Li Yan, Yang Baoping, Wei Jinfei, Li Bucheng, Mao Mingyuan, Zhang Junping
Department of Chemical Engineering, College of Petrochemical Engineering, Lanzhou University of Technology, Lanzhou 730050, P. R. China.
Center of Eco-Material and Green Chemistry, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 730000, P. R. China.
Langmuir. 2024 Apr 9;40(14):7760-7768. doi: 10.1021/acs.langmuir.4c00492. Epub 2024 Mar 28.
Superhydrophobic coatings hold immense promise for various applications. However, their practical use is currently hindered by issues such as poor stability, high costs, and complex preparation processes. Here, we present the preparation of cost-effective and stable superhydrophobic coatings through fluorination of natural attapulgite (F-ATP) nanorods and subsequent solvent-induced phase separation of a silicone-modified polyester adhesive (SMPA) with the F-ATP nanorods dispersed in it. Phase separation of the F-ATP/SMPA system forms a uniform suspension of microaggregates, which can be easily utilized for preparing superhydrophobic coatings via spray coating. The coatings have a low-surface-energy hierarchical micro/nanostructure due to phase separation of SMPA and adhesion of F-ATP to it. Moreover, the effects of the solvent composition (i.e., phase separation degree of SMPA) and the SMPA/F-ATP mass ratio on the morphology, superhydrophobicity, and stability of the coatings were investigated. After systematic optimization, the coatings exhibit excellent static and dynamic superhydrophobicity as well as high mechanical, chemical, thermal, and UV aging stability. Finally, the coatings were applied to the 5G radome surface and showed good rain attenuation prevention performance. Thus, we are confident that the superhydrophobic coatings have great application potential due to their advantages of outstanding performance, straightforward preparation procedures, cost-effectiveness, etc.
超疏水涂层在各种应用中具有巨大潜力。然而,它们的实际应用目前受到稳定性差、成本高和制备工艺复杂等问题的阻碍。在此,我们通过对天然凹凸棒石(F-ATP)纳米棒进行氟化处理,并随后使分散有F-ATP纳米棒的有机硅改性聚酯粘合剂(SMPA)发生溶剂诱导相分离,制备出了具有成本效益且稳定的超疏水涂层。F-ATP/SMPA体系的相分离形成了微聚集体的均匀悬浮液,通过喷涂可轻松用于制备超疏水涂层。由于SMPA的相分离以及F-ATP对其的粘附作用,涂层具有低表面能的分级微/纳米结构。此外,研究了溶剂组成(即SMPA的相分离程度)和SMPA/F-ATP质量比对涂层形态、超疏水性和稳定性的影响。经过系统优化后,涂层表现出优异的静态和动态超疏水性以及高机械、化学、热和紫外线老化稳定性。最后,将涂层应用于5G天线罩表面,显示出良好的防雨衰性能。因此,我们相信,超疏水涂层因其优异性能、制备过程简单、成本效益高等优点而具有巨大的应用潜力。