Enhanced structural and photoluminescence properties on GLAD synthesized annealed vertically aligned NiO nanowires

被引:4
作者
Chanu, Laishram Thoibileima [1 ]
Singh, Naorem Khelchand [1 ]
机构
[1] Natl Inst Technol Nagaland, Dept Elect & Commun Engn, Dimapur 797103, India
关键词
Nickel oxide; Nanowire; Glancing -angle deposition; Structural properties; Photoluminescence; GLANCING ANGLE DEPOSITION; NICKEL-OXIDE; OPTICAL-PROPERTIES; LATTICE STRAIN; FAST-RESPONSE; NANOSTRUCTURES; FABRICATION; MORPHOLOGY; TEMPERATURE; SIZE;
D O I
10.1016/j.jlumin.2023.119704
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
In this study, using glancing angle deposition through electron-beam evaporation, a well-aligned vertical nickel oxide (NiO) nanowire (NW) on Si substrates was fabricated at room temperature. The as-deposited sample was annealed at 500 degrees C for 1hr in open-air conditions. An increase in average crystallite size from 14.44 nm to 21.54 nm with a decrease in lattice strain and dislocation density after annealing was observed. The increase in particle size after annealing as well as the vertically aligned structure of the NWs was confirmed by Top-view and crosssectional FESEM images respectively. Also, the average diameter of the NWs was increased from 27 to 32 nm after annealing. The lattice spacing of 0.144 nm which corresponds to 440 planes (as-deposited sample) and 0.144 nm and 0.205 nm corresponds to 440 and 400 planes (annealed sample) obtained from the HRTEM image is in good agreement with the XRD results. Further, the photoluminescence emission of the sample showed defect-related transitions of the NW which decreased after annealing. The intense emission at the UV region around -355 nm (3.49 eV) arose from the excitonic recombination while deep trap levels were responsible for the emission peaks at the visible region at -402 nm (3.08 eV), -435 nm (2.85 eV) and -465 nm (2.66 eV). The emission peaks were found to broaden after annealing due to lower defects. Thus, the above studies demonstrated the potentiality of NiO NW as a potential material for optoelectronic device applications.
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页数:8
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共 57 条
  • [1] Ahire DV, 2012, I CONF SENS TECHNOL, P136, DOI 10.1109/ICSensT.2012.6461656
  • [2] Fabrication and characterization of high performance MSM UV photodetector based on NiO film
    Ahmed, Anas A.
    Devarajan, Mutharasu
    Afzal, Naveed
    [J]. SENSORS AND ACTUATORS A-PHYSICAL, 2017, 262 : 78 - 86
  • [3] Structural, optical and photo-catalytic activity of nanocrystalline NiO thin films
    Al-Ghamdi, Attieh A.
    Abdel-wahab, M. Sh.
    Farghali, A. A.
    Hasan, P. M. Z.
    [J]. MATERIALS RESEARCH BULLETIN, 2016, 75 : 71 - 77
  • [4] Morphological and size effects of NiO nanoparticles via solvothermal process and their optical properties
    Anandan, K.
    Rajendran, V.
    [J]. MATERIALS SCIENCE IN SEMICONDUCTOR PROCESSING, 2011, 14 (01) : 43 - 47
  • [5] Exploring and fine tuning the properties of one dimensional Bi2S3 nanorods
    Arumugam, J.
    George, Amal
    Venci, X.
    Raj, A. Dhayal
    Irudayaraj, A. Albert
    Josphine, R. L.
    Sundaram, S. John
    Al-onazi, Wedad A.
    Al-Mohaimeed, Amal M.
    Chen, Tse-Wei
    Kaviyarasu, K.
    [J]. JOURNAL OF ALLOYS AND COMPOUNDS, 2022, 902
  • [6] Fabrication of nanostructured NiO and NiO:Cu thin films for high-performance ultraviolet photodetector
    Balakarthikeyan, R.
    Santhanam, A.
    Anandhi, R.
    Vinoth, S.
    Al-Baradi, Ateyyah M.
    Alrowaili, Z. A.
    Al-Buriahi, M. S.
    Kumar, K. Deva Arun
    [J]. OPTICAL MATERIALS, 2021, 120
  • [7] Optical and Electrochemical Applications of Li-Doped NiO Nanostructures Synthesized via Facile Microwave Technique
    Bhatt, Aarti S.
    Ranjitha, R.
    Santosh, M. S.
    Ravikumar, C. R.
    Prashantha, S. C.
    Maphanga, Rapela R.
    Lenz e Silva, Guilherme F. B.
    [J]. MATERIALS, 2020, 13 (13) : 1 - 17
  • [8] Fast response photodetector analysis based on NiO nanowire using a catalyst-free technique
    Chanu, Laishram Thoibileima
    Singh, Naorem Khelchand
    [J]. APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING, 2022, 128 (11):
  • [9] Deshpande M. P., 2016, Advanced Materials Research, V1141, P65, DOI 10.4028/www.scientific.net/AMR.1141.65
  • [10] One-Dimensional Metal-Oxide Nanostructures: Recent Developments in Synthesis, Characterization, and Applications
    Devan, Rupesh S.
    Patil, Ranjit A.
    Lin, Jin-Han
    Ma, Yuan-Ron
    [J]. ADVANCED FUNCTIONAL MATERIALS, 2012, 22 (16) : 3326 - 3370