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Scalable Production of Mechanically Robust Antireflection Film for Omnidirectional Enhanced Flexible Thin Film Solar Cells

机译:用于全向增强型柔性薄膜太阳能电池的机械坚固抗反射膜的可扩展生产

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Abstract Antireflection (AR) at the interface between the air and incident window material is paramount to boost the performance of photovoltaic devices. 3D nanostructures have attracted tremendous interest to reduce reflection, while the structure is vulnerable to the harsh outdoor environment. Thus the AR film with improved mechanical property is desirable in an industrial application. Herein, a scalable production of flexible AR films is proposed with microsized structures by roll-to-roll imprinting process, which possesses hydrophobic property and much improved robustness. The AR films can be potentially used for a wide range of photovoltaic devices whether based on rigid or flexible substrates. As a demonstration, the AR films are integrated with commercial Si-based triple-junction thin film solar cells. The AR film works as an effective tool to control the light travel path and utilize the light inward more efficiently by exciting hybrid optical modes, which results in a broadband and omnidirectional enhanced performance.
机译:摘要空气与入​​射窗材料之间的界面处的防反射(AR)对于提高光伏器件的性能至关重要。 3D纳米结构吸引了极大的兴趣来减少反射,而该结构易受恶劣的室外环境的影响。因此,在工业应用中期望具有改善的机械性能的AR膜。在本文中,提出了通过卷对卷压印工艺可规模生产的具有微尺寸结构的柔性AR膜,其具有疏水性和大大提高的鲁棒性。无论是基于刚性还是柔性基板,AR膜都可以潜在地用于各种光伏设备。作为演示,AR膜与商用的基于Si的三结薄膜太阳能电池集成在一起。 AR膜是一种有效的工具,可通过激发混合光学模式来控制光的传播路径并更有效地利用向内的光,从而实现宽带和全向增强的性能。

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