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通过层间间距调控提高MXene膜用于油水分离的效率和稳定性

Improved Efficiency and Stability of MXene Membranes via Interlayer Space Tuning for Oily Water Separation.

作者信息

Younas Hassan, Ahmad Hilal, Baig Nadeem, Aljundi Isam H

出版信息

Langmuir. 2024 Oct 1;40(39):20452-20463. doi: 10.1021/acs.langmuir.4c01887. Epub 2024 Aug 23.

DOI:10.1021/acs.langmuir.4c01887
PMID:39178141
Abstract

Surfactant-stabilized oil-in-water emulsions are a major environmental concern due to their severe consequences for aquatic organisms and humans. Two-dimensional materials, particularly MXenes, are widely used in various applications and could be used in designing advanced membranes. The narrow interlayer spacing and intrinsic oxidation severely limit mass diffusion and induce poor stability, respectively, of MXene-based separating layers on the membrane support, rendering it challenging to use for oil-water separation. Herein, a high-performing, minimally defective MXene membrane with large -spacing was fabricated. The -spacing of the MXene sheets was controlled using Si-based species as the intercalating agents. The modified MXene-based membrane (ultrasonication-assisted exfoliated MXene with Si pillars) (U-MX-Si) exhibited an enlarged interlayer spacing of 11 Å, increased surface energy of 41 mJ·m, and less defective separating layer compared to that of pristine MXene, which was due to enhanced interlayer spacing. This phenomenon induced a higher degree of exfoliated sheets that facilitated better MXene sheet self-assembly on the membrane support, thereby resulting in high separation efficiency (99%). An increase in the surface energy of the U-MX-Si membrane caused a constant permeate flux during operation, which demonstrated their practical implications. This study presents an important pathway for designing MXene-based membranes for separation applications.

摘要

表面活性剂稳定的水包油乳液是一个重大的环境问题,因为它们会对水生生物和人类造成严重后果。二维材料,特别是MXenes,在各种应用中被广泛使用,并且可用于设计先进的膜。狭窄的层间距和固有氧化分别严重限制了基于MXene的膜支撑体上分离层的质量扩散并导致稳定性差,这使得其用于油水分离具有挑战性。在此,制备了一种具有大间距的高性能、缺陷最少的MXene膜。使用硅基物质作为插层剂来控制MXene片层的间距。与原始MXene相比,改性的基于MXene的膜(具有硅柱的超声辅助剥离MXene)(U-MX-Si)表现出11 Å的扩大层间距、41 mJ·m的增加表面能以及缺陷更少的分离层,这是由于层间距增加所致。这种现象导致更高程度的剥离片层,有利于MXene片层在膜支撑体上更好地自组装,从而产生高分离效率(99%)。U-MX-Si膜表面能的增加导致运行过程中渗透通量恒定,这证明了它们的实际意义。本研究为设计用于分离应用的基于MXene的膜提供了一条重要途径。

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