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Comprehensive study on different crystal field environments in highly efficient NaLaF_4:Er~(3+) upconversion phosphor

机译:高效NaLaF_4:Er〜(3+)上转换荧光粉中不同晶体场环境的综合研究

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Complex fluorides, especially rare-earth doped NaREF_4 (RE = Y~(3+), La~(3+) or Gd~(3+)), are promising materials for the upconversion luminescence mostly due to low phonon energy of their matrices and multisite nature of the crystalline lattice. Although multisite formation in hexagonal NaREF_4 structures has generally been proved, the actual number of the active sites in different structures varies from two (NaGdF_4) to seven (NaYF_4). The aim of this work has been to study multisite formation in NaLaF_4:Er~(3+). For this purpose low-temperature site-selective spectroscopy measurements in hexagonal NaLaF_4:Er~(3+) have been performed. Excitation at different wavelengths corresponding to the excitation of ~4F_(7/2) level of Er~(3+) ions has revealed three distinct luminescence spectra in the green spectral region associated with ~4S_(3/2) → 4I_(15/2) electronic transition. The number of the spectra has been sufficient to model experimentally measured luminescence spectra at any excitation wavelength as a linear combination of the distinct spectra. The analysis of the structure of the material and the results of site-selective spectroscopy signify the presence of at least three different crystalline field environments where Er~(3+) ions incorporate. Upon site-selective excitation of Er~(3+) located at a specific site energy transfer to erbium ions located at other sites has been observed in both the upconversion and downconversion luminescence processes. The enhanced energy transfer between the different sites in NaLaF_4:Er~(3+) signifies the importance of the multisite nature of the structure, which is a key factor for an efficient upconversion luminescence.
机译:复杂的氟化物,尤其是稀土掺杂的NaREF_4(RE = Y〜(3 +),La〜(3+)或Gd〜(3+)),是上转换发光的有前途的材料,主要是由于其矩阵的声子能量低晶格的多位性质。尽管已普遍证明六角形NaREF_4结构中会形成多位点,但不同结构中活性位点的实际数量从两个(NaGdF_4)到七个(NaYF_4)不等。这项工作的目的是研究NaLaF_4:Er〜(3+)中的多位点形成。为此目的,已经在六角形NaLaF_4:Er〜(3+)中进行了低温现场选择性光谱测量。对应于Er〜(3+)离子〜4F_(7/2)能级激发的不同波长的激发显示了绿色光谱区域中与〜4S_(3/2)→4I_(15 / 2)电子过渡。光谱的数量足以将任何激发波长下的实验测量发光光谱建模为不同光谱的线性组合。材料结构的分析和位点选择性光谱法的结果表明存在至少3个不同的Er〜(3+)离子结合的晶体场环境。在上转换和下转换发光过程中都观察到在特定位点的Er〜(3+)的位点选择性激发能量转移到其他位点的离子。 NaLaF_4:Er〜(3+)中不同位点之间增强的能量转移表示该结构的多位点性质的重要性,这是有效上转换发光的关键因素。

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