Park Jinwoo, Quaiserová-Mocko Veronika, Patel Bhavik Anil, Novotný Martin, Liu Aihua, Bian Xiaochun, Galligan James J, Swain Greg M
Department of Chemistry, Michigan State University, East Lansing, MI 48824, USA.
Analyst. 2008 Jan;133(1):17-24. doi: 10.1039/b710236b. Epub 2007 Aug 28.
An emerging research field in electrochemistry today is the preparation, characterization and application of diamond microelectrodes for electroanalytical measurements in biological media. Interest in this new electrode material stems from its outstanding properties: (i) hardness, (ii) low, stable and pH-independent background current, (iii) morphological and microstructural stability over a wide range of potentials, (iv) good electrochemical responsiveness for multiple redox analytes without any conventional pre-treatment and (v) weak molecular adsorption of polar molecules that leads to a high level of resistance to response deactivation and electrode fouling. Diamond electrodes have advanced in recent years from being simply a scientific curiosity into a viable material for electroanalysis. In this article, we highlight the current state of progress by our laboratory and others on the preparation, study of the basic electrochemical properties, and application of this new type of microelectrode for in vitro electroanalytical measurements, and discuss some of the remaining challenges.
当今电化学领域一个新兴的研究方向是制备、表征金刚石微电极,并将其应用于生物介质中的电分析测量。人们对这种新型电极材料感兴趣源于其卓越的性能:(i)硬度;(ii)背景电流低、稳定且与pH无关;(iii)在很宽的电位范围内具有形态和微观结构稳定性;(iv)对多种氧化还原分析物具有良好的电化学响应性,无需任何传统预处理;(v)极性分子的分子吸附较弱,导致对响应失活和电极污染具有高度抗性。近年来,金刚石电极已从仅仅是一种科学上的新奇事物发展成为一种可行的电分析材料。在本文中,我们重点介绍了我们实验室及其他研究机构在这种新型微电极的制备、基本电化学性质研究以及体外电分析测量应用方面的当前进展状态,并讨论了一些尚存的挑战。