Modified Zinc Oxide Nanoparticles for Corrosion Resistance Applications

被引:0
|
作者
Chandio, Ali Dad [1 ]
Saleem, Muhammad Hamza [1 ]
Khan, Hasan Raza [1 ]
Hyder, Iqra Naeem [1 ]
Ali, Maryam [1 ]
机构
[1] NED Univ Engn & Technol, Dept Met Engn, Univ Rd, Karachi, Pakistan
来源
关键词
Hydrophobicity; Contact angle; Corrosion; ZnO nanoparticles; Self-cleaning; Stearic acid; ELECTRICAL-PROPERTIES; SOL-GEL; ZNO;
D O I
暂无
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Atmospheric corrosion is a big threat to the steel structures. This is because it compromises its structural integrity, aesthetic aspects and overall efficiency. An attempt has been made to counteract this through surface engineering of substrates including glass and steel by using modified zinc oxide nanoparticles to increase hydrophobicity. The synthesis of zinc oxide nanoparticles is carried out by using sol-gel method, thereafter these particles were modified by using stearic acid; a fatty acid. The zinc oxide nanoparticles were characterized by using X-ray diffraction analysis (XRD) which confirms the presence of hexagonal wurtzite structure. Moreover, the Scanning Electron microscopy (SEM) reveals the hexagonal wurtzite morphology of as prepared nanoparticles. Fourier transform infrared spectroscopy (FTIR) confirms the grafting of stearic acid on the surface of ZnO in bidentate form. The water Contact Angle obtained by using sessile drop method gives a statistical value of 140 which is of great interest due to higher water repellency and lower surface contact area. Finally, corrosion test was carried out on the coated steel substrate by means of conventional corrosion testing technique and it is observed that the coated sample decays three times slower than that of its bare steel counterpart.
引用
收藏
页码:705 / 712
页数:8
相关论文
共 50 条
  • [31] Photocatalytic study of organosilane-modified zinc oxide nanoparticles
    Tabacaru, Aurel
    Busila, Mariana
    Plescan, Viorica
    Musat, Viorica
    OVIDIUS UNIVERSITY ANNALS OF CHEMISTRY, 2015, 26 (02) : 61 - 66
  • [32] Surface Modified Zinc Oxide Nanoparticles as Smart UV Sensors
    Deepu Thomas
    Jithin Prakash
    Kishor Kumar Sadasivuni
    Kalim Deshmukh
    Augustine J. Edakkara
    Journal of Electronic Materials, 2019, 48 : 4726 - 4732
  • [33] Surface Modified Zinc Oxide Nanoparticles as Smart UV Sensors
    Thomas, Deepu
    Prakash, Jithin
    Sadasivuni, Kishor Kumar
    Deshmukh, Kalim
    Edakkara, Augustine J.
    JOURNAL OF ELECTRONIC MATERIALS, 2019, 48 (07) : 4726 - 4732
  • [34] Synthesis and characterization of poly(vinylpyrrolidone)-modified zinc oxide nanoparticles
    Guo, L
    Yang, SH
    Yang, CL
    Yu, P
    Wang, JN
    Ge, WK
    Wong, GKL
    CHEMISTRY OF MATERIALS, 2000, 12 (08) : 2268 - 2274
  • [35] Radiation resistance of polypropylene modified with nanoparticles of oxide compounds
    Mikhailov, Mikhail M.
    Goronchko, Vladimir A.
    Lapin, Alexey N.
    Yuryev, Semyon A.
    POLYMER, 2024, 296
  • [36] Evaluation of photocatalytic and corrosion properties of green synthesized zinc oxide nanoparticles
    Ramamoorthy, S.
    Surendhiran, S.
    Kumar, D. Senthil
    Murugesan, G.
    Kalaiselvi, M.
    Kavisree, S.
    Muthulingam, S.
    Murugesan, S.
    JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS, 2022, 33 (12) : 9722 - 9731
  • [37] Iron oxide nanoparticles modified with silanes for hyperthermia applications
    Liudmyla Storozhuk
    Natalia Iukhymenko
    Applied Nanoscience, 2019, 9 : 889 - 898
  • [38] Iron oxide nanoparticles modified with silanes for hyperthermia applications
    Storozhuk, Liudmyla
    Iukhymenko, Natalia
    APPLIED NANOSCIENCE, 2019, 9 (05) : 889 - 898
  • [39] Corrosion protection of zinc by a silane conversion coating modified with graphene oxide
    Lai, Delin
    Chen, Ping
    Che, Chunshan
    Kong, Gang
    Jiang, Yanbin
    SURFACE AND INTERFACE ANALYSIS, 2021, 53 (06) : 580 - 591
  • [40] Evaluation of photocatalytic and corrosion properties of green synthesized zinc oxide nanoparticles
    S. Ramamoorthy
    S. Surendhiran
    D. Senthil Kumar
    G. Murugesan
    M. Kalaiselvi
    S. Kavisree
    S. Muthulingam
    S. Murugesan
    Journal of Materials Science: Materials in Electronics, 2022, 33 : 9722 - 9731