首页> 外文OA文献 >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:通过将缺电子单元掺入对噻吩-亚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/PC_(61)BM, P2/PC_(61)BM, 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)共轭聚合物共轭侧链的分子工程,并研究了其对光学,电子,自组装和光伏性能的影响。通过封端(E)-3'-(2-(2,5-二溴噻吩-3-基)乙烯基)-4,4''-双(2-乙基己基)-2,2制备新的单体M2 ':5',2'-对噻吩,M1,具有两个庚酰基,然后通过微波辅助Stille聚合与5,5'-双(三甲基锡烷基)-2,2'-联噻吩偶合生成一系列聚噻吩具有噻吩-乙烯基共轭侧链的衍生物,TTV-PT。与P1相比,共聚物P2的HOMO能级降低,溶解度提高,吸收吸收红移。然而,庞大的侧链显着破坏了聚合物主链中噻吩环的共面性以及自组装成有序结构的能力。 GIXRD测量表明,P1的原始结晶度可以通过简单地通过无规共聚途径将几个2,1,3-苯并噻二唑单元插入P2的聚噻吩主链中而得到三元共聚物P3(具有出色的结晶度)来恢复,从而导致空穴迁移率增加三倍。此外,在强度为AM1.5G的照明下,P1 / PC_(61)BM,P2 / PC_(61)BM和P3 / PC61BM太阳能器件的功率转换效率分别为3.89%,1.52%和4.17%。 100 mW cm ^(-2)。

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