• 中文

Shen YizhouProfessor

沈一洲,教授,博士生导师,江苏省某创新平台负责人,国家高层次青年人才,国家首批“博新计划”人才,江苏省“优青”基金获得者,江苏省“青蓝工程”优秀骨干教师,南京航空航天大学“长空学者”,新加坡南洋理工大学博士后,主要从事材料表界面加工与应用研究。主持国家自然科学基金 重点项目/面上项目/青年基金、国家重点研发计划课题、某前沿创新项目/某领域重点基金、国家某重大专项课题、江苏省国际合作创新项目、江苏省...Detials

Spraying Fabrication of Durable and Transparent Coatings for Anti Icing Application: Dynamic Water Repellency, Icing Delay, and Ice Adhesion

Release time:2020-03-23  Hits:

  • Affiliation of Author(s):材料科学与技术学院
  • Journal:ACS APPLIED MATERIALS & INTERFACES
  • Key Words:coatings spraying water repellency icephobicity durability
  • Abstract:Anti-icing/icephobic coatings, typically applied in the form of surface functional materials, are considered to be an ideal selection to solve the icing issues faced by daily life and industrial production. However, the applications of anti-icing coatings are greatly limited by the two main challenges: bonding strength with substrates and stability of the high anti-icing performance. Here, we designed and fabricated a kind of high-performance superhydrophobic fluorinated silica (F-SiO2)@polydimethylsiloxane coatings and further emphasized the improvement of the bonding strength with substrates and the maintenance of high anti icing performance. The resultant coatings exhibited excellent water repellency with a contact angle up to 155.3 degrees and a very short contact time (similar to 10.2 ms) of impact droplets. At low temperatures, the coming droplets still rapidly rebounded off the coating surface, and the superhydrophobic coatings displayed a more than 50-fold increase of freezing time comparing with bare aluminum. The ice adhesion strength on the coatings was only 26.3 kPa, which was far less than that (821.9 kPa) of bare aluminum. Furthermore, the nanoporous structures constructed by anodic oxidation could tremendously enhance the bonding strength of the coatings with the substrate, which was evaluated through a standard method (ASTM D3359). The anti-icing properties still retained high stability under the conditions of 30 icing/deicing cycles, soaking, and scouring of acid solution (pH = 5.6). This work can effectively push the anti-icing coatings toward a real-world application.
  • ISSN No.:1944-8244
  • Translation or Not:no
  • Co-author:Wu, Yu,wyh,Jie Tao,Zhu, Chunling,Zhu Chunling,Chen, Haifeng,Wu, Zhengwei,Xie, Yuehan
  • Correspondence Author:沈一洲,陶杰,沈一洲
  • Date of Publication:2019-01-23