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On the Electronic Mechanisms of Specific Interactions between Surfactants and a Metal Surface

机译:关于表面活性剂与金属表面的特定相互作用的电子机制

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This work considers the electronic mechanism of specific interactions between a neutral surfactant and an uncharged metal surface during an elementary adsorption event. Special attention was paid to a role of the residual electronic interactions upon the exchange of electron density between the valence adsorbate orbital and the Fermi sea of metal electrons during adsorption. This interaction was simulated by the Coulomb electron-hole interactions through a potential barrier separating the surfactant and metal-electron systems. As this task concerns the problems associated with the Fermi edge singularities, the NoziSres-de Dominicis theory, which enables one to study an electron's contribution to the energetics and kinetics of adsorption event, was used to interpret the donor-acceptor effects. The expressions of spectral characteristics of the localized electron density and tunneling time were analyzed in the context of the problem. There is a positive correlation between the surfactant adsorption parameters and the scattering phases of conductivity electrons screened in the metal by a potential field created by a hole at the valence surfactant orbital.
机译:该工作考虑了在基本吸附事件期间中性表面活性剂和不带电金属表面之间的特定相互作用的电子机制。在吸附期间,在价值放射轨道和金属电子的费米海之间的电子密度交换电子密度时,对残留的电子相互作用的作用进行了特别的注意。通过Coulomb电子空穴相互作用通过潜在的屏障分离表面活性剂和金属电子系统来模拟该相互作用。由于这项任务涉及与费米边缘奇点相关的问题,Nozisres-de Dominicis理论,使人们能够研究电子对吸附事件的能量和动力学的贡献,用于解释供体受体效应。在问题的背景下分析了局部电子密度和隧道时间的光谱特性的表达。表面活性剂吸附参数与由按住表面活性剂轨道的孔产生的潜在场在金属中筛选的电导电子的散射相之间存在正相关性。

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