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A structurally modified perylene dye for efficient luminescent solar concentrators

机译:结构改性的per染料,可用于高效发光的太阳能聚光器

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摘要

A structurally modified perylene dye with broad absorption (300-550 nm), long-wavelength emission (550-650 nm), large Stokes shift (Delta lambda = 90 nm) and high photoluminescence quantum yield (Phi(f) = 0.95) has been synthesized for luminescent solar concentrators (LSCs). Its unique photophysical properties is attributed to the intramolecular charge transfer (ICT) characteristic within the molecule, which was investigated in solution and solid of the dye by spectroscopic measurements as well as theoretical calculations. The performance of LSCs with different device sizes and solar cell configurations was studied experimentally under outdoor real-time sunny condition. Specifically, a LSC with a geometric gain (G) of 5 exhibits high power conversion efficiency (eta(LSC)) of 2.81% +/- 0.06% and over unity concentration ratio (C) of 1.19 +/- 0.03 with high optical efficiency (P) of 23.7% +/- 0.5%. Cost-effectiveness analysis was performed on the LSCs implies that C could be as high as 13.85 (G = 200) and price per watt could be as low as $0.33/W (G = 103). (C) 2016 Elsevier Ltd. All rights reserved.
机译:具有宽吸收(300-550 nm),长波发射(550-650 nm),大斯托克斯位移(Delta lambda = 90 nm)和高光致发光量子产率(Phi(f)= 0.95)的结构改性的ylene染料具有已被合成用于发光太阳能集中器(LSC)。其独特的光物理性质归因于分子内的分子内电荷转移(ICT)特性,该特性已通过光谱测量和理论计算在染料的溶液和固体中进行了研究。在室外实时晴天条件下,通过实验研究了具有不同设备尺寸和太阳能电池配置的LSC的性能。具体而言,几何增益(G)为5的LSC表现出2.81%+/- 0.06%的高功率转换效率(eta(LSC)),以及具有高光学效率的1.19 +/- 0.03的超单位浓度比(C) (P)为23.7%+/- 0.5%。对LSC进行的成本效益分析表明,C可能高达13.85(G = 200),每瓦价格可能低至$ 0.33 / W(G = 103)。 (C)2016 Elsevier Ltd.保留所有权利。

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