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通过表面等离子体共振成像对双电层变化进行时空分辨映射。

Temporal-spatial-resolved mapping of the electrical double layer changes by surface plasmon resonance imaging.

作者信息

Luo Xueyi, Deng Shijie, Wang Peng

机构信息

State Key Laboratory of Precision Measurement Technology and Instruments, Department of Precision Instrument, Tsinghua University Beijing 100084 PR China

出版信息

RSC Adv. 2018 Aug 7;8(50):28266-28274. doi: 10.1039/c8ra05380d.

Abstract

An electrical double layer (EDL) is a specific distribution of ions at the electrolyte/electrode interface. As EDL plays a decisive role in the interfacial physical and chemical characteristics, a comprehensive and quantitative understanding of the EDL structure and its change dynamics is important for a wide range of fields, ranging from electrochemistry, energy storage and semiconductor materials to biotechnology. In this paper, we proposed a proof of concept method for temporal- and spatial-resolved mapping of the EDL structure and its change dynamics. A potential was applied on the interface and the potential induced ion re-arrangement process was monitored by surface plasmon resonance (SPR) imaging in real time. NaCl experiments were repeated six times and the coefficient of variation of the results was 5.17%, confirming the potential-induced SPR response. Experiments with different potential excitations, ion concentrations and species were performed and results indicated that the electron density change and ion re-arrangement contributed comparably to the potential induced SPR response. Additionally, the lateral distribution of the EDL formed at the interface between NaCl solutions and an Au film coated with arrays of 11-MUA spots was mapped. This method is temporally and spatially resolved, and thus has the potential to be a promising tool for EDL studies at heterogeneous interfaces.

摘要

双电层(EDL)是离子在电解质/电极界面的一种特定分布。由于双电层在界面物理和化学特性中起决定性作用,全面且定量地理解双电层结构及其变化动力学对于从电化学、能量存储、半导体材料到生物技术等广泛领域都很重要。在本文中,我们提出了一种用于双电层结构及其变化动力学的时空分辨映射的概念验证方法。在界面上施加一个电势,并通过表面等离子体共振(SPR)成像实时监测电势诱导的离子重排过程。NaCl实验重复进行了六次,结果的变异系数为5.17%,证实了电势诱导的SPR响应。进行了不同电势激发、离子浓度和种类的实验,结果表明电子密度变化和离子重排对电势诱导的SPR响应贡献相当。此外,还绘制了在NaCl溶液与涂有11-MUA斑点阵列的金膜之间的界面处形成的双电层的横向分布。该方法具有时空分辨能力,因此有潜力成为研究异质界面双电层的一种有前途的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1cd/9084293/0bd1b946aa0d/c8ra05380d-f1.jpg

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