...
首页> 外文期刊>Sensors >Hydration Simulations of a Carbon Nanotube, immersed in Water, according to the 3-Attractor Water Model
【24h】

Hydration Simulations of a Carbon Nanotube, immersed in Water, according to the 3-Attractor Water Model

机译:根据3-Attractor水模型,浸入水中的碳纳米管的水化模拟

获取原文
           

摘要

MC simulations of a set of zigzag ((9,0)-(14,0)) and armchair ((6,6)-(10,10)) carbon nanotubes immersed in water have been carried out in NpT-ensemble (512 water molecules, p=1 bar, T=298 K). Intermolecular interaction were described by BMW potential according to which, besides the well known linear water dimer bifurcated and inverted water dimers are metastable. In all cases, it was found that there are large periodic fluctuations of water occupancy inside the nanotubes. Decrease in the size of the nanotube diameter leads to a significant destruction of H-bond network, and to a bifurcated dimer population increase. Inverted dimer concentration relationship with the nanotube diameter is more complicated. Population maximum for inverted dimers occurs for diameters of 10-11 Å. Water features different intermolecular structures not only inside carbon nanotubes but also in the outer first hydration shells. The amount of bifurcated and inverted dimers is significantly more important in the first hydration shell than in bulk water.
机译:在NpT系综(512)中进行了一组锯齿形((9,0)-(14,0))和扶手椅((6,6)-(10,10))碳纳米管的MC模拟水分子,p = 1 bar,T = 298 K)。 BMW势描述了分子间的相互作用,据此,除了众所周知的线性水二聚体,分叉的和倒置的水二聚体是亚稳的。在所有情况下,发现在纳米管内部水的占有率存在较大的周期性波动。纳米管直径尺寸的减小导致H键网络的显着破坏,并且导致二叉体的分叉增加。反向二聚体浓度与纳米管直径的关系更为复杂。直径为10-11Å时,倒置二聚体的最大种群数。水不仅在碳纳米管内部而且在第一水合壳的外部具有不同的分子间结构。在第一水合壳中分叉和倒置二聚体的量比在散装水中显着更重要。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号