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采用茜素红 S 修饰铂电极的伏安法灵敏、选择性检测番茄和水样中的连苯三酚。

A sensitive and selective voltammetric method for the detection of pyrogallol in tomato and water samples using platinum electrode modified with alizarin red S film.

机构信息

Department of Chemistry, Faculty of Science, Al-Balqa Applied University, P.O. Box 19117, Al-Salt, Jordan.

Department of Chemistry, Faculty of Arts and Sciences, University of Petra, Amman, 11196, Jordan.

出版信息

Anal Sci. 2024 Sep;40(9):1671-1681. doi: 10.1007/s44211-024-00606-7. Epub 2024 May 30.

Abstract

In contrast to the hyperactive platinum electrode, ARS modified platinum electrode presents a remarkable inertness toward adsorption and surface processes and lends it for further voltammetric applications. Measuring pyrogallol levels in samples is significant for assessing their antioxidant activity, which is crucial for understanding their potential health benefits and ability to combat oxidative stress. In addition, the excess consumption of pyrogallol can have significant negative effects on human health. A voltammetric sensor has been developed for the determination of pyrogallol using ARS modified platinum electrode. The electrode was prepared by electrodeposition of alizarin red S on a platinum electrode using cyclic voltammetry with a potential scan range of - 0.4 to 1.2 V against an Ag/AgCl quasi reference electrode for 60 cycles as optimum number of cycles. The modified electrode was characterized by CV and SEM techniques. This modified alizarin red S platinum electrode showed remarkable electrocatalytic performance and stability, resulting in a significant increase in pyrogallol oxidation current by 11.05% compared to the pyrogallol oxidative current at the unmodified platinum electrode. A well-defined oxidation peak was observed at ~ 0.40 V. The sensor exhibited a low limit of detection (LOD) of 0.28 µM and a linear standard curve covering the ranges of 1.0-40 µM and 0.01-10.0 mM pyrogallol. Extensive studies were performed to evaluate possible interferences from various organic and inorganic compounds and yielded satisfactory results that confirm the selectivity of the developed sensor for pyrogallol determination. In addition, the ARS-Pt electrode provided consistently reliable results for the accurate detection of pyrogallol in water and tomato samples.

摘要

与高活性的铂电极相比,ARS 修饰的铂电极对吸附和表面过程表现出显著的惰性,使其适用于进一步的伏安应用。测量样品中焦棓酚的水平对于评估其抗氧化活性非常重要,因为这对于理解其潜在的健康益处和对抗氧化应激的能力至关重要。此外,焦棓酚的过量摄入会对人体健康产生重大负面影响。已经开发了一种使用 ARS 修饰的铂电极测定焦棓酚的伏安传感器。该电极通过循环伏安法在铂电极上电沉积茜素红 S 制备,电位扫描范围为 - 0.4 至 1.2 V,相对于 Ag/AgCl 准参比电极进行 60 个循环,这是最佳循环数。通过 CV 和 SEM 技术对修饰电极进行了表征。与未修饰的铂电极相比,这种修饰的茜素红 S 铂电极显示出显著的电催化性能和稳定性,导致焦棓酚氧化电流增加了 11.05%。在 ~ 0.40 V 处观察到明显的氧化峰。该传感器的检测限(LOD)低至 0.28 µM,线性标准曲线涵盖 1.0-40 µM 和 0.01-10.0 mM 焦棓酚的范围。进行了广泛的研究,以评估各种有机和无机化合物可能的干扰,并得到了令人满意的结果,证实了所开发的传感器对焦棓酚测定的选择性。此外,ARS-Pt 电极为准确检测水中和番茄样品中的焦棓酚提供了一致可靠的结果。

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