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Orientations of special water dipoles that accelerate water molecules exiting from carbon nanotube
  • ISSN号:1000-0887
  • 期刊名称:Applied Mathematics and Mechanics
  • 时间:0
  • 页码:1101-1108
  • 分类:O561.3[理学—原子与分子物理;理学—物理] TB383[一般工业技术—材料科学与工程]
  • 作者机构:[1]Department of Physics,Shandong University,Jinan 250100,Shandong Province,P.R.China, [2]Institute of Systems Biology,Shanghai University,Shanghai 200444,P.R.China, [3]Shanghai Institute of Applied Physics,Chinese Academy of Scineces,Shanghai 201800,P.R.China
  • 相关基金:supported by the National Natural Science Foundation of China (No. 10825520); the Innovation Program of Shanghai Municipal Education Commission (No. 11YZ20)
  • 相关项目:理论物理和生物交叉研究
作者: Hai Ping FANG|
中文摘要:

One-dimensional ordered water molecules entering and exiting from a carbon nanotube with an appropriate radius are studied with molecular dynamics simulations.It can be found that a water molecule near the nanotube end is more likely to be expelled from the nanotube if its dipole is almost perpendicular to the nanotube axis.The key to this observation is that those water molecules are closer to the wall of the nanotube away from the equilibrium position of the Lennar-Jones (LJ) potential.Thus,the interaction energy for those water molecules is relatively high.There are two particular structures of the perpendicular water molecule depending on the dipole direction of the adjacent water molecule in the nanotube.Although the probabilities of these structures are quite small,their contributions to the net flux across the nanotube end are approximately equal to the predominant structures.The present findings further show the possibility of controlling the water flow by regulating the dipole directions of the water molecules inside the nanochannels.

英文摘要:

One-dimensional ordered water molecules entering and exiting from a carbon nanotube with an appropriate radius are studied with molecular dynamics simulations.It can be found that a water molecule near the nanotube end is more likely to be expelled from the nanotube if its dipole is almost perpendicular to the nanotube axis.The key to this observation is that those water molecules are closer to the wall of the nanotube away from the equilibrium position of the Lennar-Jones (LJ) potential.Thus,the interaction energy for those water molecules is relatively high.There are two particular structures of the perpendicular water molecule depending on the dipole direction of the adjacent water molecule in the nanotube.Although the probabilities of these structures are quite small,their contributions to the net flux across the nanotube end are approximately equal to the predominant structures.The present findings further show the possibility of controlling the water flow by regulating the dipole directions of the water molecules inside the nanochannels.

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期刊信息
  • 《应用数学和力学》
  • 中国科技核心期刊
  • 主管单位:重庆交通大学
  • 主办单位:重庆交通大学
  • 主编:钟万勰
  • 地址:重庆南岸区重庆交通大学90信箱
  • 邮编:400074
  • 邮箱:applmathmech@cqjtu.edu.cn
  • 电话:023-62652450
  • 国际标准刊号:ISSN:1000-0887
  • 国内统一刊号:ISSN:50-1060/O3
  • 邮发代号:78-21
  • 获奖情况:
  • 国际工程索引(EI)收录期刊,我国力学类核心期刊,中国期刊方阵“双效”期刊
  • 国内外数据库收录:
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  • 被引量:8965