Su Jiaye, Yang Keda
Department of Applied Physics, Nanjing University of Science and Technology, Nanjing, Jiangsu, 210094, China.
Supercomputing Center, Computer Network Information Center, Chinese Academy of Sciences, Beijing, 100190, China.
Chemphyschem. 2015 Nov 16;16(16):3488-92. doi: 10.1002/cphc.201500575. Epub 2015 Sep 18.
The transport of water molecules through carbon nanotubes (CNTs) is of primary importance for understanding water-mediated biological activities as well as for the design of novel nanoporous materials. Herein, we analyze the water flow through CNTs by using molecular dynamics simulations with the hope of finding basic parameters determining the flow value. Of particular interest is that a simple equation as a function of water diffusion, occupancy and CNT size, can well describe the water flow through CNTs with different sizes. Specifically, both the simulation and equation flow exhibit power law relations with the CNT diameter and length, where the two exponents are close to each other. The water occupancy and translocation time also demonstrate interesting relations with the CNT size. The water dipole orientations and density profiles are also sensitive to the change of CNT size. These results greatly enhance our knowledge on the nature of water flow through CNTs and are helpful in predicting the water flow of CNTs up to the experimental length scale.
水分子通过碳纳米管(CNTs)的传输对于理解水介导的生物活性以及新型纳米多孔材料的设计至关重要。在此,我们通过分子动力学模拟分析了水分子通过碳纳米管的流动情况,希望找到决定流量值的基本参数。特别值得关注的是,一个作为水扩散、占有率和碳纳米管尺寸函数的简单方程,能够很好地描述水分子通过不同尺寸碳纳米管的流动。具体而言,模拟和方程流量均与碳纳米管的直径和长度呈现幂律关系,其中两个指数彼此接近。水的占有率和转运时间也与碳纳米管尺寸呈现出有趣的关系。水偶极子取向和密度分布也对碳纳米管尺寸的变化敏感。这些结果极大地增进了我们对水分子通过碳纳米管本质的认识,并有助于预测直至实验长度尺度的碳纳米管内的水流情况。