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首页> 外文期刊>Journal of solid state electrochemistry >Synthesis and electrochemical investigation of beta-substituted thiophene-based donor-acceptor copolymers with 3,4-ethylenedioxythiophene (EDOT)
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Synthesis and electrochemical investigation of beta-substituted thiophene-based donor-acceptor copolymers with 3,4-ethylenedioxythiophene (EDOT)

机译:β-取代的噻吩基供体与3,4-乙撑二氧噻吩(EDOT)共聚物的合成和电化学研究

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摘要

The present work reports the synthesis of four electron-acceptor beta-substituted thiophenes that were studied as monomers for electrochemical polymerization with 3,4-ethylenedioxythiophene (EDOT), an electron-donating monomer, aiming the combination of electron-acceptor and donor monomer thiophene to a simpler and convenient build up of novel donor-acceptor copolymeric materials via electrochemical polymerization. Four novel copolymers poly(EDOT-co-3-thiophene phenylacetate), (PEDOT-co-PPhTAc-2a), poly(EDOT-co-3-thiophene(4-nitrophenyl)acetate) (PEDOT-co-PPhTAc-2b), poly(EDOT-co-3-thiophenephenylcarboxylate) (PEDOT-co-PPhTCb), and poly(EDOT-co-3-(phenoxymethyl)thiophene) (PEDOT-co-PPhOMT) were electrochemically polymerized. The monomers were characterized by spectrometric techniques (FTIR, H-1 NMR, and C-13 NMR), and the copolymers were identified by electrochemical analyses and FT-IR. Although the corresponding homopolymers could not be obtained, in the presence of EDOT, the copolymers were formed in a quasi-reversible electrochemical kinetics. The infrared spectra of the copolymers as well the electrochemical profile corroborates their obtaining. The mass variation during the electrosynthesis was analyzed using a quartz crystal microbalance. The film's morphologies were investigated by SEM. Interestingly, the combination of electron-rich monomer thiophene (EDOT) and these electron-deficient carboxy-substituted thiophenes might be a convenient building block couple to increase the performance control of physic-chemical properties of mixed polythiophenes with innovative applications and they also showed a possible applicability as charge storage device.
机译:本工作报告了四种电子受体β-取代的噻吩的合成,这些单体被研究作为单体与3,4-乙撑二氧噻吩(EDOT)(一种供电子单体)进行电化学聚合,目的是结合电子受体和供体单体噻吩通过电化学聚合反应,可以更简单方便地构建新型的供体-受体共聚材料。四种新型共聚物聚(EDOT-co-3-噻吩(4-硝基苯基)乙酸酯),(PEDOT-co-3-噻吩(4-硝基苯基)乙酸酯)(PEDOT-co-PPhTAc-2b) ,聚(EDOT-co-3-噻吩苯基羧酸盐)(PEDOT-co-PPhTCb)和聚(EDOT-co-3-(苯氧基甲基)噻吩)(PEDOT-co-PPhOMT)进行电化学聚合。通过光谱技术(FTIR,H-1 NMR和C-13 NMR)对单体进行表征,并通过电化学分析和FT-IR鉴定共聚物。尽管不能获得相应的均聚物,但是在EDOT的存在下,共聚物以准可逆的电化学动力学形成。共聚物的红外光谱以及电化学性质证实了它们的获得。使用石英晶体微量天平分析电合成过程中的质量变化。通过SEM研究了膜的形貌。有趣的是,富电子单体噻吩(EDOT)和这些缺电子的羧基取代的噻吩的结合可能是一种方便的结构单元,可以提高混合聚噻吩的物理化学性能的性能控制,并具有创新的应用,并且还显示出可能用作电荷存储设备。

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