Langmuir. 2018 Mar 6;34(9):2981-2988. doi: 10.1021/acs.langmuir.7b03986. Epub 2018 Feb 26.
Materials with special wettability have drawn considerable attention especially in the practical application for the separation and recovery of the oily wastewater, whereas there still remain challenges of the high-cost materials, significant time, and complicated production equipment. Here, a simple method to fabricate the underwater superoleophobic and underoil superhydrophobic brass mesh via the nanosecond laser ablation is reported for the first time, which provided the micro-/nanoscale hierarchical structures. This mesh is superhydrophilic and superoleophilic in air but superoleophobic under water and superhydrophobic under oil. On the basis of the special wettability of the as-fabricated mesh, we demonstrate a proof of the light or heavy oil/water separation, and the excellent separation efficiencies (>96%) and the superior water/oil breakthrough pressure coupled with the high water/oil flux are achieved. Moreover, the nanosecond laser technique is simple and economical, and it is advisable for the large-area and mass fabrication of the underwater superoleophobic and underoil superhydrophobic mesh in the large-scale oil/water separation.
具有特殊润湿性的材料引起了相当大的关注,特别是在用于分离和回收含油废水的实际应用中,但仍然存在材料成本高、时间长和生产设备复杂的挑战。在这里,首次报道了一种通过纳秒激光烧蚀制备水下超疏油和油下超疏水黄铜网的简单方法,该方法提供了微/纳米级的分层结构。这种网在空气中具有超亲水性和超疏油性,但在水下具有超疏油性,在油下具有超疏水性。基于所制备的网的特殊润湿性,我们证明了轻质或重质油/水分离的原理,并且实现了超过 96%的优异分离效率和较高的水/油突破压力,同时具有高水/油通量。此外,纳秒激光技术简单经济,适用于大规模油水分离中水下超疏油和油下超疏水黄铜网的大面积和大规模制造。