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具有各种支链烷基侧链的双(噻吩并噻吩基)二酮吡咯并吡咯基共轭聚合物及其在薄膜晶体管和聚合物太阳能电池中的应用。

Bis(thienothiophenyl) diketopyrrolopyrrole-based conjugated polymers with various branched alkyl side chains and their applications in thin-film transistors and polymer solar cells.

作者信息

Shin Jicheol, Park Gi Eun, Lee Dae Hee, Um Hyun Ah, Lee Tae Wan, Cho Min Ju, Choi Dong Hoon

机构信息

Department of Chemistry, Research Institute for Natural Sciences, Korea University , 5 Anam-dong, Sungbuk-gu, Seoul 136-701, Korea.

出版信息

ACS Appl Mater Interfaces. 2015 Feb 11;7(5):3280-8. doi: 10.1021/am508026s. Epub 2015 Jan 28.

Abstract

New thienothiophene-flanked diketopyrrolopyrrole and thiophene-containing π-extended conjugated polymers with various branched alkyl side-chains were successfully synthesized. 2-Octyldodecyl, 2-decyltetradecyl, 2-tetradecylhexadecyl, 2-hexadecyloctadecyl, and 2-octadecyldocosyl groups were selected as the side-chain moieties and were anchored to the N-positions of the thienothiophene-flanked diketopyrrolopyrrole unit. All five polymers were found to be soluble owing to the bulkiness of the side chains. The thin-film transistor based on the 2-tetradecylhexadecyl-substituted polymer showed the highest hole mobility of 1.92 cm2 V(-1) s(-1) due to it having the smallest π-π stacking distance between the polymer chains, which was determined by grazing incidence X-ray diffraction. Bulk heterojunction polymer solar cells incorporating [6,6]-phenyl-C71-butyric acid methyl ester as the n-type molecule and the additive 1,8-diiodooctane (1 vol %) were also constructed from the synthesized polymers without thermal annealing; the device containing the 2-octyldodecyl-substituted polymer exhibited the highest power conversion efficiency of 5.8%. Although all the polymers showed similar physical properties, their device performance was clearly influenced by the sizes of the branched alkyl side-chain groups.

摘要

成功合成了带有各种支链烷基侧链的新型噻吩并噻吩桥连二酮吡咯并吡咯和含噻吩的π-扩展共轭聚合物。选择2-辛基十二烷基、2-癸基十四烷基、2-十四烷基十六烷基、2-十六烷基十八烷基和2-十八烷基二十二烷基作为侧链部分,并将其连接到噻吩并噻吩桥连二酮吡咯并吡咯单元的N位上。由于侧链的庞大体积,发现所有这五种聚合物都可溶。基于2-十四烷基十六烷基取代聚合物的薄膜晶体管显示出最高的空穴迁移率,为1.92 cm2 V(-1) s(-1),这是因为其聚合物链之间的π-π堆积距离最小,该距离由掠入射X射线衍射确定。还使用合成的聚合物在没有热退火的情况下构建了以[6,6]-苯基-C71-丁酸甲酯作为n型分子和添加剂1,8-二碘辛烷(1体积%)的本体异质结聚合物太阳能电池;含有2-辛基十二烷基取代聚合物的器件表现出最高的功率转换效率,为5.8%。尽管所有聚合物都表现出相似的物理性质,但它们的器件性能明显受到支链烷基侧链基团大小的影响。

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