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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Electrochemically synthesized nano size copolymer, poly (aniline-co-ethyl 4-aminobenzoate) and its spectroelectrochemical studies
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Electrochemically synthesized nano size copolymer, poly (aniline-co-ethyl 4-aminobenzoate) and its spectroelectrochemical studies

机译:电化学合成的纳米级共聚物,聚(苯胺-co-乙基4-氨基苯甲酸酯)及其光谱电化学研究

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摘要

Electroactive conducting copolymers of aniline (ANI) and ethyl 4-aminobenzoate (EAB) were prepared electrochemically. Cyclic voltammetric studies were carried out with different feed concentration of EAB on glassy carbon electrode surface. The voltammograms exhibited different behavior for different concentrations of EAB. The copolymers exhibited high solubility in many polar solvents. The scan rate exerted good influence on the polymer effect on this GCE copolymer film, revealing electroactive film's excellent adherent properties. The effect of pH on the copolymer film showed that the polymer was electrochemically active up to pH 7.0. Spectroelectrochemical analysis of the copolymer film, carried out on an indium tin oxide (ITO) plate, showed multicolor electrochromic behavior when the applied potential was changed. The color of the copolymer was changed from neutral yellow (422 nm) to green (760 nm) and to blue (600 nm) at the concentration of 0.1 M aniline and 0.1 M EAB in 0.1 M H_2SO_4 medium. The copolymer was characterized by FT-IR spectral data. The surface morphology were studied using SEM and TEM analysis. The grain size of the copolymer was measured using XRD studies and was found to be 80 nm. The electrical conductivity of the copolymer was 3.21 × 10~(-2) S cm~(-1), as determined using a four-probe conductivity meter.
机译:电化学制备了苯胺(ANI)和4-氨基苯甲酸乙酯(EAB)的电活性导电共聚物。在玻璃碳电极表面上,以不同EAB进料浓度进行了循环伏安研究。伏安图对于不同浓度的EAB表现出不同的行为。该共聚物在许多极性溶剂中显示出高溶解度。扫描速度对该GCE共聚物薄膜的聚合物效果产生了良好的影响,显示出电活性薄膜的优异粘附性能。 pH对共聚物薄膜的影响表明,该聚合物在高达pH 7.0时具有电化学活性。当改变施加的电势时,在氧化铟锡(ITO)板上进行的共聚物膜的光谱电化学分析显示出多色电致变色行为。在0.1 M H_2SO_4介质中,在0.1 M苯胺和0.1 M EAB的浓度下,共聚物的颜色从中性黄(422 nm)变为绿色(760 nm),然后变为蓝色(600 nm)。共聚物通过FT-IR光谱数据表征。使用SEM和TEM分析研究表面形态。使用XRD研究测量共聚物的粒度,发现为80nm。用四探针电导仪测得该共聚物的电导率为3.21×10〜(-2)S cm〜(-1)。

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