Li+共掺杂对Er3+-Yb3+∶TiO2紫外、可见和红外发光同步增强研究(英文)
Simultaneous Enhanced Ultraviolet, Visible and Infrared Emissions in Er3+-Yb3+∶TiO2 by Li+ Codoping
作者单位
曹保胜 大连民族学院理学院大连 116600
中科院长春应用化学研究所高分子物理与化学国家重点实验室长春 130022 
何洋洋 杜伊斯堡-埃森大学物理系杜伊斯堡 47057德国 
冯志庆 大连民族学院理学院大连 116600 
宋 苗 大连民族学院理学院大连 116600 
董 斌 大连民族学院理学院大连 116600 
摘要: 采用溶胶-凝胶(Sol-gel)法制备了Li+共掺杂的Er3+-Yb3+∶TiO2粉末。976 nm激光激发下在波长350~1700 nm范围内观察到了紫外、蓝色、绿色和红色上转换发光和红外下转换发光。随着Li+共掺杂浓度由0增大到20mol%,Er3+-Yb3+∶TiO2的紫外、可见和红外发光强度同步增强。低Li+共掺杂浓度引起的Li+固溶以及高Li+共掺杂浓度引起的相变过程相继破坏了Er3+的晶体场对称性,导致紫外、可见和红外发光显著增强。结果表明共掺杂Li+是一种提高Er3+掺杂材料发光性能的有效方法。
关键词: Er3+-Yb3+∶TiO2  Li+共掺杂  紫外、可见和红外发光  晶体场对称性
基金项目: 
Abstract: The Er3+-Yb3+∶TiO2 powders by Li+ codoping have been prepared by sol-gel method. Both ultraviolet, blue, green and red upconversion and infrared downconversion emissions in the wavelengths of 350~1 700 nm were observed by a 976 nm semiconductor laser diode (LD) excitation. The ultraviolet, visible and infrared emissions of Er3+-Yb3+∶TiO2 enhanced simultaneously by increasing Li+ from 0 to 20mol%. The significant enhancement of ultraviolet, visible and infrared emissions resulted from the distortion of crystal field symmetry of Er3+ caused by the dissolving of Li+ at lower Li+ codoping concentration and the phase transformation at higher Li+ concentration. It can be concluded that codoping with Li+ is an efficient method to enhance the luminescence of Er3+ doped materials.
Keywords: Er3+-Yb3+∶TiO2  Li+ codoping  ultraviolet, visible and infrared emissions  crystal field symmetry
 
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曹保胜,何洋洋,冯志庆,宋 苗,董 斌.Li+共掺杂对Er3+-Yb3+∶TiO2紫外、可见和红外发光同步增强研究(英文)[J].无机化学学报,2011,27(4):776-780.
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