Non-fluorinated superhydrophobic Al7075 aerospace alloy by ps laser processing

被引:54
|
作者
Jagdheesh, R. [1 ]
Hauschwitz, P. [1 ,3 ]
Muzik, J. [1 ]
Brajer, J. [1 ]
Rostohar, D. [1 ]
Jiricek, P. [2 ]
Kopecek, Jaromir [2 ]
Mocek, T. [1 ]
机构
[1] Acad Sci Czech Republ, Inst Phys, Hilase Ctr, Za Radnici 828, Prague 25241, Czech Republic
[2] Czech Acad Sci, Inst Phys, Na Slovance 2, Prague, Czech Republic
[3] Czech Tech Univ, Fac Nucl Sci & Phys Engn, Brehova 7, Prague 11519, Czech Republic
基金
欧盟地平线“2020”;
关键词
Ultrahydrophobic; Lotus effect; Rose petal effect; Nanostructures; Laser patterning; Non-fluorination; Nanostructure; FEMTOSECOND LASER; HYDROPHOBIC SURFACES; LOTUS LEAF; WETTABILITY; FABRICATION; PHOTOELECTRON; REACTIVITY; HYDROXYL; ADHESION; ACID;
D O I
10.1016/j.apsusc.2019.07.035
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The metallic surfaces with low affinity or high repellence towards water molecules are extremely desirable. The present investigation reports the development of non-fluorinated super or ultrahydrophobic aerospace aluminum alloy (Al7075) surface by laser patterning and high vacuum process for 4 h. Lamellar and lotus leaf papillae like structures covered with nanoscale protrusions are found to be formed depends on the laser fluence and spatial shifts of laser scans. The fresh laser processed hydrophilic surface was vacuum processed to create layer of hydrocarbon to reduce the surface free energy for the wetting property transformation. The analysis of the results shows the synergistic effect of hierarchical structures and dominant presence of non-polar elements is critical for superhydrophobic property. The surface geometry is primarily responsible for the wetting property transformation by entrapping mu-volume of air to generate a composite interface of solid-gas-liquid. Micro and nanoscale (dual scale) surface structures are essential for the durable and consistent superhydrophobic property with high degree of water repellence for bigger volume of water droplets. Further, sole presence of nanoscale structures on inherent hydrophilic aluminum alloy surface with predominant presence of non-polar elements can yield only near superhydrophobic surface due to random spacing of nanoscale protrusions.
引用
收藏
页码:287 / 293
页数:7
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