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碳复合热塑性电极的扫描电化学显微镜研究

SECM Investigation of Carbon Composite Thermoplastic Electrodes.

作者信息

Berg Kathleen E, Leroux Yann R, Hapiot Philippe, Henry Charles S

机构信息

Department of Chemistry, Colorado State University, 1872 Campus Delivery, Fort Collins, Colorado 80523, United States.

Univ Rennes, CNRS, ISCR-UMR 6226, F-35000 Rennes, France.

出版信息

Anal Chem. 2021 Jan 26;93(3):1304-1309. doi: 10.1021/acs.analchem.0c01041. Epub 2020 Dec 29.

DOI:10.1021/acs.analchem.0c01041
PMID:33373524
Abstract

Thermoplastic electrodes (TPEs) are carbon composite electrodes consisting of graphite and thermoplastic polymer binder. TPE production is a solvent-based method, which makes it easy to fabricate and pattern into complex geometries, contrary to classical carbon composite electrodes. Depending on the composition (carbon type, binder, and composition ratio), TPEs can give excellent electrochemical performance and high conductivity. However, these TPEs are relatively new electrode materials, and thorough electrochemical characterization is still missing to understand and predict why large differences between TPEs exist. We used scanning electrochemical microscopy (SECM) as a screening tool to characterize TPEs. SECM data treatment based on scanning probe microscopy imaging allows a fast and easy comparison of the numerous images, as well as the optimization of the preparation. Experiments suggest that TPEs behave as a network of interacting microelectrodes made by electrochemically active islands isolated between less active areas. Higher carbon content in TPEs is not always indicative of more uniform electrodes with better electrochemical performances. Using various SECM redox probes, it is possible to select a specific graphite or polymer type for the analyte of interest. For example, TPEs made with COC:3569 are the best compromise for general detection, whereas PMMA:11 μm is better suited for catechol-like polyphenol analysis.

摘要

热塑性电极(TPEs)是由石墨和热塑性聚合物粘合剂组成的碳复合电极。与传统的碳复合电极不同,TPE的生产是一种基于溶剂的方法,这使得它易于制造并加工成复杂的几何形状。根据组成(碳类型、粘合剂和组成比例),TPEs可以提供优异的电化学性能和高导电性。然而,这些TPEs是相对较新的电极材料,目前仍缺乏全面的电化学表征来理解和预测TPEs之间存在巨大差异的原因。我们使用扫描电化学显微镜(SECM)作为筛选工具来表征TPEs。基于扫描探针显微镜成像的SECM数据处理可以快速、轻松地比较大量图像,并优化制备过程。实验表明,TPEs表现为由电化学活性岛在活性较低区域之间隔离形成的相互作用微电极网络。TPEs中较高的碳含量并不总是意味着电极更均匀且具有更好的电化学性能。使用各种SECM氧化还原探针,可以为感兴趣的分析物选择特定的石墨或聚合物类型。例如,用COC:3569制成的TPEs是一般检测的最佳折衷选择,而PMMA:11μm更适合于儿茶酚类多酚分析。

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