Ono Yûi, Yamamoto Eiji, Yasuoka Kenji
Department of Mechanical Engineering, Keio University, 3-14-1 Hiyoshi, Kohoku-ku, Yokohama 223-8522, Japan.
Department of System Design Engineering, Keio University, 3-14-1 Hiyoshi, Kohoku-ku, Yokohama 223-8522, Japan.
J Chem Phys. 2024 Aug 7;161(5). doi: 10.1063/5.0218315.
Carbon nanotubes (CNTs) have potential applications in separation membranes and nanofluidic devices. It is well known that the behavior of water molecules confined in CNTs is affected by surface functional groups and external electric fields, leading to structural changes. The understanding of these structural changes of water within various CNTs is crucial, particularly in the context of material separation. While there have been many investigations into the effects of individual specific functional groups, a comprehensive understanding of the effect of these functional groups and the electric fields they generate on water molecules remains elusive. In this study, we investigate the properties of water molecules in tip-charged CNTs of (8,8), (10,10), and (12,12) chiral vectors with positive charges at one tip and negative charges at the other tip. Abstraction of ionized functional groups as tip charges enables a comprehensive understanding that is independent of individual functional groups. The symmetrically arranged tip-charges spontaneously generate a strong and symmetric electric field in the CNTs. However, the strength and directionality of the electric field are non-uniform and complex. In the interiors of (8,8) and (10,10) tip-charged CNTs, helical and square structures, which have disturbances caused by the non-uniformity of the electric field, are observed. The properties of the water molecules differed significantly in the center of the CNTs and near positive and negative charges, despite the electric field symmetry. In (12,12) tip-charged CNTs with 12 charges, a local ring structure is observed in the vicinity of negative charges but not in the vicinity of positive charges. It is concluded that the water structures in tip-charged CNTs have different characteristics from those in plain CNTs under a uniform electric field.
碳纳米管(CNTs)在分离膜和纳米流体装置中具有潜在应用。众所周知,限制在碳纳米管内的水分子行为会受到表面官能团和外部电场的影响,从而导致结构变化。了解各种碳纳米管内水的这些结构变化至关重要,特别是在材料分离的背景下。虽然已经对单个特定官能团的影响进行了许多研究,但对这些官能团及其产生的电场对水分子影响的全面理解仍然难以捉摸。在本研究中,我们研究了手性矢量为(8,8)、(10,10)和(12,12)的尖端带电碳纳米管中水分子的性质,其中一个尖端带正电荷,另一个尖端带负电荷。将离子化官能团抽象为尖端电荷能够实现独立于单个官能团的全面理解。对称排列的尖端电荷在碳纳米管中自发产生强且对称的电场。然而,电场的强度和方向性是不均匀且复杂的。在(8,8)和(10,10)尖端带电碳纳米管内部,观察到由电场不均匀性引起干扰的螺旋和方形结构。尽管电场对称,但碳纳米管中心以及靠近正电荷和负电荷处的水分子性质存在显著差异。在带有12个电荷的(12,12)尖端带电碳纳米管中,在负电荷附近观察到局部环状结构,但在正电荷附近未观察到。得出的结论是,尖端带电碳纳米管中的水结构与均匀电场下普通碳纳米管中的水结构具有不同的特征。