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Effect of UV illumination on perylene-doped luminescent solar concentrators: A cautionary tale

机译:紫外线照射对掺ylene的发光太阳能聚光器的影响:一个警示故事

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The luminescent solar concentrator has the potential of widespread use as a generator of electricity from sunlight well-suited for use in the urban environment owing to its adaptability in shape and coloration. The device performance is heavily dependent on the ability to transport light long distances to the edges. A common organic luminophore used in the device is based on a perylene core. In this work, we describe an overlooked effect of UV illumination on the appearance and efficiency of these devices. An additional absorption peak appears upon polymerization under intense UV in nitrogen atmosphere which significantly reduces the edge emissions from the device. The additional absorbance peak disappears after exposure to air, indicating the presence of a radical anion being formed during the UV light exposure. This suggests newly-produced LSC devices should be allowed to stand a period of time under ambient conditions before their performance characteristics are determined, which could have implications in potential future commercialization of the technology.
机译:发光太阳能集中器由于其形状和颜色的适应性而具有广泛的潜力,可广泛用作适合在城市环境中使用的日光发电器。设备的性能在很大程度上取决于将光长距离传输到边缘的能力。设备中使用的常见有机发光体是基于a核。在这项工作中,我们描述了紫外线照明对这些设备的外观和效率的忽视作用。在氮气氛下在强紫外线下聚合时会出现一个额外的吸收峰,这大大降低了器件的边缘发射。额外的吸收峰在暴露于空气后消失,表明在UV曝光过程中形成了自由基阴离子。这表明,应确定新生产的LSC设备在环境条件下放置一段时间,然后再确定其性能特征,这可能会对该技术的未来商业化产生影响。

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