Title :
Structural and Magnetic Properties of Mn/Fe co-Doped ZnO Thin Films Prepared by Sol–Gel Technique
Author :
Ashraf, Robina ; Riaz, S. ; Bashir, Muhammad ; Khan, Umar ; Naseem, Shahzad
Author_Institution :
Centre of Excellence in Solid State Phys., Univ. of the Punjab, Lahore, Pakistan
Abstract :
Mn/Fe co-doped ZnO thin films are prepared by simple sol-gel and spin coating method. Five different sols with the change in concentration (1-5 wt%) of both Mn and Fe are synthesized. Molar ratio of Mn and Fe is kept constant, i.e., 1:1. Sols are spun onto glass and copper substrates by spin coating method followed by the post magnetic field annealing at 300 °C for 1 h. Effect of Mn and Fe codoping on ferromagnetic properties of ZnO is reported in this paper. Structural and magnetic properties of as prepared and annealed samples are investigated by X-ray diffractometer (XRD) and vibrating sample magnetometer (VSM). Scanning electron microscope is used to study the surface morphology of co-doped films. XRD results show incorporation of Mn and Fe in the host lattice upto a dopant concentration of 4 wt%. However, small crystallites of Mn and Fe2O3 are observed by increasing the dopant concentration to 5 wt%. VSM results indicate room temperature ferromagnetism in all samples without the presence of any secondary phases. Low value of shape anisotropy is observed in the case of Mn doped ZnO. However, no shape anisotropy is observed in the case of co-doped thin films. Moreover, Mn/Fe co-doped thin films show magnetic hysteresis equivalent to that of multilayered structure, indicating that such complex structures used in spintronic devices can be replaced by a single ZnO layer with codoping of Mn and Fe.
Keywords :
II-VI semiconductors; X-ray diffraction; crystallites; doping profiles; ferromagnetic materials; iron; magnetic anisotropy; magnetic annealing; magnetic hysteresis; magnetic thin films; magnetometry; manganese; scanning electron microscopy; semiconductor doping; semiconductor thin films; semimagnetic semiconductors; sol-gel processing; spin coating; surface morphology; wide band gap semiconductors; zinc compounds; Cu; SiO2; VSM; X-ray diffractometry; XRD; ZnO:Mn,Fe; codoping; copper substrates; crystallites; dopant concentration; ferromagnetic properties; ferromagnetism; glass substrates; magnetic hysteresis; magnetic properties; postmagnetic field annealing; scanning electron microscopy; shape anisotropy; sol-gel method; spin coating method; structural properties; surface morphology; temperature 300 degC; thin films; time 1 h; vibrating sample magnetometry; Doping; Iron; Magnetic hysteresis; Magnetic properties; Manganese; X-ray scattering; Zinc oxide; Diluted magnetic semiconductors (DMSs); Fe/Mn co-doped ZnO; ferromagnetism; sol??gel;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2014.2305670