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Scale up the collection area of luminescent solar concentrators towards metre-length flexible waveguiding photovoltaics

机译:将发光太阳能聚光器的收集区域扩大到米级柔性波导光伏系统

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Luminescent solar concentrators (LSCs) are cost-effective components easily integrated in photovoltaics (PV) that can enhance solar cells' performance and promote the integration of PV architectural elements into buildings, with unprecedented possibilities for energy harvesting in facade design, urban furnishings and wearable fabrics. The devices' performance is dominated by the concentration factor (F), which is higher in cylindrical LSCs compared with planar ones (with equivalent collection area and volume). The feasibility of fabricating long-length LSCs has been essentially limited up to ten of centimetres with F<1. We use a drawing optical fibre facility to easily scale up large-area LSCs (length up to 2.5m) based on bulk and hollow-core plastic optical fibres (POFs). The active layers used to coat the bulk fibres or fill the hollow-core ones are Rhodamine 6G- or Eu3+-doped organic-inorganic hybrids. For bulk-coated LSCs, light propagation occurs essentially at the POFs, whereas for hollow-core device light is also guided within the hybrid. The lower POFs' attenuation (similar to 0.1m(-1)) enables light propagation in the total fibre length (2.5m) for bulk-coated LSCs with maximum optical conversion efficiency ((opt)) and F of 0.6% and 6.5, respectively. For hollow-core LSCs, light propagation is confined to shorter distances (6-9x10(-2)m) because of the hybrids' attenuation (1-15m(-1)). The hollow-core optimised device displays (opt)=72.4% and F=12.3. The F values are larger than the best ones reported in the literature for large-area LSCs (F=4.4), illustrating the potential of this approach for the development of lightweight flexible high-performance waveguiding PV. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:发光太阳能集中器(LSC)是经济高效的组件,可轻松集成到光伏(PV)中,从而提高太阳能电池的性能并促进将PV建筑元素集成到建筑物中,在外墙设计,城市陈设和可穿戴设备中实现空前的能量收集面料。器件的性能主要由浓度因子(F)决定,在圆柱形LSC中,其浓度要高于平面LSC(具有相等的收集面积和体积)。制造长LSC的可行性在F <1的情况下基本上限制在十厘米以内。我们使用拉制光纤设备,以散装和空心塑料光纤(POF)为基础轻松扩展大面积LSC(长度最大为2.5m)。用于涂覆散装纤维或填充中空纤维的活性层是罗丹明6G或Eu3 +掺杂的有机-无机杂化体。对于散装LSC,光传播基本上发生在POF,而对于空心器件,光也被引导到混合动力系统中。较低的POF衰减(类似于0.1m(-1))使散装LSC的光在整个光纤长度(2.5m)中传播,并具有最大的光转换效率((opt)),F分别为0.6%和6.5,分别。对于空心LSC,由于混合体的衰减(1-15m(-1)),光传播被限制在较短的距离(6-9x10(-2)m)中。优化后的空心器件显示(opt)= 72.4%,F = 12.3。 F值大于文献中针对大面积LSC所报告的最佳值(F = 4.4),这说明了该方法在开发轻量级柔性高性能波导PV方面的潜力。版权所有(c)2016 John Wiley&Sons,Ltd.

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