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作 者:郭艳艳[1] 吴杏华[2] 孙光厚[2] 王庆凯[2] 王殿元[2]
机构地区:[1]九江学院机械与材料工程学院,九江332005 [2]九江学院理学院,九江332005
出 处:《化工新型材料》2012年第12期82-84,共3页New Chemical Materials
基 金:国家自然科学基金项目(51062008);江西省教育厅青年科学基金项目(GJJ09601)
摘 要:以尿素为燃烧剂,采用低温燃烧法制备了Eu3+单掺杂和Eu3+、Gd3+共掺杂CeO2纳米晶粉末,用X射线衍射(XRD)和透射电镜(TEM)对样品进行了结构分析和形貌表征。对掺杂Gd3+离子的CeO2:1%Eu3+纳米晶的光谱研究发现,随着Gd3+离子掺杂浓度的增加,5 D0→7F2跃迁与5 D0→7F1跃迁的强度比随之增加,这表明Eu3+离子的格位对称性有所下降,且有利于提高红橙光的比例。鉴于CeO2基质在300~390nm有强吸收,Eu3+掺杂CeO2纳米晶在近紫外激发LED荧光粉方面有潜在应用前景。CeO2:1%Eu^3+ nanocrystals were prepared by combustion method. By using Xray diffraction (XRD),transmission electron microscope (TEM) and fluorescence spectrometer, the structural, morphological and luminescence properties of CeO2:1%Eu^3+ nanocrystals were investigated. The results showed that under 365nm excitation the main e-mission peak of CeO2:1%Eu^3+ nanocrystals were at 590. 5nm, which were attributed to5Do→7F1 of Eu^3+. Under 465nmexcitation,the main emission were at 610nm and 631nm, originating from5Do→7F2 of Eu^3+. The energy from CeO2 hostwas mainly transferred to Eua+ ions at high-symmetry site was thinked. For Gda+ doped CeO2:1%Eu^3+ nanocrystals, theratio of5 D07→F2 toSD0→7 F1 emission intensity was increased with the increase of Gd^3+ ion concentration, this result indica ted that the symmetry of Eua+ ion was decreased.
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