首页> 外文OA文献 >Linear Side Chains in Benzo1,2-b:4,5-b′dithiophene–Thieno3,4-cpyrrole-4,6-dione Polymers Direct Self-Assembly and Solar Cell Performance
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Linear Side Chains in Benzo1,2-b:4,5-b′dithiophene–Thieno3,4-cpyrrole-4,6-dione Polymers Direct Self-Assembly and Solar Cell Performance

机译:Benzo中的线性侧链1,2-b:4,5-b'二噻吩 - 噻吩并3,4-c吡咯-4,6-二酮聚合物直接自组装和太阳能电池性能

摘要

While varying the size and branching of solubilizing side chains in π-conjugated polymers impacts their self-assembling properties in thin-film devices, these structural changes remain difficult to anticipate. This report emphasizes the determining role that linear side-chain substituents play in poly(benzo[1,2-b:4,5-b′]dithiophene–thieno[3,4-c]pyrrole-4,6-dione) (PBDTTPD) polymers for bulk heterojunction (BHJ) solar cell applications. We show that replacing branched side chains by linear ones in the BDT motifs induces a critical change in polymer self-assembly and backbone orientation in thin films that correlates with a dramatic drop in solar cell efficiency. In contrast, we show that for polymers with branched alkyl-substituted BDT motifs, controlling the number of aliphatic carbons in the linear N-alkyl-substituted TPD motifs is a major contributor to improved material performance. With this approach, PBDTTPD polymers were found to reach power conversion efficiencies of 8.5% and open-circuit voltages of 0.97 V in BHJ devices with PC71BM, making PBDTTPD one of the best polymer donors for use in the high-band-gap cell of tandem solar cells.
机译:尽管改变π共轭聚合物中可溶侧链的大小和支链会影响它们在薄膜器件中的自组装性能,但这些结构变化仍然难以预料。该报告强调了线性侧链取代基在聚(苯并[1,2-b:4,5-b']二噻吩-噻吩并[3,4-c]吡咯-4,6-二酮)中的决定性作用(用于本体异质结(BHJ)太阳能电池应用的PBDTTPD)聚合物。我们表明,用BDT图案中的线性侧链代替支链侧链会引起聚合物自组装和薄膜中骨架方向的重大变化,这与太阳能电池效率的急剧下降相关。相反,我们表明,对于具有支链烷基取代的BDT图案的聚合物,控制线性N-烷基取代的TPD图案中脂肪族碳的数量是改善材料性能的主要因素。通过这种方法,发现在带有PC71BM的BHJ器件中,PBDTTPD聚合物的功率转换效率达到8.5%,开路电压达到0.97 V,这使PBDTTPD聚合物成为串联高带隙电池中最佳的聚合物供体之一。太阳能电池。

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