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New strategy for designing orangish-red-emitting phosphor via oxygen-vacancy-induced electronic localization

机译:通过氧空位诱导的电子定位设计橘红色发射荧光粉的新策略

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摘要

Phosphor-converted white-light-emitting diodes (pc-WLED) have been extensively employed as solid-state lighting sources, which have a very important role in people's daily lives. However, due to the scarcity of the red component, it is difficult to realize warm white light efficiently. Hence, red-emitting phosphors are urgently required for improving the illumination quality. In this work, we develop a novel orangish-red La4GeO8:Bi3+ phosphor, the emission peak of which is located at 600 nm under near-ultraviolet (n-UV) light excitation. The full width at half maximum (fwhm) is 103 nm, the internal quantum efficiency (IQE) exceeds 88%, and the external quantum efficiency (EQE) is 69%. According to Rietveld refinement analysis and density functional theory (DFT) calculations, Bi3+ ions randomly occupy allLa sites in orthorhombic La4GeO8. Importantly, the oxygen-vacancy-induced electronic localization around the Bi3+ ions is the main reason for the highly efficient orangish-red luminescence. These results provide a new perspective and insight from the local electron structure for designing inorganic phosphor materials that realize the unique luminescence performance of Bi3+ ions.
机译:磷光转换白光发光二极管(pc-WLED)已被广泛用作固态照明光源,在人们的日常生活中起着非常重要的作用。然而,由于红色成分的稀缺,因此难以有效地实现暖白光。因此,迫切需要红色发光的磷光体来改善照明质量。在这项工作中,我们开发了一种新颖的橙红色La4GeO8:Bi3 +磷光体,在近紫外(n-UV)光激发下其发射峰位于600 nm。半高全宽(fwhm)为103 nm,内部量子效率(IQE)超过88%,外部量子效率(EQE)为69%。根据Rietveld精炼分析和密度泛函理论(DFT)计算,Bi3 +离子随机占据正交L4GeO8中的所有La位点。重要的是,氧空位引起的Bi3 +离子周围的电子定位是高效橙红色发光的主要原因。这些结果为设计实现Bi3 +离子独特发光性能的无机荧光粉材料提供了来自局部电子结构的新视角和新见识。

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