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用于高效油水分离的 Kraft 网状折纸

Kraft Mesh Origami for Efficient Oil-Water Separation.

作者信息

Liu Yu-Qing, Jiao Zhi-Zhen, Zhang Yong-Lai, Liu Yan, Jiang Hao-Bo, Han Dong-Dong, Sun Hong-Bo

机构信息

State Key Laboratory of Integrated Optoelectronics, College of Electronic Science and Engineering , Jilin University , Changchun 130012 , China.

Key Laboratory of Bionic Engineering (Ministry of Education) , Jilin University , Changchun 130022 , China.

出版信息

Langmuir. 2019 Jan 22;35(3):815-823. doi: 10.1021/acs.langmuir.8b03541. Epub 2019 Jan 7.

Abstract

Inspired from fish scales that exhibit unique underwater superoleophobicity, artificial porous membranes featuring similar wettability have been successfully developed for oil-water separation. However, most of the superoleophobic meshes are workable only for underwater oil/water separation and become disabled in air. In this article, we reported the facile fabrication of underwater superoleophobic kraft mesh and demonstrated efficient oil-water separation using kraft mesh origamis. Kraft paper that features porosity, natural hydrophilicity, and relatively high elasticity and tear resistance has been found to be an ideal candidate for developing underwater superoleophobic origami. Direct laser drilling has been employed to make microhole arrays on the kraft paper, forming a flexible mesh. The hydrophilic nature and the hierarchical microstructures that consist of microhole arrays and porous microfiber networks make the resultant kraft mesh superoleophobic underwater, enabling oil-water separation. More importantly, the kraft mesh can retain a large amount of water (2.5 times its weight under dry conditions) owing to its porous and hydrophilic structure. Thus, the wet kraft mesh became a slippery surface for oil droplets when it was taken out of the water. This unique feature makes it possible to directly fish out oil droplets from water using a simple kraft mesh origami. Direct laser drilling of paper mesh for flexible origami may open up a new route to the rational design and fabrication of oil-water separation devices.

摘要

受具有独特水下超疏油性的鱼鳞启发,人们已成功开发出具有类似润湿性的人工多孔膜用于油水分离。然而,大多数超疏油网仅适用于水下油/水分离,在空气中则无法使用。在本文中,我们报道了一种简便的方法来制备水下超疏油牛皮纸网,并展示了使用牛皮纸网折纸进行高效油水分离的过程。具有孔隙率、天然亲水性以及相对较高弹性和抗撕裂性的牛皮纸已被发现是开发水下超疏油折纸的理想材料。采用直接激光钻孔在牛皮纸上制作微孔阵列,形成一个柔性网。亲水性以及由微孔阵列和多孔微纤维网络组成的分级微观结构使得所得的牛皮纸网在水下具有超疏油性,从而实现油水分离。更重要的是,由于其多孔和亲水结构,牛皮纸网能够保留大量的水(在干燥条件下是其重量的2.5倍)。因此,当湿的牛皮纸网从水中取出时,它就变成了油滴的光滑表面。这一独特特性使得使用简单的牛皮纸网折纸直接从水中捞出油滴成为可能。对用于柔性折纸的纸网进行直接激光钻孔可能为油水分离装置的合理设计和制造开辟一条新途径。

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