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金属-表面活性剂界面的电场:振动光谱和电容联合研究。

Electric Fields at Metal-Surfactant Interfaces: A Combined Vibrational Spectroscopy and Capacitance Study.

机构信息

Department of Chemistry , University of Southern California , Los Angeles , California 90007 , United States.

Department of Chemistry , Johns Hopkins University , Baltimore , Maryland 21218 , United States.

出版信息

J Phys Chem B. 2020 Feb 20;124(7):1311-1321. doi: 10.1021/acs.jpcb.0c00560. Epub 2020 Feb 7.

Abstract

Surfactants modulate interfacial processes. In electrochemical CO reduction, cationic surfactants promote carbon product formation and suppress hydrogen evolution. The interfacial field produced by the surfactants affects the energetics of electrochemical intermediates, mandating their detailed understanding. We have used two complementary tools-vibrational Stark shift spectroscopy which probes interfacial fields at molecular length scales and electrochemical impedance spectroscopy (EIS) which probes the entire double layer-to study the electric fields at metal-surfactant interfaces. Using a nitrile as a probe, we found that at open-circuit potentials, cationic surfactants produce larger effective interfacial fields (∼-1.25 V/nm) when compared to anionic surfactants (∼0.4 V/nm). At a high bulk surfactant concentration, the surface field reaches a terminal value, suggesting the formation of a full layer, which is also supported by EIS. We propose an electrostatic model that explains these observations. Our results help in designing tailored surfactants for influencing electrochemical reactions via the interfacial field effect.

摘要

表面活性剂调节界面过程。在电化学 CO 还原中,阳离子表面活性剂促进碳产物的形成并抑制析氢。表面活性剂产生的界面场影响电化学中间体的能量学,这就要求我们对其进行详细的了解。我们使用两种互补的工具——振动斯塔克频移光谱(可以探测分子长度尺度上的界面场)和电化学阻抗谱(EIS,可探测整个双电层)——来研究金属-表面活性剂界面处的电场。我们使用腈作为探针,发现与阴离子表面活性剂(约 0.4 V/nm)相比,在开路电位下,阳离子表面活性剂产生更大的有效界面场(约-1.25 V/nm)。在高浓度的表面活性剂时,表面场达到一个终端值,这表明形成了一个完整的单层,这也得到了 EIS 的支持。我们提出了一个静电模型来解释这些观察结果。我们的结果有助于通过界面场效应来设计用于影响电化学反应的定制化表面活性剂。

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