<p>Enhanced charge separation metal oxide/V<sub>2</sub>O<sub>5</sub>/SrTiO<sub>3</sub> was designed using simple precipitation method. The synthesized metal oxides were subjected to X-ray diffraction for structural confirmation. The compositions of solids were confirmed using FTIR spectra. The optical properties of the synthesized nanocomposites were studied and its energygap was also calculated. The surface morphology of the synthesized metal oxide was studied through Scanning Electron Microscope (SEM). The structural changes in conjugated systems were studied using fluorescence studies. Photoluminescence studies were studied and excitation wavelength strong emission peak were also calculated. The open aperture (OA) Z-scan technique was adopted to determine nonlinear absorption (NLA) and optical limiting properties of the sample. It was notices that normalized transmittance T(z) decreases for larger intensity. The Z-scan results indicate that the synthesized nanoparticles can be utilized in optical limiting applications.</p>

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Investigation on third-order nonlinear optical properties, XRD, FTIR, energygap, photoluminescence and scanning electron microscope of metal oxide/V2O5/SrTio3

  • Ambrose RajKumar Mariadass,
  • Amjad Hassan Khan MK,
  • Mamatha S Upadhya,
  • Vadhana Sharon,
  • Shivaraj Maidur,
  • Mallikarjun H. Anandalli,
  • M. Sappani Muthu,
  • Prem Anand Devarajan

摘要

Enhanced charge separation metal oxide/V2O5/SrTiO3 was designed using simple precipitation method. The synthesized metal oxides were subjected to X-ray diffraction for structural confirmation. The compositions of solids were confirmed using FTIR spectra. The optical properties of the synthesized nanocomposites were studied and its energygap was also calculated. The surface morphology of the synthesized metal oxide was studied through Scanning Electron Microscope (SEM). The structural changes in conjugated systems were studied using fluorescence studies. Photoluminescence studies were studied and excitation wavelength strong emission peak were also calculated. The open aperture (OA) Z-scan technique was adopted to determine nonlinear absorption (NLA) and optical limiting properties of the sample. It was notices that normalized transmittance T(z) decreases for larger intensity. The Z-scan results indicate that the synthesized nanoparticles can be utilized in optical limiting applications.