All in one doubly pillared MXene membrane for excellent oil/water separation, pollutant removal, and anti-fouling performance

IF 5.9 4区 化学 Q1 CHEMISTRY, INORGANIC & NUCLEAR
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Abstract

Given the diversity and complexity of coexisting oil/dyes/heavy metal ions/microorganisms in wastewater and volatile organic compounds (VOCs) in the air, developing separation materials featured in higher separation efficiency and lower energy consumption for oil and water separation, pollutant removal, and anti-fouling is urgently needed, but it remains a major challenge till now. Herein, a multifunctional Ti3C2 MXene membrane with unique double pillar support was proposed by liquid phase ultrasonication and vacuum filtration to overcome the above challenge. Introducing cetyl-trimethyl ammonium bromide (CTAB) and calcium chloride/sodium alginate (CaCl2/SA) to the MXene membrane as crossed double pillars and superhydrophilic surface increases the tolerance and wettability of the membrane. The fabricated doubly pillared MXene (d-Ti3C2) membrane exhibits superior oil/water (O/W) separation efficiency (99.76%) with flux (1.284 L m−2 h−1) for canola oil and organic dye removing efficiency for methyl blue (MB) 99.85%, malachite green (MG) 100%, and methyl violet (MV) 99.72%, respectively, which is 1.05, 1.44, 1.22, and 1.28 fold compared with pre-pillared Ti3C2 (p-Ti3C2). The superior anti-oil/dye/fouling is attributed to lower oil conglutination, high hydrophily, and antibacterial activity. The versatile MXene membrane also shows distinguished separation of VOCs (η > 99%) from polluted air. The experimental and molecular dynamics (MD) computational simulation results illustrate that the superior separation efficiency of the Ti3C2 MXene membrane is ascribed to the unique doubly pillared space channel. This study paves a new road to further research on one step integration strategy for complex O/W separation, wastewater and VOCs removal, and anti-fouling via tuning nano/macro architecture.

Abstract Image

Abstract Image

一体化双层 MXene 膜可实现出色的油水分离、污染物去除和防污性能
鉴于废水中油类/染料/重金属离子/微生物以及空气中挥发性有机化合物(VOCs)共存的多样性和复杂性,开发具有更高分离效率和更低能耗的分离材料用于油水分离、污染物去除和防污迫在眉睫,但迄今为止仍是一项重大挑战。为解决上述难题,本文提出了一种具有独特双支柱支撑的多功能 TiC MXene 膜,采用液相超声和真空过滤技术。在 MXene 膜中引入十六烷基三甲基溴化铵(CTAB)和氯化钙/海藻酸钠(CaCl/SA)作为交叉双支柱和超亲水表面,提高了膜的耐受性和润湿性。制成的双柱 MXene(d-TiC)膜对菜籽油的油/水(O/W)分离效率(99.76%)和通量(1.284 L m h)以及对甲基蓝(MB)99.85%、孔雀石绿(MG)100% 和甲基紫(MV)99.72% 的有机染料去除效率都很高,分别是预柱 TiC(p-TiC)的 1.05 倍、1.44 倍、1.22 倍和 1.28 倍。优异的抗油/染料/污垢性能归因于较低的油凝结率、高亲水性和抗菌活性。多功能 MXene 膜还能出色地分离污染空气中的挥发性有机化合物(η>99%)。实验和分子动力学(MD)计算模拟结果表明,TiC MXene 膜卓越的分离效率归功于其独特的双柱空间通道。这项研究为进一步研究通过调整纳米/微米结构实现复杂的 O/W 分离、废水和 VOCs 去除以及防污的一步集成策略铺平了新的道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
结构化学
结构化学 化学-晶体学
CiteScore
4.70
自引率
22.70%
发文量
5334
审稿时长
13 days
期刊介绍: Chinese Journal of Structural Chemistry “JIEGOU HUAXUE ”, an academic journal consisting of reviews, articles, communications and notes, provides a forum for the reporting and discussion of current novel research achievements in the fields of structural chemistry, crystallography, spectroscopy, quantum chemistry, pharmaceutical chemistry, biochemistry, material science, etc. Structural Chemistry has been indexed by SCI, CA, and some other prestigious publications.
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