Surface Nanostructures Formed by Phase Separation of Metal Salt–Polymer Nanocomposite Film for Anti-reflection and Super-hydrophobic Applications

被引:1
|
作者
Celal Con
Bo Cui
机构
[1] University of Waterloo,Waterloo Institute for Nanotechnology (WIN)
来源
关键词
Surface structures; Self-assembly; RIE; Metal salt; Anti-reflectivity; Super-hydrophobicity;
D O I
暂无
中图分类号
学科分类号
摘要
This paper describes a simple and low-cost fabrication method for multi-functional nanostructures with outstanding anti-reflective and super-hydrophobic properties. Our method employed phase separation of a metal salt–polymer nanocomposite film that leads to nanoisland formation after etching away the polymer matrix, and the metal salt island can then be utilized as a hard mask for dry etching the substrate or sublayer. Compared to many other methods for patterning metallic hard mask structures, such as the popular lift-off method, our approach involves only spin coating and thermal annealing, thus is more cost-efficient. Metal salts including aluminum nitrate nonahydrate (ANN) and chromium nitrate nonahydrate (CNN) can both be used, and high aspect ratio (1:30) and high-resolution (sub-50 nm) pillars etched into silicon can be achieved readily. With further control of the etching profile by adjusting the dry etching parameters, cone-like silicon structure with reflectivity in the visible region down to a remarkably low value of 2% was achieved. Lastly, by coating a hydrophobic surfactant layer, the pillar array demonstrated a super-hydrophobic property with an exceptionally high water contact angle of up to 165.7°.
引用
收藏
相关论文
共 11 条
  • [1] Surface Nanostructures Formed by Phase Separation of Metal Salt-Polymer Nanocomposite Film for Anti-reflection and Super-hydrophobic Applications
    Con, Celal
    Cui, Bo
    NANOSCALE RESEARCH LETTERS, 2017, 12
  • [2] Anti-reflection OTS-treated SiO2 thin films with super-hydrophobic property
    Hong Li
    Naiyi Li
    Yanwen Zhang
    Huiting He
    Zirui Liu
    Journal of Sol-Gel Science and Technology, 2017, 83 : 518 - 526
  • [3] Anti-reflection OTS-treated SiO2 thin films with super-hydrophobic property
    Li, Hong
    Li, Naiyi
    Zhang, Yanwen
    He, Huiting
    Liu, Zirui
    JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY, 2017, 83 (03) : 518 - 526
  • [4] Processing and properties of transparent super-hydrophobic polymer film with low surface electric resistance
    Sasaki, M
    Kieda, N
    Katayama, K
    Takeda, K
    Nakajima, A
    JOURNAL OF MATERIALS SCIENCE, 2004, 39 (11) : 3717 - 3722
  • [5] Processing and properties of transparent super-hydrophobic polymer film with low surface electric resistance
    M. Sasaki
    N. Kieda
    K. Katayama
    K. Takeda
    A. Nakajima
    Journal of Materials Science, 2004, 39 : 3717 - 3722
  • [6] Functionalized super-hydrophobic nanocomposite surface integrating with anti-icing and drag reduction properties
    Cui, Xianxian
    Liu, Xiaolin
    Chen, Huawei
    Zhao, Zehui
    Chen, Dengke
    CHEMICAL ENGINEERING JOURNAL, 2024, 499
  • [7] Research on Anti-condensation Modification of Glass Insulator Surface Based on Super-hydrophobic Film
    He Yongsheng
    Zhou Mao
    Zhou Mengge
    Zhou Mi
    Jiang Xiping
    Wang Qian
    Wang Siqi
    2019 IEEE ASIA POWER AND ENERGY ENGINEERING CONFERENCE (APEEC 2019), 2019, : 110 - 114
  • [8] Preparation and anti-corrosion performance of super-hydrophobic film on the surface of bronze covered with patina
    Wang, Min
    Cai, Lan-Kun
    Tang, Yi-Jing
    Cai, Jing-Fang
    Zhou, Hao
    Wu, Lai-Ming
    Yan, Ying
    Surface Technology, 2020, 49 (11): : 50 - 57
  • [9] Optical super-resolving phase filters with random anti-reflection subwavelength surface structures
    Gadamsetti, Praneeth
    Testorf, Markus E.
    Batoni, Paolo
    Poutous, Menelaos K.
    OPTICAL COMPONENTS AND MATERIALS XVIII, 2021, 11682
  • [10] Hybrid-polymer nanostructures forming an anti-reflection film using two-beam interference and ultraviolet nanoimprint lithography
    Chang, Tien-Li
    Cheng, Kuei-Yuan
    Chou, Ta-Hsin
    Su, Chih-Chieh
    Yang, Han-Ping
    Luo, Shao-Wei
    MICROELECTRONIC ENGINEERING, 2009, 86 (4-6) : 874 - 877