Spin coating method deposited nickel oxide thin films at various film thickness

被引:0
|
作者
Lakel, Abdelghani [1 ]
Benramache, Said [1 ]
机构
[1] Biskra Univ, Fac Sci, Mat Sci Dept, Biskra 07000, Algeria
来源
JOURNAL OF POWER TECHNOLOGIES | 2024年 / 104卷 / 03期
关键词
NiO; thin films; spin coater method; polycrystalline structure; electrical conductivity; FIGURE; MERIT;
D O I
暂无
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The objective of this research is to study the influence of the film thickness on the optical and electrical characterizations of the prepared NiO thin films. For this, we used thin films such as nickel oxide, which has been prepared on the glass substrates by a spin-coating technique using nickel nitrate hexahydrate (Ni (NO3)2.6H2O) as source materials. The coating process was repeated for 13, 14-, 15-, 16- and 17-layer times to obtain a good NiO thin film. The optical and electrical characterizations were observed to be dependent on each film's thickness. For smaller film thickness the thin films have a high optical transmission (over 88 %) in the visible of the longer of the wavelength higher than 400 nm. The bandgap energy was found to be in the range of 3.94-4.06 eV depending on the film thickness. The lowest value of Urbach energy was 0.182 eV. In the end, the electrical measurements are investigated by the four-point method, the results show that the good electrical conductivity was found at 171 nm.
引用
收藏
页码:201 / 208
页数:8
相关论文
共 50 条
  • [31] Hydrogen Gas Sensors Based on Electrostatically Spray Deposited Nickel Oxide Thin Film Structures
    Jamal, Raied K.
    Aadim, Kadhim A.
    Al-Zaidi, Qahtan G.
    Taaban, Iman N.
    PHOTONIC SENSORS, 2015, 5 (03) : 235 - 240
  • [32] Aluminum-doped zinc oxide thin films deposited by electrospray method
    Marinov, Georgi
    Lovchinov, Konstantin
    Madjarova, Violeta
    Strijkova, Velichka
    Vasileva, Marina
    Malinowski, Nikola
    Babeva, Tsvetanka
    OPTICAL MATERIALS, 2019, 89 : 390 - 395
  • [33] Structural, optical, and electrical properties of cadmium oxide thin films prepared by sol–gel spin-coating method
    I. Ben Miled
    M. Jlassi
    I. Sta
    M. Dhaouadi
    M. Hajji
    G. Mousdis
    M. Kompitsas
    H. Ezzaouia
    Journal of Sol-Gel Science and Technology, 2017, 83 : 259 - 267
  • [34] Electrochemical properties of spray deposited nickel oxide (NiO) thin films for energy storage systems
    Kate, R. S.
    Khalate, S. A.
    Deokate, R. J.
    JOURNAL OF ANALYTICAL AND APPLIED PYROLYSIS, 2017, 125 : 289 - 295
  • [35] Microstructural characterization of nickel hydroxide films deposited using an ammonia-induced method and subsequently calcined nickel oxide films
    Chayasombat, Bralee
    Yordsri, Visittapong
    Oikawa, Tetsuo
    Thanachayanont, Chanchana
    MATERIALS SCIENCE IN SEMICONDUCTOR PROCESSING, 2015, 34 : 224 - 229
  • [36] Thin films of Na0.5Bi0.5TiO3 deposited by spin-coating
    Mercurio, JP
    Marchet, P
    INTEGRATED FERROELECTRICS, 2004, 61 : 163 - 165
  • [37] Characterization of NbTiN Thin Films Deposited on Various Substrates
    Makise, Kazumasa
    Terai, Hirotaka
    Takeda, Masanori
    Uzawa, Yoshinori
    Wang, Zhen
    IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2011, 21 (03) : 139 - 142
  • [38] A METHOD FOR MODIFYING THE SURFACE PROPERTIES OF ZnO NANOWIRES DEPOSITED AS THIN FILMS ON VARIOUS SUBSTRATES
    Kolbjonoks, Vadims
    Kostjukevics, Vladimirs
    NANOENGINEERING: FABRICATION, PROPERTIES, OPTICS, THIN FILMS, AND DEVICES XIX, 2022, 12202
  • [39] Thickness Dependent Structural and Dielectric Properties of Calcium Copper Titanate Thin Films Produced by Spin-Coating Method for Microelectronic Devices
    P. Thiruramanathan
    S. Sankar
    A. Marikani
    D. Madhavan
    Sanjeev K. Sharma
    Journal of Electronic Materials, 2017, 46 : 4468 - 4477
  • [40] Investigations on sputter deposited lithium nickel manganese oxide thin film cathodes for micro battery applications
    Rao, Kosuri Yellareswara
    Narasimham, Sabnavisu
    Narayan, Krishnaswamy
    Rao, Gowravaram Mohan
    MATERIALS TODAY-PROCEEDINGS, 2021, 40 : S28 - S34