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Advances in surface-enhanced vibrational spectroscopy at electrochemical interfaces

机译:电化学界面的表面增强振动光谱研究进展

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Electrochemical interfaces are ubiquitous, and characterisation tools that allow us to interrogate them on the molecular scale underpin a wide range of technologies. Because of their dynamic nature, in situ or operando measurement is often necessary, and the coupling of electrochemical techniques with spectroscopic methods is a powerful solution to this challenge. Vibrational spectroscopy in particular can provide important insights into the chemical nature of species adsorbed at electrode surfaces. When combined with electrochemistry, the influence of a potential perturbation to the interface can be studied, helping to build a complete picture of molecular processes in complex electrochemical systems. Here, we review the latest advances in vibrational spectroscopy at electrochemical interfaces, with a focus on surface-enhanced approaches including surface-enhanced Raman scattering, shell-isolated nanoparticle-enhanced Raman spectroscopy, tip-enhanced Raman spectroscopy and surface-enhanced infrared absorption spectroscopy.
机译:电化学界面无处不在,而表征工具使我们能够在分子规模上对其进行查询,从而为多种技术提供了基础。由于其动态特性,通常需要进行原位或操作数测量,而电化学技术与光谱方法的结合是解决这一挑战的有力解决方案。振动光谱尤其可以提供重要的见解,以了解吸附在电极表面的物质的化学性质。当与电化学结合时,可以研究电势扰动对界面的影响,从而有助于建立复杂电化学系统中分子过程的完整图像。在这里,我们回顾了电化学光谱在电化学界面上的最新进展,重点是表面增强方法,包括表面增强拉曼散射,壳分离的纳米粒子增强拉曼光谱,尖端增强拉曼光谱和表面增强红外吸收光谱。

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