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Thermoplasmonics-assisted nanoheterostructured Au-decorated CuInS<inf>2</inf> nanoparticles: Matching solar spectrum absorption and its application on selective distillation of non-polar solvent systems by thermal solar energy
Journal article   Peer reviewed

Thermoplasmonics-assisted nanoheterostructured Au-decorated CuInS2 nanoparticles: Matching solar spectrum absorption and its application on selective distillation of non-polar solvent systems by thermal solar energy

Yu-Ting Yen, Chia-Wei Chen, Ming Fang, Yu-Ze Chen, Chih-Chung Lai, Cheng-Hung Hsu, Yi-Chung Wang, Hao Lin, Chang-Hong Shen, Jia-Min Shieh, …
Nano Energy, Vol.15, pp.470-478
01/07/2015

Abstract

Copper indium disulfide Gold Hybrid nanoparticles Plasmonic Solar energy harvesting
In this work, enhanced broadband solar spectrum absorption and solar-thermal conversion efficiency (~ 8%) has realized and reported by Au-decorated CuInS2 nanoparticles, namely Au@CIS NPs. The morphologies, compositions and absorptions were characterized by high resolution transmission electron microscopy (HR-TEM), UV-vis spectrometer and Finite-Difference Time-Domain (FDTD) numeric methods. The Au@CIS NPs shows a distinguished absorption perfectly matching AM1.5G solar spectrum, compared with pure Au, CIS and CIS-Au mixture nanoparticles (NPs) owing to near field plasmonic-assisted effect. In addition, the Au@CIS NPs proves its practical applications on selective distillation in non-polar solvent systems, for which the selective distillation of methylcyclohexane from toluene as an example was demonstrated. The approach can evoke future developments of plasmonic-assisted heterostructure in nanoscale for thermal solar energy harvesting application.

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