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Different origins of green-light photoluminescence emission in structurally ordered and disordered powders of calcium molybdate

机译:结构有序和无序的钼酸钙粉末中绿光发光发射的不同来源

摘要

A strong greenish-light photoluminescence (PL) emission was measured at room temperature for disordered and ordered powders of CaMoO4 prepared by the polymeric precursor method. The structural evolution from disordered to ordered powders was accompanied by XRD, Raman spectroscopy, and TEM imagery. High-level quantum mechanical calculations in the density functional framework were used to interpret the formation of the structural defects of disorder powders in terms of band diagram and density of states. Complex cluster vacancies [MoO3·VOz] and [CaO7·VOz] (where VOz = VOX, VO•, VO••) were suggested to be responsible to the appearance of new states shallow and deeply inserted in the band gap. These defects give rise to the PL in disordered powders. The natural PL emission of ordered CaMoO4 was attributed to an intrinsic slight distortion of the [MoO4] tetrahedral in the short range.
机译:在室温下,通过聚合前体方法制备的CaMoO4无序和有序粉末被测量为强绿色光致发光(PL)发射。从无序粉末到有序粉末的结构演变伴随有XRD,拉曼光谱和TEM图像。密度泛函框架中的高级量子力学计算被用来根据能带图和状态密度来解释无序粉末结构缺陷的形成。复杂的簇空位[MoO3·VOz]和[CaO7·VOz](其中VOz = VOX,VO•,VO••)被认为是导致新的态出现的原因,这些新态的浅层和深层插入带隙中。这些缺陷导致无序粉末中的PL。有序CaMoO4的自然PL发射归因于[MoO4]四面体在短范围内固有的轻微变形。

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