ACS Appl Mater Interfaces. 2018 May 2;10(17):15150-15162. doi: 10.1021/acsami.8b02280. Epub 2018 Apr 19.
A superhydrophobic ZnAl-layered double hydroxide (LDH)-La film was prepared by a hydrothermal method and further modification by laurate anions in this work. Comprehensive characterizations of this film were performed in terms of morphology, composition, structure, roughness, and wettability by scanning electronic microscopy, energy-dispersive X-ray spectroscopy, X-ray diffraction, three-dimensional laser scanning confocal microscopy. The long-term corrosion protection effect of this superhydrophobic film was investigated deeply by monitoring the changes of the electrochemical impedance spectra for a long time of up to a month in 3.5 wt % NaCl solution. In the meantime, the changes of the contact angle were also recorded with the evolution of the immersion time. The result indicated that the stable superhydrophobic ZnAl-LDH-La film was able to provide efficient protection for the underlying Al substrate for a long time. In addition, the capability of the superhydrophobic surface against harsh conditions, including chemical damages and physical damages, was emphatically investigated. It was found that the superhydrophobic surface was chemically stable toward acid (pH ≥ 3), alkali, and heating, and it also exhibited high ultraviolet (UV) radiation resistance. This superhydrophobic coating maintained superhydrophobicity for 7 days of radiation in an UV chamber equipped with a 40 W UV lamp (λ = 254 nm), indicating superior ability of adapting to outdoor environment. This comprehensive investigation of the superhydrophobic ZnAl-LDH-La film is considerably helpful for researchers and engineers to get deep insight into its potential for practical applications in the field of corrosion and protection.
本文采用水热法制备了超疏水 ZnAl 层状双氢氧化物(LDH)-La 薄膜,并进一步通过硬脂酸阴离子对其进行修饰。通过扫描电子显微镜、能谱、X 射线衍射、三维激光共聚焦显微镜等手段对薄膜的形貌、组成、结构、粗糙度和润湿性进行了综合表征。通过在 3.5wt%NaCl 溶液中长时间监测电化学阻抗谱的变化,深入研究了这种超疏水膜的长期腐蚀保护效果,最长可达一个月。同时,还记录了接触角随浸泡时间的变化。结果表明,稳定的超疏水 ZnAl-LDH-La 薄膜能够为底层 Al 基体提供长期有效的保护。此外,还着重研究了超疏水表面对恶劣条件(包括化学损伤和物理损伤)的耐受能力。结果发现,该超疏水表面对酸(pH≥3)、碱和加热具有化学稳定性,同时还表现出高的紫外线(UV)辐射抗性。该超疏水涂层在配备 40WUV 灯(λ=254nm)的 UV 室中辐射 7 天仍保持超疏水性,表明其具有适应户外环境的卓越能力。对超疏水 ZnAl-LDH-La 薄膜的综合研究有助于研究人员和工程师深入了解其在腐蚀与防护领域的实际应用潜力。