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Manipulating the Flow of Nanoconfined Water by Temperature Stimulation

机译:通过温度刺激操纵纳米醌水的流动

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The manipulation of a nanoconfined fluid flow is a great challenge and is critical in both fundamental research and practical applications. Compared with chemical or biochemical stimulation, the use of temperature as controllable, physical stimulation possesses huge advantages, such as low cost, easy operation, reversibility, and no contamination. We demonstrate an elegant, simple strategy by which temperature stimulation can readily manipulate the nanoconfined water flow by tuning interfacial and viscous resistances. We show that with an increase in temperature, the water fluidity is decreased in hydrophilic nanopores, whereas it is enhanced by at least four orders of magnitude in hydrophobic nanopores, especially in carbon nanotubes with a controlled size and atomically smooth walls. We attribute these opposing trends to a dramatic difference in varying surface wettability that results from a small temperature variation.
机译:纳米醌流体流动的操纵是一个巨大的挑战,在基本研究和实际应用方面都是至关重要的。 与化学或生化刺激相比,使用温度可控,物理刺激具有巨大的优势,如低成本,操作简便,可逆性,无污染。 我们展示了一种优雅的简单策略,通过调节界面和粘性电阻,温度刺激可以容易地操纵纳米醌水流。 我们表明,随着温度的增加,水流动性在亲水纳米孔中降低,而它在疏水纳米孔中至少四个数量大小增强,特别是在具有受控尺寸和原子平滑壁的碳纳米管中。 我们将这些相反的趋势归因于不同的表面润湿性的剧烈差异,从而产生的较小温度变化。

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