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首页> 外文期刊>Nanoscale >Fast water channeling across carbon nanotubes in far infrared terahertz electric fields
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Fast water channeling across carbon nanotubes in far infrared terahertz electric fields

机译:快在碳纳米管在水通道远红外线太赫兹电场

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Using molecular dynamics simulations, we investigate systematically the water permeation properties across single-walled carbon nanotubes (SWCNT) in the presence of the terahertz electric field (TEF). With the TEF normal to the nanotube, the fracture of the hydrogen bonds results in the giant peak of net fluxes across the SWCNT with a three-fold enhancement centered around 14 THz. The phenomenon is attributed to the resonant mechanisms, characterized by librational, rotational, and rotation-induced responses of in-tube polar water molecules to the TEF. For the TEF along the symmetry axis of the nanotube, the vortical modes for resonances and consequently the enhancement of net fluxes are greatly suppressed by the alignment of polar water along the symmetry axis, which characterizes the quasi one-dimensional feature of the SWCNT nicely. The resonances of water molecules in the TEF can have potential applications in the high-flux device designs used for various purposes.
机译:使用分子动力学模拟,我们调查系统的水渗透属性在单壁碳纳米管(SWCNT)太赫兹电场的存在字段(微软)。氢键的断裂导致的巨大的峰值在SWCNT的净通量三个方面增强是以14太赫兹。这种现象是由于共振机制,以天平动,旋转,rotation-induced反应微软目前管极性水分子。微软目前沿对称轴的纳米管,旋涡的共鸣,因此模式净通量大大增强抑制极水的对齐对称轴,准的特点的一维特征SWCNT好。水分子的共振微软潜在的应用在高通量装置上设计用于各种目的。

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