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Fabrication of superoleophobic hierarchical surfaces for low-surface-tension liquids

机译:低表面张力液体的超疏油分层表面的制备

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摘要

This study demonstrates the fabrication of hierarchical surfaces with super-repellency even for low-surface-tension liquids, including octane (surface tension of 21.7 mN m(-1)). Dual-pore surfaces were prepared by a combination of practical wet processes on an aluminium substrate: chemical etching, anodizing, and organic monolayer coating. The size of the larger pores formed by the chemical etching of aluminium is controlled by the concentration of HCl in the CuCl2/HCl etching solution. The etched aluminium is then anodized to introduce nanopores, followed by a pore-widening treatment that controls the nanopore size and porosity. The repellency for low-surface-tension liquids is enhanced by increasing the size of the larger pores as well as the porosity of the walls of the larger pores in this dual-pore morphology. Under optimized morphology with a fluoroalkyl-phosphate monolayer coating, an advancing contact angle close to 160 degrees, a contact angle hysteresis of less than 5 degrees and a sliding angle of 10 degrees is achieved even for octane.
机译:这项研究表明,即使对于包括辛烷在内的低表面张力液体(表面张力为21.7 mN m(-1)),也具有超疏水性的​​分层表面的制造。通过在铝基板上结合实际的湿法工艺来制备双孔表面:化学蚀刻,阳极氧化和有机单层涂层。通过铝的化学蚀刻形成的较大孔的尺寸由CuCl2 / HCl蚀刻溶液中的HCl浓度控制。然后将蚀刻的铝阳极氧化以引入纳米孔,然后进行扩孔处理以控制纳米孔的大小和孔隙率。在这种双孔形态下,通过增加大孔的大小以及大孔壁的孔隙率,可以提高对低表面张力液体的排斥性。在具有氟代烷基磷酸酯单层涂层的最佳形态下,即使对于辛烷,前进的接触角也接近160度,接触角滞后小于5度,滑动角达到10度。

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