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D−π–A−π–DStructured Diketopyrrolopyrrole-Based Electron Donors for Solution-ProcessedOrganic Solar Cells

机译:D−π–A−π–D基于二酮基吡咯并吡咯的结构化电子供体有机太阳能电池

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摘要

Solution-processable D−π–A−π–D structured two organic small molecules bearing thienyl diketopyrrolopyrrole (TDPP) and furanyl diketopyrrolopyrrole (FDPP) as central acceptor units and cyano on the π-bridge and phenothiazine as the terminal donor units, coded as >TDPP-PTCN and >FDPP-PTCN, are designed and synthesized. The C–H arylation and Suzuki coupling protocols have been adopted for synthesizing the molecules. Solution-processed organic solar cells (OSCs) were constructed with these molecules as the donors and phenyl-C71-butyric acid methyl ester as the acceptor yielding power conversion efficiencies (PCE) of 4.0% for >FDPP-PTCN and 5.2% for >TDPP-PTCN, which is the highest PCE reported so far from the small molecular DPP–phenothiazine-based architecture for solution-based OSCs. The effect of heteroatom substitution on thermal stability and optoelectronic and photovoltaic performances is also systematically investigated herein. This work demonstrates that replacement of oxygen with sulfur in these kinds of small molecules remarkably improves the photovoltaic performance of OSCs.
机译:可溶液加工的D-π-A-π-D结构化了两个有机小分子,它们带有噻吩二酮基吡咯并吡咯(TDPP)和呋喃基二酮吡咯并吡咯(FDPP)作为中心受体单元,而氰基在π桥和吩噻嗪上作为末端供体单元,编码为> TDPP-PTCN 和> FDPP-PTCN 是设计和合成的。 C–H芳基化和Suzuki偶联方案已被用于合成分子。用这些分子作为供体,并用苯基-C71-丁酸甲酯作为受体来构建溶液处理的有机太阳能电池(OSC),对于> FDPP-PTCN ,功率转换效率(PCE)为4.0%而> TDPP-PTCN 则为5.2%,这是迄今为止针对基于溶液的OSC的基于小分子DPP-吩噻嗪的体系结构中报告的最高PCE。本文还系统地研究了杂原子取代对热稳定性以及光电和光伏性能的影响。这项工作表明,在这些小分子中用硫替代氧可以显着改善OSC的光伏性能。

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