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首页> 外文期刊>RSC Advances >Modified structure of two-dimensional polythiophene derivatives by incorporating electron-deficient units into terthiophene-vinylene conjugated side chains and the polymer backbone: synthesis, optoelectronic and self-assembly properties, and photovoltaic application
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Modified structure of two-dimensional polythiophene derivatives by incorporating electron-deficient units into terthiophene-vinylene conjugated side chains and the polymer backbone: synthesis, optoelectronic and self-assembly properties, and photovoltaic application

机译:通过将电子缺陷单元掺入苯乙烯 - 乙烯基共轭侧链和聚合物主链中的二维聚噻吩衍生物的改性结构:合成,光电和自组装性能,以及光伏应用

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摘要

Molecular engineering on the conjugated side chains of two-dimensional (2D) conjugated polymers was conducted and its effect on the optical, electronic, self-assembly and photovoltaic properties was investigated. A new monomer, M2, was prepared by capping (E)-3'-(2-(2,5-dibromothiophen-3-yl)vinyl)4,4 ''- bis(2-ethylhexyl)-2,2':5',2 ''-terthiophene, M1, with two heptanoyl groups, and then coupled with 5,5'-bis(trimethylstannyl)-2,2'-bithiophene via microwave-assisted Stille polymerization to produce a series of polythiophene derivatives with terthiophene-vinylene conjugated side chains, TTV-PTs. Copolymer P2 shows a down-shifted HOMO energy level, enhanced solubility, and red-shifted absorption, as compared with P1; however, the bulky side chains significantly disrupt the coplanarity of thiophene rings in the polymer backbone and the ability to self-assemble into an ordered structure. The GIXRD measurements reveal that the original crystallinity of P1 can be recovered by simply inserting a few 2,1,3-benzothiadiazole units into the polythiophene main chain in P2 through a random copolymerization route to yield a terpolymer, P3, which possesses excellent crystallinity, thereby causing a three-fold increment in hole mobility. Furthermore, the P1/PC61BM, P2/PC61BM, and P3/PC61BM solar devices exhibit power conversion efficiencies of 3.89%, 1.52%, and 4.17%, respectively, under AM1.5G illumination with an intensity of 100 mW cm(-2).
机译:进行了二维(2D)共轭聚合物的共轭侧链上的分子工程,并研究了对光学,电子,自组装和光伏性能的影响。通过封端(e)-3' - (2-(2,5-二溴苯甲酯-3-基)乙烯基)4,4' - 双(2-乙基己基)-2,2'制备新的单体M2 M 2。 :5',2'' - 噻吩,m1,用两种庚酰基,然后通过微波辅助stille聚合与5,5'-bis(三甲基烷基)-2,2'-二苯甲酸酯加上一系列聚噻吩衍生物用百苯甲酸乙烯基共轭侧链,TTV-PTS。与P1相比,共聚物P2显示出次移位的同性能水平,增强的溶解度和红移吸收;然而,庞大的侧链显着破坏聚合物主链中噻吩环的共面,以及自组装成有序结构的能力。 GixRD测量表明,通过随机共聚途径将几个2,1,本字唑单元在P2中的多噻吩主链中简单地将少量2,1,3-苯并噻唑单元中的原始结晶度通过随机共聚途径,​​以产生具有优异结晶度的三元共聚物,P3因此,在空穴迁移率下引起三倍的增量。此外,P1 / PC61BM,P2 / PC61BM和P3 / PC61BM太阳能器件分别表现出3.89%,1.52%和4.17%的功率转换效率,其在AM1.5G照明下,强度为100 mW cm(-2) 。

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  • 来源
    《RSC Advances》 |2016年第72期|共10页
  • 作者单位

    Natl Taiwan Univ Ctr Condensed Matter Sci Taipei 10617 Taiwan;

    Natl Taipei Univ Technol Inst Organ &

    Polymer Mat Taipei 10608 Taiwan;

    Natl Taiwan Univ Ctr Condensed Matter Sci Taipei 10617 Taiwan;

    Natl Taipei Univ Technol Inst Organ &

    Polymer Mat Taipei 10608 Taiwan;

    Natl Taiwan Univ Dept Chem Engn Taipei 10617 Taiwan;

    Natl Taiwan Univ Dept Chem Engn Taipei 10617 Taiwan;

    Natl Taiwan Univ Ctr Condensed Matter Sci Taipei 10617 Taiwan;

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  • 正文语种 eng
  • 中图分类 化学;
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