Wittstock Gunther, Burchardt Malte, Pust Sascha E, Shen Yan, Zhao Chuan
Carl von Ossietzky Universität Oldenburg, Institut für Reine und Angewandte Chemie und Institut für Chemie und Biologie des Meeres, 26111 Oldenburg, Germany.
Angew Chem Int Ed Engl. 2007;46(10):1584-617. doi: 10.1002/anie.200602750.
Not only in electrochemistry but also in biology and in membrane transport, localized processes at solid-liquid or liquid-liquid interfaces play an important role at defect sites, pores, or individual cells, but are difficult to characterize by integral investigation. Scanning electrochemical microscopy is suitable for such investigations. After two decades of development, this method is based on a solid theoretical foundation and a large number of demonstrated applications. It offers the possibility of directly imaging heterogeneous reaction rates and locally modifying substrates by electrochemically generated reagents. The applications range from classical electrochemical problems, such as the investigation of localized corrosion and electrocatalytic reactions in fuel cells, sensor surfaces, biochips, and microstructured analysis systems, to mass transport through synthetic membranes, skin and tissue, as well as intercellular communication processes. Moreover, processes can be studied that occur at liquid surfaces and liquid-liquid interfaces.
不仅在电化学领域,而且在生物学和膜运输中,固液或液液界面处的局部过程在缺陷部位、孔隙或单个细胞中起着重要作用,但通过整体研究很难对其进行表征。扫描电化学显微镜适用于此类研究。经过二十年的发展,该方法基于坚实的理论基础和大量已证实的应用。它提供了直接成像异质反应速率以及通过电化学产生的试剂对底物进行局部修饰的可能性。其应用范围从经典的电化学问题,如研究燃料电池、传感器表面、生物芯片和微结构分析系统中的局部腐蚀和电催化反应,到通过合成膜、皮肤和组织的质量传输,以及细胞间通讯过程。此外,还可以研究在液体表面和液液界面发生的过程。