论文标题
远程频道SR位移的重要性对于sr [li $ _2 $ al $ _2 $ o $ $ _2 $ n $ _2 $]的窄排放的重要性
Importance of long-range channel Sr displacements for the narrow emission in Sr[Li$_2$Al$_2$O$_2$N$_2$]:Eu$^{2+}$ phosphor
论文作者
论文摘要
最近发现的Sr [li $ _2 $ al $ _2 $ o $ _2 $ n $ _2 $]:eu $^{2+} $红色磷光器,下一代生态效率的白色光发射二极管的候选,表现出极好的发射光谱位置,并且非常小的线路。它属于UCR $ _4 $ c $ _4 $ - 结构磷的家族,其中包含许多潜在的候选商业磷光器,其小线宽,暂时归因于兴奋剂站点的高对称性立方环境,在过去五年中吸引了研究人员的注意力。我们使用密度功能理论,$δ$ SCF方法和配置坐标模型(CCM)来提供该材料的完整表征。使用多维CCM,获得了振动结构与电子5D $ \ rightarrow $ 4F转换的准确描述,包括部分Huang-Rhys因子和主要模式的频率。我们表明,除了首次配位壳壳轴变形模式外,沿四方轴沿着跨跨原子链的低频声子模式构成了Sr [li $ _2 $ al $ al $ _2 $ _2 $ o $ _2 $ _2 $ _2 $ n $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $ _2 $]:eu $ $ $^2+} $^{2+}的发射线宽。这一发现为UCR $ _4 $ c $ _4 $结构磷光器的排放属性提供了新的启示,并具有相似的CA/SR/BA通道。我们的方法提供了一个强大的理论框架,可以系统地研究此类欧盟掺杂磷的发射光谱,并预测具有相似甚至更尖锐的线宽的候选者。
The recently discovered Sr[Li$_2$Al$_2$O$_2$N$_2$]:Eu$^{2+}$ red phosphor, candidate for the next generation of eco-efficient white light-emitting diodes, exhibits excellent emission spectral position and exceptionally small linewidth. It belongs to the UCr$_4$C$_4$-structure family of phosphors, containing many potential candidates commercial phosphors, whose small linewidth, tentatively ascribed to the high-symmetry cuboid environment of the doping site, has drawn the attention of researchers in the last five years. We use density functional theory, $Δ$SCF method and configuration coordinate models (CCM) to provide a complete characterization of this material. Using a multi-dimensional CCM, an accurate description of the coupling of the vibronic structure with the electronic 5d$\rightarrow$4f transition is obtained, including the partial Huang-Rhys factors and frequency of the dominant modes. We show that, in addition to the first-coordination shell cuboid deformation mode, low-frequency phonon modes involving chains of strontium atoms along the tetragonal axis shape the emission linewidth in Sr[Li$_2$Al$_2$O$_2$N$_2$]:Eu$^{2+}$. This finding sheds new light on the emission properties of UCr$_4$C$_4$-structure phosphors, possessing similar Ca/Sr/Ba channel. Our approach provides a robust theoretical framework to systematically study the emission spectra of such Eu-doped phosphors, and predict candidates with expected similar or even sharper linewidth.