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Dynamics of molecules translocating through carbon nanotubes as nanofluidic channels

机译:分子作为碳纳米管通过碳纳米管移位的动力学

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We present a molecular dynamics simulation of molecules translocating through carbon nanotubes in vacuo and in aqueous environment for applications in engineered nanofiuidic channels. The molecules studied include both rigid and semi-flexible molecules. We show that in the absence of water solvation, the van der Waals interaction between the molecule and the nanotube wall can induce a rapid spontaneous encapsulation of the molecule inside the nanotube channel. The encapsulation process is strongly impeded for nanotubes dissolved in water due to the competition between the van der Waals, hydrophobic and hydrogen bonding interactions in the nanotube/water/molecule complex. Water adsorption inside the nanotube channel plays an important role in determining the dynamics of the spontaneous insertion process.
机译:我们提出了分子动力学模拟的分子,该分子在真空中和在水性环境中通过碳纳米管转运,用于工程化的纳米流体通道。研究的分子包括刚性和半柔性分子。我们表明,在没有水溶剂化的情况下,分子与纳米管壁之间的范德华相互作用可以诱导纳米管通道内分子的快速自发封装。由于在纳米管/水/分子复合物中的范德华力,疏水键和氢键相互作用之间的竞争,对于溶于水的纳米管的封装过程受到严重阻碍。纳米管通道内的水吸附在确定自发插入过程的动力学方面起着重要作用。

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