Issue 8, 2024

Structure, luminescence properties, and valence-induced spectral behavior of a bismuth-activated garnet phosphor

Abstract

The increasing demand for full-visible-spectrum lighting has prompted the development of novel phosphors with multicolor emission. Trivalent Bi3+-activated phosphors, known for their tunable emission without spectral reabsorption phenomena, hold great potential for n-UV LED applications. A better understanding of the Bi3+ luminescence and valence transformation is significant. In this study, a bismuth-activated blue emitting phosphor Lu2SrAl4SiO12:Bi3+ (LSAS:Bi3+) with a garnet structure was successfully designed and synthesized via the high-temperature solid-state method. The crystal structure, electronic structure, and luminescence properties together with their relation are fully illustrated. The energy diagram of LSAS:Bi3+ was assigned through theoretical calculations and spectral analysis. Furthermore, we analyzed the luminescence of Bi2+ induced by electron beam excitation, demonstrating the transformation of Bi3+ in the LSAS matrix. This finding enhances the understanding of the luminescence properties of bismuth-activated phosphors. The WLED device with full-visible-spectrum was obtained based on LSAS:Bi3+ with an n-UV chip and green and red phosphors. This study not only provides insights into the structure–performance relationship of bismuth-activated phosphors but also expands their potential applications in optoelectronic devices.

Graphical abstract: Structure, luminescence properties, and valence-induced spectral behavior of a bismuth-activated garnet phosphor

Supplementary files

Article information

Article type
Paper
Submitted
05 Nov 2023
Accepted
07 Jan 2024
First published
08 Jan 2024

J. Mater. Chem. C, 2024,12, 2787-2793

Structure, luminescence properties, and valence-induced spectral behavior of a bismuth-activated garnet phosphor

G. Chen, Y. Qin, Z. Li, X. Wang and Y. Wang, J. Mater. Chem. C, 2024, 12, 2787 DOI: 10.1039/D3TC04039A

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