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首页> 外文期刊>Industrial & Engineering Chemistry Research >MXenes and Other Two-Dimensional Materials for Membrane Gas Separation: Progress, Challenges, and Potential of MXene-Based Membranes
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MXenes and Other Two-Dimensional Materials for Membrane Gas Separation: Progress, Challenges, and Potential of MXene-Based Membranes

机译:MXenes and Other Two-Dimensional Materials for Membrane Gas Separation: Progress, Challenges, and Potential of MXene-Based Membranes

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摘要

Gas separation membranes incorporating two-dimensional (2D) materials have received considerable attention in recent years, as these membranes have shown outstanding physical, structural, and thermal properties and high permeability-selectivity. The reduced thickness and diversity of the gas transport mechanisms through in-plane pores (intrinsic defects), in-plane slitlike pores, or plane-to-plane interlayer galleries provide the membranes with a significant sieving ability for energy-efficient gas separation. The discovery of 2D transition metal carbides/nitrides materials, MXenes, has provided new opportunities in the gas separation membrane area because of their hydrophilicity, rich chemistry, high flexibility, and mechanical strength. This Review puts into perspective recent advances in 2D-material-based gas separation membranes. It discusses research opportunities mainly in MXene-based gas membranes, highlights modification approaches for tuning the in-plane and plane-to-plane nanoslits, explains governing mechanisms of transport through these membranes, and compares their advantages and disadvantages with those of other 2D materials. It also discusses current challenges and provides prospects in this area.
机译:气体分离膜结合二维(2 d)材料已经收到近年来相当大的关注,因为这些膜表现出杰出的物理、结构、热性能和高permeability-selectivity。和多样性的气体传输机制通过平面毛孔(内在缺陷),平面slitlike毛孔或plane-to-plane层间画廊提供的膜节能的重要筛分能力气体分离。MXenes,金属碳化物、氮化物材料在气体分离提供了新的机会因为他们的亲水性膜区域,丰富的化学、高灵活性、和机械的力量。最近的进步2 d-material-based气体分离膜。机会主要在MXene-based气体膜,突出了修改方法调优平面和plane-to-plane nanoslits,解释了交通管理机制通过这些膜,并比较他们的与其他的优点和缺点二维材料。挑战和在这一领域提供了前景。

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