首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Charge Transfer and Chemisorption of Fullerene Molecules on Metal Surfaces: Application to Dynamics of Nanocars
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Charge Transfer and Chemisorption of Fullerene Molecules on Metal Surfaces: Application to Dynamics of Nanocars

机译:富勒烯分子在金属表面上的电荷转移和化学吸附:在纳米汽车动力学中的应用

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摘要

It is widely believed that the dynamics of surface-bound fullerene molecules is not fully understood because current theoretical analyses do not include charge-transfer phenomena. A new theoretical approach to describe charge transfer and chemisorption processes for fullerenes on gold surfaces has been developed. The method is based on extensive semiempirical calculations that provide a consistent description of charge transfer and adsorption phenomena. Our theoretical approach is applied for analyzing complex dynamics of fullerene-based molecular machines, known as nanocars. It is found that the charge transfer makes the rolling of nanocars' wheels a preferable mode for translational motion because of the complex interactions with the metal surfaces. The physical-chemical aspects of the rolling mechanism are discussed.
机译:人们普遍认为,由于当前的理论分析不包括电荷转移现象,因此尚未完全理解表面结合的富勒烯分子的动力学。已经开发出一种新的理论方法来描述金表面富勒烯的电荷转移和化学吸附过程。该方法基于大量的半经验计算,这些计算提供了电荷转移和吸附现象的一致描述。我们的理论方法适用于分析基于富勒烯的分子机器(称为纳米汽车)的复杂动力学。已经发现,由于与金属表面的复杂相互作用,电荷转移使纳米汽车车轮的滚动成为平移运动的优选方式。讨论了轧制机理的物理化学方面。

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