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Transparent Luminescent Solar Concentrators Using Ln3+-Based Ionosilicas Towards Photovoltaic Windows

机译:透明发光太阳能聚光器,使用LN3 +基于离子硅片向光伏窗户

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摘要

The integration of photovoltaic (PV) elements in urban environments is gaining visibility due to the current interest in developing energetically self-sustainable buildings. Luminescent solar concentrators (LSCs) may be seen as a solution to convert urban elements, such as façades and windows, into energy-generation units for zero-energy buildings. Moreover, LSCs are able to reduce the mismatch between the AM1.5G spectrum and the PV cells absorption. In this work, we report optically active coatings for LSCs based on lanthanide ions (Ln3+ = Eu3+, Tb3+)-doped surface functionalized ionosilicas (ISs) embedded in poly(methyl methacrylate) (PMMA). These new visible-emitting films exhibit large Stokes-shift, enabling the production of transparent coatings with negligible self-absorption and large molar extinction coefficient and brightness values (~2 × 105 and ~104 M−1∙cm−1, respectively) analogous to that of orange/red-emitting organic dyes. LSCs showed great potential for efficient and environmentally resistant devices, with optical conversion efficiency values of ~0.27% and ~0.34%, respectively.
机译:由于开发能源自动可持续建筑物的目前的兴趣,城市环境中的光伏(PV)元件的整合正在获得可见性。发光太阳能集中器(LSCS)可以被视为将城市元素(如外立窗)转换为零能量建筑的能源发电单元的解决方案。此外,LSCs能够减少AM1.5G光谱和PV电池吸收之间的不匹配。在这项工作中,我们向基于镧系元素(LN3 + = EU3 +,TB3 +) - 掺杂的表面官能化离子硅烷(ISS)嵌入聚(甲基丙烯酸甲酯)(PMMA)中,向光学活性涂层报告光学活性涂层。这些新的可见光薄膜表现出大型斯托克斯型转变,从而能够生产具有可忽略的自吸收和大的摩尔消光系数和亮度值(分别为2×105和〜104 m-1μm-1)的透明涂层。类似的橙色/红发射有机染料。 LSCS表现出高效和环保的装置的潜力,光学转换效率分别为0.27%和〜0.34%。

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