• DocumentCode
    39189
  • Title

    Finite Size Effects in Magnetic and Optical Properties of Antiferromagnetic NiO Nanoparticles

  • Author

    Kisan, Bhagaban ; Shyni, P.C. ; Layek, Samar ; Verma, H.C. ; Hesp, David ; Dhanak, Vin ; Krishnamurthy, S. ; Perumal, A.

  • Author_Institution
    Dept. of Phys., Indian Inst. of Technol. Guwahati, Guwahati, India
  • Volume
    50
  • Issue
    1
  • fYear
    2014
  • fDate
    Jan. 2014
  • Firstpage
    1
  • Lastpage
    4
  • Abstract
    We report systematic investigations on structural, magnetic and optical properties of NiO nanoparticles prepared by mechanical alloying. As-milled powders exhibit face centred cubic structure, but average particle size decreases and effective strain increases for the initial periods of milling. Lattice volume increases monotonically with a reduction in particle size. Antiferromagnetic NiO particles exhibit significant room temperature (RT) ferromagnetism with modest moment and coercivity. A maximum moment of 0.0147 μB/f.u at 12 kOe applied field and a coercivity of 160 Oe were obtained for 30 h milled NiO powder. Exchange bias decreases linearly with a decrease in NiO particle size. Thermo-magnetization data reveal the presence of mixed magnetic phases in milled powders and shifts magnetic phase transition towards high temperature with increasing milling. Annealing of milled NiO powder and photoluminescence studies show a large reduction in RT magnetic moment and blue-shifting of band edge emission peak. The observed properties are discussed on the basis of finite size effect, defect density, oxidation/reduction of Ni, increase in number of sublattices, uncompensated spins from surface to particle core, and interaction between uncompensated surfaces and particle core with lattice expansion.
  • Keywords
    annealing; antiferromagnetic materials; coercive force; exchange interactions (electron); ferromagnetic materials; magnetic moments; magnetic particles; magnetic transitions; mechanical alloying; milling; nanomagnetics; nanoparticles; nickel compounds; oxidation; particle size; photoluminescence; reduction (chemical); size effect; spectral line shift; thermomagnetic effects; NiO; annealing; antiferromagnetic nanoparticles; as-milled powders; blue-shift; coercivity; exchange bias; finite size effects; lattice expansion; lattice volume; magnetic moment; magnetic phase transition; magnetic properties; mechanical alloying; optical properties; oxidation; particle size; photoluminescence; reduction; room temperature ferromagnetism; structural properties; temperature 293 K to 298 K; thermomagnetization; time 30 h; Lattices; Magnetic cores; Magnetic properties; Nanoparticles; Nickel; Powders; Temperature; Antiferromagnetism (AFM); ferromagnetism (FM); magnetic nanoparticles; multisublattice; quantum confinement;
  • fLanguage
    English
  • Journal_Title
    Magnetics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9464
  • Type

    jour

  • DOI
    10.1109/TMAG.2013.2278539
  • Filename
    6693015