Highly Stable White Light Emission from III-Nitride Nanowire LEDs Utilizing Nanostructured Alumina-Doped Mn 4+ and Mg 2 .

ACS omega(2023)

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摘要
In this report, red-emitting alumina nanophosphors doped with Mn and Mg (AlO:Mn, Mg) are synthesized by a hydrothermal method using a Pluronic surfactant. The prepared samples are ceramic-sintered at various temperatures. X-ray diffraction shows that AlO:Mn, Mg annealed at 500 °C exhibits a cubic γ-AlO phase with the space group 3-227. The tetragonal δ-AlO and rhombohedral α-AlO phase is obtained at 1000 and 1300 °C, respectively. Cube-like nanoparticles in a size of ∼40 nm are observed for the alumina heated at 500-1000 °C. The size and red-emitting intensity of the phosphors remarkably increased with annealed temperature ∼1300 °C. Emission spectra of the phosphors show strong peaks at 678 and 692 nm due to → transitions of the Mn ion, under a light excitation of 460 nm. A strong zero-phonon line (ZPL) emission is observed in the luminescence spectra of δ-AlO:Mn, Mg at 298 K, whereas a weak one is observed in those of α- and γ-AlO:Mn, Mg. The alumina phosphors exhibited an excellent waterproof ability during 60 days in water and good thermal stability in the range of 77-573 K. A warm-white light-emitting diode (WLED) fabricated using In Ga N nanowire chips with AlO:Mn, Mg red-emitting nanophosphors presents a high color rendering index of ∼95.1 and a low correlated color temperature of ∼4998 K. Moreover, the current-voltage characteristic of the nanowire LEDs could be improved using AlO:Mn, Mg nanophosphors which is attributed to the increased heat dissipation in the nanowire LEDs.
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stable white light emission,white light,iii-nitride,alumina-doped
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