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解析铜上电还原的双层动力学

Decoding Double Layer Dynamics for Electroreduction over Cu.

作者信息

Sinausia Daniel, Zisser Noam, Slot Thierry Kilian, Eisenberg David, Meirer Florian, Vogt Charlotte

机构信息

Schulich Faculty of Chemistry, Resnick Sustainability Center for Catalysis, and Grand Technion Energy Program, Technion - Israel Institute of Technology, Haifa, 3200002, Israel.

Inorganic Chemistry and Catalysis Group, Institute for Sustainable and Circular Chemistry and Debye Institute for Nanomaterials Science, Utrecht University, Universiteitsweg 99, Utrecht, 3584 CG, The Netherlands.

出版信息

Angew Chem Int Ed Engl. 2025 Jun 24;64(26):e202423177. doi: 10.1002/anie.202423177. Epub 2025 Jun 13.

Abstract

Understanding the nature and role of the electric double layer (EDL) at electrocatalytic interfaces and its dynamic evolution, is critical to optimizing electrochemical processes such as the carbon dioxide reduction reaction ( ). Despite its postulated significant influence on activity, direct spectroscopic evidence of the complex interplay between EDL structure and reaction kinetics has remained elusive. Here, we introduce Dynamic Response Spectroscopy (DRS), a novel approach that isolates spectroscopic signatures of key physicochemical features of the EDL, including the compact (interfacial) layer and the diffuse double layer based on their time-variance profiles. By analyzing multi-dimensional time-variance within a matrix of time-resolved infrared spectral data recorded during sequential potential steps, we reveal that EDL equilibration is not continuous but involves discrete restructuring events. We provide spectroscopic evidence that these sudden EDL reorganizations correlate with the rapid adsorption and conversion of to CO. Furthermore, we show that saturation of aqueous NaHCO electrolytes with , as opposed to Ar, induces more frequent and pronounced water reorientation in the diffuse double layer, characterized by less ice-like ordering and increased randomness. These findings provide novel insights into the dynamic nature of the EDL and its synergistic role in electrocatalysis, establishing a paradigm to better understand, and thus optimize, electrochemical systems.

摘要

了解电催化界面处双电层(EDL)的性质和作用及其动态演变,对于优化诸如二氧化碳还原反应等电化学过程至关重要。尽管推测其对活性有重大影响,但双电层结构与反应动力学之间复杂相互作用的直接光谱证据仍然难以捉摸。在此,我们引入了动态响应光谱(DRS),这是一种新颖的方法,它基于关键物理化学特征(包括紧密(界面)层和扩散双层)的时间变化曲线,分离出双电层的光谱特征。通过分析在连续电位阶跃期间记录的时间分辨红外光谱数据矩阵内的多维时间变化,我们揭示双电层平衡不是连续的,而是涉及离散的重组事件。我们提供光谱证据表明,这些双电层的突然重组与 快速吸附并转化为CO相关。此外,我们表明,与用Ar饱和相比,用 饱和NaHCO水溶液电解质会在扩散双层中诱导更频繁、更明显的水重新取向,其特征是更少的冰状有序性和更高的随机性。这些发现为双电层的动态性质及其在电催化中的协同作用提供了新的见解,建立了一个更好地理解并因此优化电化学系统的范例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f452/12184304/b5c5a8623b7d/ANIE-64-e202423177-g005.jpg

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