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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Fundamental Transport Mechanisms and Advancements of Graphene Oxide Membranes for Molecular Separation
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Fundamental Transport Mechanisms and Advancements of Graphene Oxide Membranes for Molecular Separation

机译:石墨烯氧化物膜进行分子分离的基础传输机制和进步

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摘要

Graphene shows excellent mechanical, electrical, and optical properties. Its unique structure and attributes have made it and its derivatives (e.g., graphene oxide (GO) and reduced graphene oxide (rGO)) promising candidates in molecular separation. Excellent molecular separation performance, including permeability and selectivity, has been demonstrated by GO membranes recently. In this review, the mechanisms, i.e., in-plane pores (defects), interlayer spacing, and functional group assisted molecular separation, of selective molecular transport through GO membranes are summarized. In addition, preparation and interlayer spacing tuning strategies of GO membranes are provided. This timely review aims to present the latest advancements in both the theoretical and experimental demonstration of GO membranes for molecular separation. Moreover, current challenges and emerging perspectives of GO membranes for separation are also discussed.
机译:石墨烯显示出优异的机械,电气和光学性质。 其独特的结构和属性使其及其衍生物(例如,石墨烯氧化物(GO)和石墨烯(RGO)的氧化物氧化物(RGO)的衍生物分子分离所希望的候选物。 最近的GO膜证明了优异的分子分离性能,包括渗透性和选择性。 在本次综述中,总结了通过GO膜的选择性分子输送的选择性分子输送的机制,即面内孔(缺陷),层间间距和官能团辅助分子分离。 此外,还提供了去膜的制备和层间间隔调整策略。 此次及时审查旨在展示用于分子分离的GO膜的理论和实验证明的最新进展。 此外,还讨论了对去分离的电流挑战和新出现的观点。

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