Importance of long-range channel Sr displacements for the narrow emission in Sr[Li$_2$Al$_2$O$_2$N$_2$]:Eu$^{2+}$ phosphor
Julien Bouquiaux, Samuel Ponc\'e, Yongchao Jia, Anna Miglio, Masayochi, Mikami, Xavier Gonze

TL;DR
This study uses advanced computational methods to analyze the emission properties of Sr[Li$_2$Al$_2$O$_2$N$_2$]:Eu$^{2+}$ phosphor, revealing the crucial role of long-range Sr displacements in its narrow emission linewidth.
Contribution
It provides a detailed theoretical characterization of the phosphor, highlighting the impact of long-range Sr displacements on emission linewidth, which was not previously understood.
Findings
Low-frequency phonon modes involving Sr chains influence emission linewidth.
The high-symmetry environment alone does not account for the narrow linewidth.
Theoretical framework can predict similar phosphors with sharp emission spectra.
Abstract
The recently discovered Sr[LiAlON]:Eu 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 UCrC-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, 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 5d4f transition is obtained, including the partial Huang-Rhys factors and frequency of the…
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