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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Advanced Material Concepts for Luminescent Solar Concentrators
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Advanced Material Concepts for Luminescent Solar Concentrators

机译:发光太阳能聚光器的先进材料概念

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Sunlight that is incident on the front surface of a luminescent solar concentrator (LSC) is absorbed and subsequently re-emitted by luminescent materials. The resulting luminescence is transported to the edge of the LSC sheet and concentrated onto photovoltaic devices. Despite its potential for generating low-cost solar power, LSC development faces numerous challenges, the majority of which are related to the luminescent materials used in their design. Earlier LSC research focused on organic dyes, and while several of the shortcomings with these materials have been solved over time, some major challenges remain. This paper outlines the loss mechanisms that limit conversion efficiency of the LSC and highlights the role that advanced materials can play. Losses include nonunity fluorescence quantum yield (FQY), reabsorption losses, incomplete utilization of the solar spectrum, and escape cone losses. Long-term photostability is also discussed as it is essential for commercial feasibility of any solar technology. Past and current techniques, designed to reduce these losses, are described and their experimental achievements are discussed.
机译:入射到发光太阳能集中器(LSC)正面的阳光被吸收并随后被发光材料重新发射。产生的发光被传输到LSC片材的边缘并集中到光伏设备上。尽管LSC具有产生低成本太阳能的潜力,但其发展仍面临许多挑战,其中大部分与设计中使用的发光材料有关。早期的LSC研究专注于有机染料,尽管这些材料的一些缺点已随着时间的流逝而得到解决,但仍存在一些主要挑战。本文概述了限制LSC转换效率的损耗机制,并强调了先进材料可以发挥的作用。损失包括非统一荧光量子产率(FQY),重吸收损失,太阳光谱的不完全利用和逃逸锥损失。还讨论了长期光稳定性,因为这对于任何太阳能技术的商业可行性都至关重要。描述了旨在减少这些损失的过去和当前技术,并讨论了它们的实验成果。

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