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Dynamics of charge transfer states on metal surfaces: The competition between reactivity and quenching

机译:金属表面上电荷转移态的动力学:反应性和淬灭之间的竞争

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The dynamics of excited states of adsorbates on surfaces caused by charge transfer is studied. Both negative and positive charge transfer processes are possible. In particular we are interested in positive charge transfer from a metal surface to molecular or atomic oxygen adsorbed on the surface. Once the negatively charged oxygen on the surface loses an electron it becomes chemically activated. The ability of this species to react depends on the quenching time or back transfer. The analysis of these processes is based on a set of diabatic potential energy surfaces each representing a different charged oxygen species. The dynamics is followed by solving the multichannel time-dependent Schrodinger equation or Liouville von Neumann equation. Due to the nonadiabatic character of these reactions large isotope effects are predicted.
机译:研究了由电荷转移引起的表面吸附物激发态的动力学。负电荷转移过程和正电荷转移过程都是可能的。特别地,我们对从金属表面到吸附在表面上的分子或原子氧的正电荷转移感兴趣。一旦表面上带负电荷的氧失去电子,它就会被化学活化。该物质反应的能力取决于淬灭时间或反向转移。对这些过程的分析基于一组绝热势能面,每个代表不同的带电氧种类。动力学之后是求解多通道时变Schrodinger方程或Liouville von Neumann方程。由于这些反应的非绝热特性,可以预测到较大的同位素效应。

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