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Thin-film luminescent solar concentrators: Optimization and photo-stability study of a model device based on a perylene fluorescent dye

机译:薄膜发光太阳能集中器:基于a荧光染料的模型设备的优化和光稳定性研究

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This paper presents a study on the optimization and photo-stability of a perylene-based thin-film luminescent solar concentrator (LSC). It was demonstrated that device parameters such as dye concentration and film thickness significantly influence the PV response of the LSC device. In particular, a maximum power conversion efficiency gain of about 43% was achieved on optimized devices. The interpretation of the observed trends was supported by UV-vis, fluorescence and EQE measurements. Following optimization of device parameters, thin-film LSCs were exposed in air to continuous illumination under strong free-radical generating conditions to investigate the photo-stability of the LSC materials. In addition, the chemical modifications occurring to the organic dye molecule were correlated with the operational stability of the working LSC device, thus clarifying the effect of dye photo-degradation on device performance.
机译:本文提出了基于per的薄膜发光太阳能聚光器(LSC)的优化和光稳定性的研究。事实证明,器件参数(如染料浓度和膜厚)会显着影响LSC器件的PV响应。特别是,在优化的器件上实现了约43%的最大功率转换效率增益。紫外可见光,荧光和EQE测量结果支持了对观察到的趋势的解释。优化器件参数后,薄膜LSC在强自由基产生条件下在空气中暴露于连续照明下,以研究LSC材料的光稳定性。此外,发生在有机染料分子上的化学修饰与工作的LSC器件的操作稳定性相关,因此阐明了染料光降解对器件性能的影响。

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