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作 者:袁剑辉[1] 张振华[1] 王晓君[2] 程玉民[3]
机构地区:[1]长沙理工大学物理与电子科学系,长沙410076 [2]中国科学院长春光学精密机械与物理研究所激发态物理重点实验室,长春130033 [3]上海大学上海市应用数学和力学研究所,上海200072
出 处:《光学学报》2005年第9期1243-1248,共6页Acta Optica Sinica
基 金:国家自然科学基金(50172046);湖南省自然科学基金(03JJY3013)资助课题
摘 要:为进一步提高Y2O2S∶Eu3+的发光性能,采用改善主要原材料Y2O3结晶性的方法,使Y2O2S∶Eu3+红色荧光粉在20 kV和25 kV下发光强度分别增强5%和10%,且不影响色度、粒度、粉体分散性等主要考核指标。提高了粉体的耐电压特性(发射强度与激发电压间的关系特性)。讨论和分析了发射强度增强、电压特性改善的原因:主要原材料Y2O3的结晶性的改善,使得合成的Y2O2S∶Eu3+具有更好的晶体质量,Eu3+离子晶场环境得到进一步改善,从而减弱了无辐射过程及因晶格畸变所造成的能量损失,发光效率得到增强,电压特性得到改善。实验表明,获取高质量多晶Y2O3的最佳分解温度为1400℃左右。In order to improve the luminescent character of Y2O2S:Eu^3+, the method of improving crystallinity of primary raw material Y2O3 is used. The emission intensity of red phosphors Y2O2S:Eu^3+ is effectively enhanced :5 % and 10% respectively at the voltages of 20 kV and 25 kV while the other primary properties of application in chromaticity, granularity and decentralization are not changed. The voltage resistance character (relation between emission intensity and excitation voltage) is elevated. The origins of the emission intensity enhancement and excitation voltage elevation are discussed and analyzed preliminarily. It is likely that the abnormal change and defect of crystal lattice led by the substitution of larger radius Eu^3+ ion for smaller radius Y^3+ ion are reduced by the better crystal quality of Y2O2S:Eu^3+ from the better crystallinity of raw material Y2O3. Because the crystal field condition of Eu^3+ ion is improved, radiationless process and energy loss led by crystal defect are cut down. the emission efficiency of Y2O2S:Eu^3+ phosphors is enhanced and its voltage character is improved. The experiment shows that the decomposing temperature to get the high crystallinity Y2O3 is about 1400℃.
关 键 词:光学材料 Y2O2S:Eu^3+荧光粉 Y2O3结晶性 发光强度 耐压性
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