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首页> 外文期刊>Journal of Macromolecular Science. Pure and Applied Chemistry >Synthesis and electrochromic properties of a symmetric polythiophene derivative: Decanedionic acid bis-(2-thiophene-3-yl-ether)ester and its copolymer with thiophene
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Synthesis and electrochromic properties of a symmetric polythiophene derivative: Decanedionic acid bis-(2-thiophene-3-yl-ether)ester and its copolymer with thiophene

机译:对称聚噻吩衍生物:癸二酸双-(2-噻吩-3-基-醚)酯及其与噻吩的共聚物的合成及电致变色性能

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Here we describe the electrochemical homopolymerization and copolymerization of decanedionic acid bis-(2-thiophene-3-yl- ether)ester (DATE) in the presence of thiophene. Tetrabutylammonium tetrafluoroborate (TBAFB) was utilized as the supporting electrolyte in acetonitrile (ACN) /borontrifloride ethylether (BFEE) solvent mixture (8:2D, v/v). Electrochemical homopolymerization of DATE and copolymerization with thiophene were studied by cyclic voltammetry (CV). Conducting polymers were characterized by Fourier Transform Infrared (FT-IR) and Thermal Analyses. The morphologies of electrochemically synthesized P(DATE) and P(DATE-co-Th) thin films were analyzed by Scanning Electron Microscopy (SEM). Electrical conductivities were measured by the four-probe technique. Spectroelectrochemical behaviors of P(DATE) and P(DATE-co-Th) films were investigated by UV-Vis Spectrophotometer. Homopolymer revealed color changes between brownish Yellow and blue, whereas copolymer revealed changes between orange and blue in reduced and oxidized states respectively. Switching ability of the polymers was investigated via kinetic study upon measuring the % transmittance (%T) at the maximum contrast point. Results implied that copolymerization is a valuable approach to achieve the desired electrochromic properties.
机译:在这里,我们描述了在噻吩存在下癸二酸双-(2-噻吩-3-基醚)酯(DATE)的电化学均聚和共聚。四氟硼酸四丁基铵(TBAFB)在乙腈(ACN)/三氟硼化硼乙醚(BFEE)溶剂混合物(8:2D,v / v)中用作支持电解质。通过循环伏安法(CV)研究了DATE的电化学均聚和与噻吩的共聚。导电聚合物通过傅立叶变换红外(FT-IR)和热分析进行表征。通过扫描电子显微镜(SEM)分析了电化学合成的P(DATE)和P(DATE-co-Th)薄膜的形貌。通过四探针技术测量电导率。用紫外可见分光光度计研究了P(DATE)和P(DATE-co-Th)薄膜的光谱电化学行为。均聚物显示出棕黄色和蓝色之间的颜色变化,而共聚物显示分别处于还原态和氧化态的橙色和蓝色之间的变化。通过在最大对比点测量百分比透射率(%T)的动力学研究,研究了聚合物的转换能力。结果表明,共聚是获得所需电致变色性质的有价值的方法。

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