Synthesis characterization and optical properties study of zns zns mn zns ni nano structured materials
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newlineAbstract
newlineZnS, ZnS:Mn, ZnS:Ni nano-crystals were successfully synthesized at
newlinedifferent weight percentage into poly-vinyl alcohol matrix by chemical route method.
newlineThe influence of different dopant concentrations on the formation of surface
newlinemorphology, particle size and optical properties of both undoped and doped ZnS nanocrystalline
newlinecompounds were investigated. The nano structure was characterized with the
newlinehelp of X-ray diffraction (XRD). XRD studies confirmed that the nano crystalline
newlinecompounds formed were zinc blende. Using Debye Scherrer s formula, the crystal size
newlineof ZnS, ZnS:Mn, ZnS:Ni nanoparticles were calculated and the average particle were
newlinefound to be 2.88 nm, 2.27 nm, 2.49 nm respectively. However, the broadening of the
newlineXRD peaks at different weight percentage of Mn and Ni indicates the presence of both
newlineMn and Ni. With the increase of dopant concentration, the particle size decreases and
newlineband gap energy increases. Transmission Electron Microscopy (TEM) showed the
newlineuniformity of the nanoparticles and their size. The particles were found to be spherical
newlinein shape and the average particle size for ZnS, ZnS:Mn, ZnS:Ni obtained from TEM
newlinewere 3.5 nm, 2.45 nm, 3.75 nm respectively. Selected area electron diffraction (SAED)
newlineshowed a set of three well defined rings corresponding to planes (111), (220), (311)
newlinewhich tallied well with the JCPDS card No. 05-0566. Surface morphology
newlinewas studied with the help of Scanning Electron Microscopy (SEM). The compositional
newlineanalysis of ZnS:Mn and ZnS-Ni were carried out by EDX spectrum confirms the doping
newlinepercentage of Mn and Ni in ZnS nanoparticles. The EDX spectra for Mn and Ni doping
newlineat 0.25%, 0.50% 0.75%, 1.0%, also confirm the presence of Mn and Ni in ZnS. The PL
newlinestudy indicates that both Mn and Ni act as electron trapping centres and this results
newlineAbstract
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newlinenonradiative recombination and hence the luminescence intensities decreases because of
newlineS-2. The band gap energy was calculated from the absorption spectra using Double
newlineBeam Automated Spectrophotometer (Hitachi U3210) [UV-Visible spectrometer] and
newlineband gap was found higher than bulk ZnS. The absorbance peaks for ZnS:Mn and
newlineZnS:Ni showed a tendency towards blue shift. It is also observed that with the
newlineincrease of doping concentration, the band gap increases. The particle size obtained
newlinefrom XRD, TEM and Brus equation are nearly equal at different concentration for both
newlineMn and Ni. Raman spectra indicated ZnS in well crystalline state both for Mn and Ni
newlinedoping. The 0.25% doping percentage is more effective in respect of particle size for
newlineboth Mn and Ni which is one of the fundamental requirement in nanoparticles. Blue and
newlinegreen emission at 0.5% to 1.0% indicate large band gap which has industrial
newlineapplication. More broadening of PL peaks for ZnS:Mn has been observed than ZnS:Ni.