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Applying direct heteroarylation synthesis to evaluate organic dyes as the core component in PDI-based molecular materials for fullerene-free organic solar cells

机译:应用直接杂芳基化合成法评估有机染料作为无富勒烯有机太阳能电池pDI基分子材料的核心成分

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摘要

Direct heteroarylation has emerged as a versatile and powerful tool to access π-conjugated materials through atom-economical Pd-catalyzed carbon–carbon bond forming reactions. Employing this synthetic protocol has enabled the facile evaluation of a series of organic dyes in a PDI-dye-PDI framework. Material properties are largely dictated by the PDI components, but the incorporation of either thienoisoindigo, diketopyrrolopyrrole or isoindigo has been shown to influence the ionization potential and absorption profiles of the final materials. Solution-processable organic solar cell devices were fabricated to investigate the influence of the different dye cores on photovoltaic performance when paired with the donor polymer PTB7-Th. It was found that the diketopyrrolopyrrole-based material out-performed the other organic dyes, demonstrating energy losses of less than 0.6 eV, promising efficiencies when cast from non-halogenated solvents and the ability to dictate self-assembly induced by small volume fractions of the high-boiling solvent additive 1,8-diiodooctane to reach best device efficiencies of 4.1%.
机译:直接杂芳基化已经成为一种通过原子经济的Pd催化的碳-碳键形成反应来获得π共轭材料的多功能且功能强大的工具。采用这种合成方案可以在PDI-染料-PDI框架中轻松评估一系列有机染料。材料的性能在很大程度上由PDI组分决定,但是硫代异靛蓝,二酮吡咯并吡咯或异靛蓝的掺入已显示出会影响最终材料的电离势和吸收曲线。制备了可溶液处理的有机太阳能电池器件,以研究不同染料核与供体聚合物PTB7-Th配对时对光伏性能的影响。已发现,基于二酮吡咯并吡咯的材料的性能优于其他有机染料,表明能量损失小于0.6 eV,从非卤代溶剂浇铸时有望提高效率,并具有决定性的能力,该能力决定了由低体积分数的有机物引起的自组装。高沸点溶剂添加剂1,8-二碘辛烷,可达到4.1%的最佳器件效率。

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