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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Early stages of water/hydroxyl phase generation at transition metal surfaces - synergetic adsorption and O-H bond dissociation assistance
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Early stages of water/hydroxyl phase generation at transition metal surfaces - synergetic adsorption and O-H bond dissociation assistance

机译:在过渡金属表面生成水/羟基相的早期阶段-协同吸附和O-H键解离辅助

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The dissociation of water is a key elementary step in many processes. From density functional theory, we show on several transition metal surfaces (Ru, Co, Rh, Ir, Ni, Pd and Pt) that water prefers to chemisorb as a H-bonded dimer, one molecule being chemisorbed by the O atom, but the second one developing only a weak interaction with the surface. Counterintuitively, the molecule in the dimer that shows the smallest activation energy for O-H dissociation is the one interacting weakly with the surface. The H-bonded dimer provides a clear synergy for its chemisorption and assists the dissociation of the H-bond acceptor water molecule. Two different classes of O-H activation pathways are clearly identified with a linear activation energy-reaction energy relationship, of Bronstedt-Evans-Polanyi type.
机译:水的解离是许多过程中的关键基本步骤。根据密度泛函理论,我们在几个过渡金属表面(Ru,Co,Rh,Ir,Ni,Pd和Pt)上表明,水更倾向于作为H键合二聚体进行化学吸附,一个分子被O原子化学吸附,但是第二个只发展与表面的弱相互作用。与直觉相反,二聚体中显示出最小的O-H解离活化能的分子是与表面弱相互作用的分子。氢键二聚体为其化学吸附提供了明显的协同作用,并有助于氢键受体水分子的解离。具有线性活化能-反应能关系的布朗斯泰特-埃文斯-波兰尼类型清楚地识别出两种不同的O-H活化途径。

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