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通过SiO喷涂制备用于单向水传输和油水分离的双面铜网

Fabrication of a Janus Copper Mesh by SiO Spraying for Unidirectional Water Transportation and Oil/Water Separation.

作者信息

Zhu Linfeng, Jiang Ruisong, Chen Chaolang

机构信息

School of Mechanical Engineering, Sichuan University, Chengdu, Sichuan 610065, People's Republic of China.

National United Engineering Laboratory for Advanced Bearing Tribology, Henan University of Science and Technology, Luoyang, Henan 471023, People's Republic of China.

出版信息

Langmuir. 2024 Apr 23;40(16):8694-8702. doi: 10.1021/acs.langmuir.4c00569. Epub 2024 Apr 8.

Abstract

Massive discharge of oily wastewater and frequent occurrence of offshore oil spills have posed an enormous threat to the socioeconomic and ecological environments. Janus membranes with asymmetric wettability properties have great potential for oil/water separation applications and have attracted widespread attention. However, existing Janus membranes still suffer from complex and costly manufacturing processes, low permeability, and poor recyclability. Herein, a novel and facile strategy was proposed to fabricate a Janus copper mesh with opposite wettability for unidirectional water transport and efficient oil/water separation. The hydrophilic side of the Janus copper mesh was prepared by coating it with Cu(OH) nanoneedles via a chemical oxidation method. The hydrophobic side was fabricated by coating it with hydrophobic SiO nanoparticles via a facile spraying method. The as-prepared Janus copper mesh showed asymmetric surface wettability, which can achieve unidirectional water transport and efficient oil/water separation with excellent recyclability, exhibiting great application potential for droplet manipulation and wastewater purification.

摘要

大量含油废水排放以及近海石油泄漏事件频发,对社会经济和生态环境构成了巨大威胁。具有不对称润湿性的Janus膜在油水分离应用方面具有巨大潜力,并已引起广泛关注。然而,现有的Janus膜仍存在制造工艺复杂、成本高、渗透率低和可回收性差等问题。在此,我们提出了一种新颖且简便的策略来制备具有相反润湿性的Janus铜网,用于单向水传输和高效油水分离。通过化学氧化法在Janus铜网上包覆Cu(OH)纳米针制备其亲水侧。通过简便的喷涂法在其上包覆疏水SiO纳米颗粒制备疏水侧。所制备的Janus铜网表现出不对称的表面润湿性,可实现单向水传输和高效油水分离,且具有优异的可回收性,在液滴操控和废水净化方面展现出巨大的应用潜力。

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