Chemistry Department, Faculty of Science, Alexandria University, Alexandria, Egypt.
Sci Rep. 2022 Jun 22;12(1):10530. doi: 10.1038/s41598-022-14353-0.
Superhydrophobic coatings were successfully fabricated on steel substrates using potentiostatic electrodeposition of Ni and Ni-graphene, Ni-G, coatings followed by immersion in an ethanolic solution of stearic acid, SA. Rice straw, an environmentally friendly biomass resource, was used to synthesize high-quality graphene. The Raman spectra proved the high quality of the produced graphene. The Fourier transform infrared spectroscopy, FTIR, results showed that the Ni coating grafted with stearic acid, Ni-SA, and the Ni-G composite grafted with stearic acid, Ni-G-SA, were successfully deposited on the steel substrate. The scanning electron microscope, SEM, results showed that the prepared superhydrophobic coatings exhibit micro-nano structures. The wettability results revealed that the values of contact angles, CAs, for Ni-SA and Ni-G-SA coatings are 155.7° and 161.4°, while the values of sliding angles, SAs, for both coatings are 4.0° and 1.0°, respectively. The corrosion resistance, chemical stability, and mechanical abrasion resistance of the Ni-G-SA coating were found to be greater than those of the Ni-SA coating.
采用恒电位电沉积 Ni 和 Ni-石墨烯(Ni-G)涂层,随后将其浸入乙醇溶液中的硬脂酸(SA)中,成功在钢基底上制备了超疏水涂层。稻秸是一种环保的生物质资源,用于合成高质量的石墨烯。拉曼光谱证明了所制备石墨烯的高质量。傅里叶变换红外光谱(FTIR)结果表明,硬脂酸接枝的 Ni 涂层(Ni-SA)和硬脂酸接枝的 Ni-G 复合材料(Ni-G-SA)成功沉积在钢基底上。扫描电子显微镜(SEM)结果表明,所制备的超疏水涂层具有微纳结构。润湿性结果表明,Ni-SA 和 Ni-G-SA 涂层的接触角(CA)值分别为 155.7°和 161.4°,而这两种涂层的滑动角(SA)值分别为 4.0°和 1.0°。发现 Ni-G-SA 涂层的耐腐蚀性、化学稳定性和耐机械磨损性均优于 Ni-SA 涂层。