Department of Physics, Institute of Science, R.T Road, Civil Lines, Nagpur, Maharashtra, India- 440001.
GSC Advanced Research and Reviews, 2024, 19(01), 200-214
Article DOI: 10.30574/gscarr.2024.19.1.0144
Received on 05 March 2024; revised on 18 April 2024; accepted on 21 April 2024
Na₀.₇K₀.₃Li₃SiO₄ phosphors doped with Ce³⁺ and Dy³⁺ ions were synthesized in the present investigation using a microwave-assisted solution combustion synthesis method and subsequently underwent thermal treatment at 800°C. The synthesized material was analyzed using X-ray diffraction and scanning electron microscopy (SEM), while its photoluminescence properties were examined by excitation and emission spectroscopy at room temperature. X-ray diffraction (XRD) verified phase-pure orthorhombic crystal structures, characterized by space group I4₁/a and a crystalline size of 55.56 nm, as determined by the Debye-Scherrer formula. SEM images revealed numerous approximately spherical irregular particles, with an average particle size of 45 nm. Photoluminescence (PL) investigations revealed blue emission in Ce³⁺-doped materials associated with 5d → 4f transitions and distinctive yellow and blue emissions in Dy³⁺-doped samples resulting from ⁴F₉/₂ → ⁶H₁₁/₂ transitions. The optical band gap was determined via UV-Vis spectroscopy and Tauc plots, yielding values of 4.93 eV for Ce³⁺-doped samples and 5.13 eV for Dy³⁺-doped samples. These phosphors demonstrate favourable luminescent characteristics for ultraviolet-excited white LED applications.
Microwave-Assisted; Combustion; Photoluminescence; White LED
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Yogesh Bhojraj Wankhede and Raju Madan Belekar. Synthesis, characterization and optical properties of Na0.7K0.3Li3SiO4 phosphor doped with Ce³⁺ and Dy³⁺ . GSC Advanced Research and Reviews, 2024, 19(01), 200-214. Article DOI: https://doi.org/10.30574/gscarr.2024.19.1.0144.