Anodic and cathodic dual-mode cysteine detection utilizing a glassy carbon electrode co-activated by electrochemical pretreatment and fully fluorinated cobalt phthalocyanine

IF 4.1 3区 化学 Q1 CHEMISTRY, ANALYTICAL
Ming Qin , Jinqiu Zhu , Jiaqi Zhao, Baiqing Yuan, Sixian Liu, Tingting Cai, Chunying Xu
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引用次数: 0

Abstract

l-cysteine (Cys), a fundamental amino acid within the human body, is crucial for a variety of biological processes. Its concentration levels offer valuable insights into an individual’s health status and are instrumental in the early diagnosis of various conditions. Traditional electrochemical detection techniques for Cys, primarily based on anodic oxidation, require complex and time-consuming steps including the creation of electrocatalysts and subsequent electrode modifications. This method is also prone to inaccuracies due to interference from other easily oxidized electroactive substances. To address these challenges, we present an innovative dual-mode detection strategy for Cys, leveraging both anodic and cathodic responses on a glassy carbon electrode. This electrode is dual-activated by electrochemical pretreatment and fully fluorinated cobalt phthalocyanine, facilitating a robust and reversible transformation between cystine and Cys. Remarkably, this method enables Cys detection at negative potential range, significantly reducing interference from prevalent biological and electroactive compounds like ascorbic acid and uric acid. Moreover, the process for modifying the electrode is remarkably simple, efficient, and eco-friendly.
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来源期刊
CiteScore
7.80
自引率
6.70%
发文量
912
审稿时长
2.4 months
期刊介绍: The Journal of Electroanalytical Chemistry is the foremost international journal devoted to the interdisciplinary subject of electrochemistry in all its aspects, theoretical as well as applied. Electrochemistry is a wide ranging area that is in a state of continuous evolution. Rather than compiling a long list of topics covered by the Journal, the editors would like to draw particular attention to the key issues of novelty, topicality and quality. Papers should present new and interesting electrochemical science in a way that is accessible to the reader. The presentation and discussion should be at a level that is consistent with the international status of the Journal. Reports describing the application of well-established techniques to problems that are essentially technical will not be accepted. Similarly, papers that report observations but fail to provide adequate interpretation will be rejected by the Editors. Papers dealing with technical electrochemistry should be submitted to other specialist journals unless the authors can show that their work provides substantially new insights into electrochemical processes.
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