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Adsorption of benzoic acid, phthalic acid on gold substrates studied by surface-enhanced Raman scattering spectroscopy and density functional theory calculations

机译:通过表面增强拉曼散射光谱和密度泛函理论计算研究了金基质上苯甲酸,邻苯二甲酸的吸附

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Benzoic acid (BA) and phthalic acid (PTA) are the simplest aromatic carboxylic acids, and they can be regarded as typical model compounds in investigating the interaction of aromatic carboxylic acids with metal surfaces by use of SERS spectroscopy. In this work, we have investigated the structure and adsorption behavior of benzoic acid and phthalic acid on the gold surface with combination of SERS and DFT calculation methods. The experimental results show that both BA and PTA may be adsorbed on the Au surface with a bidentate bridging structure, namely, the carboxylate group(s) being bound to gold via two oxygen atoms in the carboxylate group(s). Comparison of the observed SERS and predicted spectra of the complexes of these two substances with Au atoms indicates that BA is favorable to adsorb on the gold surface with a vertical orientation rather than a flat one, and PTA could "stand up" on the Au surface as a slight tilt with a two-legged geometry, i.e. all four oxygen atoms in two carboxylate groups interact on the metal surface. Apart from that, we compare the discrepancy of SERS spectra between those two molecules, which could be taken as a potential analysis technique in food safety field.
机译:苯甲酸(BA)和邻苯二甲酸(PTA)是最简单的芳香族羧酸,在通过SERS光谱研究芳香族羧酸与金属表面的相互作用中,它们可被视为典型的模型化合物。在这项工作中,我们结合SERS和DFT计算方法研究了苯甲酸和邻苯二甲酸在金表面的结构和吸附行为。实验结果表明,BA和PTA都可以以双齿桥接结构吸附在Au表面上,即,一个或多个羧酸盐基团通过一个或多个羧酸盐基团中的氧原子与金结合。观察到的SERS和这两种物质与Au原子的配合物的预测光谱的比较表明,BA有利于以垂直方向而不是平坦的方向吸附在金表面上,并且PTA可以“站立”在Au表面上呈两脚形几何形状的轻微倾斜,即两个羧酸盐基团中的所有四个氧原子在金属表面上相互作用。除此之外,我们比较了这两个分子之间SERS光谱的差异,这可作为食品安全领域的一种潜在分析技术。

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