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由原位组装的金属酚醛网络和金属有机框架构建的超润湿性油/水分离膜

Superwetting Oil/Water Separation Membrane Constructed from In Situ Assembled Metal-Phenolic Networks and Metal-Organic Frameworks.

作者信息

Wang Ruoxi, Zhao Xueting, Jia Ning, Cheng Lijuan, Liu Lifen, Gao Congjie

机构信息

Center for Membrane Separation and Water Science & Technology , Zhejiang University of Technology , Hangzhou 310014 , China.

College of Chemical Engineering , Zhejiang University of Technology , Hangzhou 310014 , China.

出版信息

ACS Appl Mater Interfaces. 2020 Feb 26;12(8):10000-10008. doi: 10.1021/acsami.9b22080. Epub 2020 Feb 17.

DOI:10.1021/acsami.9b22080
PMID:32013382
Abstract

Superwetting membranes with opposite wettability to oil and water have drawn intense attention in recent years for oil/water separation. Superhydrophilic and underwater superoleophobic membranes have shown unique advantages in the efficient treatment of oily wastewater containing oil-in-water emulsions. Facile interfacial engineering and microstructural design of the hierarchical architectures and the hydrophilic chemistry is of significance but still challenging. In this study, a hydrophilic hierarchical hybrid layer derived from metal-phenolic network (MPN)/metal-organic framework (MOF) synergy is constructed on the membrane surface via a proposed coordination-directed alternating assembly strategy. The assembly of MPN multilayers provides a hydrophilic chemical basis, and the assembly of MOF nanocrystals provides a hierarchical structural basis. Notably, the coordination interfacial interaction enables the formation of well-defined hydrophilic hierarchical architectures. The obtained membrane is thus endowed with robust superhydrophilicity, underwater superoleophobicity, and anti-oil-adhesion capability, which make it capable of highly efficient oil-water separation with high water permeance (above 6300 L/m h), high oil rejection (above 99.4%), and recyclable antifouling property. The high performance of the developed superwetting membrane makes it a competitive candidate for oil/water separation. Additionally, the demonstrated MPN/MOF assembly strategy may offer new prospects for the facile and versatile design of other superwetting materials.

摘要

近年来,对油和水具有相反润湿性的超润湿膜在油水分离方面引起了广泛关注。超亲水和水下超疏油膜在高效处理含油包水乳液的含油废水方面显示出独特优势。对分级结构和亲水化学进行简便的界面工程和微观结构设计具有重要意义,但仍具有挑战性。在本研究中,通过提出的配位导向交替组装策略,在膜表面构建了一种源自金属-酚醛网络(MPN)/金属有机框架(MOF)协同作用的亲水分级杂化层。MPN多层膜的组装提供了亲水性化学基础,而MOF纳米晶体的组装提供了分级结构基础。值得注意的是,配位界面相互作用能够形成明确的亲水分级结构。所制备的膜因此具有强大的超亲水性、水下超疏油性和抗油粘附能力,使其能够实现高效的油水分离,具有高水通量(高于6300 L/m²·h)、高脱油率(高于99.4%)和可循环的抗污染性能。所开发的超润湿膜的高性能使其成为油水分离的有竞争力候选材料。此外,所展示的MPN/MOF组装策略可能为其他超润湿材料的简便通用设计提供新的前景。

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