ACS Appl Mater Interfaces. 2009 Jun;1(6):1150-3. doi: 10.1021/am900100q.
Stable superhydrophobic films with a contact angle of 151 +/- 2 degrees were prepared on zinc substrates by a simple immersion technique into a methanol solution of hydrolyzed 1H,1H,2H,2H-perfluorooctyltrichlorosilane [CF3(CF2)5(CH2)2SiCl3, PFTS] for 5 days at room temperature followed by a short annealing at 130 degrees C in air for 1 h. The superhydrophobic film provides an effective corrosion-resistant coating for the zinc interface when immersed in an aqueous solution of sodium chloride (3% NaCl) for up to 29 days. The corrosion process was investigated by following the change of the water contact angle over time and by electrochemical means. The results are compared to those of unprotected zinc interfaces.
通过简单的浸渍技术,将水解的 1H,1H,2H,2H-全氟辛基三氯硅烷 [CF3(CF2)5(CH2)2SiCl3,PFTS] 的甲醇溶液在室温下浸泡锌基底 5 天,随后在空气中短时间退火 130 摄氏度 1 小时,在锌基底上制备了具有 151 +/- 2 度接触角的稳定超疏水膜。当将超疏水膜浸泡在氯化钠(3%NaCl)水溶液中长达 29 天时,超疏水膜为锌界面提供了有效的耐腐蚀涂层。通过随时间变化跟踪水接触角的变化和电化学手段来研究腐蚀过程。将结果与未保护的锌界面进行了比较。