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CYCLIC VOLTAMMETRY AND XPS STUDIES OF MONOLAYERS DEPOSITED ON GOLD AND PLATINUM ELECTRODES DISPLACED BY MERCAPTOPYRIDINES

机译:巯基吡啶取代的金和铂电极上单分子膜的循环伏安和XPS研究

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摘要

We present studies, by cyclic voltammetry and X-ray photoelectron spectroscopy (XPS), of the under and overpotential deposition of copper on polycrystalline platinum and gold electrodes in aqueous 0.50 M sulfuric acid solution in the presence and absence of adsorbed layers of 2- and 4-mercaptopyridine (2-MP, 4-MP). In general we find that the presence of adsorbed layers of either 2-MP or 4-MP gives rise to an inhibition of the electrodeposition processes consistent with very strong interaction of the adsorbates with both Pt and Au surfaces. 2-MP gave rise to a higher degree of inhibition which we ascribe to a stronger degree of interaction likely due to a formation of a surface chelate via bonding through both N and S atoms. We have also investigated the reaction of 2-MP and 4-MP in solution with polycrystalline platinum and gold electrodes in aqueous 0.50 M sulfuric acid solution and which were either bare or covered by electrodeposited oxide or copper monolayers. Our studies reveal that the electrodeposited copper monolayer is displaced (oxidized), partially or completely, depending on the electrode material (Pt vs. Au),by 2-MP and 4-MP. On the other hand, the platinum and gold oxide monolayers are completely displaced by both adsorbates. The reactions of the oxide and copper monolayers with 2-MP and 4-MP gave rise to adsorbed intermediates and we present possible mechanistic pathways for these processes. (C) 1997 Elsevier Science S.A. [References: 19]
机译:我们通过循环伏安法和X射线光电子能谱(XPS),对存在和不存在2-和-2吸附层的情况下,铜在多晶铂和金电极上在0.50 M硫酸水溶液中的欠电位和过电位沉积进行了研究。 4-巯基吡啶(2-MP,4-MP)。通常,我们发现2-MP或4-MP吸附层的存在会导致电沉积过程受到抑制,这与被吸附物与Pt和Au表面的强烈相互作用相一致。 2-MP产生更高程度的抑制作用,这归因于较强的相互作用程度,这可能是由于通过N和S原子键合形成表面螯合物所致。我们还研究了2-MP和4-MP在溶液中与0.50 M硫酸水溶液中的多晶铂和金电极的反应,这些电极裸露或被电沉积的氧化物或铜单层覆盖。我们的研究表明,根据电极材料(Pt对Au)的不同,电沉积的铜单层被2-MP和4-MP置换(氧化)了部分或全部。另一方面,铂和金氧化物单层被两种吸附物完全置换。氧化物和铜单层与2-MP和4-MP的反应产生了吸附的中间体,我们为这些过程提供了可能的机理途径。 (C)1997 Elsevier Science S.A. [参考:19]

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