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Micro- and Nanoscale Spectroscopic Investigations of Threonine Influence on the Corrosion Process of the Modified Fe Surface by Cu Nanoparticles

机译:Cu纳米颗粒对改性Fe表面腐蚀过程的微型和纳米级光谱研究

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摘要

The work presents a comprehensive vibrational analysis of the process of adsorption of threonine (Thr) onto an Fe surface with deposited Cu nanoparticles (NPs) (of about 4–5 nm in size) in a corrosive environment. The application of surface-enhanced Raman spectroscopy (SERS) and surface-enhanced infrared absorption spectroscopy (SEIRA) provides the opportunity for detailed description of adsorption geometry of amino acid onto a metal surface. The combination of conventional infrared spectroscopy (IR) with atomic force microscopy (AFM) resulted in a nano-SEIRA technique which made it possible to provide a precise description of adsorbate binding to the metal surface. The studies presented confirmed that there is a very good correlation between the spectra recorded by the SERS, SEIRA, and nano-SEIRA techniques. Threonine significantly influenced the process of corrosion of the investigated surface due to the existing strong interaction between the protonated amine and carboxylate groups and the CuNPs deposited onto the Fe surface. In addition, the application of two polarization modulations (s and p) in nano-SEIRA allows subtle changes to be observed in the molecule geometry upon adsorption, with the carboxylate group of Thr being almost horizontally oriented onto the metal surface; whereas the amine group that contains nitrogen is oriented perpendicular to this surface.
机译:该工作呈现了苏氨酸(Thr)在Fe表面上的综合振动分析,腐蚀性环境中的沉积Cu纳米粒子(尺寸约4-5nm)。表面增强拉曼光谱(SERS)和表面增强的红外吸收光谱(SEIRA)的应用提供了用于将氨基酸的吸附几何形状详细描述在金属表面上的机会。具有原子力显微镜(AFM)的常规红外光谱(IR)的组合导致纳米Seira技术,使得可以提供与金属表面的吸附剂结合的精确描述。提出的研究证实,SERS,SEIRA和纳米SEIRA技术记录的光谱之间存在非常好的相关性。苏氨酸由于质子化胺和羧酸盐基团的现有强的相互作用和沉积在Fe表面上的CUNP而显着影响所研究的表面腐蚀的过程。另外,在纳米Seira中施加两种偏振调制(S和P)允许在吸附时在分子几何形状中观察到微妙的变化,并且Thr的羧酸盐基团几乎水平地定向到金属表面上;虽然含有氮的胺基垂直于该表面取向。

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