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首页> 外文期刊>Faraday discussions >Hydration processes of electrolyte anions and cations on Pt(111), Ir(111), Ru(001) and Au(111) surfaces: Coadsorption of water molecules with electrolyte ions
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Hydration processes of electrolyte anions and cations on Pt(111), Ir(111), Ru(001) and Au(111) surfaces: Coadsorption of water molecules with electrolyte ions

机译:Pt(111),Ir(111),Ru(001)和Au(111)表面上的电解质阴离子和阳离子的水合过程:水分子与电解质离子的共吸附

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摘要

Water adsorption on Pt(111) and Ru(001) reacted with oxyen, hydrogen chloride and sodium atom at 20 K has been studied by Fourier transform infrared spectroscopy, scanning tunneling microscopy and surface X-ray diffraction. Water molecules chemisorb predominantly on the sites of the electronegative additives, forming hydrogen bonds. Three types of hydration water molecules coordinate to an adsorbed Na atom through an oxygen lone pair. In contrast, water molecules adsorb on electrode surfacesin a simple way in solution. In 1 mM CuSO_4 + 0.5 M H_2SO_4 solution on an Au(111) electrode surface, water molecules coadsorb not only with sulfuric acid anions through hydrogen bonding but also with copper, over wide poential ranges. In the first stage of underpotential deposition (UPD), each anion is accommodated by six copper hexagon (honeycomb) atoms on which water molecules dominate. At any UPD stage water molecules interact with both the copper atom and sulfuric acid anions on the Au(111) surface. Water molecules also coadsorb with CO molecules on the surface of 2 X 2 -2CO-Ru(001). All of the hydration water molecules chemisorb weakly on the surfaces. There appears to be a correlation between the orientation of hydrogen bonding water molecules and the electrode potential.
机译:通过傅里叶变换红外光谱,扫描隧道显微镜和表面X射线衍射研究了水在20 K下与氧,氯化氢和钠原子反应后对Pt(111)和Ru(001)的吸附。水分子主要在负电性添加剂的位置发生化学吸附,形成氢键。三种类型的水合水分子通过氧孤对与吸附的Na原子配位。相反,水分子以简单的方式在溶液中吸附在电极表面上。在Au(111)电极表面的1 mM CuSO_4 + 0.5 M H_2SO_4溶液中,水分子不仅通过氢键与硫酸根阴离子共吸附,而且在很宽的电位范围内与铜共吸附。在负电位沉积(UPD)的第一阶段,每个阴离子都被六个铜六边形(蜂窝)原子容纳,水分子占主导地位。在任何UPD阶段,水分子都会与Au(111)表面上的铜原子和硫酸根阴离子相互作用。水分子还与2 X 2 -2CO-Ru(001)表面上的CO分子共吸附。所有的水合水分子在表面上的化学吸收作用都很弱。氢键水分子的取向与电极电位之间似乎存在相关性。

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