described an improvement to the optical absorption efficiency of DSSCs in the wavelength range between 350 nm and 750 nm using the surface plasmon-resonance effect of plasmonic nanoparticles. Three different structures are studied, including unilayer, bilayer, and trilayer photoanodes based on various core–shell plasmonic spherical nanoparticles made of Ag@TiO 2 . In all structures, the nanoparticle size is optimized to obtain broadband optical absorption. The absorption efficiency of the dye-sensitized solar cell is significantly improved, from 65.2% to 72.3%, by tuning the photoanode structure from unilayer to trilayer. The results show that a unilayer photoanode with smaller-sized nanoparticles leads to higher absorption, compared to larger sizes. The UV–vis results indicate that mixing large- and small-sized nanoparticles in bi- and trilayer photoanodes is a good approach for improving the light-harvesting efficiency of DSSCs, compared to uniformly distributed nanoparticles. A maximum short-circuit current density of 17.32 mA cm −2 is recorded for a photoanode based on a trilayer structure of Ag@TiO 2 nanoparticles." @default.
- W3106818215 created "2020-12-07" @default.
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- W3106818215 date "2021-01-01" @default.
- W3106818215 modified "2023-10-03" @default.
- W3106818215 title "The effect of plasmonic multilayered photoanode structures on the absorption of dye-sensitized solar cells" @default.
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- W3106818215 doi "https://doi.org/10.35848/1347-4065/abd04d" @default.
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