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作 者:席翠省[1] 高元哲[1] 王萍[2] 石士考[1] 王瑞芬[1] 周济[3]
机构地区:[1]河北师范大学化学与材料科学学院,河北石家庄050016 [2]河北化工医药职业技术学院化学与环境工程系,河北石家庄050026 [3]清华大学材料科学与工程系,北京100084
出 处:《发光学报》2010年第3期311-315,共5页Chinese Journal of Luminescence
基 金:国家自然科学基金(20971035);河北省自然科学基金(08B012);河北省教育厅基金(2009136)资助项目
摘 要:采用高温固相法制备了LiGd1-xEux(MoO4)2钼酸盐红色发光粉,利用XRD和发光光谱技术对粉体进行了性能表征。结果表明:该系列发光粉均为四方晶系的白钨矿结构,能够被近紫外光(395nm)有效激发,产生Eu3+的5D0→7F2特征跃迁红光发射(616nm)。x=0.4时,即LiGd0.6Eu0.4(MoO4)2样品的发光强度超过商用红粉Y2O2S:Eu3+发光强度的5倍,虽然比未加入Gd样品LiEu(MoO4)2的发光强度略低,但LiGd0.6Eu0.4-(MoO4)2样品的组分中却减少了60%的Eu用量,明显降低了原料成本,更具实用价值,有希望成为白光发光二极管的红色发光材料。A series of novel red light-emitting phosphors LiGd1-xEux(MoO4) 2 were synthesized by solid-state reaction at high temperature.Their structure and luminescent properties were investigated in detail.The XRD patterns showed that all the phosphors are isostructural and share a tetragonal scheelite structure of space group I41 /a88.In the emission spectra of the phosphors,the predominant transition emission is 5D0→7F2(616 nm) of Eu3 +,whereas the other emissions are very weak.The excitation spectra are composed of ligand-to-metal charge transfer bands(CTB) of Mo6 +-O2-,as well as a few excitation transitions of Eu3 + between 4f levels.The LiGd0.6Eu0.4(MoO4) 2 phosphor shows very strong emission intensity in comparison with commercial phosphor Y2O2S:Eu3 +.Although the fluorescence intensity of LiGd0.6Eu0.4(MoO4) 2 is slightly lower than that of the LiEu(MoO4) 2,the content over 60% Eu3+ is saved.Therefore,the LiGd0.6Eu0.4(MoO4) 2 phosphor significantly reduces the cost of raw materials.It might be a potential candidate for white LED application.
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