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Two-site occupancy induced a broadband blue-emitting in Eu2+ doped Na3Ba2Ca(PO4)3 phosphor.

Authors :
Wu, Di
Si, Jiayong
Xie, Guodong
Huang, Junben
Cai, Gemei
Source :
Ceramics International. Nov2023:Part A, Vol. 49 Issue 22, p34805-34813. 9p.
Publication Year :
2023

Abstract

During the process of developing commercial chips, the phosphors with single broadband emission are indispensable. In this report, a new ternary phosphate phosphor Na 3 Ba 2 Ca(PO 4) 3 :Eu2+ has been successfully synthesized by the high-temperature solid-state reaction (HSSR) method, which shows broad emitting band in the range of 350–600 nm centered at 436 nm (FWHM ∼ 72.3 nm). The crystal structure of the Na 3 Ba 2 Ca(PO 4) 3 and Eu2+ doped Na 3 Ba 2 Ca(PO 4) 3 were determined by the Rietveld method, indicating the trigonal system with P 31 c space group. The selective two-site occupancy tendency of Eu2+ ions at Ba1O 9 and Ca2O 8 sites in the matrix was comprehensively revealed according to the split peaks (433 nm and 469 nm) at 298 K and 11 K, computational validation and fluorescence lifetime analysis of photoluminescence spectrum. Impressively, the optimal Na 3 Ba 2 Ca(PO 4) 3 :0.02Eu2+ phosphor exhibits appropriate spectrum resemblance (SR) indexes (58.5% and 72.2%), proper thermostability (78.6%) and excellent chromaticity stability (Δ x = 8.68 × 10−6 and Δ y = 3.64 × 10−5). Besides, the phosphor prepared by HSSR owns the higher internal quantum efficiency of 62.1% in comparison with that synthesized by polymerizable complex (PC) method. The new phosphor can serve as a potential broadband and blue-emitting phosphor for the application of solid-state lighting and plant growth. [Display omitted] • First synthesis of Eu2+ ion doped Na 3 Ba 2 Ca(PO 4) 3 phosphor by high temperature solid phase method. • The internal quantum efficiency of phosphor prepared in this work is 9 times of polymerizable complex (PC) method. • Two site-occupancy of Eu2+ in host was carefully determined. • The Na 3 Ba 2 Ca(PO 4) 3 : 0.02Eu2+ owns good thermostability and chromaticity stability. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02728842
Volume :
49
Issue :
22
Database :
Academic Search Index
Journal :
Ceramics International
Publication Type :
Academic Journal
Accession number :
172978659
Full Text :
https://doi.org/10.1016/j.ceramint.2023.08.154