Department of Chemistry and Biochemistry, Queens College-CUNY, Flushing, New York 11367, United States.
The Graduate Center of CUNY, New York, New York 10016, United States.
J Am Chem Soc. 2021 Jun 16;143(23):8547-8551. doi: 10.1021/jacs.1c02532. Epub 2021 Jun 1.
Scanning electrochemical microscopy (SECM) is a powerful tool for mapping surface reactivity. Electrochemical mapping of electrocatalytic processes at the nanoscale is, however, challenging because the surface of a nanoelectrode tip is easily fouled by impurities and/or deactivated by products and intermediates of innersphere surface reactions. To overcome this difficulty, we introduce new types of SECM nanotips based on bimolecular electron transfer between the dissolved electroactive species and a redox mediator attached to the surface of a carbon nanoelectrode. A tris(2,2'-bipyridine)ruthenium complex, Ru(bpy), that undergoes reversible oxidation/reduction reactions at both positive and negative potentials was used to prepare the SECM nanoprobes for mapping a wide range of electrocatalytic processes through oxidation of H, reduction of O, and both oxidation and reduction of HO at the tip. In addition to high-resolution reactivity mapping and localized kinetic measurements, chemically modified nanoelectrodes can serve as nanosensors for a number of important analytes such as reactive oxygen and nitrogen species and neurotransmitters.
扫描电化学显微镜(SECM)是一种强大的用于绘制表面反应性的工具。然而,纳米尺度上电催化过程的电化学绘图具有挑战性,因为纳米电极尖端的表面很容易被杂质污染和/或由内球表面反应的产物和中间体失活。为了克服这个困难,我们引入了基于溶解的电活性物质与附着在碳纳米电极表面的氧化还原介质之间的双分子电子转移的新型 SECM 纳米尖端。三(2,2'-联吡啶)钌配合物 Ru(bpy) 在正电位和负电位下都能进行可逆的氧化/还原反应,被用于通过尖端的 H 的氧化、O 的还原以及 HO 的氧化和还原来制备用于绘制各种电催化过程的 SECM 纳米探针。除了高分辨率的反应性绘图和局部动力学测量外,化学修饰的纳米电极还可以用作许多重要分析物(如活性氧和氮物种以及神经递质)的纳米传感器。