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Determination of Caffeine @ Gold Nanoparticles Modified Gold (Au) Electrode: A Preliminary Study

机译:咖啡因@金纳米粒子修饰金(Au)电极的测定:初步研究

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Caffeine is a natural alkaloid exerting many physiological effects, such as stimulation of the central nervous system, diuresis and gastric acid secretion. It is widely distributed in plant products and beverages and its quantification is mainly of pharmaceutical and alimentary concern. In this paper, we describe an electrochemical study based on the modification of a gold electrode (Au) surface by deposition of functionalized gold nanoparticles by Cyclic Voltammetry (CV). The oxidation system is characterized by an anodic peak in the positive-going step and by the absence of any cathodic peak on the reverse scan, indicating that the oxidation is irreversible. At the modified electrode, the voltammetric peak height increases vs. that @ the bare one, depending on the nanoparticles functionalization. The best performances were observed @ Au electrode modified with colloidal gold nanoparticles (AuNPs) stabilized into a chitosan matrix. In order to optimize the influence of different electrolytes on the sensor response, different electrolytic solutions (nitric acid, sulfuric acid, phosphoric acid and hydrochloric acid) were used. The electrochemical behavior of caffeine was also studied in aprotic medium with the aim to clear up the different mechanisms the oxidative process occurs through in aqueous and in aprotic medium.
机译:咖啡因是一种天然生物碱,具有多种生理作用,例如刺激中枢神经系统,利尿和胃酸分泌。它广泛地分布在植物产品和饮料中,其定量主要涉及制药和食品方面。在本文中,我们描述了通过循环伏安法(CV)沉积功能化的金纳米颗粒,对金电极(Au)表面进行修饰的电化学研究。氧化系统的特征是在正向步骤中有一个阳极峰,而在反向扫描中没有任何阴极峰,表明氧化是不可逆的。在修饰的电极上,伏安峰的高度相对于裸电极的伏安的峰高度增加,这取决于纳米粒子的功能性。在用胶态金纳米颗粒(AuNPs)改性的金电极上稳定了壳聚糖基质,观察到了最佳性能。为了优化不同电解质对传感器响应的影响,使用了不同的电解液(硝酸,硫酸,磷酸和盐酸)。还研究了咖啡因在非质子介质中的电化学行为,目的是弄清在水性和非质子介质中氧化过程发生的不同机理。

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