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唑在银水溶胶中的溶剂化动力学和吸附:拉曼和计算研究。

Solvation dynamics and adsorption on Ag hydrosols of oxazole: a Raman and computational study.

机构信息

Dipartimento di Chimica, Università di Firenze, via della Lastruccia 3, 50019 Sesto Fiorentino, Italia.

出版信息

J Phys Chem A. 2009 Dec 31;113(52):15198-205. doi: 10.1021/jp905530x.

Abstract

The interactions between oxazole and water or silver nanoparticles in aqueous dispersions have been studied with a computational approach based on ab initio molecular dynamics simulations, with the Car-Parrinello method, and density functional calculations in combination with Raman and surface enhanced Raman scattering (SERS) experiments. The solvation dynamics of oxazole in water allowed for the characterization of the hydrogen bond between water and solute, which has been shown to occur essentially through the nitrogen atom of the heterocyclic molecule. To mimic the solvation process or the adsorption on silver and interpreting the corresponding Raman and SERS spectra in aqueous solution or in Ag hydrosols, density functional calculations have been carried out on model systems made up by oxazole bound to water molecules or to positively charged silver clusters. Also, the chemisorption on Ag nanoparticles is found to occur by means of the nitrogen atom of oxazole interacting with the metal substrate.

摘要

采用从头算分子动力学模拟、Car-Parrinello 方法以及与拉曼和表面增强拉曼散射(SERS)实验相结合的密度泛函计算,研究了唑类物质在水或银纳米粒子分散体中的相互作用。唑类物质在水中的溶剂化动力学允许对水和溶质之间氢键的特征进行表征,这表明氢键主要通过杂环分子的氮原子发生。为了模拟溶剂化过程或在银上的吸附,并解释水溶液或 Ag 水溶胶中的相应拉曼和 SERS 光谱,对由唑类物质与水分子或带正电荷的银簇结合而成的模型系统进行了密度泛函计算。此外,发现唑类物质通过与金属衬底相互作用的氮原子发生化学吸附在 Ag 纳米颗粒上。

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