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Atomistic understandings of reduced graphene oxide as an ultrathin-film nanoporous membrane for separations

机译:还原氧化石墨烯作为分离用超薄膜纳米多孔膜的原子学认识

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摘要

The intrinsic defects in reduced graphene oxide (rGO) formed during reduction processes can act as nanopores, making rGO a promising ultrathin-film membrane candidate for separations. To assess the potential of rGO for such applications, molecular dynamics techniques are employed to understand the defect formation in rGO and their separation performance in water desalination and natural gas purification. We establish the relationship between rGO synthesis parameters and defect sizes, resulting in a potential means to control the size of nanopores in rGO. Furthermore, our results show that rGO membranes obtained under properly chosen synthesis conditions can achieve effective separations and provide significantly higher permeate fluxes than currently available membranes.
机译:在还原过程中形成的还原氧化石墨烯(rGO)中的固有缺陷可以充当纳米孔,使rGO成为有前途的超薄膜分离候选材料。为了评估rGO在此类应用中的潜力,采用分子动力学技术来了解rGO中的缺陷形成及其在水脱盐和天然气净化中的分离性能。我们建立了rGO合成参数和缺陷尺寸之间的关系,从而找到了控制rGO中纳米孔尺寸的潜在手段。此外,我们的结果表明,在适当选择的合成条件下获得的rGO膜可以实现有效的分离,并提供比当前可用膜更高的渗透通量。

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