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机构地区:[1]河南省光伏材料重点实验室,河南大学物理与电子学院,河南开封475004
出 处:《中国稀土学报》2011年第5期560-565,共6页Journal of the Chinese Society of Rare Earths
基 金:河南省科技厅2009科技发展计划项目(092102210005)资助
摘 要:首先用水热法合成了NaNbO3样品,然后用固相法分别合成了NaNbO3,NaNbO3:Er3+,NaNbO3:Sm3+样品,X射线衍射结果表明所制备的粉体NaNbO3(水热法200℃和固相法900℃退火),NaNbO3:Er3+(900℃退火),NaNbO3:Sm3+(900℃退火)为立方相结构,在退火温度800,950和1000℃时是正交晶系,长方体结构。该粉末在980 nm LD激发下,分别发射出中心波长约为526 nm绿色,547 nm绿色和662 nm红色(掺Er3+)、526 nm绿色,550 nm绿色和660 nm红色(掺Sm3+)的上转换荧光。探讨了Er3+,Sm3+的上转换发光机制。研究了晶体的对称性和退火温度对NaNbO3:Er3+样品上转换发光强度的影响,结果表明,随着晶体的对称性降低和退火温度的提高,NaNbO3:Er3+样品的上转换发光强度增强。The NaNbO3 samples were prepared by hydrothermal method, and NaNbO3 : Er3 + and NaNbO3 : Sm3+ samples were prepared by solid state reaction method. The XRD revealed that NaNbO3 (hydrotherreal method at 200 ℃ and annealing at 900 ℃ by solid state method), NaNbO3: Er3+ (annealing at 900 ℃ ) and NaNbO3 : Sm3+ ( annealing at 900 ℃ ) had cubic structure, and they had orthogonal crystal structure when annealing temperature were 800, 950 and 1000 ℃ respectively. Under 980 nm LD excitation,the up-conversion emissions at 526, 547 and 662 nm (Er3+ ) , 526, 550 and 660 nm ( Sm3 + ) were recorded. The luminescent procedures of Er3 + and Sm3+ were discussed. The effect of annealing temperature and symmetry on luminescent properties of NaNbO3: Er3+ samples were studied. The results showed that the up-conversion emission intensities of NaNbO3: Er3+ samples increased with increasing annealing temperature and decreasing symmetry.
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