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Reduction of escape cone losses in luminescent solar concentrators with cholesteric mirrors

机译:使用胆甾型镜减少发光太阳能集中器的逃逸锥损耗

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The Luminescent Solar Concentrator (LSC) consists of a transparent polymer plate containing luminescent particles. Solar cells are connected to one or more sides of the polymer plate. Part of the light emitted by the luminescent particles is guided towards the solar cells by total internal reflection.rnAbout 25% of the dye emission is typically emitted within the optical escape cone of the matrix material and is lost due to emission from the top. We study the application of selectively-reflective cholesteric layers to reduce these losses. We have implemented these mirrors in the ray-tracing model for the LSC. The simulations show that an optimum in performance can be obtained by selecting an appropriate centre wavelength of the cholesteric mirror.rnExternal Quantum Efficiency measurements were performed on LSC devices with a mc-Si, GaAs or InGaP cell and a dichroic mirror. This mirror shows a similar behavior as the cholesteric mirror. The results show that for a 5×5 cm~2 LSC the mirror does improve the EQE in the absorption range of the dye.
机译:发光太阳能聚光器(LSC)由包含发光粒子的透明聚合物板组成。太阳能电池连接到聚合物板的一侧或多侧。发光粒子发出的部分光通过全内反射导向太阳能电池。通常,约25%的染料发射是在基质材料的光学逃逸锥内发射的,并且由于从顶部发射而丢失。我们研究了选择性反射胆甾醇层的应用,以减少这些损失。我们已经在LSC的光线跟踪模型中实现了这些反射镜。仿真表明,可以通过选择合适的胆甾型镜中心波长来获得最佳性能。在具有mc-Si,GaAs或InGaP电池和二向色镜的LSC器件上进行了外部量子效率测量。该镜子显示出与胆甾型镜子相似的行为。结果表明,对于5×5 cm〜2 LSC,反射镜在染料的吸收范围内确实改善了EQE。

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