TY - JOUR
T1 - A silica-sol-based fortified structure with superhydrophobic coating for harsh conditions
AU - Bi, Hengchang
AU - Zhu, Jingfang
AU - Wang, Gang
AU - Du, Kai
AU - Jia, Haiyang
AU - Xie, Xiao
AU - Sun, Litao
N1 - Publisher Copyright:
Copyright © 2019 American Scientific Publishers All rights reserved.
PY - 2019
Y1 - 2019
N2 - Although numerous bio-inspired superhydrophobic coatings have been extensively studied in the last decades, most of them suffer from low chemical stability and mechanical weakness, which severely limit their extensive applications. Herein, a silica-based, superhydrophobic, highly stable and mechanically durable coating was prepared via a facile, energysaving strategy. Modified silica nanoparticles, were fortified with silane coupling agent and spray-deposited on substrates, forming a superhydrophobic, self-cleaning coating with high water contact angle (CA = 159.0°), as well as low rolling angle (RA ≈ 3°). The protective coating showed high chemical stability that endured various harsh conditions, such as wide temperature range (.18 to 250 °C), extreme pH (1 to 13), weeks of exposure under sunlight, etc. Moreover, the coating exhibited superior mechanical robustness that could resist the attack of shear force in vigorous ultrasonication for 7 hours. In addition, repetitive scratching with a steel blade could not undermine the protective coating (CA > 150°). It is believed that the present strategy is a potent candidate for facile fabrication of superhydrophobic surface coatings, which have promising applications on extreme conditions in both household and industry.
AB - Although numerous bio-inspired superhydrophobic coatings have been extensively studied in the last decades, most of them suffer from low chemical stability and mechanical weakness, which severely limit their extensive applications. Herein, a silica-based, superhydrophobic, highly stable and mechanically durable coating was prepared via a facile, energysaving strategy. Modified silica nanoparticles, were fortified with silane coupling agent and spray-deposited on substrates, forming a superhydrophobic, self-cleaning coating with high water contact angle (CA = 159.0°), as well as low rolling angle (RA ≈ 3°). The protective coating showed high chemical stability that endured various harsh conditions, such as wide temperature range (.18 to 250 °C), extreme pH (1 to 13), weeks of exposure under sunlight, etc. Moreover, the coating exhibited superior mechanical robustness that could resist the attack of shear force in vigorous ultrasonication for 7 hours. In addition, repetitive scratching with a steel blade could not undermine the protective coating (CA > 150°). It is believed that the present strategy is a potent candidate for facile fabrication of superhydrophobic surface coatings, which have promising applications on extreme conditions in both household and industry.
KW - Harsh conditions
KW - High stability
KW - Silane coupling agent
KW - Silica-sol
KW - Superhydrophobicity
UR - https://www.scopus.com/pages/publications/85068150228
U2 - 10.1166/jbn.2019.2796
DO - 10.1166/jbn.2019.2796
M3 - 文章
C2 - 31196354
AN - SCOPUS:85068150228
SN - 1550-7033
VL - 15
SP - 1506
EP - 1514
JO - Journal of Biomedical Nanotechnology
JF - Journal of Biomedical Nanotechnology
IS - 7
ER -