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采用反相微乳液法,制备了稀土配合物EDTA-Eu掺杂的SiO2荧光粒子.x射线衍射分析表明所得粒子为非晶态,红外光谱分析表明EDTA中的羰基以双齿配位的形式与Eu3+配位.荧光光谱分析表明,在396nm处没有出现Eu3+的本征激发峰,而在310nm处出现一较强激发峰,表明配合物的激发谱由配体EDTA吸收能量引起,并将能量传递给Eu3+使之发出特征荧光,在310nm光激发下,发射波长位于615nm处,对应于Eu3+离子电偶极跃迁5D0-7F2,发射光谱中没有出现磁偶极跃迁5D0-7F1表明Eu3+的配合物中稀土离子处于不对称中心,掺杂的ED-TA-Eu与SiO2摩尔比在1:120~1:15之间时,随着EDTA-Eu的掺杂量的增加siO2粒子的最大发射荧光强度成指数函数增长.

参考文献

[1] Santra S;Wang K M;Tapec R et al.Development of novel dye-doped silica nanoparticles for biomarker application[J].JBiomed Opt,2001,6(02):160.
[2] Blaaderen A V;Yrij A .Synthesis and characterization of colloidal dispersions of fluorescent,monedisperse silica spheres[J].Langmuir,1992,8(12):2921-2931.
[3] Xiaojun Zhao;Rahul P. Bagwe;Weihong Tan .Development of Organic-Dye-Doped Silica Nanoparticles in a Reverse Microemulsion[J].Advanced Materials,2004(2):173-176.
[4] Correa-Duarte MA.;Liz-Marzan LM.;Giersig M. .Stabilization of CdS semiconductor nanoparticles against photodegradation by a silica coating procedure[J].Chemical Physics Letters,1998(5-6):497-501.
[5] Zhiqiang Ye;Mingqian Tan;Guilan Wang;Jingli Yuan .Nove fluorescent eruopium chelate-doped silica nanoparticles:preparation,characterization and time-resolved fluorometric application[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,2004(5):851-856.
[6] Zhiqiang Ye;Mingqian Tan;Guilan Wang;Jingli Yuan .Preparation, Characterization, and Time-Resolved Fluorometric Application of Silica-Coated Terbium(III) Fluorescent Nanoparticles[J].Analytical chemistry,2004(3):513-518.
[7] 谢文刚.二氧化硅生物荧光纳米颗粒的制备与应用[J].湖南农业大学学报(自然科学版),2007(04):496-499.
[8] Ye Xu;Qingge Li .Multiple fluorescent labeling of silica nanoparticles with lanthanide chelate[J].Clinical Chemistry,2007,53(08):1503-1504.
[9] Gaponenko S.V.;Bogomolov V.N.;Petrov E.P.;Kapitonov A.M.;Yarotsky D.A.;Kalosha I.I.;Eychmueller A.A.;Rogach A.L.;McGilp J.;Woggon U.;Gindele F. .Spontaneous emission of dye molecules, semiconductor nanocrystals, and rare-earth ions in opal-based photonic crystals[J].Journal of Lightwave Technology: A Joint IEEE/OSA Publication,1999(11):2128-2137.
[10] Rogach A.;Caruso F.;Sukhorukov G.;Kornowski A.;Kershaw S. Mohwald H.;Eychmuller A.;Weller H.;Susha A. .Nano- and microengineering: Three-dimensional colloidal photonic crystals prepared from submicrometer-sized polystyrene latex spheres pre-coated with luminescent polyelectrolyte/nanocrystal shells[J].Advanced Materials,2000(5):333-337.
[11] Sandoghdar V;Treussart F;Hare J et al.Very low threshold whispering-gallery-mode microsphere laser[J].Physical Review A,1996,54(03):R1777-R1780.
[12] 王孝龙,纪全,夏延致,孔庆山.溶胶-凝胶法制备纳米SiO2及其表面接枝改性研究[J].纳米科技,2007(02):34-36.
[13] 贾宏,郭锴,郭奋,邹海魁,陈建峰.用超重力法制备纳米二氧化硅[J].材料研究学报,2001(01):120-124.
[14] Wang weixiang;Liu Songhao;Mei Yanbiao et al.Study on the preparation technology of laser induced chemical vapor deposited nanosized silicon powders[J].Applied Laser Technology,1995,15(01):8-13.
[15] 中本-雄;黄德如;汪仁庆.无机和配位化合物的红外和拉曼光谱[M].北京:化学工业出版社,1986:257.
[16] 沈新峰,杨良准,张晨,张兰芬,任黎雯,余锡宾.对苯二甲酸-铕-钇配合物的合成及荧光性质[J].化学研究,2007(04):24-26,32.
[17] 陆广农;唐宁 .4个氮支索冠醚的铕(Ⅲ)、铽(Ⅲ)配合物的合成及表征[J].兰州大学学报(自然科学版),2008,44(02):68.
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