An innovative pretreatment protocol to eliminate silver contamination-induced voltammetric interference on graphite-glass working electrode

IF 4.7 3区 工程技术 Q2 ELECTROCHEMISTRY
Maksimiljan Dekleva , Marija Kovačević , Ema Gričar , Mitja Kolar , Boštjan Genorio , Barbara Repič , Danjela Kuščer , Helena Prosen , Gregor Marolt
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Abstract

In the last decades, a significant amount of research has been focused on the development of miniaturized and portable electrochemical sensors in the form of screen-printed electrodes (SPEs). When performing voltammetric measurements using SPEs, especially in the case of carbon-based electrodes, additional peaks can appear and overlap with analytes’ signals or otherwise interfere with results. Therefore, the development of pretreatment methods that enable the removal of interferences is of great importance for SPEs utilization, e.g. for sensor applications. Moreover, electrode pretreatment can also be used to improve electron transfer kinetics, including reversibility of the studied redox processes. In this work, we present the evaluation of different pretreatment methods using cyclic voltammetry and potentiostatic anodization, applied on an in-house graphite-glass composite working electrodes. With the use of X-ray photoelectron spectroscopy and scanning electron microscopy it was confirmed that the surface of working electrode was contaminated by sub-micrometer sized silver particles, which resulted in two interference peaks. Several strong acids, including H2SO4, HNO3, and HCl, as well as phosphate buffer solution, were evaluated as electrolytes for electrochemical pretreatment. A rapid, simple, and low-cost pretreatment protocol that enables the removal of the interference peaks, as well as improved voltammetric signals for [Fe(CN)6]3−/4− redox probe was developed. We propose the optimal pretreatment method in H2SO4 as a protocol that could be universally applied for carbon, carbon-glass, or similar types of SPEs before performing voltammetric experiments and/or further modifications of SPEs.

消除石墨玻璃工作电极上银污染引起的伏安干扰的创新预处理方案
过去几十年来,大量研究都集中在开发丝网印刷电极(SPE)形式的微型便携式电化学传感器上。在使用丝网印刷电极(尤其是碳基电极)进行伏安测量时,可能会出现额外的峰值并与分析物信号重叠,或以其他方式干扰测量结果。因此,开发能够去除干扰的预处理方法对于 SPE 的使用(例如传感器应用)非常重要。此外,电极预处理还可用于改善电子转移动力学,包括所研究氧化还原过程的可逆性。在这项工作中,我们利用循环伏安法和恒定电位阳极氧化法对不同的预处理方法进行了评估,并将其应用于内部石墨玻璃复合工作电极上。使用 X 射线光电子能谱和扫描电子显微镜证实,工作电极表面受到亚微米级银颗粒的污染,从而产生两个干扰峰。几种强酸(包括 H2SO4、HNO3 和 HCl)以及磷酸盐缓冲溶液被用作电化学预处理的电解质进行了评估。我们开发出了一种快速、简单、低成本的预处理方案,它不仅能去除干扰峰,还能改善[Fe(CN)6]3-/4-氧化还原探针的伏安信号。我们提出了 H2SO4 中的最佳预处理方法,该方法可在进行伏安法实验和/或进一步改良固相萃取剂之前普遍应用于碳、碳玻璃或类似类型的固相萃取剂。
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来源期刊
Electrochemistry Communications
Electrochemistry Communications 工程技术-电化学
CiteScore
8.50
自引率
3.70%
发文量
160
审稿时长
1.2 months
期刊介绍: Electrochemistry Communications is an open access journal providing fast dissemination of short communications, full communications and mini reviews covering the whole field of electrochemistry which merit urgent publication. Short communications are limited to a maximum of 20,000 characters (including spaces) while full communications and mini reviews are limited to 25,000 characters (including spaces). Supplementary information is permitted for full communications and mini reviews but not for short communications. We aim to be the fastest journal in electrochemistry for these types of papers.
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