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Synthesis of polyaniline via DNAzyme-catalyzed polymerization of aniline

机译:DNA酶催化的苯胺聚合合成聚苯胺

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摘要

In this report, a novel method for the synthesis of polyaniline in aqueous medium, based on a G-quadruplex DNAzyme-catalyzed oxidation and polymerization of aniline by hydrogen peroxide in the presence of a polyanionic template, is described. The synthesis is simple and the experimental conditions are mild. The polymerization of aniline is carried out in an acidic aqueous medium with a catalytic amount of the DNAzyme. It was found that aniline polymerization occurs in a pH range from 2.0 to 5.0 with an optimal pH of 3.0. The polymerization kinetics can be described by the classical Michaelis-Menten reaction mechanism. Comparing to the horseradish peroxidase-catalyzed polymerization of aniline, the advantages of using the DNAzyme as the catalyst in the polymerization of aniline are cost-effectiveness and greater tolerance to the acidity of the reaction solution and high concentrations of hydrogen peroxide.
机译:在此报告中,描述了一种在水性介质中合成聚苯胺的新方法,该方法基于G-四链体DNA酶催化的过氧化氢在聚阴离子模板存在下苯胺的氧化和聚合反应。合成简单,实验条件温和。苯胺的聚合是在酸性水介质中与催化量的DNAzyme一起进行的。发现苯胺聚合发生在2.0至5.0的pH范围内,最佳pH为3.0。聚合动力学可以通过经典的Michaelis-Menten反应机理来描述。与辣根过氧化物酶催化的苯胺聚合相比,在苯胺聚合中使用DNAzyme作为催化剂的优点是成本效益高,对反应溶液的酸度和高浓度的过氧化氢具有更大的耐受性。

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