Department of Chemistry, The University of Texas at Austin, Austin, Texas 78712, United States.
J Phys Chem Lett. 2022 Aug 25;13(33):7838-7846. doi: 10.1021/acs.jpclett.2c02009. Epub 2022 Aug 17.
Understanding the structure-activity relationship at electrochemical interfaces is crucial in improving the performance of practical electrochemical devices, ranging from fuel cells, electrolyzers, and batteries to electrochemical sensors. However, functional electrochemical interfaces are often complex and contain various surface structures, creating heterogeneity in electrochemical activity. In this Perspective, we highlight the role of heterogeneity in electrochemistry, especially in the context of electrocatalysis. Current methods for revealing the heterogeneity at electrochemical interfaces, including nanoelectrochemistry tools and single-entity approaches, are discussed. Lastly, we provide perspectives on what one can learn by studying heterogeneity and how one can use heterogeneity to design more efficient electrochemical devices.
理解电化学界面的结构-活性关系对于提高从燃料电池、电解槽和电池到电化学传感器等实际电化学器件的性能至关重要。然而,功能电化学界面通常很复杂,包含各种表面结构,导致电化学活性的异质性。在本观点中,我们强调了异质性在电化学中的作用,特别是在电催化方面。讨论了揭示电化学界面异质性的当前方法,包括纳米电化学工具和单个体方法。最后,我们提供了通过研究异质性可以了解什么以及如何利用异质性设计更高效的电化学器件的观点。