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首页> 外文期刊>The Journal of Chemical Physics >Electron tunneling of photochemical reactions on metal surfaces: Nonequilibrium Green's function-density functional theory approach to photon energy dependence of reaction probability - art. no. 194706
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Electron tunneling of photochemical reactions on metal surfaces: Nonequilibrium Green's function-density functional theory approach to photon energy dependence of reaction probability - art. no. 194706

机译:金属表面上光化学反应的电子隧穿:非平衡格林函数密度函数理论方法来研究反应概率对光子能量的依赖性-艺术没有。 194706

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摘要

We have developed a theoretical model of photoinduced reactions on metal surfaces initiated by the substrate/indirect excitation mechanism using the nonequilibrium Green's function approach. We focus on electron transfer, which consists of (1) electron-hole pair creation, (2) transport of created hot electrons, and (3) tunneling of hot electrons to form an anion resonance. We assume that steps (1), (2), and (3) are separable. By this assumption, the electron dynamics might be restated as a tunneling problem of an open system. Combining the Keldysh time-independent formalism with the simple transport theory introduced by Berglund and Spicer, we present a practical scheme for first-principle calculation of the reaction probability as a function of incident photon energy. The method is illustrated by application to the photoinduced desorption/dissociation of O-2 on a Ag(110) surface by adopting density functional theory. (c) 2005 American Institute of Physics.
机译:我们已经开发了使用非平衡格林函数方法由底物/间接激发机制引发的金属表面光诱导反应的理论模型。我们专注于电子转移,该转移包括(1)电子-空穴对的产生,(2)产生的热电子的传输以及(3)热电子的隧穿以形成阴离子共振。我们假设步骤(1),(2)和(3)是可分离的。通过这种假设,可以将电子动力学重新描述为开放系统的隧穿问题。结合Keldysh的时间无关形式主义和Berglund和Spicer引入的简单输运理论,我们提出了一种实用的方案,用于第一原理计算反应概率与入射光子能量的关系。通过采用密度泛函理论对O-2在Ag(110)表面上的光诱导解吸/离解的应用进行了说明。 (c)2005年美国物理研究所。

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