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基于石墨烯的分离膜中受限质量传输的理论与模拟进展

Theory and simulation developments of confined mass transport through graphene-based separation membranes.

作者信息

Zhang Zhijie, Huang Linjun, Wang Yanxin, Yang Kun, Du Yingchen, Wang Yao, Kipper Matt J, Belfiore Laurence A, Tang Jianguo

机构信息

Institute of Hybrid Materials, National Center of International Research for Hybrid Materials Technology, National Base of International Science & Technology Cooperation, College of Materials Science and Engineering, Qingdao University, Qingdao 266071, P. R. China.

出版信息

Phys Chem Chem Phys. 2020 Mar 21;22(11):6032-6057. doi: 10.1039/c9cp05551g. Epub 2020 Mar 3.

Abstract

Graphene-based membranes exhibit enormous potential in water desalination and purification because of their ultrathin structure, superhigh water flux, tunable physicochemical properties and precise ionic and molecular sieving performance. However, the transport behavior and mechanism of water, ions and other molecules across nanopores and nanocapillaries in the separation process, especially the confined mass transport, remain unclear, imposing severe limitation on many applications. Therefore, extensive experimental studies and theoretical calculation simulations have been carried out to investigate their unique structure and separation properties, particularly to explore the associated confined mass transport mechanism. Herein, an overview of the theory and simulation developments of graphene-based separation membranes based on confined mass transport is provided, attempting to open up an avenue for designing graphene-based materials as a new generation of separation membranes in the water purification field. This perspective focuses on five topics: (1) membrane transport models and simulation methods; (2) comparison between membrane simulations and experiments; (3) confined mass transport studies of graphene-based membranes with the assistance of molecular dynamics (MD) simulations; (4) fabrication of multifunctional composite membranes; and (5) future research trends in graphene-based membranes.

摘要

基于石墨烯的膜由于其超薄结构、超高水通量、可调节的物理化学性质以及精确的离子和分子筛分性能,在水脱盐和净化方面展现出巨大潜力。然而,在分离过程中,水、离子和其他分子在纳米孔和纳米毛细管中的传输行为及机制,尤其是受限质量传输,仍不明确,这对许多应用造成了严重限制。因此,人们开展了广泛的实验研究和理论计算模拟,以探究它们独特的结构和分离性能,特别是探索相关的受限质量传输机制。在此,本文提供了基于受限质量传输的石墨烯基分离膜的理论和模拟进展综述,试图为设计用于水净化领域的新一代分离膜的石墨烯基材料开辟一条道路。这一观点聚焦于五个主题:(1)膜传输模型和模拟方法;(2)膜模拟与实验的比较;(3)借助分子动力学(MD)模拟对基于石墨烯的膜的受限质量传输研究;(4)多功能复合膜的制备;以及(5)基于石墨烯的膜的未来研究趋势。

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