期刊论文详细信息
Friction
Large-scale fabrication of decoupling coatings with promising robustness and superhydrophobicity for antifouling, drag reduction, and organic photodegradation
Research Article
Sirong Yu1  Jian Gao2  KaiJie Zhou2  Lei Xin2  Hao Li2  Zhongwei Wang2 
[1] School of Materials Science and Engineering, China University of Petroleum (East China), 266580, Qingdao, China;School of Materials Science and Engineering, Shandong University of Science and Technology, 266590, Qingdao, China;
关键词: Superhydrophobic;    decoupling;    wear resistance;    drag reduction;   
DOI  :  10.1007/s40544-022-0652-3
 received in 2022-03-27, accepted in 2022-05-17,  发布年份 2022
来源: Springer
PDF
【 摘 要 】

It is still a challenge to achieve large-area preparation of robust superhydrophobic surfaces with strong mechanical stability. Here, a simple and low-cost method to prepare robust decoupling superhydrophobic coatings on aluminum (Al) alloys substrate has been presented. The superhydrophobicity and robustness of decoupling coatings are realized by structuring surfaces at two different length scales, with nanostructures for superhydrophobicity and microstructures for robustness. This prepared decoupling coating shows promising superhydrophobicity, with water contact angle (CA) of ∼158.4° and roll off angle (RA) of ∼3°. It also exhibits high repellency for impacting water droplets. Notably, the decoupling coating processes outstanding adhesion strength on the substrate after tape-peeling and cross-cut tests, also with promising wear resistantance after sandpaper abrasion and wear test. The friction coefficient of this decoupling coating is only ∼0.2. In addition, the robust decoupling superhydrophobic coating is applied to underwater buoyancy enhancement and fluid resistance reduction (drag reduction rate ∼30.09%). This decoupling superhydrophobic coating also displays promising self-cleaning and antifouling properties. Moreover, benefitting from the photocatalytic property of TiO2, this decoupling coating is also exploited for degrading organics to achieve seawater purification. This obtained decoupling superhydrophobic coating is expected to apply on other solids in marine fields, and the simple and eco-friendly method develops the potential practical application.

【 授权许可】

CC BY   
© The author(s) 2022

【 预 览 】
附件列表
Files Size Format View
RO202305111613484ZK.pdf 4457KB PDF download
41116_2022_35_Article_IEq46.gif 1KB Image download
Fig. 9 216KB Image download
Fig. 4 215KB Image download
41116_2022_35_Article_IEq52.gif 1KB Image download
Fig. 4 841KB Image download
Fig. 1 360KB Image download
41116_2022_35_Article_IEq58.gif 1KB Image download
41116_2022_35_Article_IEq66.gif 1KB Image download
12888_2022_4506_Article_IEq2.gif 1KB Image download
Fig. 1 1223KB Image download
41116_2022_35_Article_IEq78.gif 1KB Image download
41116_2022_35_Article_IEq99.gif 1KB Image download
MediaObjects/12888_2023_4540_MOESM1_ESM.docx 18KB Other download
【 图 表 】

41116_2022_35_Article_IEq99.gif

41116_2022_35_Article_IEq78.gif

Fig. 1

12888_2022_4506_Article_IEq2.gif

41116_2022_35_Article_IEq66.gif

41116_2022_35_Article_IEq58.gif

Fig. 1

Fig. 4

41116_2022_35_Article_IEq52.gif

Fig. 4

Fig. 9

41116_2022_35_Article_IEq46.gif

【 参考文献 】
  • [1]
  • [2]
  • [3]
  • [4]
  • [5]
  • [6]
  • [7]
  • [8]
  • [9]
  • [10]
  • [11]
  • [12]
  • [13]
  • [14]
  • [15]
  • [16]
  • [17]
  • [18]
  • [19]
  • [20]
  • [21]
  • [22]
  • [23]
  • [24]
  • [25]
  • [26]
  • [27]
  • [28]
  • [29]
  • [30]
  • [31]
  • [32]
  • [33]
  • [34]
  • [35]
  • [36]
  • [37]
  • [38]
  • [39]
  • [40]
  • [41]
  • [42]
  • [43]
  • [44]
  • [45]
  • [46]
  • [47]
  • [48]
  • [49]
  • [50]
  • [51]
  • [52]
  • [53]
  • [54]
  • [55]
  • [56]
  • [57]
  • [58]
  • [59]
  • [60]
  • [61]
  • [62]
  • [63]
  文献评价指标  
  下载次数:4次 浏览次数:0次