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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microwave synthesis of red-emitting Ca2Si5N8:Eu2+ phosphor and its photoluminescence properties for white-LEDs
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Microwave synthesis of red-emitting Ca2Si5N8:Eu2+ phosphor and its photoluminescence properties for white-LEDs

机译:红发Ca2Si5N8的微波合成:Eu2 +磷光体及其用于白光LED的光致发光性能

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A microwave synthesis method has been developed for synthesis of Ca2Si5N8:Eu2+ phosphor and its photoluminescence properties were investigated. Ca, Si, and Eu 2 0 3 powders were used as the reactants serving as the sources of the Ca, Si and Eu. Addition of NaN3 NH4Cl and Si3N4 powders was found to increase significantly the product yield. These powders were mixed and pressed into a compact which was then embedded in AIN powder inside a BN crucible. The crucible was then placed at the center of the microwave cavity (TE103 single-mode). The microwave synthesis was performed at a microwave power (2.45 GHz) of 600 W for 1 h in a flowing 90%N 2 -10%H 2 gas at one atmosphere. The effects of process parameters on the product yield were investigated and a reaction mechanism was proposed. The synthesized Ca2Si5N8:Eu2+ phosphor absorbs light in the region of 240-520 nm and shows a single broad band emission in the region of 550-700 nm (peaking at 596-606 nm). The peak emission intensity at an optimized Eu2O3 molar ratio (0.03) was measured to be -106% of the commercial YAG:Ce3+ (P46-Y3) phosphor. (C) 2018 Elsevier B.V. All rights reserved.
机译:已经开发了用于合成Ca2Si5N8:Eu2 +荧光体的微波合成方法,并研究了其光致发光性能。 Ca,Si和Eu 2 0 3粉末用作作为Ca,Si和Eu的来源的反应物。发现纳米NH 4 Cl和Si3N4粉末的添加显着增加产物产率。将这些粉末混合并压成压块,然后将其嵌入在BN坩埚内的AIN粉末中。然后将坩埚放置在微波腔体(TE103单模)的中心。微波合成在600W的微波功率(2.45GHz),在一个大气中在流动的90%N 2 -10%H 2气体中以600W。研究了工艺参数对产物产量的影响,提出了反应机理。合成Ca2Si5N8:Eu2 +的荧光体吸收在240-520 nm和示出的550-700纳米的区域中的单个宽带发射(峰值在596-606纳米)的区域中的光。测量优化的Eu2O3摩尔比(0.03)的峰发射强度为-106%的商业YAG:Ce3 +(P46-Y3)磷光体。 (c)2018年elestvier b.v.保留所有权利。

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