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Two-dimensional high efficiency thin-film silicon solar cells with a lateral light trapping architecture

机译:具有侧向光捕获架构的二维高效薄膜硅太阳能电池

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摘要

Introducing light trapping structures into thin-film solar cells has the potential to enhance their solar energy harvesting as well as the performance of the cells; however, current strategies have been focused mainly on harvesting photons without considering the light re-escaping from cells in two-dimensional scales. The lateral out-coupled solar energy loss from the marginal areas of cells has reduced the electrical yield indeed. We therefore herein propose a lateral light trapping structure (LLTS) as a means of improving the light-harvesting capacity and performance of cells, achieving a 13.07% initial efficiency and greatly improved current output of a-Si:H single-junction solar cell based on this architecture. Given the unique transparency characteristics of thin-film solar cells, this proposed architecture has great potential for integration into the windows of buildings, microelectronics and other applications requiring transparent components.
机译:将光捕获结构引入薄膜太阳能电池具有增强其太阳能收集以及电池性能的潜力。然而,当前的策略主要集中在收集光子上,而没有考虑光在二维尺度上从细胞中重新逸出。来自电池边缘区域的横向向外耦合的太阳能损失确实降低了电产量。因此,我们在本文中提出一种侧向光捕获结构(LLTS),以提高电池的光收集能力和性能,实现13.07%的初始效率并大大提高基于a-Si:H单结太阳能电池的电流输出在这个架构上。考虑到薄膜太阳能电池的独特透明性,这种拟议的体系结构具有集成到建筑物,微电子学和其他需要透明组件的窗户中的巨大潜力。

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