Issue 38, 2020

Realizing red/orange emission of Eu2+/Ce3+ in La26−xSrxSi41Ox+1N80−x (x = 12.72–12.90) phosphors for high color rendition white LEDs

Abstract

Rare-earth-activated phosphors play key roles in controlling the optical quality of phosphor-converted white light-emitting diodes (pc-wLEDs), but it is still a challenge to discover new phosphors with interesting properties or structures. In this work, we applied the single-particle-diagnosis approach to screen and find phosphors in a multi-nary system La–Sr–Si–O–N, and discovered broadband red- or orange-emitting La26−xSrxSi41Ox+1N80−x:Eu2+/Ce3+ (x = 12.72–12.90) phosphors. The single-crystal structure refinement results show that La13.1Sr12.9Si41O13.9N67.1 (x = 12.9) crystallizes in the hexagonal system (space group P[6 with combining macron], No. 174, Z = 3) with a = b = 17.3506 (5) Å, c = 22.4052 (6) Å. The crystal structure of La26−xSrxSi41Ox+1N80−x consists of three-dimensional frameworks formed by edge-, corner- and face-sharing Si(O,N)4 tetrahedra, where 23 independent and disordered La/Sr atoms are embedded in one unit cell. Under 450 nm excitation, the Eu2+-doped sample shows broad band red emission (λem = 643 nm, full-width at half maximum (FWHM) = 3477 cm−1 (142 nm)), and the Ce3+-doped one gives an orange emission (λem = 568 nm, FWHM = 4700 cm−1 (155 nm)). This makes La26−xSrxSi41Ox+1N80−x:Eu2+/Ce3+ an interesting phosphor for high color rendering pc-wLEDs, and an additional example for exploring the structure–property relations.

Graphical abstract: Realizing red/orange emission of Eu2+/Ce3+ in La26−xSrxSi41Ox+1N80−x (x = 12.72–12.90) phosphors for high color rendition white LEDs

Supplementary files

Article information

Article type
Paper
Submitted
29 Jul 2020
Accepted
26 Aug 2020
First published
27 Aug 2020

J. Mater. Chem. C, 2020,8, 13458-13466

Realizing red/orange emission of Eu2+/Ce3+ in La26−xSrxSi41Ox+1N80−x (x = 12.72–12.90) phosphors for high color rendition white LEDs

Y. Zhang, S. Li, T. Takeda, S. Funahashi, N. Hirosaki and R. Xie, J. Mater. Chem. C, 2020, 8, 13458 DOI: 10.1039/D0TC03585H

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