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How reliable is the ReaxFF Potential for Describing the Structure of Alkanethiols on Gold? A Molecular Dynamics Study

机译:Reaxff可能如何可靠地描述黄金中的链烷醇结构的可能性?分子动力学研究

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The structures of self-assembled monolayers (SAMs) of short (methyl) and long (hexyl) chain alkyl thiols on the clean gold (111) surface were modelled using for the Au-S interactions either the reactive ReaxFF potential or the well known non-reactive Morse potential, while for the Au-Au interactions either the ReaxFF potential or an embedded-atom method (EAM). Analysis of the MD trajectories of possible SAM structures suggests that disordering of interfacial Au atoms is definitely driven by the gold-sulphur interactions. Our MD results reveal a novel structure where two methanethiol molecules are bound to a gold adatom that has been lifted from the surface at 300 K, and the same kind of RS-Au-SR motif was also observed for hexanethiol at 600 K but not at 300 K. What is more, the above motif is only observed for the reactive ReaxFF potential. Moreover, these results are in clear agreement with recent experiments and more costly first principles-based MD simulations. These findings strongly support the use of reactive potentials such as ReaxFF for gathering an accurate description of Au-S interactions in inexpensive classical MD simulations.
机译:使用反应性Reaxff电位或众所周知的非众所周知的非相互作用,建模了在清洁金(111)表面上的短(甲基)和长(己基)链硫醇的自组装单层(SAMS)的结构进行建模。 - 反应摩尔斯潜力,而对于AU-AU相互作用,REAXFF潜力或嵌入式原子方法(EAM)。对可能的SAM结构的MD轨迹分析表明界面Au原子的障碍绝对由金 - 硫相互作用驱动。我们的MD结果揭示了一种新颖的结构,其中两个甲基硫醇分子与已经从表面抬起的金色吸附物在300k下抬起,并且在600 k下,也观察到六烷醇的相同RS-Au-Sr基序但不在300 K.更重要的是,仅观察到上述基序对于反应性Reaxff潜力。此外,这些结果与最近的实验和更昂贵的基于原则的MD模拟有关。这些发现强烈支持使用反应电位,例如Reaxff,用于收集廉价的古典MD模拟中的AU-S交互的准确描述。

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