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Increasing Photovoltaic Performance of an Organic Cationic Chromophore by Anion Exchange

机译:通过阴离子交换提高有机阳离子发色团的光伏性能

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摘要

A symmetrical cyanine dye chromophore is modified with different counteranions to study the effect on crystal packing, polarizability, thermal stability, optical properties, light absorbing layer morphology, and organic photovoltaic (OPV) device parameters. Four sulfonate‐based anions and the bulky bistriflylimide anion are introduced to the 2‐[5‐(1,3‐dihydro‐1,3,3‐trimethyl‐2H‐indol‐2‐ylidene)‐1,3‐pentadien‐1‐yl]‐1,3,3‐trimethyl‐3H‐indolium chromophore using an Amberlyst A26 (OH form) anion exchanger. Anionic charge distribution clearly correlates with device performance, whereby an average efficiency of 2% was reached in a standard bilayer organic solar. Evidence is given that the negative charge of the anion distributed over a large number of atoms is significantly more important than the size of the organic moieties of the sulfonate charge carrying group. This provides a clear strategy for future design of more efficient cyanine dyes for OPV applications.
机译:用不同的抗衡离子修饰对称的花菁染料生色团,以研究其对晶体堆积,可极化性,热稳定性,光学性质,光吸收层形态和有机光伏(OPV)器件参数的影响。将四种基于磺酸盐的阴离子和笨重的双三氟酰亚胺阴离子引入到2- [5-(1,3-二氢-1,3,3-三甲基-2H-吲哚-2-亚基)-1,3-戊二烯-1 [Aylly] -1,3,3-三甲基-3H-吲哚鎓发色团,使用Amberlyst A26(OH -形式)阴离子交换剂。阴离子电荷分布显然与器件性能相关,从而在标准双层有机太阳能电池中平均效率达到2%。有证据表明,分布在大量原子上的阴离子的负电荷比带磺酸盐电荷的基团的有机部分的大小重要得多。这为未来设计用于OPV的更有效的花青染料提供了明确的策略。

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