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Molecular Dynamics Simulation for Bilayers of Alkyl Thiol Molecules at Solid-Solid Interfaces

机译:固-固界面上烷基硫醇分子双层的分子动力学模拟

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We present the results of molecular dynamics simulations for three different systems of bilayers of long-chain alkyl thiol [S(CH2)15CH3] molecules on an solid-solid interface using the extended collapsed atom model for the chain-molecule. It is found that there exist two possible transitions: a continuous transition characterized by a change in molecular interaction between sites of different chain molecules with increasing area per molecule and a sudden transition from an ordered lattice-like state to a liquid-like state due to the lack of interactions between sites of chain molecules on different surfaces with increasing distance between two solid surfaces. The third system displays a smooth change in probability distribution characterized by the increment of gauche structure in the near-tail part of the chain with increasing area per molecule. The analyses of energetic results and chain conformation results demonstrate the characteristic change of chain structure of each system.
机译:我们提出了使用链分子的扩展折叠原子模型在固体-固体界面上的长链烷基硫醇[S(CH2)15CH3]分子双层的三个不同系统的分子动力学模拟的结果。发现存在两种可能的转变:连续转变,其特征在于不同链分子的位点之间的分子相互作用随着每分子面积的增加而改变,以及由于有序晶格状状态突然转变为液体状状态。随着两个固体表面之间距离的增加,不同表面上链分子的位点之间缺乏相互作用。第三个系统显示出概率分布的平滑变化,其特征在于链的近尾部分中的gauche结构随每分子面积的增加而增加。能量结果和链构象结果的分析表明了每个系统链结构的特征变化。

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