Issue 39, 2022

A single-component white-light-emitting fluorescent material with high color rendering index based on resonance energy transfer

Abstract

The development of single-component high-quality warm white light-emitting phosphors is a research hotspot and key in the field of white light illumination. In this paper, a series of Ca8ZnGa0.4La0.6(PO4)7:xEu2+,yMn2+ solid solutions were prepared based on resonance energy transfer to achieve a controlled tuning of the emission color from blue-green to red, and a single-phase white-light-emitting phosphor Ca8ZnGa0.4La0.6(PO4)7:0.003Eu2+,0.02Mn2+ was obtained. The doping of Mn2+ leads to the rearrangement of Eu2+ at different cation positions, while the sensitization effect of different emission peaks of Eu2+ on Mn2+ was inconsistent, and the contribution of the 490 nm emission peak was greater. In addition, the thermal stability properties of the different emission peaks of Eu2+ differed due to different thermal ionization probabilities, and the Mn2+ emission centers showed better thermal stability properties as the non-radiative relaxation between Eu2+ and Mn2+ was enhanced with increasing temperature. Finally, the Ca8ZnGa0.4La0.6(PO4)7:0.003Eu2+,0.02Mn2+ phosphor-converted WLED exhibited a high quality warm white light emission with an ultra-high color rendering index (Ra = 94.7) and a suitable CCT value (4277 K) at an operating current of 300 mA.

Graphical abstract: A single-component white-light-emitting fluorescent material with high color rendering index based on resonance energy transfer

Supplementary files

Article information

Article type
Paper
Submitted
24 Apr 2022
Accepted
09 Sep 2022
First published
16 Sep 2022

J. Mater. Chem. C, 2022,10, 14643-14652

A single-component white-light-emitting fluorescent material with high color rendering index based on resonance energy transfer

C. Xie, Z. Wang, H. Yu, J. Yang, Y. Liu and L. Mei, J. Mater. Chem. C, 2022, 10, 14643 DOI: 10.1039/D2TC01698B

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