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Co-sensitization of Natural Dyes for Improved Efficiency in Dye-sensitized Solar Cell Application

机译:染料敏化太阳能电池应用效率提高天然染料的共敏化

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In this paper, a new approach of co-sensitized DSSC based on natural dyes is investigated to explore the possible way to improve the power conversion efficiency. To realize this purpose 10 DSSC devices were fabricated using mono-sensitization and co-sensitization of ethanolic extracts of natural dye sensitizers obtained from Cactus fruit, Jambolana fruit, Curcumin and Bermuda grass. The optical absorption spectrum of the mono and hybrid dye extracts were studied by UV-Visible absorption spectrum. It shows the characteristic absorption peaks in visible region corresponds to the presence of natural pigments of anthocyanin, betacyanin and chlorophylls. Absorption spectrum of hybrid dyes reveals a wide absorption band in visible region with improved extinction co-efficient and it is favorable for increased light harvesting nature. The power conversion efficiency of DSSC devices were calculated using J-V curve and the maximum efficiency achieved in the present work is noted to be ~0.61% for Cactus-Bermuda co-sensitized DSSC.
机译:本文研究了基于天然染料的共同敏化DSSC的新方法,探讨了提高功率转换效率的可能方法。为了实现此目的,使用从仙人掌果实,jambolana果实,姜黄素和百慕大草获得的天然染料敏化剂的单致敏和共敏化物制造10dssc器件。通过UV可见吸收光谱研究了单氧和杂交染料提取物的光学吸收光谱。它表明可见区域中的特征吸收峰对应于花青素,嗜酸酯和叶绿素的天然颜料的存在。杂交染料的吸收光谱揭示了可见区域中的宽吸收带,其具有改善的雾化效率,并且有利于增加光收获性质。使用J-V曲线计算DSSC器件的功率转换效率,并且本作工作中实现的最大效率为仙人掌百慕大共敏化DSSC的0.61%。

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