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吸附在银胶上的芳香酸和酰胺的质子化证据通过表面增强拉曼散射。

Evidence of deprotonation of aromatic acids and amides adsorbed on silver colloids by surface-enhanced Raman scattering.

机构信息

Department of Physical Chemistry, Faculty of Science, University of Málaga, E-29071-Málaga, Spain.

出版信息

Langmuir. 2012 Jun 19;28(24):8926-32. doi: 10.1021/la204702w. Epub 2012 Feb 9.

Abstract

The surface-enhanced raman scattering (SERS) of benzoic acid/benzamide and salicylic acid/salicylamide on silver colloids show important wavenumber shifts with respect to the Raman spectrum of the band assigned to mode 1;ν(ring) when adsorbed on the metal surface (ca. +50 cm(-1)). In the case of the acids, this shift is originated by the deprotonation of the carboxylic group in agreement with the well-known fact that aromatic acids are adsorbed on silver as carboxylates. However, the main conclusion of this work is that a similar behavior is found for the respective amides that do not behave as acids in water solution. The here studied aromatic amides are adsorbed as azanions on silver nanoparticles even at pH 7 and link to the metal through the nitrogen and oxygen atoms of the ionized carboxamide group. This is a very surprising result given that amides are not significantly ionized even at pH 13-14. The deprotonation of these amides is not determined exclusively by the pH, but it is mainly caused by the strong affinity of the anionic species to the metal. Therefore, the SERS must be cautiously used as a universal pH sensor if the adsorption occurs through the ionizable group. In order to support this conclusion, theoretical DFT force field calculations have been carried out, confirming that deprotonated benzamide and salicylamide interact with the metallic surface.

摘要

苯甲酸/苯甲酰胺和水杨酸/柳氮磺胺吡啶在银胶体上的表面增强拉曼散射(SERS)相对于模式 1 的带的拉曼光谱显示出重要的波数位移;ν(环)当吸附在金属表面上时(约+50 cm(-1))。对于酸,这种位移是由羧酸基团的去质子化引起的,这与众所周知的事实是一致的,即芳香酸作为羧酸盐吸附在银上。然而,这项工作的主要结论是,对于在水溶液中不作为酸的相应酰胺也存在类似的行为。在这里研究的芳香酰胺作为氮阴离子吸附在银纳米粒子上,即使在 pH 值为 7 时也是如此,并且通过离子化的羧酰胺基团的氮和氧原子与金属相连。这是一个非常令人惊讶的结果,因为即使在 pH 值为 13-14 时,酰胺也不会显著电离。这些酰胺的去质子化不仅取决于 pH 值,而且主要是由阴离子物种与金属的强亲和力引起的。因此,如果吸附是通过可电离基团发生的,则 SERS 必须谨慎用作通用 pH 传感器。为了支持这一结论,已经进行了理论 DFT 力场计算,证实了去质子化的苯甲酰胺和柳氮磺胺吡啶与金属表面相互作用。

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