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首页> 外文期刊>ECS Journal of Solid State Science and Technology >Synthesis, Characterization and Electrochemical Polymerization of a Comonomer Bearing Thiophene and Imidazole: The Comparison of Impedance Behavior on Different Surfaces
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Synthesis, Characterization and Electrochemical Polymerization of a Comonomer Bearing Thiophene and Imidazole: The Comparison of Impedance Behavior on Different Surfaces

机译:带有噻吩和咪唑的共聚单体的合成,表征和电化学聚合:不同表面阻抗行为的比较

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摘要

In this study, a comonomer based on imidazole bearing thiophene at 2, 4 and 5-positions named of 2, 4, 5-trithiophenylimidazole (Th-3-Im) was synthesized by means of Pd catalyzed Still cross coupling reaction. The product was characterized by using H-NMR and FTIR-ATR. It was electrochemically polymerized at a scan rate of 50 mV/s, applying 10-20 scans on different working electrodes such as Pt wire (radius, 1 mm), Au wire (0,5 mm), single carbon fiber (SCF) and ITO-PET (1-1 cm) from solutions containing 0.1M Th-3-Im and 0.1 M tetrabuthylammonium perchlorate (TBAP) in dichloromethane (DCM). The Th-3-Im was oxidized at 0.84 V on the surface of ITO-PET. Furthermore, the effect of Poly(Th-3-Im) coating on different working electrodes on impedance were investigated, and the data were collected by using electrochemical impedance spectroscopy (EIS). The double layer capacitance, C-DL, value was obtained as highest on SCF surface as 0.67 mF. The morphological investigation of the polymer was carried out by using SEM and AFM. It was clearly observed that granular pieces were cumulated on electrode surface, especially on planar surface. It was found that the capacitance values of obtained coating electrodes are strongly affected by the dependence of the morphology of used electrode surface. (C) 2016 The Electrochemical Society. All rights reserved.
机译:在这项研究中,通过钯催化的Still交叉偶联反应合成了一种基于在2、4和5位带有噻吩的咪唑的共聚单体,分别命名为2、4、5-三硫代苯基咪唑(Th-3-Im)。使用1 H-NMR和FTIR-ATR对产物进行表征。它以50 mV / s的扫描速率进行电化学聚合,在不同的工作电极(例如Pt线(半径1 mm),Au线(0.5 mm),单碳纤维(SCF)和ITO-PET(1-1厘米),来自于在二氯甲烷(DCM)中的0.1M Th-3-Im和0.1M高氯酸四丁铵盐(TBAP)溶液。 Th-3-Im在ITO-PET表面以0.84 V氧化。此外,研究了在不同工作电极上的聚(Th-3-Im)涂层对阻抗的影响,并使用电化学阻抗谱(EIS)收集了数据。获得的双层电容C-DL值在SCF表面上最高,为0.67 mF。通过使用SEM和AFM进行聚合物的形态研究。清楚地观察到,粒状块堆积在电极表面上,尤其是在平面上。已经发现,所获得的涂覆电极的电容值受到所用电极表面形态的依赖性的强烈影响。 (C)2016年电化学学会。版权所有。

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