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溶剂活化的3D打印电极及其电分析潜力。

Solvent-activated 3D-printed electrodes and their electroanalytical potential.

作者信息

Kwaczyński Karolina, Szymaniec Olga, Bobrowska Diana M, Poltorak Lukasz

机构信息

Department of Inorganic and Analytical Chemistry, Faculty of Chemistry, University of Lodz, Tamka 12, 91-403, Lodz, Poland.

Faculty of Chemistry, University of Bialystok, Ciolkowskiego 1K, 15-245, Bialystok, Poland.

出版信息

Sci Rep. 2023 Dec 20;13(1):22797. doi: 10.1038/s41598-023-49599-9.

Abstract

This work is a comprehensive study describing the optimization of the solvent-activated carbon-based 3D printed electrodes. Three different conductive filaments were used for the preparation of 3D-printed electrodes. Electrodes treatment with organic solvents, electrochemical characterization, and finally electroanalytical application was performed in a dedicated polyamide-based cell also created using 3D printing. We have investigated the effect of the used solvent (acetone, dichloromethane, dichloroethane, acetonitrile, and tetrahydrofuran), time of activation (from immersion up to 3600 s), and the type of commercially available filament (three different options were studied, each being a formulation of a polylactic acid and conductive carbon material). We have obtained and analysed a significant amount of collected data which cover the solvent-activated carbon-based electrodes surface wettability, microscopic insights into the surface topography analysed with scanning electron microscopy and atomic force microscopy, and finally voltammetric evaluation of the obtained carbon electrodes electrochemical response. All data are tabulated, discussed, and compared to finally provide the superior activation procedure. The electroanalytical performance of the chosen electrode is discussed based on the voltammetric detection of ferrocenemethanol.

摘要

这项工作是一项全面的研究,描述了溶剂活化的碳基3D打印电极的优化。使用三种不同的导电细丝制备3D打印电极。在同样使用3D打印制造的专用聚酰胺基电池中,对电极进行有机溶剂处理、电化学表征,最后进行电分析应用。我们研究了所用溶剂(丙酮、二氯甲烷、二氯乙烷、乙腈和四氢呋喃)、活化时间(从浸泡到3600秒)以及市售细丝类型(研究了三种不同的选择,每种都是聚乳酸和导电碳材料的配方)的影响。我们已经获取并分析了大量收集的数据,这些数据涵盖了溶剂活化的碳基电极表面润湿性、用扫描电子显微镜和原子力显微镜分析的表面形貌微观见解,以及最终对所得碳电极电化学响应的伏安评估。所有数据都制成表格、进行讨论并比较,最终提供了卓越的活化程序。基于二茂铁甲醇的伏安检测,讨论了所选电极的电分析性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e74/10739953/b369e68cbbaf/41598_2023_49599_Fig1_HTML.jpg

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