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Speciation of Adsorbed Phosphate at Gold Electrodes: A Combined Surface-Enhanced Infrared Absorption Spectroscopy and DFT Study

机译:金电极上吸附磷酸盐的形态:表面增强红外吸收光谱和DFT研究的组合

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Despite the significance of phosphate buffer solutions in (bio)-electrochemistry, detailed adsorption properties of phosphate anions at metal surfaces remain poorly understood. Herein, phosphate adsorption at quasi-Au(111) surfaces prepared by a chemical deposition technique has been systematically investigated over a wide range of pH by surface-enhanced infrared absorption spectroscopy in the ATR configuration (ATR-SEIRAS). Two different pH-dependent states of adsorbed phosphate are spectroscopically detected. Together with DFT calculations, the present study reveals that pK(a) for adsorbed phosphate species at the interface is much lower than that for phosphate species in the bulk solution; the dominant phosphate anion, H2PO4- at 2 < pH < 7 or HPO42- at 7 < pH < 12, undergoes deprotonation upon adsorption and transforms into the adsorbed HPO4 or PO4, respectively. This study leads to a conclusion different than earlier spectroscopic studies have reached, highlighting the capability of the ATR-SEIRAS technique at electrified metal-solution interfaces.
机译:尽管磷酸盐缓冲溶液在(生物)电化学中具有重要意义,但磷酸盐阴离子在金属表面的详细吸附性能仍然知之甚少。本文中,通过化学沉积技术制备的准Au(111)表面的磷酸盐吸附已通过ATR构造(ATR-SEIRAS)的表面增强红外吸收光谱法在较宽的pH范围内进行了系统研究。用光谱法检测到两种不同的pH依赖性磷酸根依赖状态。结合DFT计算,本研究表明,界面处吸附的磷酸盐物种的pK(a)远低于本体溶液中磷酸盐物种的pK(a)。占主导地位的磷酸根阴离子H2PO4-在2 H <7或HPO42-在7 H <12时在吸附时发生去质子化反应,并分别转化为吸附的HPO4或PO4。这项研究得出的结论与以前的光谱学研究不同,这突显了ATR-SEIRAS技术在带电金属-溶液界面的能力。

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