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Sensitive and selective electrochemical detection of vanillin at graphene based poly (methyl orange) modified electrode

机译:石墨烯聚(甲基橙)改性电极香草素的敏感与选择性电化学检测

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Vanillin (VN) is a flavouring substance commonly used in the food and pharmaceutical industry. The rampant use of VN has significant implications on human health. In this work, a sensitive and selective voltammetric sensor to detect VN in food essences and natural vanilla beans was elucidated using a poly(methyl orange) modified graphene paste electrode (PMOMGPE). The surface morphology of PMOMGPE and a bare graphene paste electrode (BGPE) was compared using field emission - scanning electron microscopy (FE-SEM) and electron transfer kinetics were analysed by Electrochemical impedance spectroscopy (EIS). The electrochemical activities of PMOMGPE and BGPE were assessed using cyclic voltammetry (CV) and differential pulse voltammetry (DPV) in 0.2 M phosphate buffer solution (PBS) of an optimum pH of 6.5 with an accumulation time of 20 s in a potential window of 0.2 V-1 V. Superior electrocatalytic activity was observed by PMOMGPE for the oxidation of VN, which is attributed to the high surface area and interactions between the polymer film and analyte. The VN sensor exhibited a low detection limit of 7.35 × 10-8 M by the DPV method and 20.19 × 10-8 M by the CV method. Various parameters like heterogeneous rate constant (ko = 1.7 × 10-5 cm s-1), number of electrons transferred (n = 2), and surface concentration (Γ = 0.8 nmol cm-2) were calculated. The selectivity of the prepared sensor for VN detection in the presence of common interferents such as metal ions and organic species was noteworthy. PMOMGPE was reliably used for the simultaneous analysis of VN along with indigo carmine (IC) and tartrazine (TZ). This facile VN sensor can be effectively used for real sample analysis, due to its simplicity and stability.
机译:香草蛋白(VN)是食品和制药行业常用的调味物质。 VN的猖獗使用对人类健康有重大影响。在这项工作中,使用聚(甲基橙色)改性石墨烯浆料(PMOMGPE)阐明了一种敏感和选择性的伏安传感器以检测食品精华和天然香草豆中的VN。使用现场发射扫描电子显微镜(Fe-SEM)比较PMOMGPE和裸石墨烯浆料电极(BGPE)的表面形态,通过电化学阻抗光谱(EIS)分析电子转移动力学。使用循环伏安法(CV)和差分脉冲伏安法(DPV)在0.2M磷酸盐缓冲溶液(PBS)中的差分pH值为6.5的差异时间为0.2的蓄积时间来评估PMOMGPE和BGPE的电化学活性。 V-1 V. PMOMGPE对VN氧化的PMOMGPE观察到优异的电催化活性,其归因于聚合物膜和分析物之间的高表面积和相互作用。 VN传感器通过DPV方法显示出7.35×10-8米的低检测限,通过CV方法显示20.19×10-8米。等各种参数,如异质速率常数(KO = 1.7×10-5cm S-1),传递的电子数(n = 2),并计算表面浓度(γ= 0.8nmol cm-2)。对于常见干涉剂如金属离子和有机物种的存在,在常见干涉的情况下,制备的传感器的选择性是值得注意的。 PMOMGPE可靠地用于同时分析VN以及靛蓝胭脂红(IC)和塔拉嗪(TZ)。由于其简单性和稳定性,该容易VN传感器可以有效地用于实际样品分析。

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