State Key Laboratory of Physical Chemistry of Solid Surfaces and College of Chemistry and Chemical Engineering, Xiamen University, Xiamen, 361005, Fujian, China.
Phys Chem Chem Phys. 2010 Mar 14;12(10):2493-502. doi: 10.1039/b919266b. Epub 2010 Jan 26.
The observed surface-enhanced Raman scattering (SERS) spectra of water adsorbed on metal film electrodes of silver, gold, and platinum nanoparticles were used to infer interfacial water structures on the basis of the change of the electrochemical vibrational Stark tuning rates and the relative Raman intensity of the stretching and bending modes. To explain the increase of the relative Raman intensity ratio of the bending and stretching vibrations at the very negative potential region, density functional theory calculations provide the conceptual model. The specific enhancement effect for the bending mode was closely associated with the water adsorption structure in a hydrogen bonded configuration through its H-end binding to surface sites with large polarizability due to strong cathodic polarization. The present results allow us to propose that interfacial water molecules exist on these metal cathodes with different hydrogen bonding interactions, i.e., the HO-HH-Pt dihydrogen bond for platinum and the HO-HAg(Au) for silver and gold. This dihydrogen bonding configuration on platinum is further supported from observation of the Pt-H stretching band. Furthermore, the influences of the pH effect on SERS intensity and vibrational Stark effect on the gold electrode indicate that the O-H stretching SERS signals are enhanced in the alkaline solutions because of the hydrated hydroxide surface species adsorbed on the gold cathode.
吸附在银、金和铂纳米颗粒金属薄膜电极上的水的观察到的表面增强拉曼散射(SERS)光谱被用来推断界面水结构,这是基于电化学振动斯塔克调谐率的变化和伸缩振动和弯曲振动模式的相对拉曼强度。为了解释在非常负的电位区域弯曲和伸缩振动的相对拉曼强度比的增加,密度泛函理论计算提供了概念模型。弯曲振动的特殊增强效应与通过其 H 端与由于强阴极极化而具有大极化率的表面位点结合的氢键吸附结构密切相关。这些结果使我们能够提出,在这些具有不同氢键相互作用的金属阴极上存在界面水分子,即对于铂为 HO-HH-Pt 氢键,对于银和金为 HO-HAg(Au)。铂上的这种双氢键构型进一步得到了观察到的 Pt-H 伸缩带的支持。此外,pH 值对 SERS 强度的影响和对金电极的振动斯塔克效应表明,由于吸附在金阴极上的水合氢氧化物表面物种,在碱性溶液中 O-H 伸缩 SERS 信号得到增强。