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Morphology-dependent photoluminescence property of red-emitting LnOCl : Eu (Ln = La and Gd)

机译:发出红色光的LnOCl:Eu(Ln = La和Gd)的形态依赖的光致发光特性

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Three different synthetic methods, the liquid phase process in HCl solution, the solvothermal reaction, and the surfactant-assisted solvothermal reaction, were explored to selectively control the particle shape and to enhance the luminescence intensity of the PbFCl-type red-emitting oxychloride phosphors LnOCl:Eu (Ln = La and Gd). The solvothermal pressure facilitated the low-temperature crystallization of the rod-shape particles for both Ln = La and Gd. It is noted that LaOCl:Eu nanorods show highly porous particle surface and quite low photoemission intensity. In contrast, the solvothermal synthesis could highly enhance the red-emission of GdOCl:Eu with no porous surface so as to be comparable to that of commercial Y2O3:Eu phosphor. An addition of surfactant material during solvothermal reaction yielded a rhomboidal-shape phosphor particles with no porous surface for both Ln = La and Gd. Interestingly, the elimination of surface porosity by using a surfactant significantly increased the emission intensity of LaOCl:Eu. It is proposed that the application of solvothermal technique for the synthesis of the PbFCl-type oxychloride phosphors is very effective to selectively control the particle shape and consequently to enhance the photoemission intensity if we use an appropriate surfactant material. (c) 2007 Elsevier Inc. All rights reserved.
机译:研究了三种不同的合成方法,即在HCl溶液中进行液相处理,溶剂热反应和表面活性剂辅助溶剂热反应,以选择性地控制颗粒形状并增强PbFCl型发红氯氧化磷荧光粉LnOCl的发光强度。 :Eu(Ln = La和Gd)。对于Ln = La和Gd,溶剂热压力促进了棒状颗粒的低温结晶。应当指出,LaOCl:Eu纳米棒显示出高度多孔的颗粒表面和相当低的光发射强度。相反,溶剂热合成可以在没有多孔表面的情况下极大地增强GdOCl:Eu的红色发射,从而与商业Y2O3:Eu荧光粉相当。在溶剂热反应期间添加表面活性剂材料产生了菱形的磷光体颗粒,对于Ln = La和Gd而言,它们都没有多孔表面。有趣的是,通过使用表面活性剂消除表面孔隙率显着提高了LaOCl:Eu的发射强度。提出如果使用合适的表面活性剂材料,将溶剂热技术应用于PbFCl型氯氧化磷的合成非常有效地选择性地控制颗粒形状,从而提高光发射强度。 (c)2007 Elsevier Inc.保留所有权利。

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