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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Effect of a methyl thiophene-3-carboxylate bridge in an indacenodithiophene-based acceptor-donor-acceptor-type molecule on the performance of non-fullerene polymer solar cells
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Effect of a methyl thiophene-3-carboxylate bridge in an indacenodithiophene-based acceptor-donor-acceptor-type molecule on the performance of non-fullerene polymer solar cells

机译:甲基噻吩-3-羧酸桥桥在茚环二烯二酚噻吩基受体 - 受体 - 受体型分子上对非富烯聚合物太阳能电池性能的影响

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摘要

A new A-b-D-b-A-type n-type small molecule, IDT-3MT, was synthesized bearing a weak acceptor thiophene-3-carboxylate bridge (3MT = b) between indacenodithiophene as a donating core and 2-(3-oxo-2,3-dihydroinden-1-ylidene)-malononitrile as the accepting end groups. Compared to IDT-T bearing a neat thiophene bridge, IDT-3MT displayed a red-shifted absorption spectrum in the film state, which is a more effective complementary absorption behavior with PBDB-T as the donor material. The highest occupied molecular orbital and lowest unoccupied molecular orbital levels of IDT-3MT became correspondingly lower. Based on the results of grazing-incidence wide-angle X-ray scattering, the blend film of PBDB-T:IDT-3MT exhibited a more prominent face-on orientation and fine surface morphology compared with PBDB-T:IDT-T, which can facilitate charge transportation in the vertical direction. Among the two acceptors, the polymer solar cell based on a solvent additive-free as-cast PBDB-T:IDT-3MT blend film exhibited the highest power conversion efficiency of 8.40% with a high open-circuit voltage of 0.95 V and a short-circuit current density of 14.43 mA cm(-2) due to the more prominent face-on orientation and favorable morphology of the blend film. According to the simple structural modification of the acceptor molecule, the ester group in the thiophene bridge played an important role toward achieving high-performance polymer solar cells.
机译:新的ABDBA型N型小分子IDT-3MT在茚磺烯二噻吩之间作为捐赠核心和2-(3-Oxo-2,3-二氢吲哚-1- ylidene) - 甘油腈作为接受端基。与夹紧噻吩桥的IDT-T相比,IDT-3MT在膜状态下显示出红移吸收光谱,其与PBDB-T作为供体材料的更有效的互补吸收行为。最高占用的分子轨道和最低未占用的分子轨道层IDT-3MT的IDT-3MT相应地降低。基于放牧发生型广角X射线散射的结果,与PBDB-T相比,PBDB-T的共混膜具有更加突出的面向方向和细表面形态,与PBDB-T:IDT-T相比可以促进垂直方向上的电荷运输。在两个受护者中,基于无溶剂添加剂的AS浇铸PBDB-T:IDT-3MT共混膜的聚合物太阳能电池显示出最高功率转换效率为8.40%,高开路电压为0.95 V和短 - 由于面对混合物薄膜的面对方向突出和良好形态,速率电流密度为14.43 mA cm(-2)。根据受体分子的简单结构改性,噻吩桥中的酯基在实现高性能聚合物太阳能电池中发挥了重要作用。

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