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Efficiency improvement of flexible Cu(In,Ga)Se2 solar cells by integrating a micro-prism array transferred to soft-polydimethylsiloxane

机译:通过将微棱镜阵列与软聚二甲基硅氧烷的微棱镜阵列集成,通过将微棱镜阵列相结合来效率改善柔性Cu(In,Ga)Se2太阳能电池

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A micro-prism array (MPA) realized on a flexible polymer substrate was integrated on the top of flexible Cu(In,Ga)Se2 (CIGS) solar cells to overcome the optical reflection loss caused by the metal grids used with these cells. The integrated MPA refracts light normally incident to the metal grids into an active area not covered by the metal grid. This reduces the optical reflection loss, which increases the photocurrent. The original MPA structure was fabricated on a Si substrate by a combined process of dry and wet etching. The MPA structure on the Si template was transferred to soft-polydimethylsiloxane (S-PDMS) by using a stamping method. The short-current density and the power conversion efficiency of the flexible CIGS solar cell integrated with the MPA based on S-PDMS were improved by 4.9 and 5.2%, respectively, when compared with those of conventional flexible CIGS solar cell without MPA.
机译:在柔性聚合物基板上实现的微棱镜阵列(MPA)集成在柔性Cu(孔中)SE的顶部上 2 (CIGS)太阳能电池克服由与这些细胞一起使用的金属网引起的光学反射损失。集成的MPA折射通常入射到金属栅格的光线进入未被金属栅格覆盖的有源区。这降低了增加光电流的光学反射损耗。通过组合的干燥和湿法蚀刻在Si衬底上制造原始MPa结构。通过使用冲压法将Si模板上的MPa结构转移至软聚二甲基硅氧烷(S-PDMS)。与常规柔性CIGS太阳能电池相比,柔性CIGS太阳能电池与基于S-PDMS的MPA的MPA相结合的短电流密度和功率转换效率分别在没有MPa的情况下的常规柔性CIGS太阳能电池的情况下提高了4.9%和5.2%。

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