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Parametric Optimization of Experimental Conditions for Dye-Sensitized Solar Cells based on Far-red Sensitive Squaraine Dye

机译:基于远红灵敏方形染料的染料敏化太阳能电池实验条件的参数优化

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摘要

A far-red sensitive unsymmetrical squaraine dye SQ-41 has been synthesized and subjected to the fabrication of dye-sensitized solar cells by varying the various parameters in order attain optimum photoconversion efficiency (η). It has been demonstrated that an optimum ratio of dye to coadsorber, thickness of mesoporous TiO2 layer, redox electrolyte and surface treatment are necessary to enhance overall external η. In the case of surface treatment, it has been shown to exhibit pronounced device performance when both of the FTO as well mesoporous TiO2 surfaces were treated with aqueous TiCl4. In spite of very high molar extinction coefficient of dye SQ-41, 10-12 µm thickness of mesoporous TiO2 was found to be necessary to attain the maximum η.
机译:合成了一种远红敏感的不对称方酸方酸染料SQ-41,并通过改变各种参数以使其达到最佳的光转换效率(η),进行染料敏化太阳能电池的制造。已经证明,染料与助吸附剂的最佳比例,中孔TiO2层的厚度,氧化还原电解质和表面处理对于提高整体外部η是必需的。在表面处理的情况下,当FTO和中孔TiO2的两个表面都用TiCl4水溶液处理时,已显示出明显的器件性能。尽管染料SQ-41的摩尔消光系数非常高,但发现获得最大η仍需要10-12 µm的中孔TiO2厚度。

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