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首页> 外文期刊>ACS applied materials & interfaces >Molecular Insight into Water Desalination across Multilayer Graphene Oxide Membranes
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Molecular Insight into Water Desalination across Multilayer Graphene Oxide Membranes

机译:跨多层石墨烯氧化物膜的水脱盐分子洞察

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Transport of ionic solutions through graphene oxide (GO) membranes is a complicated issue because the complex and tortuous structure inside makes it very hard to clarify. Using molecular dynamics (MD) simulations, we investigated the mechanism of water transport and ion movement across multilayer GO. The significant flow rate is considerably influenced by the structural parameters of GO membranes. Because of the size effect on a shrunken real flow area, there is disagreement between the classical continuum model and nanoscaled flow. To eliminate the variance, we obtained modified geometrical parameters from density analysis and used them in the developed hydrodynamic model to give a precise depiction of water flow. Four kinds of solutions (i.e., NaCl, KCl, MgCl2, and CaCl2) and different configurational GO sheets were considered to clarify the influence on salt permeation. It is found that the abilities of permeation to ions are not totally up to the hydration radius. Even though the ionic hydration shell is greater than the opening space, the ions can also pass through the split because of the special double-deck hydration structure. In the structure of GO, a smaller layer separation with greater offsetting gaps could substantially enhance the membrane's ability to reject salt. This work establishes molecular insight into the effects of configurational structures and salt species on desalination performance, providing useful guidelines for the design of multilayer GO membranes.
机译:通过石墨烯氧化物(GO)膜来运输离子溶液是一种复杂的问题,因为内部的复杂和曲折的结构使其非常难以阐明。使用分子动力学(MD)模拟,我们调查了跨多层的水运和离子运动的机制。通过GO膜的结构参数显着影响了显着的流速。由于对缩小实际流动面积的尺寸效应,经典连续模型和纳米级流动之间存在分歧。为了消除方差,我们从密度分析获得修改的几何参数,并在开发的流体动力学模型中使用它们,以便精确地描绘水流。考虑了四种溶液(即NaCl,KCl,MgCl 2和CaCl2)和不同的配置GO片,以阐明对盐渗透的影响。发现渗透到离子的能力并不完全达到水合半径。即使离子水合壳大于开口空间,离子也可以通过特殊的双层水合结构来穿过拆分。在GO的结构中,具有更大偏移间隙的较小层分离可以大大提高膜的拒绝盐的能力。这项工作建立了分子洞察配置结构和盐种类对脱盐性能的影响,为多层去膜设计提供了有用的指导。

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