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Smart design to resolve spectral overlapping of phosphor-in-glass for high-powered remote-type white light-emitting devices

Authors
Lee, Jin SeokArunkumar, P.Kim, SunghoonLee, In JaeLee, HyungeuiIm, Won Bin
Issue Date
Feb-2014
Publisher
OPTICAL SOC AMER
Citation
OPTICS LETTERS, v.39, no.4, pp.762 - 765
Indexed
SCIE
SCOPUS
Journal Title
OPTICS LETTERS
Volume
39
Number
4
Start Page
762
End Page
765
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/160625
DOI
10.1364/OL.39.000762
ISSN
0146-9592
Abstract
The white light-emitting diode (WLED) is a state-of-the-art solid state technology, which has replaced conventional lighting systems due to its reduced energy consumption, its reliability, and long life. However, the WLED presents acute challenges in device engineering, due to its lack of color purity, efficacy, and thermal stability of the lighting devices. The prime cause for inadequacies in color purity and luminous efficiency is the spectral overlapping of red components with yellow/green emissions when generating white light by pumping a blue InGaN chip with yellow YAG:Ce3+ phosphor, where red phosphor is included, to compensate for deficiencies in the red region. An innovative strategy was formulated to resolve this spectral overlapping by alternatively arranging phosphor-in-glass (PiG) through cutting and reassembling the commercial red CaAlSiN3:Eu2+ and green Lu3Al5O12:Ce3+ PiG. PiGs were fabricated using glass frits with a low softening temperature of 600 degrees C, which exhibited excellent thermal stability and high transparency, improving life time even at an operating temperature of 200 degrees C. This strategy overcomes the spectral overlapping issue more efficiently than the randomly mixed and patented stacking design of multiple phosphors for a remote-type WLED. The protocol for the current design of PiG possesses excellent thermal and chemical stability with high luminous efficiency and color purity is an attempt to make smarter solid state lighting for high-powered remote-type white light-emitting devices.
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