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碱金属离子对掺铒磷酸盐玻璃除水性质的影响
引用本文:杨钢锋,邓再德,冯洲明,印冰,英廷照,姜中宏.碱金属离子对掺铒磷酸盐玻璃除水性质的影响[J].华南理工大学学报(自然科学版),2003,31(12):54-57.
作者姓名:杨钢锋  邓再德  冯洲明  印冰  英廷照  姜中宏
作者单位:华南理工大学,光通信材料研究所,广东,广州,510640
基金项目:广东省自然科学基金重点资助项目 (0 1 30 1 3),广东省科技计划项目 (2 0 0 2B1 1 6 0 4 )
摘    要:根据OH^-对Er^3 荧光寿命的影响,研究了掺铒磷酸盐玻璃中碱金属离子类型和含量对OH^-含量的影响.结果表明,采用通干燥O2和CCl4除水的工艺可有效降低玻璃中OH^-的含量.除水效果在通气的最初阶段最为明显,OH^-含量的降低速率随通气时间的延长而减慢,最终趋于动态平衡.比较含不同碱金属离子(Li^ 、Na^ 和K^ )的掺铒磷酸盐玻璃的Er^3 荧光寿命,发现其随碱金属离子半径的增大、玻璃中氧离子体积的上升而缩短;而碱金属离子含量的增加会降低Er^3 的荧光寿命,并且熔体重新吸水的能力变大.

关 键 词:掺铒磷酸盐玻璃  碱金属离子  荧光寿命  除水性质  通气时间
文章编号:1000-565X(2003)12-0054-04
修稿时间:2003年6月6日

Effect of Alkali-metal Ions on Removing OH Groups from Erbium-doped Phosphate Glasses
Yang Gang,feng,Deng Zai,de,Feng Zhou,ming,Yin Bing,Ying Ting,zhao,Jiang Zhong,hong.Effect of Alkali-metal Ions on Removing OH Groups from Erbium-doped Phosphate Glasses[J].Journal of South China University of Technology(Natural Science Edition),2003,31(12):54-57.
Authors:Yang Gang  feng  Deng Zai  de  Feng Zhou  ming  Yin Bing  Ying Ting  zhao  Jiang Zhong  hong
Abstract:According to the influence of OH - on the fluorescence lifetime of Er 3+ in glasses, the relations between the type/content of alkali metal ions and the content of OH - groups in erbium doped phosphate glasses were studied. The results show that, by bubbling dry O 2 and CCl 4 into the glass melt, the amount of OH - groups can be effectively reduced. At the initial stage, OH - groups were removed rather rapidly, then the process slowed down, and finally OH - groups were removed and absorbed, and reached an equilibrium. The fluorescence lifetimes of all samples with different alkali metal ions(Li +, Na + and K +) were compared, which shows the decrease of Er 3+ fluorescence lifetime with the increase of alkali metal ion diameter and O 2- volume in the glasses. It is also shown that increasing the amount of alkali metal ions would reduce the lifetime of Er 3+ , which means more OH - groups would remain in the glasses.
Keywords:erbium  doped phosphate glass  alkali  metal ion  fluorescence lifetime  bubbling gas
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