Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7840539 | Journal of Luminescence | 2018 | 6 Pages |
Abstract
The Mn4+,Zn2+:Li2TiO3red phosphors are synthesized through the high temperature solid state reaction method. The XRD, SEM, ICP, absorption spectra, excitation and emission spectra are described. The Zn2+ acts as the luminescence adjustment ion to enhance the red emission efficiency. The phosphors have the crystal structure consisting of [TiO6] and [LiO6] octahedral sites and the Zn-O-Zn bonds. Concentration dependence on Zn2+ in Mn4+,Zn2+: Li2TiO3 is presented. Results indicate the suitable concentration of Zn2+ can enhance the emission efficiency. In the region of 682-697Â nm when excited by 475Â nm, the external quantum efficiency are obtained to be 18%, correlative with the transition of 2Eg (2T1)â4A2g of Mn4+. The crystal field strength (Dq) and the Racah parameters (B and C) are estimated to evaluate the nephelauxetic effect of Mn4+. The white-LED performances and thermal stability are also presented.
Keywords
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Physical Sciences and Engineering
Chemistry
Physical and Theoretical Chemistry
Authors
Fugui Yang, Liang Qiao, Haike Ren, Fengpo Yan,