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具有持久超疏水性和超亲油性的坚固微胶囊用于高效油水分离

Robust Microcapsules with Durable Superhydrophobicity and Superoleophilicity for Efficient Oil-Water Separation.

作者信息

Luo Wenjun, Sun Dawei, Chen Shusheng, Shanmugam Logesh, Xiang Yong, Yang Jinglei

机构信息

Department of Mechanical and Aerospace Engineering, The Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong SAR, China.

College of Materials Science and Engineering, Beijing University of Technology, Beijing 100124, China.

出版信息

ACS Appl Mater Interfaces. 2020 Dec 23;12(51):57547-57559. doi: 10.1021/acsami.0c15455. Epub 2020 Dec 10.

Abstract

The poor ultraviolet (UV) resistance and insufficient solvent compatibility are challenges for long-term storage and service of oil-water separation materials in practical applications. Herein, a superhydrophobic/superoleophilic surface with nano- to microscale hierarchical structures was formed spontaneously on robust microcapsules (MCs) via in situ polymerization and a sol-gel surface treatment. The resultant MCs possessed superior UV-resistant and solvent-proof superhydrophobicity. The water contact angles (WCAs) of the MC coating remained above 160° and the sliding angles (SAs) were below 3° after 9 days of UV aging test or 20 days of nonpolar and polar aprotic solvent immersion tests. More interestingly, these MCs can be used to separate the oil phase from its aqueous emulsion effectively, achieving a high and reusable separation efficiency with over 90% oil purity after 10 cycles of filtrations even after 13 days of UV aging. Therefore, these novel MCs will exhibit effective oil-water separation performance, superior chemical stability, outstanding reusability, and long-term storage stability for promising practical applications.

摘要

在实际应用中,油水分离材料的抗紫外线(UV)性能差和溶剂兼容性不足是其长期储存和使用面临的挑战。在此,通过原位聚合和溶胶-凝胶表面处理,在坚固的微胶囊(MCs)上自发形成了具有纳米到微米级分级结构的超疏水/超亲油表面。所得的微胶囊具有优异的抗紫外线和耐溶剂超疏水性。经过9天的紫外线老化试验或20天的非极性和极性非质子溶剂浸泡试验后,微胶囊涂层的水接触角(WCA)保持在160°以上,滑动角(SA)低于3°。更有趣的是,这些微胶囊可有效地从水乳液中分离出油相,即使在紫外线老化13天后,经过10次过滤循环后,仍能实现高达90%以上的油纯度的高且可重复使用的分离效率。因此,这些新型微胶囊将展现出有效的油水分离性能、优异的化学稳定性、出色的可重复使用性以及长期储存稳定性,具有广阔的实际应用前景。

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