Mejri Alia, Arroyo Nicolas, Herlem Guillaume, Palmeri John, Manghi Manoel, Henn François, Picaud Fabien
Unité de Recherche SINERGIES, UFR Sciences et Techniques, Centre Hospitalier, 16 Route de Gray, 25030 Besançon, France.
Laboratoire Charles Coulomb (L2C, UMR CNRS 5221), Université Montpellier, Place Eugène Bataillon, 34090 Montpellier, France.
Nanomaterials (Basel). 2024 Jan 3;14(1):117. doi: 10.3390/nano14010117.
Nanofluidics has a very promising future owing to its numerous applications in many domains. It remains, however, very difficult to understand the basic physico-chemical principles that control the behavior of solvents confined in nanometric channels. Here, water and ion transport in carbon nanotubes is investigated using classical force field molecular dynamics simulations. By combining one single walled carbon nanotube (uniformly charged or not) with two perforated graphene sheets, we mimic single nanopore devices similar to experimental ones. The graphitic edges delimit two reservoirs of water and ions in the simulation cell from which a voltage is imposed through the application of an external electric field. By analyzing the evolution of the electrolyte conductivity, the role of the carbon nanotube geometric parameters (radius and chirality) and of the functionalization of the carbon nanotube entrances with OH or COO groups is investigated for different concentrations of group functions.
由于纳米流体学在许多领域有着众多应用,它有着非常广阔的前景。然而,要理解控制限制在纳米通道中的溶剂行为的基本物理化学原理仍然非常困难。在此,使用经典力场分子动力学模拟研究了碳纳米管中的水和离子传输。通过将一根单壁碳纳米管(带或不带均匀电荷)与两个穿孔石墨烯片相结合,我们模拟了类似于实验装置的单个纳米孔器件。在模拟单元中,石墨边缘界定了两个水和离子库,通过施加外部电场在其中施加电压。通过分析电解质电导率的变化,针对不同浓度的基团函数,研究了碳纳米管几何参数(半径和手性)以及用OH或COO基团对碳纳米管入口进行功能化的作用。