首页> 外文会议>The Twelfth international symposium on electroanalytical chemistry : Program amp; extended abstracts >Gap-mode Plasmon Enhanced Raman Spectroscopy for in-situ Observation of Atomically Flat Single Crystalline Metal Electrode Surfaces
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Gap-mode Plasmon Enhanced Raman Spectroscopy for in-situ Observation of Atomically Flat Single Crystalline Metal Electrode Surfaces

机译:间隙模式等离激元增强拉曼光谱技术用于原位观察原子平坦的单晶金属电极表面

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摘要

Surface-enhanced Raman scattering (SERS) is widely utilized as a powerful spectroscopic tool for studying molecules adsorbed on metal surfaces, especially in electrochemical conditions. The signal enhancement of Raman scattering is mainly caused by field enhancement at a metal surface. Therefore, excitation of surface plasmon polaritons is the key issue in SERS events, and application of conventional SERS is limited to 'rough' metal surfaces. However, since various adsorption sites are exposed on such substrates, information of each adsorption site is not available and SERS spectra provide only averaged information. Besides, efficient plasmonic field enhancement is available only at coinage metals with rough surfaces such as Au, Ag, Cu, etc. Unfortunately, most of other metals, including catalytic metals such as Pt and Pd, are commonly considered to be non-SERS-active because of the large imaginary part of the dielectric constant.
机译:表面增强拉曼散射(SERS)被广泛用作研究在金属表面(尤其是在电化学条件下)吸附的分子的强大光谱工具。拉曼散射的信号增强主要是由金属表面的场增强引起的。因此,表面等离激元极化子的激发是SERS事件中的关键问题,而常规SERS的应用仅限于“粗糙”的金属表面。然而,由于各种吸附位点暴露在此类基材上,因此每个吸附位点的信息均不可用,SERS光谱仅提供平均信息。此外,仅在粗糙表面的铸币金属(例如Au,Ag,Cu等)上才能使用有效的等离子场增强功能。不幸的是,大多数其他金属,包括催化金属(例如Pt和Pd)通常被视为非SERS-由于介电常数的虚部很大,所以它是有效的。

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