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Work functions of self-assembled monolayers on metal surfaces by first-principles calculations

机译:通过第一性原理计算金属表面上自组装单分子层的功函数

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摘要

Using first-principles calculations we show that the work function of noble metals can be decreased or increased by up to 2 eV upon the adsorption of self-assembled monolayers of organic molecules. We identify the contributions to these changes for several (fluorinated) thiolate molecules adsorbed on Ag(111), Au(111), and Pt(111) surfaces. The work function of the clean metal surfaces increases in this order, but adsorption of the monolayers reverses the order completely. Bonds between the thiolate molecules and the metal surfaces generate an interface dipole, whose size is a function of the metal, but it is relatively independent of the molecules. The molecular and bond dipoles can then be added to determine the overall work function.
机译:使用第一性原理计算,我们表明,吸附有机分子自组装单分子层后,贵金属的功函数可以降低或提高2 eV。我们确定吸附在Ag(111),Au(111)和Pt(111)表面的几个(氟化)硫醇盐分子对这些变化的贡献。清洁金属表面的功函数按此顺序增加,但是单层的吸附完全颠倒了该顺序。硫醇盐分子与金属表面之间的键产生一个界面偶极子,其大小是金属的函数,但相对独立于分子。然后可以添加分子偶极和键偶极,以确定整体功函数。

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