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Perfluoroalkyl-substituted conjugated polymers as electron acceptors for all-polymer solar cells: the effect of diiodoperfluoroalkane additives

机译:全氟烷基取代的共轭聚合物作为全聚合物太阳能电池的电子受体:二碘全氟烷烃添加剂的作用

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摘要

A series of six diketopyrrolopyrrole (DPP) based conjugated polymers with a varying content of solubilizing perfluoroalkyl chains were synthesized. Based on a systematic investigation of the influence of the solvent on the photovoltaic performance, it is found that 1,6-diiodoperfluorohexane (IC6F12I) is an effective solvent additive to enhance the power conversion efficiency (PCE) of DPP polymers with perfluoroalkyl side chains. The polymers consist of thiazole-flanked DPP units that alternate along the main chain with varying ratios of thiophene (T) and perfluoroalkyl benzodithiophene (FBDT) units. The polymers possess high molecular weights, narrow band gaps and good crystalline properties. The DPP polymers were used as electron acceptors in bulk heterojunction solar cells with another DPP polymer as the electron donor. A solvent mixture of CHCl3 : 1-chloronaphthalene (1-CN) is found to provide the best PCE of 2.9% in non-fluorine based DPP polymer solar cells, but yields a low PCE of 0.52% for perfluoroalkyl-containing polymer solar cells. Perfluoroalkyl-containing polymer solar cells fabricated from CHCl3 with IC6F12I as the processing additive show a significantly improved PCE of 2.1%. The morphology analysis of the blend films reveals that IC6F12I as an additive improves the micro-phase separation between the polymer donor and acceptor, which results in enhanced charge generation.
机译:合成了一系列六种基于二酮吡咯并吡咯(DPP)的共轭聚合物,这些聚合物具有不同的可溶全氟烷基链含量。基于对溶剂对光伏性能的影响的系统研究,发现1,6-二碘全氟己烷(IC6F12I)是有效的溶剂添加剂,可提高具有全氟烷基侧链的DPP聚合物的功率转换效率(PCE)。该聚合物由噻唑侧翼的DPP单元沿着主链交替排列,其中噻吩(T)和全氟烷基苯并二噻吩(FBDT)单元的比例不同。该聚合物具有高分子量,窄带隙和良好的结晶性质。 DPP聚合物被用作体异质结太阳能电池中的电子受体,另一种DPP聚合物被用作电子给体。发现在非氟基DPP聚合物太阳能电池中,CHCl3:1-氯萘(1-CN)的溶剂混合物可提供2.9%的最佳PCE,但对于含全氟烷基的聚合物太阳能电池,其PCE仅为0.52%。由CHCl3制成的含全氟烷基的聚合物太阳能电池,以IC6F12I作为加工添加剂,其PCE显着提高了2.1%。共混膜的形态分析表明,IC6F12I作为添加剂可改善聚合物供体与受体之间的微相分离,从而增强电荷产生。

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