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Carbon nanotube-based coatings to induce flow enhancement in hydrophilic nanopores

机译:基于碳纳米管的涂层在亲水性纳米孔中诱导流动增强

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摘要

With the emergence of the field of nanofluidics, the transport of water in hydrophilic nanopores has attracted intensive research due to its many promising applications. Experiments and simulations have found that flow resistance in hydrophilic nanochannels is much higher than those in macrochannels. Indeed, this might be attributed to significant fluid adsorption on the channel walls and to the effect of the increased surface to volume ratio inherent to the nanoconfinement. Therefore, it is desirable to explore strategies for drag reduction in nanopores.Recently, studies have found that carbon nanotubes (CNTs) feature ultrafast waterflow rates which result in flow enhancements of 1 to 5 orders of magnitude compared to Hagen-Poiseuille predictions. In the present study, CNT-based coatings are considered to induce water flow enhancement in silica nanopores with different radius. We conduct atomistic simulations of pressurized water flow inside tubularsilica nanopores with and without inner coaxial carbon nanotubes. In particular, we compute water density and velocity profiles, flow enhancement and slip lengthsto understand the drag reduction capabilities of single- and multi-walled carbon nanotubes implemented as coating material in silica nanopores.
机译:随着纳米流体领域的出现,亲水性纳米孔中水的运输由于其许多有前途的应用而吸引了广泛的研究。实验和模拟发现,亲水性纳米通道中的流动阻力远高于大通道中的流动阻力。实际上,这可能归因于在通道壁上的大量流体吸附以及纳米约束固有的增加的表面体积比的作用。因此,有必要探索减少纳米孔中的阻力的策略。最近,研究发现碳纳米管(CNT)具有超快的水流速,与Hagen-Poiseuille的预测相比,可将流速提高1至5个数量级。在本研究中,基于CNT的涂层被认为可以诱导不同半径的二氧化硅纳米孔中水流的增强。我们对有或没有内部同轴碳纳米管的管状二氧化硅纳米孔内的加压水流进行原子模拟。特别是,我们计算水的密度和速度分布,流量增强和滑移长度,以了解在二氧化硅纳米孔中用作涂层材料的单壁和多壁碳纳米管的减阻能力。

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