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Design of Far-Red Sensitizing Squaraine Dyes Aiming Towards the Fine Tuning of Dye Molecular Structure

机译:面向染料分子结构微调的远红敏方蓝染料的设计

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Model squaraine dyes having sharp and narrow absorptions mainly in the far-red wavelength region has been logically designed, synthesized and used for their application as sensitizer in the dye-sensitized solar cells (DSSC). In order to have fine control on energetics, dyes having same mother core and alkyl chain length varying only in molecular symmetry and position of substituent were designed. It has been found that even keeping all other structural factor constant, only positional variation of substituent leads to not only in the variation of energetics by 0.1 eV but affects the photovoltaic characteristics also. Optimum concentration of dye de-aggregating agent was found to be 100 times with respect to the sensitizing dye concentration. Amongst dyes utilized in this work best performance was obtained for unsymmetrical dye SQ-40 giving a photoconversion efficiency of 4.01% under simulated solar irradiation at global AM 1.5.
机译:在逻辑上设计,合成了主要在远红色波长区域具有尖锐和窄吸收的方酸方蓝染料,并将其用作染料敏化太阳能电池(DSSC)中的敏化剂。为了更好地控制高能学,设计了具有相同母核和烷基链长的染料,它们的分子对称性和取代基的位置仅发生变化。已经发现,即使保持所有其他结构因子恒定,仅取代基的位置变化不仅导致能量学变化0.1eV,而且还影响光伏特性。发现染料解聚剂的最佳浓度是敏化染料浓度的100倍。在这项工作中使用的染料中,对于不对称染料SQ-40可获得最佳性能,在全球AM 1.5下模拟太阳辐射下,光转换效率为4.01%。

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