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Photoluminescence properties of a ScBO:Cr phosphor and its applications for broadband near-infrared LEDs
The rapid extension of solid state lighting technologies offers the possibility to develop broadband near-infrared (NIR) phosphor-converted LEDs (pc-LEDs) as novel NIR light sources. In this paper, a new NIR-emitting phosphor ScBO 3 :Cr 3+ was synthesized by a high temperature solid state reaction m...
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Published in: | RSC advances 2018-03, Vol.8 (22), p.1235-1242 |
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Main Authors: | , , , , , |
Format: | Article |
Language: | |
Online Access: | Get full text |
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Summary: | The rapid extension of solid state lighting technologies offers the possibility to develop broadband near-infrared (NIR) phosphor-converted LEDs (pc-LEDs) as novel NIR light sources. In this paper, a new NIR-emitting phosphor ScBO
3
:Cr
3+
was synthesized by a high temperature solid state reaction method. Phase structure, spectroscopic properties, luminescent lifetime, quantum yield, emitter concentration influences and thermal quenching behavior of ScBO
3
:Cr
3+
, as well as its applications for NIR pc-LEDs, were systematically investigated. ScBO
3
:Cr
3+
phosphors exhibit a broad absorption band ranging from 400 to 530 nm, which matches well with the characteristic emission of the blue LED chip. Moreover, Cr
3+
ions occupy the Sc
3+
sites with relatively low crystal field strength in the ScBO
3
host, and therefore ScBO
3
:Cr
3+
phosphors show intense broadband emission peaking at ∼800 nm upon excitation at 460 nm, originating from spin-allowed
4
T
2
→
4
A
2
transition of Cr
3+
ions. The optimum Cr
3+
concentration was determined to be ∼2 mol% with a quantum yield of ∼65%. A broadband NIR pc-LED prototype device was fabricated by the combination of ScBO
3
:Cr
3+
phosphors and a blue LED chip, which showed a maximum NIR light output power of ∼26 mW and a corresponding energy conversion efficiency of ∼7%. The results indicate the great potential of ScBO
3
:Cr
3+
phosphors for applications in broadband NIR pc-LEDs.
A new NIR-emitting phosphor ScBO
3
:Cr
3+
was investigated and its great potential for applications in broadband NIR pc-LEDs was demonstrated. |
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ISSN: | 2046-2069 |
DOI: | 10.1039/c8ra01084f |