首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Compensation of self-absorption losses in luminescent solar concentrators by increasing luminophore concentration
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Compensation of self-absorption losses in luminescent solar concentrators by increasing luminophore concentration

机译:通过增加发光体浓度来补偿发光太阳能聚光器中的自吸收损失

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摘要

Self-absorption in luminophores is considered a major obstacle on the way towards efficient luminescent solar concentrators (LSCs). It is commonly expected that upon increasing luminophore concentration in an LSC the absorption of the luminophores increases as well and therefore self-absorption losses will have higher impact on the performance of the device. In this work we construct a fully functioning liquid phase LSC where the luminophore concentration can be altered without changing other conditions in the experimental set-up. We step-wise enlarge the concentration of the luminophores Lumogen Red 305 and Lumogen Orange 240, while monitoring the electrical output and self-absorption effects. Contrary to common belief, self-absorption does not increasingly limit the performance of LSCs when the luminophore concentration increases.
机译:发光体中的自吸收被认为是迈向高效发光太阳能集中器(LSC)的主要障碍。 通常预期在LSC中增加发光体浓度时,发光体的吸收也增加,因此自吸收损耗对装置的性能产生更高的影响。 在这项工作中,我们构建一种完全运作的液相LSC,可以改变发光体浓度而不改变实验设置中的其他条件。 我们逐步扩大发光体素红305和百玉木橙240的浓度,同时监测电输出和自吸收效应。 与常见的信念相反,当发光体浓度增加时,自吸收不会越来越限制LSC的性能。

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