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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Building integrated thin film luminescent solar concentrators: Detailed efficiency characterization and light transport modelling
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Building integrated thin film luminescent solar concentrators: Detailed efficiency characterization and light transport modelling

机译:建立集成的薄膜发光太阳能聚光器:详细的效率表征和光传输建模

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摘要

An inorganic thin film luminescent solar concentrator (LSC) is characterized experimentally in detail in terms of all the separate light transport steps, which result in the concentration of sunlight. The results are discussed in the context of application as windows in buildings, called building integrated (BI) LSCs. A 3 μm thin film of Eu ~3 doped Lu _2O _3 was chosen because of its large Stokes shift, which excludes all waveguide losses due to self-absorption and allowed to study losses caused by scattering at interfaces of the LSC. A model is presented that can be used to calculate the LSC light transport efficiency as a function of window size, which only needs the easily measurable linear attenuation as input. Measurements show that the quantum efficiency (η _(QE)) of our LSC is 13%, which is less than ideal, mainly due to a 44% luminescence quantum efficiency and a 45% waveguide efficiency. Our modelling relates BI-LSC efficiency to window color, and reveals that the linear attenuation coefficient of an LSC should be higher than 1000 mm. This is in contrast to values in the order of tens of millimeters which have been measured for the LSC in this paper.
机译:无机薄膜发光太阳能集中器(LSC)在实验上通过所有单独的光传输步骤进行了详细表征,这些步骤会导致阳光聚集。在应用程序的上下文中讨论了结果,称为建筑物的窗户(BI)LSC。选择了3μm的Eu〜3掺杂的Lu _2O _3薄膜,因为它的斯托克斯位移大,它排除了由于自吸收而引起的所有波导损耗,并允许研究由LSC界面处的散射引起的损耗。提出了一个模型,该模型可用于计算作为窗口大小函数的LSC光传输效率,该模型仅需要易于测量的线性衰减作为输入。测量表明,我们的LSC的量子效率(η_(QE))为13%,低于理想水平,主要是由于44%的发光量子效率和45%的波导效率。我们的建模将BI-LSC效率与窗口颜色相关联,并揭示了LSC的线性衰减系数应高于1000 mm。这与本文中为LSC测量的数十毫米量级的值相反。

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