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Synthesis of polyanthranilic acid-Au nanocomposites by emulsion polymerization: development of dopamine sensor

机译:乳液聚合法合成聚邻氨基苯甲酸-金纳米复合材料:多巴胺传感器的开发

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摘要

Polyanthranilic acid (PANA) and polyanthranilic acid-gold (PANA-Au) nanocomposites have been synthesized through emulsion polymerization technique. Use of gold chloride as an oxidant for anthranilic acid not only provides a new route for chemical synthesis of PANA, but also explores a facile method for the formation of nanocomposites. Emulsion polymerization helps in slowing down kinetics of polymerization in comparison to one-phase polymerization and thereby induces formation of monodispersed, both pure and Au nanoparticles, embedded PANA sphere. Reaction progress of nanocomposite formation is studied by UV-Vis spectroscopy for 0-24 h. PANA-Au nanocomposites are characterized by SEM, equipped with EDS, TGA, FT-IR, XRD and electrochemical techniques. XRD of nanocomposites depicts the amorphous nature of polymer and crystalline nature of Au with crystallite size of similar to 24 nm. Differential pulse voltammetry has shown the electro-active nature of PANA. The nanocomposites with improved thermal properties show good dispersion in common organic solvents, and it can be explored for application in interference-free dopamine sensors with sensitivity 12.5 mu A/mM. Acidic group (-COOH) on the polymer makes the sensor free from ascorbic acid interference.
机译:通过乳液聚合技术合成了聚邻氨基苯甲酸(PANA)和聚邻氨基苯甲酸金(PANA-Au)纳米复合材料。使用氯化金作为邻氨基苯甲酸的氧化剂不仅为PANA的化学合成提供了一条新途径,而且还探索了一种形成纳米复合材料的简便方法。与单相聚合相比,乳液聚合有助于减慢聚合动力学,从而诱导形成单分散的,纯金和金纳米粒子嵌入的PANA球。通过紫外-可见光谱研究了0-24小时纳米复合物形成的反应过程。 PANA-Au纳米复合材料的特征在于具有EDS,TGA,FT-IR,XRD和电化学技术的SEM。纳米复合材料的XRD描绘了聚合物的无定形性质和金的晶体性质,其微晶尺寸类似于24 nm。差分脉冲伏安法显示了PANA的电活性。具有改善的热性能的纳米复合材料在常见的有机溶剂中显示出良好的分散性,可以开发用于灵敏度为12.5μA / mM的无干扰多巴胺传感器。聚合物上的酸性基团(-COOH)使传感器免受抗坏血酸的干扰。

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