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Study of Solid Wall-Liquid Interaction on Pressure-Driven Liquid Transport Through a Nanopore in a Membrane

机译:固体驱动的液-液相互作用通过膜中纳米孔的研究

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摘要

The effect of pore wall-liquid interaction on the liquid transport through a nanopore in a membrane was studied by an improved pressure-driven non-equilibrium molecular dynamics (NEMD) method. The NEMD results showed that pressures in the reservoirs were constant and were equal to the pressures externally exerted on the self-adjusting plates that drove the flow; pressures in the nanopore decreased monotonically in the stream-wise direction when the solid wall-liquid had weak or neutral interaction, but exhibited a different distribution pattern in the case of the solid wall-liquid exhibiting strong attractive interaction. The transport ability of the nanopore depended significantly on the pore wall-liquid interaction.
机译:通过改进的压力驱动非平衡分子动力学(NEMD)方法研究了孔壁-液体相互作用对液体通过膜中纳米孔的传输的影响。 NEMD结果表明,储层中的压力是恒定的,等于外部施加在驱动流量的自调节板上的压力。当固体壁-液体具有弱的或中性的相互作用时,纳米孔中的压力沿流向单调降低,但是在固体壁-液体显示出强的吸引力相互作用的情况下,纳米孔中的压力显示出不同的分布模式。纳米孔的转运能力显着取决于孔壁-液体的相互作用。

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