Kopsavilkums
Thermal quenching is a common phenomenon hindering commercial applications of phosphors, and the relationship between matrix structure and thermal quenching is not yet clear especially for the red phosphor SrAl12O19:Mn4+. Here, we determined the energy levels of three types of Mn4+ sites in SrAl12O19 crystal structure based on the exchange-charge-model crystal field calculations and analyzed the Mn4+ ions preferential occupation combined with chemical bond covalence. The phosphor suffers from serious thermal quenching when the luminescence monitoring from 8 to 500 K was recorded. The combination of theoretical calculations and experimental verification also reveals that the symmetry and spatial distribution of octahedral sites for Mn4+ are crucial to better resistance to thermal quenching. This can be helpful to search for novel Mn4+ doped red phosphor with better resistance to thermal impact in the future.
| Oriģinālvaloda | Angļu |
|---|---|
| Lapas (no-līdz) | 84-90 |
| Lapu skaits | 7 |
| Žurnāls | Journal of Luminescence |
| Sējums | 206 |
| DOIs | |
| Publikācijas statuss | Publicēts - febr. 2019 |
| Ārēji publicēts | Jā |
Nospiedums
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