4.6 Article

Dysprosium concentration-dependent fluorescent properties of antimony lead Oxyfluoroborate glasses

Journal

CHEMICAL PHYSICS LETTERS
Volume 787, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.cplett.2021.139210

Keywords

Glasses; w-LEDs; Dysprosium; Emission cross-section; Quantum efficiency; CIE chromaticity

Funding

  1. Department of Science and Technology (DST), Govt. of India [SR/FST/PS-1/2018/35]

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Dysprosium-doped antimony lead oxufluoroborate glasses with different concentrations were synthesized and studied for their utility in photonic device applications. The glasses showed promising optical properties and thermal stability, making them potential candidates for white Light Emitting Diodes (w-LEDs) and visible lasers.
Different concentrations of dysprosium (Dy3+) ions doped antimony lead oxufluoroborate (SbPbOFB) glasses were synthesized through melt quenching method. These prepared glasses are aimed to study for their utility in photonic device applications such as white Light Emitting Diodes (w-LEDs) and visible lasers. Glassy nature and thermal stability of the undoped SbPbOFB glass was investigated by X-Ray Diffraction (XRD) and Thermal Gravimetry Analysis (TGA) techniques. Spectroscopic features were studied by diverse methods like optical absorption, photoluminescence (PL) excitation, PL emission and PL decay spectra. The Judd-Ofelt (J-O) analysis was used to understand the asymmetry and bonding nature in the as prepared glasses. The emission spectra recorded from 400 to 700 nm show three intense bands in blue (482 nm), yellow (575 nm) and red (663 nm) regions corresponds to the transitions F-4(9/2)& nbsp; -> H-6(15/2), F-4(9/2) -> H-6(13/2) and F-4(9/2) -> 6H(11/2) respectively. Relatively higher values of emission cross-section (sigma(se)) along with branching ratio and quantum efficiency obtained for SbPbOFBDy1.0 glass for F-4(9/2) -> (9/2) transition (yellow band) reveal its ability as potential candidate for visible yellow lasers. The Commission Internationale de I'Elcairage (CIE) color chromaticity coordinates estimated from the PL spectra are in proximity with the traditional white light coordinates (x = 0.333, y = 0.333) and illustrate the ability of the as prepared glasses to fabricate w-LEDs.

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