Influence of Rare Earth Doping on Microstructure and Luminescence Behaviour of Sodium Sulphate

Y. Vidya, B. N. Lakshminarasappa
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引用次数: 3

Abstract

Na2SO4, Na2SO4: Li, and Na2SO4: Li, Eu, Dy phosphors were prepared by using slow evaporation technique followed by subsequent calcination at 400°C for 4 h. Doping with Li+ ion stabilized the thenardite phase of host matrix, while codoping with RE3+ stabilized the phase transformation from stable thenardite to metastable mirabilite crystal structure. The microstructure and morphology were studied by using scanning electron microscopy and transmission electron microscopy. The thermoluminescence studies revealed that isovalent doping of Li+ served as a quencher and addition of codopant introduces the additional trap sites in the host matrix. The room temperature emission spectra of Li-doped, RE3+-codoped, and undoped Na2SO4 were studied under ultraviolet radiation. For pure Na2SO4 the two peaks which appeared are at 364 and 702 nm, respectively. The emission intensities of RE3+-codoped samples increase with increase in dopant concentration.
稀土掺杂对硫酸钠微观结构和发光性能的影响
采用慢蒸发法制备了Na2SO4、Na2SO4: Li和Na2SO4: Li、Eu、Dy荧光粉,然后在400℃下煅烧4h。Li+离子的掺杂稳定了基质的芒硝相,而RE3+的共掺杂稳定了基质从稳定的芒硝向亚稳的芒硝相转变。采用扫描电镜和透射电镜对其微观组织和形貌进行了研究。热释光研究表明,Li+的同价掺杂起到了猝灭剂的作用,而共掺杂则在基体中引入了额外的陷阱位点。研究了li掺杂、RE3+共掺杂和未掺杂的Na2SO4在紫外辐射下的室温发射光谱。对于纯Na2SO4,出现的两个峰分别在364和702 nm处。RE3+共掺杂样品的发射强度随掺杂浓度的增加而增加。
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