Song Xiaorui, Li Na, Wang Zhongshan, Li Shuangjian, Hou Yuanyuan
Centre for Advanced Laser Manufacturing (CALM), School of Mechanical Engineering, Shandong University of Technology, Zibo, China.
Department of Stomatology, Zibo Maternal and Child Health Hospital, Zibo, China.
Front Chem. 2023 Sep 28;11:1273674. doi: 10.3389/fchem.2023.1273674. eCollection 2023.
Biomimetic lubricant-infused porous surfaces are developed and applied for omniphobicity and corrosion protection, which exhibit great advantages compared to superhydrophobic surfaces. Herein, superhydrophobic Fe@E-Zn@PFOA was prepared via the electrodeposition of laminated Zinc coating, further vapor etching, and post-modification with perfluoro caprylic acid. The facile, inexpensive, and environment-friendly water vapor etching process can form a porous honeycomb-like structure. Moreover, the perfluoropolyether lubricant was wicked into the porous and superhydrophobic surfaces, obtaining lubricant-infused surfaces of Fe@E-Zn@PFOA@PFPE. The influences of the textured roughness and chemical composition on the surface wettability were systematically investigated. The Fe@E-Zn@PFOA@PFPE performs omniphobicity with small sliding angles and superior corrosion resistance compared with the superhydrophobic surface, owing to their multiple barriers, including infused lubricant, hydrophobic monolayers, and compact Zn electroplating coating. Thus, the proposed lubricant-infused surface may provide insights into constructing protective coatings for the potential applications of engineering metal materials.
仿生注入润滑剂的多孔表面被开发并应用于实现全憎性和防腐蚀,与超疏水表面相比具有很大优势。在此,通过层状锌涂层的电沉积、进一步的蒸汽蚀刻以及用全氟辛酸进行后改性,制备了超疏水的Fe@E-Zn@PFOA。这种简便、廉价且环保的水蒸气蚀刻工艺可形成多孔蜂窝状结构。此外,全氟聚醚润滑剂被吸入多孔超疏水表面,得到Fe@E-Zn@PFOA@PFPE注入润滑剂的表面。系统研究了纹理粗糙度和化学成分对表面润湿性的影响。由于其包括注入的润滑剂、疏水单分子层和致密的锌电镀涂层在内的多重屏障,Fe@E-Zn@PFOA@PFPE表现出具有小滑动角的全憎性和优于超疏水表面的耐腐蚀性。因此,所提出的注入润滑剂的表面可为工程金属材料的潜在应用构建防护涂层提供思路。