Department of Chemical and Biochemical Engineering, College of Chemistry and Chemical Engineering, State Key Laboratory of Physical Chemistry of Solid Surfaces, Xiamen University, Xiamen, P. R. China.
Collaborative Innovation Center of Chemistry for Energy Materials, Xiamen University, Xiamen, P. R. China.
Electrophoresis. 2019 Aug;40(16-17):2029-2040. doi: 10.1002/elps.201800529. Epub 2019 Apr 23.
Two dimensional nanomaterials including graphene, hexagonal boron-nitride, molybdenum disulfide, etc., provide immense potentials for separation applications. However, the tradeoff between selectivity and permeability in choosing 2D nanomaterial-based membrane is inevitable, limiting the progress on separation efficiency for mass industrial applications. To target these issues, versatile strategies such as the rational design of predefined interlayer channels, membrane nanopores, and reasonable functionalization, as well as new mechanisms have been emerged. In this review, we introduce the recent progress on separation mechanisms of 2D nanomaterial-based membranes with different structures (including the interlayer channels type and the membrane nanopores type) and their inner surface functionalization. Moreover, the interface designs are discussed, in terms of employing dynamic liquid-liquid/liquid-gas interfaces, to advance the selectivity and permeability of the membranes. We further discuss the variety of separation applications based on 2D nanomaterial-based membranes. The authors hope this review will inspire the active interest of many scientists in the area of the development and application of membrane science.
二维纳米材料,包括石墨烯、六方氮化硼、二硫化钼等,为分离应用提供了巨大的潜力。然而,在选择基于二维纳米材料的膜时,选择性和渗透性之间的权衡是不可避免的,这限制了大规模工业应用中分离效率的提高。针对这些问题,已经出现了各种策略,例如合理设计预定的层间通道、膜纳米孔和合理的功能化,以及新的机制。在这篇综述中,我们介绍了具有不同结构(包括层间通道类型和膜纳米孔类型)的基于二维纳米材料的膜的分离机制及其内表面功能化的最新进展。此外,还讨论了界面设计,包括利用动态液-液/液-气界面来提高膜的选择性和渗透性。我们进一步讨论了基于二维纳米材料的膜的各种分离应用。作者希望这篇综述将激发许多科学家对膜科学的发展和应用领域的积极兴趣。