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首页> 外文期刊>Macromolecular Rapid Communications >Direct Structuring of a Biomimetic Anti-Reflective, Self-Cleaning Surface for Light Harvesting in Organic Solar Cells
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Direct Structuring of a Biomimetic Anti-Reflective, Self-Cleaning Surface for Light Harvesting in Organic Solar Cells

机译:直接构造仿生抗反射,自清洁表面,用于有机太阳能电池中的光收集

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摘要

A one-step method to fabricate a biomimetic dual-scale hierarchical structure for a transparent anti-reflective, self-cleaning layer for organic solar cells is reported. Template-mediated UV replica molding is used to directly create a multi-functional surface with an acrylate-functionalized perfluoropolyether without complicated processing steps. The surface exhibits superhydrophobic properties and self-cleaning characteristics. In addition, the surface leads to an enhancement of photovoltaic power conversion efficiency by ≈10% as a result of reflection suppression and transmittance enhancement. The method can easily be applied to large area substrates (22 cm × 24 cm) in a cost-effective manner. Furthermore, the solar cell can withstand harsh outdoor conditions for a long time, without a notable change in the device performance, owing to robust surface layer and non-fouling properties.
机译:报道了一种用于仿生双尺度分层结构的一步法,该仿生双尺度分层结构用于有机太阳能电池的透明抗反射,自清洁层。模板介导的UV复制成型用于直接使用丙烯酸酯官能化的全氟聚醚创建多功能表面,而无需复杂的处理步骤。该表面具有超疏水性能和自清洁特性。另外,由于反射抑制和透射率提高,该表面使光伏发电转换效率提高了约10%。该方法可以以经济有效的方式容易地应用于大面积基板(22 cm×24 cm)。此外,由于坚固的表面层和无污垢特性,太阳能电池可以长时间承受恶劣的室外条件,而不会显着改变设备性能。

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