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发光材料BaSrMg(PO42∶Eu3+的水热法制备及发光性能研究

Study on Hydrothermal Preparation and Luminescence Properties of Luminescent Material BaSrMg(PO42∶Eu3+

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【作者】 胡青松朱澄静夏悦怡王丽丽刘文涵潘再法

【Author】 HU Qing-song;ZHU Cheng-jing;XIA Yue-yi;WANG Li-li;LIU Wen-han;PAN Zai-fa;Chemical Engineering Science,Zhejiang University of Technology;

【机构】 浙江工业大学化学工程学院

【摘要】 采用水热法制备了可用于白光LED的红色发光材料BaSrMg(PO42∶Eu3+。通过X射线衍射(XRD)和场发射扫描电子显微镜(FESEM)对其结构和形貌进行测试表征,研究了不同pH值(5,6,7和8)和不同反应温度(120,140,160,180和200℃)对荧光粉的晶体结构和形貌的影响。从XRD的结果可以看到,当pH6时合成的样品的衍射峰为较高强度的锐锋,FESEM扫描图像也显示该制备条件下获得了立方体形状的规则晶体。在pH值分别为5,7,8时所制备的样品XRD图谱中大多是强度很弱的宽峰叠加了极少的锐锋,表明样品为固熔体或者含有混合相,这与FESEM扫描图像所显示的无定形态颗粒的结果相一致。荧光光谱测试结果表明,该荧光粉在394nm波长光的激发下产生的发射谱包含了以下6组发射峰536nm(5 D1→7 F1),578nm(5 D07 F0),590nm(5 D07 F1),613nm(5 D07 F2),646nm(5 D07 F3)和696nm(5 D07 F4)。荧光粉的激发光谱分别由361nm(7 F05 D4),380nm(7 F05 L8),394nm(7 F05 L6)和464nm(7 F05 D2)四组激发峰组成。经过条件优化后制备的荧光粉的主要激发峰在394nm(7 F05 L6),该荧光粉在394nm波长光激发下产生的发射峰主峰在613nm(5 D07 F2)。发射峰的劈裂随着pH值和温度的变化而改变,这一现象说明了荧光粉的发光性质与它的晶体结构和颗粒形貌存在着密切的联系。

【Abstract】 Eu3+doped BaSrMg(PO42 were prepared by a hydrothermal method.The crystal structure and morphology of BaSrMg(PO42∶Eu3+phosphor were characterized by X-ray powder diffraction(XRD)and field emission scanning electron microscopy(FESEM).The effects of different pH values(5,6,7and 8)and different reaction temperatures(120,140,160,180 and 200 ℃)on the crystal structure and morphology of BaSrMg(PO42∶Eu3+phosphor were studied in this paper.The results of XRD indicate that diffraction peaks are sharp and strong only when pH value is 6,meanwhile the FESEM shows the morphology is regular-shaped.The XRD patterns show amorphous halos superimposed with several weak sharp peaks for the samples preparing under the pH values of 5,7and 8.It indicates that these three samples are solid solution or mixed phases,which are in accord with the results of FESEM.From the fluorescence spectra,the peaks in the excitation spectra were assigned to the transition from7 F0 to 5 D4,5 L8,5 L6 and 5 D2,while the peaks of emission spectra corresponding to the transition of 5 D17 F1 and 5 D07 FJ(J= 0,1,2,3and 4).The strongest emission peak of the optimized phosphor located at 613nm(5 D07 F2),excited by the main excitation peak with wavelength of 394 nm.The splitting of the emission peaks changes depends on pH values and temperatures,which indicating that luminescence properties is closely related to the crystal structure and morphology of particles.

【基金】 国家自然科学基金项目(10804099);浙江省自然科学基金项目(Y4110536);浙江省重点科技创新团队项目(2009R5000219)资助
  • 【文献出处】 光谱学与光谱分析 ,Spectroscopy and Spectral Analysis , 编辑部邮箱 ,2016年02期
  • 【分类号】O482.31
  • 【下载频次】207
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