2013
DOI: 10.1111/jace.12257
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Photoluminescence Characteristics of a New Thiogallate‐Based Green‐Emitting Phosphor: MgGa2S4:Eu2+

Abstract: A new thiogallate-based green-emitting phosphor, MgGa 2 S 4 : Eu 2+ , was first synthesized via a high-temperature solid-state reaction in a CS 2 atmosphere. We then investigated the structures and luminescent properties of the MgGa 2 S 4 :Eu 2+ phosphors. The MgGa 2 S 4 :Eu 2+ phosphors can be excited efficiently by UV-visible light in the wavelength range from 350 to 520 nm and they emit an intensely green light with emission bands peaking at 538 nm. The optimal concentration for Eu 2+ in MgGa 2 S 4 was foun… Show more

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Cited by 10 publications
(7 citation statements)
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References 38 publications
(48 reference statements)
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“…27 When doped with Eu 2+ , they show broad excitation bands in ultraviolet and blue regions, and a narrow FWHM (  50-60 nm) emission in the green region (500-560 nm). 14,15,27 These properties make Eu 2+ -doped MGa 2 S 4 very attractive as conversion phosphors for blue-emitting LEDs and backlight applications.…”
Section: Comparison Of the Properties Of Eu 2+ -Doped Mga 2 S 4 Phmentioning
confidence: 99%
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“…27 When doped with Eu 2+ , they show broad excitation bands in ultraviolet and blue regions, and a narrow FWHM (  50-60 nm) emission in the green region (500-560 nm). 14,15,27 These properties make Eu 2+ -doped MGa 2 S 4 very attractive as conversion phosphors for blue-emitting LEDs and backlight applications.…”
Section: Comparison Of the Properties Of Eu 2+ -Doped Mga 2 S 4 Phmentioning
confidence: 99%
“…The optical properties of Eu 2+ -doped ZnGa 2 S 4 and MgGa 2 S 4 are very close to each other. 14,15 Recently, Joos 29,30 In the case of Eu 2+ -doped BaGa 2 S 4 , the FWHM is 60 nm, 10 which may be related to the fact that Eu 2+ can occupy both Ba sites and/or to the larger Stokes shift, which is 0.5 eV for M=Ba versus 0.26 eV for M=Ca and Sr.…”
Section: Comparison Of the Properties Of Eu 2+ -Doped Mga 2 S 4 Phmentioning
confidence: 99%
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“…Lifetimes of Eu 2+ ions emission are usually in the range of 0.2–2 μs . The luminescent properties of Eu 2+ ‐doped solids have been widely studied during the past decades duo to its significant applications such as lamps lighting, white light‐emitting diodes (W‐LEDs), plasma display panels, long‐lasting fluorescence, X‐ray screen, and medical devices, etc …”
Section: Introductionmentioning
confidence: 99%
“…Recently, protective coatings of luminescent particles were successfully applied to enhance the stability of these sulfide materials [3,4,5]. Particularly vivid are the studies on binary sulfides [6,7,8,9,10,11], thiogallates [12,13,14,15] and thiosilicates [16,17,18,19,20,21,22,23,24,25]. The thiosilicates are, in many practical aspects, comparable to the thiogallates, but considering the depletion of certain natural resources, silicon is to be preferred over gallium, since it is far more abundant and cheaper.…”
Section: Introductionmentioning
confidence: 99%