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TCNQ及其衍生物作为电化学研究中的电极材料——成就与展望:综述

TCNQ and Its Derivatives as Electrode Materials in Electrochemical Investigations-Achievement and Prospects: A Review.

作者信息

Starodub Tetiana, Michalkiewicz Slawomir

机构信息

Institute of Chemistry, Jan Kochanowski University, Uniwersytecka St. 7G, PL-25406 Kielce, Poland.

出版信息

Materials (Basel). 2024 Nov 29;17(23):5864. doi: 10.3390/ma17235864.

Abstract

7,7',8,8'-tetracyanoquinodimethane (TCNQ) is one of the most widely used effective surface electron acceptors in organic electronics and sensors, which opens up a very interesting field in electrochemical applications. In this review article, we outline the historical context of electrochemically stable selective electrode materials based on TCNQ and its derivatives and their development, their electrochemical characteristics, and the experimental aspects of their electrochemical applications. TCNQ-modified electrodes are characterized by long-term stability, reproducibility, and a low detection limit compared to other sensors; thus, their use can increase determination speed and flexibility and reduce investigation costs. TCNQ and its derivatives can also be successfully combined with other detector materials for cancer-related clinical diagnostic testing. Examples of simple, rapid, and sensitive detection procedures for various analytes are provided. Applications of new electrochemically stable TCNQ-based metal/covalent-organic hybrid frameworks, with exceptionally large surface areas, tunable pore sizes, diverse functionality, and high electrical conductivity, are also presented. As a result, they also offer enormous potential as revolutionary catalysts, drug carrier systems, and smart materials, as well as for use in gas storage. The use of TCNQ compounds as promising active electrode materials in high-power organic batteries/energy storage devices is discussed. We hope that the information featured in this review will provide readers with a good understanding of the chemistry of TCNQ and, more importantly, help to find good ways to prepare new micro-/nanoelectrode materials for rational sensor design.

摘要

7,7',8,8'-四氰基对苯二醌二甲烷(TCNQ)是有机电子学和传感器中使用最广泛的有效表面电子受体之一,它在电化学应用领域开辟了一个非常有趣的方向。在这篇综述文章中,我们概述了基于TCNQ及其衍生物的电化学稳定选择性电极材料的历史背景及其发展、它们的电化学特性以及其电化学应用的实验方面。与其他传感器相比,TCNQ修饰电极具有长期稳定性、可重复性和低检测限的特点;因此,使用它们可以提高测定速度和灵活性并降低研究成本。TCNQ及其衍生物还可以成功地与其他检测材料结合用于癌症相关的临床诊断测试。文中提供了针对各种分析物的简单、快速且灵敏的检测程序示例。还介绍了新型电化学稳定的基于TCNQ的金属/共价有机杂化框架的应用,这些框架具有超大的表面积、可调的孔径、多样的功能和高电导率。因此,它们作为革命性的催化剂、药物载体系统和智能材料以及用于气体存储也具有巨大潜力。文中还讨论了将TCNQ化合物用作高功率有机电池/储能装置中有前景的活性电极材料的情况。我们希望这篇综述中的信息能让读者很好地了解TCNQ的化学性质,更重要的是,有助于找到制备新型微/纳电极材料的良好方法,以实现合理的传感器设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d052/11643445/e49c467c21a3/materials-17-05864-g001.jpg

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