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Graphene and graphene oxide: advanced membranes for gas separation and water purification

机译:石墨烯和氧化石墨烯:用于气体分离和水净化的高级膜

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摘要

Advanced membrane systems with excellent permeance are important for controllable separation processes, such as gas separation and water purification. The ideal candidate materials should be very thin to provide high permeance, be stiff enough to withstand working under high applied pressure, with a large surface area and micro- or nano-pore structure for excellent selectivity. Graphene oxide (GO) nanosheets are graphene with oxygen-containing functional groups, obtained by treating graphite with strong oxidizers. Graphene-based materials, by virtue of their high mechanical strength, large surface area, singleatom- thick unique two-dimensional honeycomb lattice structure, and narrow pore distribution, provide exciting opportunities to assemble novel types of advanced, ultra-thin, high-efficiency membrane devices. In this contribution, we discuss the progress made in the direction of using graphene oxide as high-efficiency membranes for gas separation and water purification. The primary focus will be on introducing the fabrication processes, exceptional properties, and innovative membrane applications of twodimensional graphene oxide materials for controllable separation processes. This state-of-the-art review will provide a platform for understanding the intricate details of gas and water molecular transport through laminar graphene oxide membranes, as well as a summary of the latest process in the field.
机译:具有出色渗透性的先进膜系统对于可控的分离过程(如气体分离和水净化)至关重要。理想的候选材料应非常薄以提供高渗透性,应足够坚硬以承受高施加压力下的工作,并具有较大的表面积和微孔或纳米孔结构,以实现出色的选择性。氧化石墨烯(GO)纳米片是具有含氧官能团的石墨烯,是通过用强氧化剂处理石墨而获得的。石墨烯基材料具有较高的机械强度,较大的表面积,单原子厚的独特二维蜂窝状晶格结构和狭窄的孔分布,为组装新型先进,超薄,高效的材料提供了令人兴奋的机会膜装置。在这项贡献中,我们讨论了在使用氧化石墨烯作为用于气体分离和水净化的高效膜方面的进展。主要焦点将放在介绍二维石墨烯氧化物材料的制造工艺,优异的性能和创新的膜应用方面,以实现可控的分离工艺。这项最新的综述将提供一个平台,用于了解通过层状氧化石墨烯膜进行的气体和水分子传输的复杂细节,以及该领域最新工艺的总结。

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