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Performance of Flexible Photovoltaic Modules Encapsulated by Silicon Oxide/Organic Silicon Stacked Layers

机译:氧化硅/有机硅堆叠层封装的柔性光伏模块的性能

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In this paper, flexible silicon thin-film solar cells on polyimide are encapsulated by organic silicon and inorganic silicon oxide (SiO) stacked layers. This encapsulation replaces conventional encapsulation, which involves ethylene-vinyl acetate (EVA). The effects of the number of stacked layers on encapsulation of silicon thin-film solar modules are investigated. Experimental results show that the six-pair stacked layer yields a water vapor transmission rate of as low as g/ day, satisfying the requirements of solar cell encapsulation. The measurements of internal stress confirm that a thin organic silicon layer greatly reduces the internal stresses over the whole device structure, preventing the cracking of SiO and the consequent failure of the encapsulation. Solar modules that are encapsulated with a six-pair stacked layer not only exhibit a higher initial conversion efficiency than those encapsulated by EVA but also exhibit less performance degradation after being used outdoors for many hours. Bending test shows that after 5000 bendings, stacked layer encapsulation yields a device performance maintenance of 89.1%, while encapsulation in EVA maintains only 85.1% of device performance. These results suggest that silicon stacked layers have great potential for encapsulating flexible thin-film solar cells, and represent a favorable alternative to conventional EVA.
机译:在本文中,聚酰亚胺上的柔性硅薄膜太阳能电池被有机硅和无机氧化硅(SiO)堆叠层封装。该封装替代了传统的封装,后者涉及乙烯-乙酸乙烯酯(EVA)。研究了堆叠层数对硅薄膜太阳能模块封装的影响。实验结果表明,六对堆叠层产生的水蒸气透过率低至g /天,满足了太阳能电池封装的要求。内应力的测量结果表明,薄的有机硅层可大大降低整个器件结构上的内应力,从而防止SiO破裂以及随之而来的封装失败。用六对堆叠层封装的太阳能模块不仅比EVA封装的太阳能模块具有更高的初始转换效率,而且在户外使用多个小时后,其性能下降也较小。弯曲测试表明,经过5000次弯曲后,叠层封装的器件性能可保持89.1%,而EVA中的封装仅可保持器件性能的85.1%。这些结果表明,硅堆叠层具有封装柔性薄膜太阳能电池的巨大潜力,并且代表了传统EVA的有利替代方案。

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