Issue 34, 2022

Barium molybdate white emitting phosphor synthesized at room temperature by co-precipitation

Abstract

Crystalline BaMoO4:Dy3+ and BaMoO4:Sm3+ phosphors were synthesized by co-precipitation at room temperature. The main peak (112) phase and tetragonal structure were confirmed using X-ray diffraction analysis. The lattice constant and Raman signal on d(112) were changed by the rare earth doping. A strong absorption wavelength appeared in the UV region, and BaMoO4:Dy3+ excited with UV wavelength showed a yellow spectrum. BaMoO4:Sm3+ showed a reddish orange spectrum. BaMoO4:[Sm3+]/[Dy3+] was synthesized for use as a white light phosphor, and the change in the emission characteristics of yellow, white, and reddish orange could be observed depending on the doping concentration of Sm3+ ions. The synthesized phosphor powder and PDMS polymer were mixed to form a flexible composite, and when applied on a UV-LED chip, the same color as the powder was realized, suggesting its use as an LED color filter.

Graphical abstract: Barium molybdate white emitting phosphor synthesized at room temperature by co-precipitation

Article information

Article type
Paper
Submitted
24 Jun 2022
Accepted
22 Jul 2022
First published
08 Aug 2022
This article is Open Access
Creative Commons BY-NC license

RSC Adv., 2022,12, 21827-21835

Barium molybdate white emitting phosphor synthesized at room temperature by co-precipitation

S. Yi and J. Jung, RSC Adv., 2022, 12, 21827 DOI: 10.1039/D2RA03897H

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