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Influence of the presence of cations on the water and salt dynamics inside layered graphene oxide (GO) membranes

机译:阳离子的存在对水的影响和盐动态分层的氧化石墨烯(去)膜

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Although over the past few years, graphene oxide (GO) has emerged as a promising membrane material, the applicability of layered GO membranes in water purification/seawater desalination is still a challenging issue because of the undesirable swelling of GO laminates in the aqueous environment. One of the ways to tune the interlayer spacing and to arrest the undesirable swelling of layered GO membranes in the aqueous environment is to intercalate the interlayer spacing of the GO laminates with cations. Although the cation intercalation imparts stabilization to GO laminates in the aqueous environment, their effect on the performance of the membrane is yet to be addressed in detail. In the present study we have investigated the effect of cation intercalation on the performance of layered GO membranes using molecular dynamics simulation. For the same interlayer spacing, the cation intercalated layered GO membranes have a higher water flux as compared to the corresponding pristine layered GO membranes. In the presence of the cations, the water molecules inside the interlayer gallery get more compactly packed. The presence of the cations also increases the stability of the hydrogen bond network among the water molecules inside the membrane. This can be attributed to slow water reorientation dynamics inside the interlayer gallery in the presence of the cations. The synergistic effect of all these changes is that the water permeability through the cation intercalated layered GO membranes is higher as compared to that through the corresponding pristine layered GO membranes. On the other hand, the intercalation of the cations (K+, Mg2+) leads to higher rejection of Na+ ions whereas the rejection of Cl- ions slightly decreases.
机译:尽管在过去的几年中,石墨烯氧化物(去)已经成为一种很有前途的膜材料,分层的适用性膜在水净化/海水海水淡化仍然是一个具有挑战性的问题,因为不良的肿胀的分层水环境。层间间距和逮捕不受欢迎的肿胀分层去膜水环境是插入层间间距与分层阳离子。给予稳定的层压制品水环境中,他们的影响膜的性能详细处理。研究了阳离子夹层的影响在分层的去膜使用的性能分子动力学模拟。层间间距,阳离子插入分层的去膜水通量更高而相应的原始分层膜。水分子在层间画廊更紧了。阳离子也增加的稳定性水分子之间的氢键网络在膜。缓慢的水重新定位内部动力学层间画廊的存在阳离子。变化的透水性阳离子间分层去膜通过更高的比相应的原始层膜。另一方面,阳离子的夹层(K +、Mg2 +)导致更高的Na +离子排斥而略有Cl -离子的拒绝减少。

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