论文标题

短纳米管中的单向定向水线

Unidirectional Oriented Water Wire in Short Nanotube

论文作者

Jin, Le, Zhang, Depeng, Zhu, Yu, Yang, Xinrui, Gao, Yi, Wang, Zhigang

论文摘要

水分子的方向是小纳米管快速运输水的关键因素。人们已经认为,当水分子的方向保持在外部场下方的长纳米管中时,短纳米管中的双向水突破可以转化为单向运输。在这项工作中,基于分子动力学模拟和第一原理的计算,我们没有外部田间显示,只需要21个水分子即可在碳纳米管中固有地维持单向单个文件水。详细的分析表明,令人惊讶的结果来自水链翻转的逐步过程,这与感知的协同机制不同。考虑到细胞膜的厚度(通常为5-10 nm)大于单向水线的长度阈值,这项研究表明,在宏观时间尺度上,可能不需要外场来维持水通道中的单向流动。

The orientation of water molecules is the key factor for the fast transport of water in small nanotubes. It has been accepted that the bidirectional water burst in short nanotubes can be transformed into unidirectional transport when the orientation of water molecules is maintained in long nanotubes under the external field. In this work, based on molecular dynamics simulations and first-principles calculations, we showed without external field, it only needs 21 water molecules to maintain the unidirectional single file water intrinsically in carbon nanotube at seconds. Detailed analysis indicates that the surprising result comes from the step by step process for the flip of water chain, which is different with the perceived concerted mechanism. Considering the thickness of cell membrane (normally 5-10 nm) is larger than the length threshold of the unidirectional water wire, this study suggests it may not need the external field to maintain the unidirectional flow in the water channel at the macroscopic timescale.

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