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Luminescent solar concentrators with a bottom-mounted photovoltaic cell:performance optimization and power gain analysis 被引量:2

Luminescent solar concentrators with a bottom-mounted photovoltaic cell:performance optimization and power gain analysis
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摘要 Polymethyl methacrylate(PMMA) plate luminescent solar concentrators with a bottom-mounted(BM-LSCs)photovoltaic(PV) cell are fabricated by using a mixture of Lumogen Red 305 and Yellow 083 fluorescent dyes and a commercial monocrystalline silicon cell. The fabricated LSC with dye concentrations of 40 ppm has the highest power gain of 1.50, which is the highest value reported for the dye-doped PMMA plate LSCs. The power gain of the LSC comes from three parts: the waveguide light, the transmitted light, and the reflected light from a white reflector, and their contributions are analyzed quantitatively. The results suggest that the BM-LSCs have great potential for future low-cost PV devices in building integrated PV applications. Polymethyl methacrylate(PMMA) plate luminescent solar concentrators with a bottom-mounted(BM-LSCs)photovoltaic(PV) cell are fabricated by using a mixture of Lumogen Red 305 and Yellow 083 fluorescent dyes and a commercial monocrystalline silicon cell. The fabricated LSC with dye concentrations of 40 ppm has the highest power gain of 1.50, which is the highest value reported for the dye-doped PMMA plate LSCs. The power gain of the LSC comes from three parts: the waveguide light, the transmitted light, and the reflected light from a white reflector, and their contributions are analyzed quantitatively. The results suggest that the BM-LSCs have great potential for future low-cost PV devices in building integrated PV applications.
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2017年第6期97-102,共6页 中国光学快报(英文版)
基金 supported by the National Nature Science Foundation of China(No.U1632273) the Chinese Academy of Sciences(No.CX3430000001)
关键词 photovoltaic waveguide mounted methacrylate reflector contributions quantitatively spectrometer luminescent absorbed photovoltaic waveguide mounted methacrylate reflector contributions quantitatively spectrometer luminescent absorbed
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