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Near-infrared squaraine co-sensitizer for high-efficiency dye-sensitized solar cells

机译:用于高效染料敏化太阳能电池的近红外方酸类共敏剂

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摘要

A combination of squaraine-based dyes (SPSQ1 and SPSQ2) and a ruthenium-based dye (N3) were chosen as co-sensitizers to construct efficient dye-sensitized solar cells. The co-sensitization of squaraine dyes with N3 enhanced their light-harvesting properties as a result of the broad spectral coverage in the region 350-800 nm. The co-sensitized solar cells based on SPSQ2 + N3 showed the highest short circuit current density of 17.10 mA cm(-2), an open circuit voltage of 0.66 V and a fill factor of 0.73, resulting in the highest power conversion efficiency of 8.2%, which is higher than that of the dye-sensitized solar cells based on the individual SPSQ1 and SPSQ2 dyes. The high power conversion efficiency of SPSQ2 + N3 was ascribed to its good light-harvesting properties, which resulted from its broader incident photon current conversion spectrum than that of the individual dyes. The high electron life time and electron recombination, which were the main causes of the higher efficiency of the device, were successfully analysed and correlated using transient absorption spectrometry and intensity-modulated photovoltage spectrometry.
机译:选择基于方酸的染料(SPSQ1和SPSQ2)和基于钌的染料(N3)的组合作为共敏化剂,以构建有效的染料敏化太阳能电池。由于在350-800 nm范围内具有较宽的光谱覆盖范围,因此方酸染料与N3的共敏化增强了其光捕获性能。基于SPSQ2 + N3的共敏化太阳能电池显示出最高的短路电流密度为17.10 mA cm(-2),开路电压为0.66 V,填充系数为0.73,导致最高的功率转换效率为8.2 %,高于基于单独的SPSQ1和SPSQ2染料的染料敏化太阳能电池的%。 SPSQ2 + N3的高功率转换效率归因于其良好的光收集特性,这是由于其入射光子电流转换谱比单个染料的入射谱宽而导致的。使用瞬态吸收光谱法和强度调制的光电压光谱法成功地分析了高电子寿命和电子复合,这是提高器件效率的主要原因。

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