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首页> 外文期刊>The Journal of Chemical Physics >Revisiting the droplet simulation approach to derive force-field parameters for water on molybdenum disulfide from wetting angle measurements
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Revisiting the droplet simulation approach to derive force-field parameters for water on molybdenum disulfide from wetting angle measurements

机译:重新探测液滴模拟方法从润湿角度测量中导出水上水的力场参数

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摘要

Owing to its peculiar electronic properties, molybdenum disulfide (MoS2) has been the subject of a growing number of studies in the recent years. In applications, this material and other transition metal dichalcogenides (TMDs) may have to interact with a liquid or polymer phase as well as solutions of biomolecules. It is therefore of primary importance to understand the wetting and adhesion properties of TMDs. Starting from existing models, we derive Lennard-Jones parameters for the interaction between water and the basal plane of MoS2 that are consistent with recent wetting experiments. Molecular dynamics simulations indicate that a stack of only two MoS2 monolayers is necessary to capture the wetting behavior of bulk MoS2. It is found that the Coulomb interaction between water and monolayer and bilayer MoS2 plays no role in the related interfacial thermodynamics. Calculations with the optimized parameters show that the depth of the well of the interaction potential between water and bulk MoS2 is of the order of 8.2 kJ/mol. Such a value is comparable with what was found for graphite and consistent with the fact that the wetting angles of water on graphite and MoS2 are almost equal. The derivation of the force-field parameters is performed using a methodology which, contrary to previous studies, makes a consistent use of droplet calculations. The results of our work should find application in further simulation studies on the wetting behavior of TMDs and other dispersive materials. Published by AIP Publishing.
机译:由于其特殊的电子性质,钼二硫化物(MOS2)是近年来越来越多的研究的主题。在应用中,该材料和其他过渡金属二甲基甲基(TMDS)可能必须与液体或聚合物相和溶液相互作用,以及生物分子的溶液。因此,了解TMDS的润湿性和粘附性质是初论的。从现有模型开始,我们派生Lennard-Jones参数用于水与MOS2之间的相互作用,这些参数与最近的润湿实验一致。分子动力学模拟表明仅捕获散装MOS2的润湿行为是必要的仅两个MOS2单层的堆叠。结果发现,水和单层和双层MOS2之间的库仑相互作用在相关的界面热力学中没有在相关的界面热力学中起作用。使用优化参数的计算表明,水和散装MOS2之间的相互作用电位的井的深度是8.2kJ / mol的顺序。这种价值与所发现的石墨和符合的事实是相当的,即石墨和MOS2上的水的润湿角度几乎相等。使用与先前研究相反的方法进行力场参数的推导,这与液滴计算一致使用。我们工作的结果应在进一步的模拟研究中找到关于TMDS和其他分散材料的润湿行为的应用。通过AIP发布发布。

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