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Advanced Broadband Antireflection Coatings Based on Cellulose Microfiber Paper

机译:基于纤维素超细纤维纸的高级宽带减反射涂层

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摘要

In order to absorb a significant fraction of the incident sunlight, a solar cell must incorporate light management techniques, including high-quality antireflection coatings. Such coatings are typically produced via high-temperature deposition methods that are costly. Here, we present a new technique based on light scattering within a transparent paper that is placed on top of a solar cell. The optical and electronic responses of both Si and GaAs solar cells are tested with these coatings, and a broadband angle-insensitive response is achieved. A comparison between textured and untextured solar cells is also made, and the power conversion efficiency is improved for untextured surfaces, while the increased path length within the paper resulting from textured cells increases absorption within the paper. The process is simple and inexpensive, and the paper coatings are made from a recyclable material, leading to less environmental impact.
机译:为了吸收大部分入射阳光,太阳能电池必须采用光管理技术,包括高质量的抗反射涂层。这样的涂层通常通过昂贵的高温沉积方法来生产。在这里,我们提出了一种基于光散射的新技术,该光在置于太阳能电池顶部的透明纸内。使用这些涂层测试了Si和GaAs太阳能电池的光学和电子响应,并获得了宽带角度不敏感的响应。还对带纹理的太阳能电池和未带纹理的太阳能电池进行了比较,并针对无纹理的表面提高了功率转换效率,而由带纹理的电池导致的纸内路径长度的增加增加了纸内的吸收。该过程简单且便宜,并且纸涂料由可回收材料制成,对环境的影响较小。

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