Abstract

Abstract The structural and luminescent properties of Eu 3+ doped TiO 2 nanophosphors synthesized by low cost combustion method were investigated. The X-ray diffraction analysis revealed that crystallite size decreases with doping concentration. Lattice volume expansion occurred due to the substitution of Ti 4+ ions by larger ionic radii ions Eu 3+ . FESEM images showed prepared phosphors to be nano size spherical shaped particles. Energy band gap of 3 mol% Eu 3+ doped samples decreased to 3.15 eV due to doping effect. The Eu 3+ doped TiO 2 nanophosphors exhibited main red emission peak centered at 616 nm under 395 nm UV light excitation. Concentration quenching was observed at 3 mol% doping, that has been ascribed to dipole-dipole interaction. The covalent nature of Eu-O bond and environment around Eu 3+ ions were discussed using Judd-Ofelt (J-O) intensity parameters. Internal quantum efficiency was calculated using excited state lifetime 5 D 0 state of Eu 3+ ion and J-O theory. The CIE colour coordinates and colour purity were calculated using the spectral energy distribution function. Low excited state life time indicated that Eu 3+ doped TiO 2 can be used as red emitting phosphor for white light emitting diode applications.

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