Novel orange–red emitting phosphor Ba2ScNbO6:Eu3+ for WLEDs: synthesis and luminescence properties
A novel perovskite type orange–red emitting phosphor Ba 2 ScNbO 6 : x Eu 3+ (BSN: x Eu 3+ ) was designed and synthesized by solid-state route. The X-ray diffraction, luminescent properties, fluorescent decay times and thermal stability were utilized to characterize the as-prepared samples. The X-ray...
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Veröffentlicht in: | Journal of materials science. Materials in electronics 2019-08, Vol.30 (16), p.15512-15520 |
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Hauptverfasser: | , , , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | A novel perovskite type orange–red emitting phosphor Ba
2
ScNbO
6
:
x
Eu
3+
(BSN:
x
Eu
3+
) was designed and synthesized by solid-state route. The X-ray diffraction, luminescent properties, fluorescent decay times and thermal stability were utilized to characterize the as-prepared samples. The X-ray diffraction confirmed BSN:
x
Eu
3+
had a cubic structure with the space group of Pm-3m (221). Photoluminescence (PL) excitation spectra consisted of a broad charge-transfer band and the
f
–
f
transition of Eu
3+
ions in the violet and blue wavelength regions. The PL spectra displayed orange–red emitting luminescence with the strongest
5
D
0
→
7
F
1
transition at 595 nm. The mechanism of energy transfer between Eu
3+
ions in BSN has been confirmed to be resonant type via dipole–dipole interaction. Besides, BSN:
x
Eu
3+
phosphors exhibit distinct thermal quenching properties, whose emission intensity at 423 K still exceed 71% of the initial value at room temperature. And the CIE coordinate of BSN:0.18Eu
3+
phosphor is closed to the Nichia Corporation developed Amber LED NSPAR70BS. All results indicate that BSN:
x
Eu
3+
could be a promising phosphors for near-ultraviolet-based white light-emitting diodes. |
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ISSN: | 0957-4522 1573-482X |
DOI: | 10.1007/s10854-019-01928-3 |