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Large-scale molecular-dynamics simulation of nanoscale hydrophobic interaction and nanobubble formation

机译:纳米级疏水相互作用和纳米气泡形成的大规模分子动力学模拟

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摘要

We performed large-scale molecular-dynamics simulation of nanoscale hydrophobic interaction manifested by the formation of nanobubble between nanometer-sized hydrophobic clusters at constrained equilibrium. Particular attention is placed on the tendency of formation and stability of nanobubbles in between model nanoassemblies which are composed of hydrophobic clusters (or patches) embedded in a hydrophilic substrate. On the basis of physical behavior of nanobubble formation, we observed a change from short-range molecular hydrophobic interaction to midrange nanoscopic interaction when the length scale of hydrophobe approaches to about 1 nm. We investigated the behavior of nanobubble formation with several different patterns of nonpolar-site distribution on the nanoassemblies but always keeping a constant ratio of nonpolar to polar monomer sites. Dynamical properties of confined water molecules in between nanoassemblies are also calculated.
机译:我们进行了纳米级疏水相互作用的大规模分子动力学模拟,其表现为在受约束的平衡状态下,纳米级疏水簇之间形成了纳米气泡。特别注意模型纳米组件之间的纳米气泡的形成和稳定性趋势,这些纳米组件由嵌入亲水性基材中的疏水簇(或斑块)组成。根据纳米气泡形成的物理行为,当疏水物的长度尺度接近1 nm时,我们观察到了从短程分子疏水相互作用到中程纳米相互作用的变化。我们研究了在纳米组件上具有几种不同的非极性位点分布模式的纳米气泡形成行为,但始终保持恒定的非极性和极性单体位点比率。还计算了纳米组件之间的受限水分子的动力学性质。

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