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Rational Design of Plasmonic Metal Nanostructures for Solar Energy Conversion

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摘要 Plasmonic metal nanostructures,possessing unique surface plasmon resonance properties,show excellent capabilities for light trapping and coupling.On this basis,various plasmonic metal nanostructures offer extraordinary opportunities to promote the conversion efficiency of solar energy to electric energy,hydrogen energy or thermal energy,and so on.In this review article,we highlight a number of recent research achievements on the rational design of plasmonic metal nanostructures so as to maximize the utilization of the entire solar spectrum.Compared with single metal nanoparticles,multiplex(such as multicompositions,sizes,or shapes)nanoparticle structures emphasize advantages in broadening the absorption range and improving light-utilization efficiency.This review concludes with discussions regarding challenges in this research field and proposals of prospects for future directions.
出处 《CCS Chemistry》 CAS 2022年第4期1153-1168,共16页 中国化学会会刊(英文)
基金 financially supported by grants from the National Natural Science Foundation of China(nos.21822202,22072104,and 51821002) the National Key R&D Program of China(International Collaboration program)granted by Chinese Ministry of Science and Technology(no.2018YFE0200700) a project funded by CIC the 111 project Joint International Research Laboratory of Carbon-Based Functional Materials and Devices,and the Collaborative Innovation Center of Suzhou Nano Science and Technology.
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