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Monitoring the interaction of adsorbates on metal surfaces by surface site engineering: the case of ethoxy on Cu, Pd, Ag and Au regular and stepped surfaces

机译:通过表面现场工程监测金属表面上吸附物的相互作用:在铜,钯,银和金的规则和阶梯表面上存在乙氧基的情况

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摘要

The interaction of ethoxy with the (111), (100), (511) and (310) surfaces of Cu, Pd, Ag and Au has been studied by means of periodic density functional calculations with the main aim to investigate, in a systematic way, the effect of the coordination number of surface metal atoms directly interacting with the adsorbate on the adsorption properties. The geometry of the adsorbed molecule is only slightly affected by the type of surface but the adsorption energy may change up to 40% on going from the (111) surface with atoms with coordination number of 9 to the (310) one where the coordination number decreases to 6. Analysis of the work function of the different surfaces and of the charge density reveals that the enhancement of the interaction is not due to variations in the charge transfer. However, a well defined trend between the interaction energy and the coordination number is clearly observed which is interpreted in terms of the d-band center model. These results strongly suggest that it is possible to tune the interaction energy by surface engineering.
机译:乙氧基与铜,钯,银和金的(111),(100),(511)和(310)表面的相互作用已通过周期性密度泛函计算进行了研究,其主要目的是系统地研究这样,表面金属原子的配位数直接与被吸附物相互作用对吸附性能的影响。吸附分子的几何形状仅受表面类型的影响很小,但从具有配位数为9的原子的(111)表面变为配位数为(310)的原子时,吸附能最多可改变40%。降低到6。对不同表面的功函数和电荷密度的分析表明,相互作用的增强不是由于电荷转移的变化引起的。但是,可以清楚地观察到相互作用能和配位数之间的明确趋势,这是根据d波段中心模型来解释的。这些结果强烈暗示可以通过表面工程来调节相互作用能。

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