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2000
Volume 16, Issue 4
  • ISSN: 1872-2105
  • E-ISSN: 2212-4020

Abstract

Background: Hydrothermal method was used to prepare TiO-ZrO and Eu doped TiO-ZrO nanocomposites for dye sensitized solar cell app lication. Methods: X-ray diffraction was used to study the structural properties of prepared samples. Anatase and Rutile phases of TiO and Monoclinic and tetragonal phases of ZrO have been detected from XRD in prepared samples. The crystallite size of prepared samples lies between 6 to 18 nm. Absorption edge has been shifted to the longer wavelength region. The optical bandgap of TiO-ZrO (2.15 eV) and Eu doped TiO-ZrO nanocomposites (2.03 eV) have been calculated using Tauc’s plot. A decrease in bandgap compared to pure TiO2 has been observed. The increased refractive index has been determined from UV -Visible spectra. Results: Because of the high refractive index photons can stay for longer period of time inside the material and then they can be used to generate electrons in dye sensitized solar cell. An attempt was made to prepare an inexpensive dye sensitized solar cell by replacing synthetic organic dye with natural dye (pomegranate juice) and platinum coated counter electrode by carbon coated electrode. The improvement in efficiency has been recorded for prepared samples and it has been found to be 0.71%, 1.97% and 6.25% for TiO2, TiO-ZrO nanocomposite and Eu doped TiO-ZrO nanocomposite respectively. Conclusion: A simple and cost-effective DSSC prepared by materials is capable of producing a good amount photocurrent.

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/content/journals/nanotec/10.2174/1872210515666210614163845
2022-12-01
2025-07-10
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