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Ab InitioDensity Functional Theory Investigation of the Interaction between Carbon Nanotubes and Water Molecules during Water Desalination Process

机译:AB启动力功能理论研究水脱盐过程中碳纳米管与水分子相互作用

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摘要

Density functional theory calculations using B3LYP/3-21G level of theory have been implemented on 6 carbon nanotubes (CNTs) structures (3 zigzag and 3 armchair CNTs) to study the energetics of the reverse osmosis during water desalination process. Calculations of the band gap, interaction energy, highest occupied molecular orbital, lowest unoccupied molecular orbital, electronegativity, hardness, and pressure of the system are discussed. The calculations showed that the water molecule that exists inside the CNT is about 2-3 Å away from its wall. The calculations have proven that the zigzag CNTs are more efficient for reverse osmosis water desalination process than armchair CNTs as the reverse osmosis process requires pressure of approximately 200 MPa for armchair CNTs, which is consistent with the values used in molecular dynamics simulations, while that needed when using zigzag CNTs was in the order of 60 MPa.
机译:使用B3LYP / 3-21G理论的密度函数理论计算已经在6个碳纳米管(CNT)结构(3 Zigzag和3 Armchair CNT)上实施,研究了水脱盐过程中反渗透的能量。讨论了带隙,相互作用,最高占用的分子轨道,最低未占用的分子轨道,电负性,硬度和压力的计算。计算显示,在CNT内部存在的水分子远离其壁的约2-3埃。计算结果证明,由于反渗透过程的反渗透水脱盐过程更有效,因为反渗透过程需要大约200MPa的扶手椅CNT,这与用于分子动力学模拟的值一致的压力当使用Zigzag CNT的数量为60MPa时。

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