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首页> 外文期刊>New Journal of Chemistry >Narrow bandgap difluorobenzochalcogenadiazole-based polymers for high-performance organic thin-film transistors and polymer solar cells
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Narrow bandgap difluorobenzochalcogenadiazole-based polymers for high-performance organic thin-film transistors and polymer solar cells

机译:用于高性能有机薄膜晶体管和聚合物太阳能电池的窄带凝聚二氟苯甲基聚唑类聚合物

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摘要

A bithiophene donor unit, 3-alkoxy-3 '-alkyl-bithiophene (TRTOR), was copolymerized with difluorobenzochalcogenadiazole (ffBZ) containing different heteroatoms on its diazole structure to afford a series of PffBZ copolymers (where Z = X, T, Se) with narrow optical bandgaps in the range of 1.34-1.47 eV. The effects of the ffBZ heteroatoms (O, S, and Se) on the optical properties, electrochemical characteristics and film morphologies of the polymers as well as the device performance were fully investigated. The results revealed that the highest occupied molecular orbitals (HOMOs) of the polymers gradually elevated accompanied by their increased materials solubility in common organic solvents as the size of the heteroatoms increased. The PffBZ copolymers exhibited a substantial hole mobility of 0.08-1.6 cm(2) V-1 s(-1) in organic thin-film transistors (OTFTs). The PffBX, PffBT, and PffBSe-based polymers exhibited maximum power conversion efficiencies (PCEs) of 5.47%, 10.12%, and 3.65%, respectively, in polymer solar cells (PSCs). For the PffBZ copolymers, the alkyl chain exerts a great influence on the morphology of the polymer:PC71BM blend films and hence affect the PCEs in PSCs. It was found that the performance of the polymers with branching on the 2nd position of the alkyl chain and the 3rd position of the alkoxy chain were the best among the PffBT and PffBSe-based polymers, different from the tetrathiophene-based benchmark polymer with branching on the 2nd position of the alkyl chain. X-ray diffraction revealed that all of the PffBZ-based polymers showed obvious face-on dominant orientation, and that chalcogen atoms and branched positions on the alkoxy chain have a great influence on the morphologies of the neat and blend films. The above results indicated that the branching positions and chalcogen atoms should be carefully optimized to maximize performance.
机译:甲噻吩供体单元,3-烷氧基-3“ - 烷基噻吩(TRTOR),用含有在其结构唑不同的杂原子,得到一系列PffBZ共聚物difluorobenzochalcogenadiazole(ffBZ)共聚(其中Z = X,T,Se)的在1.34-1.47 EV的范围窄光学带隙。上的光学特性,电化学特性和聚合物的薄膜形态的ffBZ杂原子(O,S和Se)的影响以及器件性能进行了充分的调查。结果表明,聚合物的最高占据分子轨道(候牟司)逐渐升至伴随在普通有机溶剂中的增加材料的溶解度作为杂原子的大小增加。所述PffBZ共聚物表现出0.08-1.6厘米相当的空穴迁移率(2)V-1秒(-1),有机薄膜晶体管(OTFT)。基于PffBSe-PffBX,PffBT和聚合物分别显示出5.47%,10.12%,和3.65%,最大的功率转换效率(PCE中),在聚合物太阳能电池(的PSC)。对于PffBZ共聚物,烷基链上施加的聚合物的形态有很大影响:PC71BM共混膜,并因此影响在省电类别的的PCE。结果发现,该聚合物与支化的烷基链和烷氧基链的第三位置的第二位置上的性能是在PffBT和基于PffBSe聚合物中最好的,从基于tetrathiophene-基准聚合物不同与分支上烷基链的第二位置。 X射线衍射表明,所有基于PffBZ聚合物的表现出明显的面朝上主方向,并且硫属元素原子和烷氧基上的链支化的位置对整齐和共混膜的形态有很大影响。上述结果表明,支化位置和硫属元素原子数应仔细优化以最大化性能。

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  • 来源
    《New Journal of Chemistry 》 |2020年第19期| 共12页
  • 作者单位

    Southeast Univ Sch Chem &

    Chem Engn Nanjing 211189 Jiangsu Peoples R China;

    Southern Univ Sci &

    Technol SUSTech Dept Mat Sci &

    Engn Shenzhen 518055 Guangdong Peoples R China;

    Southern Univ Sci &

    Technol SUSTech Dept Mat Sci &

    Engn Shenzhen 518055 Guangdong Peoples R China;

    Southeast Univ Sch Chem &

    Chem Engn Nanjing 211189 Jiangsu Peoples R China;

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  • 正文语种 eng
  • 中图分类 化学 ;
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