李镇江

+

其他联系方式

  • 邮箱:

论文成果

当前位置: 中文主页 > 科学研究 > 论文成果

Super-hydrophobic surfaces of SiO<inf>2</inf>-coated SiC nanowires: Fabrication, mechanism and ultraviolet-durable super-hydrophobicity

  • 发布时间:2023-10-19
  • 点击次数:

  • 关键字:Hydrophobicity;Corrosion resistant coatings - Crystal microstructure - Nanowires - Silica - Silicon carbide - Surface chemistry;Chemical treatments - Ethanol solutions - Fluoroalkylsilanes - SiC nanowire - Super-hydrophobic surfaces - Superhydrophobic - Superhydrophobicity - Water repellent surfaces
  • 摘要:The interest in highly water-repellent surfaces of SiO<inf>2</inf>-coated SiC nanowires has grown in recent years due to the desire for self-cleaning and anticorrosive surfaces. It is imperative that a simple chemical treatment with fluoroalkylsilane (FAS, CF<inf>3</inf>(CF<inf>2</inf>)<inf>7</inf>CH<inf>2</inf>CH<inf>2</inf>Si(OC<inf>2</inf>H<inf>5</inf>)<inf>3</inf>) in ethanol solution at room temperature resulted in super-hydrophobic surfaces of SiO<inf>2</inf>-coated SiC nanowires. The static water contact angle of SiO<inf>2</inf>-coated SiC nanowires surfaces was changed from 0&deg; to 153&deg; and the morphology, microstructure and crystal phase of the products were almost no transformation before and after super-hydrophobic treatment. Moreover, a mechanism was expounded reasonably, which could elucidate the reasons for their super-hydrophobic behavior. It is important that the super-hydrophobic surfaces of SiO<inf>2</inf>-coated SiC nanowires possessed ultraviolet-durable (UV-durable) super-hydrophobicity.<br/> &copy; 2014 Elsevier Inc.
  • 卷号:444
  • 期号:
  • 是否译文:

崂山校区 - 山东省青岛市松岭路99号   
四方校区 - 山东省青岛市郑州路53号   
中德国际合作区(中德校区) - 山东省青岛市西海岸新区团结路3698号
高密校区 - 山东省高密市杏坛西街1号   
济南校区 - 山东省济南市文化东路80号©2015 青岛科技大学    
管理员邮箱:master@qust.edu.cn