2020
DOI: 10.1007/s40145-019-0346-0
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Red-emitting YAG: Ce, Mn transparent ceramics for warm WLEDs application

Abstract: A series of YAG:Ce,Mn transparent ceramics were prepared via a solid-state reaction-vacuum sintering method. The effects of various Mn 2+-Si 4+ pair doping levels on the structure, transmittance, and luminescence properties were systematically investigated. These transparent ceramics have average grain sizes of 10-16 μm, clean grain boundaries, and excellent transmittance up to 83.4% at 800 nm. Under the excitation of 460 nm, three obvious emission peaks appear at 533, 590, and 745 nm, which can be assigned to… Show more

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Cited by 125 publications
(45 citation statements)
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“…Then, the 4 T 1 -6 A 1 transition of Mn 2+ results in an orange-red emission. 38,39 3.5 CIE of YMAS:Ce 3+ and YMAS:Ce 3+ ,Mn 2+…”
Section: Energy Transfer In Ymas:ce 3+ Mn 2+mentioning
confidence: 99%
“…Then, the 4 T 1 -6 A 1 transition of Mn 2+ results in an orange-red emission. 38,39 3.5 CIE of YMAS:Ce 3+ and YMAS:Ce 3+ ,Mn 2+…”
Section: Energy Transfer In Ymas:ce 3+ Mn 2+mentioning
confidence: 99%
“…or partial substitute of Y 3+ by different ions (Gd 3+ , etc.) in YAG:Ce to add red spectral components in its spectrum, but usually with a sacrifice in luminous efficacy [15][16][17][18][19]. Alternatively, composite phosphor ceramics consisting of both red-and yellow-emitting phosphors are expected to realize high color rendering lighting.…”
Section: Introduction mentioning
confidence: 99%
“…Yttrium aluminum garnet Y 3 Al 5 O 12 (YAG) transparent ceramics have become a competitive substitute of YAG single crystals as host materials for solid state lasers, phosphors, and scintillators due to the advantages of the elaboration process (time-saving production period, low cost) and product characteristics (geometric versatility, relatively swift scalable manufacturing, and doping flexibility) [1][2][3][4][5][6]. In the last decades, various sintering synthetic approaches have been employed to synthesize the YAG transparent ceramics, such as spark plasma sintering [7,8], vacuum sintering [9], and hot isostatic pressing sintering [10].…”
Section: Introductionmentioning
confidence: 99%