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闭孔结构 NiCoO 涂层泡沫镍用于稳定高效的油水分离。

Closed Pore Structured NiCoO-Coated Nickel Foams for Stable and Effective Oil/Water Separation.

机构信息

Key Laboratory of Bio-Inspired Smart Interfacial Science and Technology of Ministry of Education, School of Chemistry, Beihang University , Beijing 100191, P. R. China.

Key Laboratory for Micro/Nano-Optoelectronic Devices of Ministry of Education, School of Physics and Electronics, Hunan University , Changsha 410082, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2017 Aug 30;9(34):29177-29184. doi: 10.1021/acsami.7b05385. Epub 2017 Aug 18.

Abstract

To solve the serious problem caused by oily wastewater pollution, unique interface designs, for example, membranes with superwetting properties such as superhydrophobicity/superoleophilicity and superhydrophilicity/underwater superoleophobicity, provide a good way to achieve oil/water separation. Here, inspired by the liquid storage property of the honeycomb structure, we propose a strategy to fabricate NiCoO-coated nickel foams for stable and efficient oil/water separation. NiCoO with a closed-pore structure was formed by assembling nanoflakes with a micro/nanoscale hierarchical structure. Compared with nickel foam coated by NiCoO with an open-pore structure (NiCoO nanowires), the enclosed nanostructure of NiCoO nanoflakes can firmly hold water for a more stable superhydrophilic/underwater superoleophobic interface. As a consequence, the NiCoO-nanoflake-coated nickel foam has a larger oil breakthrough pressure than the NiCoO-nanowire-coated nickel foam because of a slightly larger oil advancing angle and a lower underwater oil adhesion force, which makes it more stable and efficient for oil/water separation. Moreover, the NiCoO-coated nickel foams have excellent chemical and mechanical stability, and they are reusable for oil-water separation. This work will be beneficial for the design and development of stable underwater superoleophobic self-cleaning materials and related device applications, such as oil/water separation.

摘要

为了解决含油污水污染带来的严重问题,独特的界面设计,例如具有超润湿性能的膜,如超疏水/超亲油性和超亲水/水下超疏油性,为实现油水分离提供了一种很好的方法。在这里,受蜂窝结构液体储存特性的启发,我们提出了一种策略,用于制造用于稳定和高效油水分离的 NiCoO 涂层镍泡沫。由具有微/纳尺度分级结构的纳米片组装而成的 NiCoO 形成了具有闭孔结构的 NiCoO。与具有开放孔结构的 NiCoO 涂层镍泡沫(NiCoO 纳米线)相比,NiCoO 纳米片的封闭纳米结构可以更稳定地保持水,从而形成更稳定的超亲水/水下超疏油界面。因此,由于油前进角略大,水下油附着力较低,NiCoO 纳米片涂层镍泡沫的油突破压力大于 NiCoO 纳米线涂层镍泡沫,因此更稳定高效地进行油水分离。此外,NiCoO 涂层镍泡沫具有优异的化学和机械稳定性,可重复用于油水分离。这项工作将有利于设计和开发稳定的水下超疏油自清洁材料以及相关的器件应用,如油水分离。

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