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作 者:彭丽霞[1] 洪樟连[1] 周时风[1] 王民权[1]
机构地区:[1]浙江大学材料科学与工程系
出 处:《无机材料学报》2005年第5期1049-1053,共5页Journal of Inorganic Materials
基 金:浙江省教育厅项目(20030265)教育部留学回国人员科研启动基金(SRF for ROCS;SEM;2003-14)国家自然科学基金(50272059)
摘 要:利用高温固相反应法,制备了不同Sr/Ca比的(Ca1-xSrx)TiO3:0.002Pr3+(x=0-0.6)红色发光材料.荧光光谱与XRD测试结果表明:所有样品均发出源于Pr3+的1D2→3H4跃迁的612m红色光;发光强度与晶胞a轴均随固溶取代量x改变而连续变化,并在x=0.15的出现极值:发光强度提高约三倍,a轴则最小.研究揭示除不等价离子取代产生的电荷缺陷外,等价离子取代导致的固溶结构变化也是改变发光强度的有效途径.Red phosphors (Ca1-xSrx)TiO3:0.002Pr^3+ (x=0-0.6) were prepared by solid state reaction route and their properties were investigated by photoluminescence (PL) spectra and XRD, respectively. All samples have a red emission peak at 612nm due to the intra-4f transition of Pr^3+ from ^1D2 to ^3H4 state. The results indicate that both emission intensity and a axis parameter show an extremum at x=0.15: the emission intensity is enhanced about 3 times, and the lattice parameter of a axis shows a minimum value. The results show that, besides the charge defects induced by unequilvalent ion substitution, the equilvalent Sr^2+ substitution for Ca^2+ can also influence the emission intensity through the crystal structure evolution.
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