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基于凝胶聚合物电解质的双丝网印刷电极用于葡萄酒中4-乙基苯酚和乙硫醇顶空同时定量分析。

Gel polymer electrolyte-based dual screen-printed electrodes for the headspace quantification of 4-ethylphenol and ethanethiol simultaneously in wines.

作者信息

Portugal-Gómez Paula, Domínguez-Renedo Olga, Alonso-Lomillo M Asunción

机构信息

Analytical Chemistry Department, Faculty of Sciences, University of Burgos, Pza. Misael Bañuelos S/N, 09001, Burgos, Spain.

出版信息

Mikrochim Acta. 2024 Mar 19;191(4):208. doi: 10.1007/s00604-024-06220-8.

Abstract

The identification and correction of negative factors, such as 4-ethylphenol and ethanethiol, is important to comply with food safety regulations and avoid economic losses to wineries. A simple amperometric measurement procedure that facilitates the simultaneous quantification of both compounds in the gas phase has been developed using fullerene and cobalt (II) phthalocyanine-modified dual screen-printed electrodes coated with a room temperature ionic liquid-based gel polymer electrolyte. The replacement of the typical aqueous supporting electrolyte by low-volatility ones improves both operational and storage lifetime. Under the optimum conditions of the experimental variables, Britton Robinson buffer pH 5 and applied potentials of + 0.86 V and + 0.40 V for each working electrode (vs. Ag ref. electrode), reproducibility values of 7.6% (n = 3) for 4-ethylphenol and 6.6% (n = 3) for ethanethiol were obtained, as well as capability of detection values of 23.8 μg/L and decision limits of 1.3 μg/L and 9.2 μg/L (α = β = 0.05), respectively. These dual electrochemical devices have successfully been applied to the headspace detection of both compounds in white and red wines, showing their potential to be routinely used for rapid analysis control in wineries.

摘要

识别和纠正诸如4-乙基苯酚和乙硫醇等负面因素,对于遵守食品安全法规以及避免酿酒厂遭受经济损失至关重要。利用富勒烯和钴(II)酞菁修饰的双丝网印刷电极,并涂覆基于室温离子液体的凝胶聚合物电解质,开发了一种简单的安培测量程序,该程序有助于同时对气相中的两种化合物进行定量分析。用低挥发性电解质替代典型的水性支持电解质可提高操作寿命和储存寿命。在实验变量的最佳条件下,即Britton Robinson缓冲液pH值为5,每个工作电极的施加电位为+0.86 V和+0.40 V(相对于Ag参比电极),4-乙基苯酚的重现性值为7.6%(n = 3),乙硫醇的重现性值为6.6%(n = 3),检测限分别为23.8 μg/L,决策限分别为1.3 μg/L和9.2 μg/L(α = β = 0.05)。这些双电化学装置已成功应用于白葡萄酒和红葡萄酒中这两种化合物的顶空检测,显示出它们有潜力常规用于酿酒厂的快速分析控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/51e1/10948468/c7d39079d83a/604_2024_6220_Fig1_HTML.jpg

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