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Molecular dynamics simulations of nano-confined methanol and methanol-water mixtures between infinite graphite plates: Structure and dynamics

机译:无限石墨板纳米狭窄甲醇和甲醇水混合物的分子动力学模拟:结构与动力学

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Molecular dynamics simulations are used to investigate microscopic structures and dynamics of methanol and methanol-water binary mixture films confined between hydrophobic infinite parallel graphite plate slits with widths, H, in the range of 7-20 angstrom at 300 K. The initial geometric densities of the liquids were chosen to be the same as bulk methanol at the same temperature. For the two narrowest slit widths, two smaller initial densities were also considered. For the nano-confined system with H = 7 angstrom and high pressure, a solid-like hexagonal arrangement of methanol molecules arranged perpendicular to the plates is observed which reflects the closest packing of the molecules and partially mirrors the structure of the underlying graphite structure. At lower pressures and for larger slit widths, in the contact layer, the methanol molecules prefer having the C-O bond oriented parallel to the walls. Layered structures of methanol parallel to the wall were observed, with contact layers and additional numbers of central layers depending on the particular slit width. For methanol-water mixtures, simulations of solutions with different composition were performed between infinite graphite slits with H = 10 and 20 angstrom at 300 K. For the nanoslit with H = 10 A, in the solution mixtures, three layers of molecules form, but for all mole fractions of methanol, methanol molecules are excluded from the central fluid layer. In the nanopore with H = 20 angstrom, more than three fluid layers are formed and methanol concentrations are enhanced near the confining plates walls compared to the average solution stoichiometry. The self-diffusion coefficients of methanol and water molecules in the solution show strong dependence on the solution concentration. The solution mole fractions with minimal diffusivity are the same in confined and non-confined bulk methanol-water mixtures. Published under license by AIP Publishing.
机译:分子动力学模拟用于研究微观结构和疏水性无限平行石墨板狭缝之间密闭,宽度,H甲醇和甲醇 - 水二元混合物膜的动力学,在7-20埃的范围在300K的初始几何密度液体被选择为相同作为散装甲醇中,在相同的温度。对于两个最窄狭缝宽度,两个较小的初始密度,也被考虑。对于H = 7埃和高压纳米密闭系统中,甲醇分子的固体状的六边形排列布置成垂直于板观察到这反映了分子并且部分反射镜底层的石墨结构的结构的最密填充。在较低的压力和较大的狭缝宽度,在接触层中,甲醇分子更喜欢具有C-O键定向成平行于所述壁。观察平行于壁甲醇分层结构,与接触层和根据特定的缝隙宽度中央层的附加数字。甲醇 - 水混合物,用H无限石墨狭缝= 10和20埃之间的在300K进行具有不同组合物的解决方案的模拟对于H = 10所述的纳米裂缝,在溶液中的混合物,分子的三个层形成的,但对于甲醇的所有摩尔分数,甲醇分子被排除在中心流体层。与H = 20埃纳米孔,三个以上的流体层形成和甲醇浓度增强的近所述限制板的壁相比,平均溶液的化学计量。在该溶液中的甲醇和水分子的自扩散系数显示出对溶液浓度很强的依赖性。以最小的扩散率的溶液的摩尔分数是在密闭的和非限制散装甲醇 - 水混合物中基本相同。通过AIP发布在许可证下发布。

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