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A Comparative Study of Quasi-solid Nanoclay Based Electrolyte and Liquid Electrolyte Dye Sensitized Solar Cells

机译:准固体纳米粘土电解质和液体电解质染料敏化太阳能电池的对比研究

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Dye sensitized solar cells (DSSCs) are currently being explored as a cheaper alternative to the more common silicon (Si) solar cell technology with improved performance in low light conditions and less sensitivity to varying angles of incident light. One of the major challenges facing DSSCs is loss of the liquid electrolyte, through evaporation or leakage, which lowers stability and leads to increased degradation. To address this, batches of gel electrolyte cells are fabricated with 7 wt% nanoclay gel electrolyte and liquid electrolyte and were evaluated at standard test conditions over time. The gel cells achieved efficiencies as high as 9.18% compared to the 9.65% achieved by the liquid cells. Over a period of 10 days, the liquid cells degraded less than 20% of its maximum efficiency. By contrast, the gel cell's efficiency did not decrease to 20% of its maximum efficiency until 45 days. After several measurements, the liquid cells showed visible signs of leakage through the sealant, whereas the gel cells did not. This resistance to leakage likely contributed to the improved performance of the quasi-solid cells over liquid electrolyte DSSCs.
机译:目前正在探索染料敏化太阳能电池(DSSCs)作为更便宜的替代方案,更常见的硅(Si)太阳能电池技术,其性能提高了低光条件和对不同入射光角度的敏感性。 DSSCS面临的主要挑战之一是通过蒸发或泄漏损失液体电解质,这降低了稳定性并导致较高的降解。为了解决这一点,用7wt%纳米粘土凝胶电解质和液体电解质制造批次的凝胶电解质细胞,并随着时间的推移在标准试验条件下评估。与液体细胞实现的9.65%相比,凝胶细胞效率高达9.18%。在10天的时间内,液体细胞降低了其最高效率的少于20%。相比之下,直到45天至45天,凝胶细胞的效率不会降至其最高效率的20%。经过几次测量,液体细胞通过密封剂显示出可见的泄漏迹象,而凝胶细胞没有。这种对泄漏的抵抗可能导致准固体细胞在液体电解质DSSC上的改善性能。

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