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原位质谱监测电极-电解质界面的动态电化学过程:一种 SIMS 方法。

In Situ Mass Spectrometric Monitoring of the Dynamic Electrochemical Process at the Electrode-Electrolyte Interface: a SIMS Approach.

机构信息

Beijing National Laboratory for Molecular Sciences, National Centre for Mass Spectrometry in Beijing, CAS Key Laboratory of Analytical Chemistry for Living Biosystems, Institute of Chemistry, Chinese Academy of Sciences , Beijing 100190, China.

出版信息

Anal Chem. 2017 Jan 3;89(1):960-965. doi: 10.1021/acs.analchem.6b04189. Epub 2016 Dec 20.

Abstract

The in situ molecular characterization of reaction intermediates and products at electrode-electrolyte interfaces is central to mechanistic studies of complex electrochemical processes, yet a great challenge. The coupling of electrochemistry (EC) and mass spectrometry (MS) has seen rapid development and found broad applicability in tackling challenges in analytical and bioanalytical chemistry. However, few truly in situ and real-time EC-MS studies have been reported at electrode-electrolyte interfaces. An innovative EC-MS coupling method named in situ liquid secondary ion mass spectrometry (SIMS) was recently developed by combining SIMS with a vacuum compatible microfluidic electrochemical device. Using this novel capability, we report the first in situ elucidation of the electro-oxidation mechanism of a biologically significant organic compound, ascorbic acid (AA), at the electrode-electrolyte interface. The short-lived radical intermediate was successfully captured, which had not been detected directly before. Moreover, we demonstrated the power of this new technique in real-time monitoring of the formation and dynamic evolution of electrical double layers at the electrode-electrolyte interface. This work suggests further promising applications of in situ liquid SIMS in studying more complex chemical and biological events at the electrode-electrolyte interface.

摘要

在电极-电解质界面处对反应中间体和产物进行原位分子表征对于复杂电化学过程的机理研究至关重要,但这也是一个巨大的挑战。电化学(EC)和质谱(MS)的结合在分析和生物分析化学中的挑战方面取得了快速发展并找到了广泛的应用。然而,在电极-电解质界面处很少有真正的原位和实时 EC-MS 研究报告。最近,通过将 SIMS 与真空兼容的微流控电化学装置相结合,开发了一种名为原位液体二次离子质谱(SIMS)的创新 EC-MS 耦合方法。利用这一新的功能,我们首次在原位阐明了生物相关有机化合物抗坏血酸(AA)在电极-电解质界面处的电氧化机理。成功捕获了短寿命的自由基中间体,这在此前是无法直接检测到的。此外,我们还展示了这项新技术在实时监测电极-电解质界面上电双层形成和动态演变方面的强大功能。这项工作表明,原位液体 SIMS 在研究电极-电解质界面处更复杂的化学和生物事件方面具有进一步的应用前景。

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