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A theoretical study of the relative importance of chemical and geometric effects for ce-based scintillation in La and Y aluminum perovskites

机译:La和Y铝钙钛矿中ce闪烁的化学和几何效应相对重要性的理论研究

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The purpose of this work is to understand, for Ce doped materials, how the effect of the local crystal environment of Ce compared to the character of the host cation, influences the scintillation and fluorescence of different materials. In the case of YAP (YAlO 3) and LAP (LaAlO 3) while very similar materials, YAP is a moderately bright Ce activated scintillator while LAP shows no Ce activation. It is known from experimental work that in the case of LAP the Ce 5d states lie in the conduction band of the host, quenching any scintillation. Since YAP and LAP have different crystal structures it is not possible to know from experiment if the change in the local environment of the Ce or the different host cation are responsible for the very different scintillation properties. To isolate the di fferent effects of local environment compared to host cation, two theoretically synthesized systems obtained by swapping La and Y in LAP and YAP geometries were created. In this way we artificially create a La version of YAP (and Y version of LAP) where the local environment of Ce is the same as YAP and only the next nearest neighbour cation differs. We then perform first principles density functional based calculations for all four systems to determine the positions of the 4f and 5d Ce states relative t o the conduction and valence bands of the host. Our preliminary results show that LAP in the YAP geometry still has the Ce 5d in the conduction band, quenching scintillation while YAP in the LAP geometry still has the 5d below the conduction band. This su ggests the cation character, which typically determines the conduction band character and position, is more important in determining Ce activation properties than the local dopant environment for these materials.
机译:这项工作的目的是,对于掺Ce的材料,要了解Ce的局部晶体环境与基质阳离子的特性相比如何影响不同材料的闪烁和荧光。对于非常相似的材料,在YAP(YAlO 3 )和LAP(LaAlO 3 )的情况下,YAP是中等亮度的Ce活化闪烁体,而LAP没有Ce活化。从实验工作中知道,在LAP的情况下,Ce 5d态位于宿主的导带中,从而猝灭了任何闪烁。由于YAP和LAP具有不同的晶体结构,因此无法从实验中得知Ce的局部环境变化或不同的主阳离子是否导致非常不同的闪烁特性。为了隔离局部环境与宿主阳离子相比的不同影响,创建了两个通过在LAP和YAP几何结构中交换La和Y而获得的理论合成系统。通过这种方式,我们人为地创建了La版本的YAP(和Y版本的LAP),其中Ce的本地环境与YAP相同,而仅下一个最近的相邻阳离子有所不同。然后,我们针对所有四个系统执行基于第一原理密度泛函的计算,以确定4f和5d Ce态相对于主体的导带和价带的位置。我们的初步结果表明,YAP几何形状的LAP在导带中仍具有Ce 5d,猝灭闪烁,而LAP几何形状的YAP仍在导带以下5d。这表明通常确定导带特性和位置的阳离子特性在确定Ce激活特性方面比这些材料的局部掺杂剂环境更为重要。

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