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Size effects on water adsorbed on hydrophobic probes at the nanometric scale

机译:纳米尺度上疏水探针吸附水的尺寸效应

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Molecular dynamics simulations of liquid water at ambient conditions, adsorbed at the external walls of (n,n) single-walled armchair carbon nanotubes have been performed for n = 5, 9, 12. The comparison with the case of water adsorbed on graphene has also been included. The analysis of Helmholtz free energies reveals qualitatively different ranges of thermodynamical stability, eventually starting at a given threshold surface density. We observed that, in the framework of the force field considered here, water does not wet graphene nor (12,12) tubes, but it can coat thinner tubes such as (9,9) and (5,5), which indicates that the width of the carbon nanotube plays a role on wetting. On the other hand, density profiles, orientational distributions of water, and hydrogen-bond populations indicate significant changes of structure of water for the different surfaces. Further, we computed self-diffusion of water and spectral densities of water and carbon molecules, which again revealed different qualitative behavior of interfacial water depending on the size of the nanotube. The crossover size corresponds to tube diameters of around 1 nm.
机译:在n = 5、9、12的条件下,进行了在环境条件下吸附在(n,n)单壁扶手椅碳纳米管外壁上的液态水的分子动力学模拟。与石墨烯上吸附的水进行比较也包括在内。亥姆霍兹自由能的分析揭示了定性不同的热力学稳定性范围,最终从给定的阈值表面密度开始。我们观察到,在此处考虑的力场范围内,水既不润湿石墨烯也不润湿(12,12)管,但可以覆盖较细的管,例如(9,9)和(5,5),这表明碳纳米管的宽度对润湿有影响。另一方面,密度分布,水的取向分布和氢键种群表明不同表面的水的结构发生了显着变化。此外,我们计算了水的自扩散以及水和碳分子的光谱密度,这再次揭示了取决于纳米管尺寸的界面水的不同定性行为。交叉尺寸对应于约1 nm的管直径。

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