Liu Yu-Qing, Zhang Yong-Lai, Fu Xiu-Yan, Sun Hong-Bo
State Key Laboratory on Integrated Optoelectronics, College of Electronic Science and Engineering, and ‡College of Physics, Jilin University , 2699 Qianjin Street, Changchun 130012, China.
ACS Appl Mater Interfaces. 2015 Sep 23;7(37):20930-6. doi: 10.1021/acsami.5b06326. Epub 2015 Sep 8.
Inspired from fish scales that exhibit unique underwater superoleophobicity because of the presence of micronanostructures and hydrophilic slime on their surface, we reported here the facile fabrication of underwater superoleophobic membranes by coating a layer of graphene oxide (GO) on commercially available wire meshes with tunable pore sizes. Using the wire mesh as a ready-made mask, GO-embellished mesh with open apertures (GO@mesh) could be readily fabricated after subsequent O2 plasma treatments from the back side. Interestingly, the congenital microstructures of the crossed microwires in combination with the abundant hydrophilic oxygen-containing groups of the GO layer endow the resultant GO@mesh with unique underwater superoleophobic properties. The antioil tests show that the underwater contact angles of various oils including both organic reagents (undissolved in water) and vegetable oil on GO@mesh exceed 150°, indicating the superoleophobic nature. In a representative experiment, a mixture of bean oil and water that imitates culinary sewage has been well separated with the help of our GO@mesh. GO-embellished wire meshes may find broad applications in sewage purification, especially for the treatment of oil contaminations.
受鱼鳞的启发,鱼鳞因其表面存在微米纳米结构和亲水黏液而具有独特的水下超疏油性,我们在此报告了通过在具有可调孔径的市售金属丝网上涂覆一层氧化石墨烯(GO)来轻松制备水下超疏油膜的方法。以金属丝网作为现成的掩膜,在随后从背面进行氧气等离子体处理后,可以轻松制备出具有开孔的GO修饰丝网(GO@mesh)。有趣的是,交叉微丝的固有微观结构与GO层丰富的亲水性含氧基团相结合,赋予了所得的GO@mesh独特的水下超疏油性能。抗油测试表明,包括有机试剂(不溶于水)和植物油在内的各种油在GO@mesh上的水下接触角超过150°,表明其具有超疏油性。在一个典型的实验中,借助我们的GO@mesh,模仿烹饪污水的豆油和水的混合物得到了很好的分离。GO修饰的金属丝网可能在污水净化中找到广泛应用,特别是用于处理油污。