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- W4283117860 endingPage "2103" @default.
- W4283117860 startingPage "2103" @default.
- W4283117860 abstract "Membrane-based nanotechnology possesses high separation efficiency, low economic and energy consumption, continuous operation modes and environmental benefits, and has been utilized in various separation fields. Two-dimensional nanomaterials (2DNMs) with unique atomic thickness have rapidly emerged as ideal building blocks to develop high-performance separation membranes. By rationally tailoring and precisely controlling the nanochannels and/or nanoporous apertures of 2DNMs, 2DNM-based membranes are capable of exhibiting unprecedentedly high permeation and selectivity properties. In this review, the latest breakthroughs in using 2DNM-based membranes as nanosheets and laminar membranes are summarized, including their fabrication, structure design, transport behavior, separation mechanisms, and applications in liquid separations. Examples of advanced 2D material (graphene family, 2D TMDs, MXenes, metal-organic frameworks, and covalent organic framework nanosheets) membrane designs with remarkably perm-selective properties are highlighted. Additionally, the development of strategies used to functionalize membranes with 2DNMs are discussed. Finally, current technical challenges and emerging research directions of advancing 2DNM membranes for liquid separation are shared." @default.
- W4283117860 created "2022-06-20" @default.
- W4283117860 creator A5009990744 @default.
- W4283117860 creator A5052931336 @default.
- W4283117860 creator A5062416906 @default.
- W4283117860 creator A5074501060 @default.
- W4283117860 creator A5085521688 @default.
- W4283117860 date "2022-06-18" @default.
- W4283117860 modified "2023-10-16" @default.
- W4283117860 title "A Review of Advancing Two-Dimensional Material Membranes for Ultrafast and Highly Selective Liquid Separation" @default.
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