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Tunable multicolor and white luminescence in Tb3+/Dy3+/Mn2+ doped CePO4 via energy transfer

Authors :
Ling Rao
Songjun Zeng
Zhigao Yi
Zheng Li
Haibo Wang
Wei Lu
Source :
Journal of Alloys and Compounds. 637:489-496
Publication Year :
2015
Publisher :
Elsevier BV, 2015.

Abstract

In this paper, a series of Tb 3+ /Dy 3+ /Mn 2+ doped CePO 4 downconversion nanophosphors (DCNPs) were prepared by a one-pot hydrothermal process. The obtained DCNPs presented monoclinic and hexagonal phase structure with wire-like shape. The photoluminescence (PL) properties and the energy transfer (ET) mechanism of these DCNPs were investigated in detail. The ET mechanism of Ce 3+ /Tb 3+ in CePO 4 host was calculated by means of concentration quenching and spectral overlapping, and calculation results revealed that dipole–dipole interactions should be more responsible. The maximum value of ET efficiency was measured to 87.4% for Tb 3+ doped CePO 4 system. In addition, owing to the efficient ET between Ce 3+ and Tb 3+ /Dy 3+ /Mn 2+ , these as-prepared DCNPs exhibit tunable multi-color output under ultra-violet (UV) light excitation. More importantly, the intense cold and warm white emissions can be realized by singly doping 2%Dy 3+ and 20%Mn 2+ in CePO 4 host under UV irradiation, respectively. The corresponding CIE 1931 coordinates were calculated to be (0.30, 0.30) and (0.30, 0.32), respectively, which are closed to the standard white emission (0.33, 0.33). These findings demonstrate the efficient white light emission by singly doped Dy 3+ or Mn 2+ in CePO 4 system for the first time, which is different from commonly used co-doped or tri-doped system. The multicolor tuning and white emission make these Tb 3+ /Dy 3+ /Mn 2+ doped CePO 4 DCNPs potential phosphors in the fields of displays, lighting, and field-emission devices.

Details

ISSN :
09258388
Volume :
637
Database :
OpenAIRE
Journal :
Journal of Alloys and Compounds
Accession number :
edsair.doi...........a737e50d879851dfb89e0330cc3431fa
Full Text :
https://doi.org/10.1016/j.jallcom.2015.03.045