University of Illinois at Urbana-Champaign, Urbana, Illinois61801, United States.
Anal Chem. 2022 Dec 6;94(48):16519-16527. doi: 10.1021/acs.analchem.2c01416. Epub 2022 Nov 10.
The interface between two immiscible electrolyte solutions (ITIES) plays vital roles in various fields, such as neuroscience, environmental science, analytical chemistry, separation, catalysis, and nanoparticle synthesis. ITIES emerges as a unique approach in chemical analysis due to its sensitivity to both redox-active and redox-inactive analytes. Neurotransmitters, metal ions, drug molecules, and other complex molecules such as proteins have been detected using ITIES. The detection of redox-inactive species at the ITIES has opened a door to understanding a wide range of complex systems that are less suited to probing by solid electrodes. In this feature article, we present the history of electrochemistry at the ITIES; charge transfer reactions, thermodynamics, and kinetics at the ITIES; electrode-solution interfacial structure; and a diverse range of applications enabled by ITIES.
两种不混溶电解质溶液(ITIES)之间的界面在神经科学、环境科学、分析化学、分离、催化和纳米粒子合成等各个领域都起着至关重要的作用。ITIES 作为一种独特的化学分析方法出现,因为它对氧化还原活性和非氧化还原活性分析物都很敏感。已经使用 ITIES 检测到神经递质、金属离子、药物分子和其他复杂分子,如蛋白质。在 ITIES 检测非氧化还原活性物质为理解更不适宜用固体电极探测的广泛的复杂系统开辟了一扇大门。在这篇专题文章中,我们介绍了 ITIES 电化学的历史;ITIES 处的电荷转移反应、热力学和动力学;电极-溶液界面结构;以及 ITIES 实现的各种应用。