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Stabilization of Eu3+ under a reductive atmosphere by the Al3+ co-doping of Sr2SiO4:Eu2+/Eu3+

机译:通过Al3 + Sr2SiO4的共掺杂在还原气氛下稳定Eu3 +:Eu2 + / Eu3 +

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摘要

Two series of materials based on a strontium orthosilicate matrix doped with europium and different concentrations of aluminum ions were obtained using different solid state synthesis strategies. The phase composition of the samples was investigated using the X-ray diffraction (XRD) technique. The results of the optical characterization indicated that the incorporation of aluminum ions causes the stabilization of the Eu3+ ions under reductive atmosphere. The concentration ratio of europium ions incorporated into the matrix in both oxidation states ([Eu3+]/[Eu2+]) can be controlled by changing the Al3+ concentration. The observed effect is interesting from the point of view of the design of phosphors used to obtain white light emitting diodes (WLEDs). The influence of temperature on the relative intensity of Eu2+ and Eu3+ emission bands was studied to investigate the range of the impact of the created compensation defects. It is shown that the Eu3+ to Eu2+ reduction process in Sr2SiO4 takes place due to the migration of the strontium vacancies to the surface.
机译:使用不同的固态合成策略,获得基于掺杂掺杂有铕和不同浓度的铝离子的锶硅酸盐基质的两种材料。使用X射线衍射(XRD)技术研究样品的相组合物。光学表征的结果表明铝离子的掺入导致稳定在还原气氛下的EU3 +离子。通过改变Al 3 +浓度,可以控制掺入氧化态中的基质中的铕离子的浓度比。从用于获得白光发光二极管(WLED)的磷光体的设计的观点来看,观察到的效果是有趣的。研究了温度对EU2 +和EU3 +发射带相对强度的影响,研究了所产生的补偿缺陷的影响范围。结果表明,由于锶空位到表面的迁移,SR2SIO4中的EU3 +至EU2 +还原过程发生。

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