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首页> 外文期刊>Behavioural processes >Functionalized graphene as a nanostructured membrane for removal of copper and mercury from aqueous solution: A molecular dynamics simulation study
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Functionalized graphene as a nanostructured membrane for removal of copper and mercury from aqueous solution: A molecular dynamics simulation study

机译:官能化石墨烯作为纳米结构膜,用于从水溶液中除去铜和汞:分子动力学模拟研究

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The purpose of the present study was to investigate the removal of copper and mercury using functionalized graphene as a nanostructured membrane. The molecular dynamics simulation method was used to investigate the removal ability of these ions from aqueous solution using functionalized graphene membrane. The studied systems included a functionalized graphene membrane which was placed in the aqueous ionic solution of CuCl_2 and HgCl_2. An external electrical field was applied along the z axis of the system. The results indicated that the application of electrical field on the system caused the desired ions to pass through the functionalized graphene membrane. The Fluorinated pore (F-pore) terminated graphene selectively conducted Cu~(2+) and Hg~(2+) ions. The calculation of the potential of mean force of ions revealed that Cu~(2+) and Hg~(2+) ions face a relatively small energy barrier and could not pass through the F-pore graphene unless an external electrical field was applied upon them. In contrast, the energy barrier for the Cl~- ion was large and it could not pass through the F-pore graphene. The findings of the study indicate that the permeation of ions across the graphene was a function of applied electrical fields. The findings of the present study are based on the detailed analysis and consideration of potential of mean force and radial distribution function curves.
机译:本研究的目的是研究使用官能化石墨烯作为纳米结构膜去除铜和汞。分子动力学模拟方法用于研究使用官能化石墨烯膜与水溶液中这些离子的去除能力。研究包括官能化的石墨烯膜,其置于CuCl_2和HgCl_2的水性离子溶液中。沿系统的Z轴施加外部电场。结果表明,电场在系统上的应用导致所需的离子通过官能化的石墨烯膜。氟化孔(F孔)终止石墨烯选择性地进行Cu〜(2+)和Hg〜(2+)离子。计算离子平均力的潜力显示,Cu〜(2+)和Hg〜(2+)离子面对相对小的能量屏障,除非施加外部电场,否则不能通过F孔石墨烯他们。相反,Cl〜离子的能量屏障很大,它不能通过F孔石墨烯。该研究的发现表明,石墨烯上的离子渗透是应用电场的函数。本研究的发现基于对平均力和径向分布函数曲线的潜在的详细分析和考虑。

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