首页> 美国卫生研究院文献>Frontiers in Chemistry >Comparison Study of Wide Bandgap Polymer (PBDB-T) and Narrow Bandgap Polymer (PBDTTT-EFT) as Donor for Perylene Diimide Based Polymer Solar Cells
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Comparison Study of Wide Bandgap Polymer (PBDB-T) and Narrow Bandgap Polymer (PBDTTT-EFT) as Donor for Perylene Diimide Based Polymer Solar Cells

机译:宽带隙聚合物(PBDB-T)和窄带隙聚合物(PBDTTT-EFT)作为Per二酰亚胺基聚合物太阳能电池供体的比较研究

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摘要

Perylene diimide (PDI) derivatives as a kind of promising non-fullerene-based acceptor (NFA) have got rapid development. However, most of the relevant developmental work has focused on synthesizing novel PDI-based structures, and few paid attentions to the selection of the polymer donor in PDI-based solar cells. Wide bandgap polymer (PBDB-T) and narrow bandgap polymer (PBDTTT-EFT) are known as the most efficient polymer donors in polymer solar cells (PSCs). While PBDB-T is in favor with non-fullerene acceptors achieving power conversion efficiency (PCE) more than 12%, PBDTTT-EFT is one of the best electron donors with fullerene acceptors with PCE up to 10%. Despite the different absorption profiles, the working principle of these benchmark polymer donors with a same electron acceptor, specially PDI-based acceptors, was rarely compared. To this end, we used PBDB-T and PBDTTT-EFT as the electron donors, and 1,1′-bis(2-methoxyethoxyl)-7,7′-(2,5-thienyl) bis-PDI (Bis-PDI-T-EG) as the electron acceptor to fabricate PSCs, and systematically compared their differences in device performance, carrier mobility, recombination mechanism, and film morphology.
机译:ylene二酰亚胺(PDI)衍生物作为一种有前途的非富勒烯基受体(NFA)得到了迅速的发展。但是,大多数相关的开发工作都集中在合成新型的基于PDI的结构上,很少有人关注基于PDI的太阳能电池中聚合物供体的选择。宽带隙聚合物(PBDB-T)和窄带隙聚合物(PBDTTT-EFT)被公认为是聚合物太阳能电池(PSC)中最有效的聚合物供体。虽然PBDB-T赞成非富勒烯受体实现功率转换效率(PCE)超过12%,但PBDTTT-EFT是具有富勒烯受体的最佳电子给体之一,PCE高达10%。尽管吸收曲线不同,但很少比较具有相同电子受体(特别是基于PDI的受体)的这些基准聚合物供体的工作原理。为此,我们使用PBDB-T和PBDTTT-EFT作为电子给体,并使用1,1'-双(2-甲氧基乙氧基)-7,7'-(2,5-噻吩基)bis-PDI(Bis-PDI -T-EG)作为电子受体来制造PSC,并系统地比较了它们在器件性能,载流子迁移率,重组机制和膜形态方面的差异。

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