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Fabrication of repairable superhydrophobic surface and improved anticorrosion performance based on zinc-rich coating
Xu, Long; Liu, Fuchun; Liu, Min; Wang, Zhenyu; Qian, Zhouhai; Ke, Wei; Han, En-Hou; Jie, Gangxin; Wang, Jun; Zhu, Liwei
2019-12-01
Source PublicationPROGRESS IN ORGANIC COATINGS
ISSN0300-9440
Volume137
AbstractAn innovative method was put forward to fabricate superhydrophobic surface based on nanostructured zinc rich coatings via modifying the rough surface with perfluorodecyl triethoxysilane solution. The obtained super-hydrophobic surface not only displays a static water contact angle of 153 degrees and water sliding angle of 7 degrees, but also exhibits an excellent reparability and self-cleaning ability during the field test. Water immersion test and electrochemical measurements demonstrated that this modification can improve the anticorrosion performance of the coating.
KeywordCarbon steel Zinc-rich coating Modification Self-cleaning Superhydrophobic
Indexed BySCI
Language英语
WOS IDWOS:000500944400013
PublisherELSEVIER SCIENCE SA
Citation statistics
Document Type期刊论文
Identifierhttp://ir.imr.ac.cn/handle/321006/80573
Collection中国科学院金属研究所
Recommended Citation
GB/T 7714
Xu, Long,Liu, Fuchun,Liu, Min,et al. Fabrication of repairable superhydrophobic surface and improved anticorrosion performance based on zinc-rich coating[J]. PROGRESS IN ORGANIC COATINGS,2019,137.
APA Xu, Long.,Liu, Fuchun.,Liu, Min.,Wang, Zhenyu.,Qian, Zhouhai.,...&Zhu, Liwei.(2019).Fabrication of repairable superhydrophobic surface and improved anticorrosion performance based on zinc-rich coating.PROGRESS IN ORGANIC COATINGS,137.
MLA Xu, Long,et al."Fabrication of repairable superhydrophobic surface and improved anticorrosion performance based on zinc-rich coating".PROGRESS IN ORGANIC COATINGS 137(2019).
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