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The structure of mixed H2O-OH monolayer films on Ru(0001)

机译:Ru(0001)上H2O-OH混合单层膜的结构

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Scanning tunneling microscopy (STM) and x-ray absorption spectroscopy (XAS) have been used to study the structures produced by water on Ru(0001) at temperatures above 140 K. It was found that while undissociated water layers are metastable below 140 K, heating above this temperature produces drastic transformations, whereby a fraction of the water molecules partially dissociate and form mixed H2O-OH structures. X-ray photoelectron spectroscopy and XAS revealed the presence of hydroxyl groups with their O-H bond essentially parallel to the surface. STM images show that the mixed H2O-OH structures consist of long narrow stripes aligned with the three crystallographic directions perpendicular to the close-packed atomic rows of the Ru(0001) substrate. The internal structure of the stripes is a honeycomb network of H-bonded water and hydroxyl species. We found that the metastable low temperature molecular phase can also be converted to a mixed H2O-OH phase through excitation by the tunneling electrons when their energy is 0.5 eV or higher above the Fermi level. Structural models based on the STM images were used for density functional theory optimizations of the stripe geometry. The optimized geometry was then utilized to calculate STM images for comparison with the experiment. (C) 2008 American Institute of Physics. [DOI: 10.1063/1.2988903]
机译:扫描隧道显微镜(STM)和X射线吸收光谱(XAS)已被用于研究水在140 K以上的温度下在Ru(0001)上产生的结构。发现,在140 K以下,未分离的水层是亚稳态的,加热到该温度以上会产生剧烈的转变,从而一部分水分子会部分解离并形成混合的H2O-OH结构。 X射线光电子能谱和XAS揭示了羟基与O-H键基本平行于表面的存在。 STM图像显示,混合的H2O-OH结构由与三个垂直于Ru(0001)衬底的紧密排列的原子行的晶体学方向对齐的长窄条组成。条纹的内部结构是氢键结合的水和羟基物质的蜂窝网络。我们发现,当亚稳态低温分子相的能量高于费米能级0.5 eV或更高时,通过隧穿电子的激发也可以将其转变为H2O-OH混合相。基于STM图像的结构模型用于条纹几何的密度泛函理论优化。然后将优化的几何形状用于计算STM图像,以便与实验进行比较。 (C)2008美国物理研究所。 [DOI:10.1063 / 1.2988903]

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