Methylene Blue - New Chemistry Experiments for University Education

P. Wagler, J. Scheible, A. Habekost
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引用次数: 1

Abstract

The redox reactions of methylene blue on screen printed electrodes (SPEs) can be measured electrochemically by cyclic voltammetry (CV) and spectroscopically by optical and Raman spectroscopy. The combination of cyclic voltammetry and optical or Raman spectroscopy, known as absorpto- or Raman voltammetry, provides not only electrochemical information about redox reactions at electrodes, but also about changes in the visible and Raman properties of the substances used. Raman scattering can be enhanced by a simple electrochemical in-situ modification; this leads to an electrochemically activated surface enhanced Raman effect (EC-SERS). Therefore, chemical reactions, based on the change in vibrational states of the substances under investigation, can be characterized in a very simple way. In this article, we compare different electrodes and show that the electrochemical reactions of methylene blue strongly depend on the electrodes used. In addition, the electropolymerization of methylene blue is discussed. At the end of the article, a script for students for measuring the spectroelectrochemistry of methylene blue is presented in detail. The didactic background is that the combination of electrochemical information, such as potentials and current fluxes, with spectroscopic information, such as absorption and/or vibrational changes, leads to a better understanding of electrochemistry.
亚甲基蓝——大学教育新化学实验
亚甲基蓝在丝网印刷电极(SPEs)上的氧化还原反应可以用循环伏安法(CV)和光谱法(光学和拉曼光谱)进行电化学测量。循环伏安法和光学或拉曼光谱的结合,被称为吸收伏安法或拉曼伏安法,不仅提供了电极氧化还原反应的电化学信息,而且还提供了所用物质的可见光和拉曼性质的变化。通过简单的电化学原位修饰可以增强拉曼散射;这导致了电化学活化表面增强拉曼效应(EC-SERS)。因此,基于所研究物质的振动状态变化的化学反应,可以用一种非常简单的方式来表征。在本文中,我们比较了不同的电极,并表明亚甲基蓝的电化学反应强烈地依赖于所使用的电极。此外,还讨论了亚甲基蓝的电聚合反应。在文章的最后,详细介绍了一个供学生使用的亚甲基蓝光谱电化学测量脚本。教学背景是电化学信息(如电位和电流通量)与光谱信息(如吸收和/或振动变化)的结合,可以更好地理解电化学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
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