• 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、国家重点研发计划重点专项项目、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...Detials

Statistically understanding the roles of nanostructure features in interfacial ice nucleation for enhancing icing delay performance

Release time:2020-03-23  Hits:

  • Affiliation of Author(s):材料科学与技术学院
  • Journal:PHYSICAL CHEMISTRY CHEMICAL PHYSICS
  • Key Words:SUPERHYDROPHOBIC SURFACES HETEROGENEOUS NUCLEATION ICEPHOBICITY FABRICATION TRANSITION CRYSTALS COATINGS DROPLETS BEHAVIOR SESSILE
  • Abstract:Freezing is a spontaneous phase transformation process, which is mainly governed by heterogeneous ice nucleation. This work aims at the discussion of the roles of nanostructure geometrical features in interfacial ice nucleation. Two kinds of superhydrophobic nanostructures with sealed layered porous and open cone features were designed and fabricated by means of wet-chemical processing methods. Both the resultant surfaces exhibited a larger extent of improvement of non-wettability, especially in the aspect of droplet movement. Comparing with the sealed layered nanoporous structures, the open nanocone structures only induced a sliding angle of 1 degrees. During the freezing process, the solid-liquid contact type highly determined the macroscopic freezing process, and resulted in a difference of icing delay time of similar to 170 s (and freezing temperature of similar to 3.7 degrees C) between both superhydrophobic nanostructures. Also, the precooling time, the period before the moment of a droplet instantaneously becoming turbid, occupied a dominant role (similar to 90%) in the entire freezing time. The ice nucleation behavior was analyzed in detail according to the statistical results of 500 cycles of freezing temperatures, demonstrating that the ice nucleation probability of nanocone structures is less than that of layered nanoporous structures. This is in line with the ice nucleation temperatures of both as-prepared superhydrophobic nanostructures. As a consequence, there was a greater distinction in the ice nucleation rate, especially in the solid-liquid interface nucleation rate, by two orders of magnitude.
  • ISSN No.:1463-9076
  • Translation or Not:no
  • Co-author:Xie, Xinyu,Xie, Yuehan,Jie Tao,Jiang, Jiawei,Chen, Haifeng,Lu Yang,Xu, Yangjiangshan
  • Correspondence Author:沈一洲
  • Date of Publication:2019-09-28