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High performance conjugated terpolymers as electron donors in nonfullerene organic solar cells

机译:高性能共轭三元共聚物作为非氟联有机太阳能电池中的电子供体

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We demonstrate the synthesis of three pi-conjugated terpolymers based on the nonconventional molecular design strategy D-1-D-2-D-1-A comprising two different multi-fused ladder-type arene electron donating moieties [(4,4 '-bis(2-ethylhexyl)dithieno[3,2-b:2 ',3 '-d]silole)-2,6-diyl (DTS) as D(1)and thienyl-substituted benzo[1,2-b:4,5-b ']dithiophene (BDT) derivatives as D-2] and an electron withdrawing unit [5,6-difluoro-2,1,3-benzothiadiazole (DFBT) as A]. The implementation of these materials as electron donors is explored in high performance near infrared non-fullerene acceptor (NFA) organic solar cells utilizing the benchmark low bandgap NFA IEICO-4F. The triple bulk heterojunction blend systems provide the basis for a detailed structure-property-performance relationship in terms of BDT's thienyl substitution (alkyl, alkylthio and fluoro) by investigating the correlations between the molecular energy level alignments, performance, and device physics of OSCs. The alkylthienyl-BDT based pi-conjugated terpolymer [P(DTS-BDT-DFBT)] exhibits the best photovoltaic performance delivering a power conversion efficiency of 10% with a high short circuit current density of 22.7 mA cm(-2). The combination of optoelectronic measurements and morphological analyses revealed the suppression of field dependent charge recombination in P(DTS-BDT-DFBT):IEICO-4F as compared to alkylthiothienyl-BDT [P(DTS-BDTS-DFBT):IEICO-4F] and fluoro-substituted thienyl-BDT [P(DTS-BDTF-DFBT):IEICO-4F] based OSC devices.
机译:我们证明了基于非共聚的分子设计策略D-1-D-2-D-1-A的三种PI缀合三元共聚物的合成,包括两个不同的多熔融梯型芳烃赋予部分[(4,4' - 双(2-乙基己基)二烯[3,2-B:2',3'-D]硅基 - 2,6-二基(DTS)作为D(1)和噻吩基取代的苯并[1,2-B: 4,5-B']二噻吩(BDT)衍生物作为D-2]和电子取出单元[5,6-二氟-2,1,3-苯并噻唑(DFBT)为a]。在高性能附近的高性能下,利用基准低带隙NFA IEICO-4F,在近红外非富勒烯受体(NFA)有机太阳能电池附近的高性能下探讨了这些材料。通过研究SOSCS的分子能级比对,性能和器件物理之间的相关性,三重块状异质结合系统在BDT的噻吩基取代(烷基,烷基硫基和氟)方面提供了详细的结构性质 - 性能关系的基础。烷基噻吩基-BDT基PI缀合的三元共聚物[P(DTS-BDT-DFBT)]表现出最佳的光伏性能,其功率转换效率为10%,短路电流密度为22.7 mA cm(-2)。光电测量和形态学分析的组合揭示了P(DTS-BDT-DFBT)中的野外依赖电荷重组:IEICO-4F与烷基硫噻吩基-BDT [P(DTS-BDTS-DFBT):IEICO-4F]和氟代取代的噻吩基BDT [P(DTS-BDTF-DFBT):基于ISICO-4F]的OSC器件。

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