4.6 Article

Novel red-emitting phosphor La2Ti6O15:Eu3+for fabricating warm white LED-devices

期刊

JOURNAL OF LUMINESCENCE
卷 241, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.jlumin.2021.118489

关键词

Optical materials and properties; Phosphors; LED; Luminescence; Europium

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资金

  1. Qing Lan Project of Jiangsu Province
  2. Natural Science Research Project of Colleges and Universities in Jiangsu Province, PR China [19KJB510001]

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Eu3+-doped La2Ti6O15 nanoparticles were prepared via sol-gel process and demonstrated excellent luminescence and thermal stability. These phosphors show bright red luminescence and high efficiency in blue and near-UV excitation regions, making them potential candidates for high-power warm white-LED applications.
Eu3+-doped La2Ti6O15 nanoparticles were prepared by the sol-gel process. The phase-formations, crystal structure, photoluminescence properties, and lighting application were reported. La2Ti6O15 has band energy of 3.6 eV, which can be narrowed with the increase of Eu3+-doping in the lattices. A broad intrinsic emission band (400-750 nm) peaked at 515 nm was observed at 300 K Eu3+-doped La2Ti6O15 phosphors present bright redluminescence from 5D0 -> 7F2 transitions (615 nm). The luminescence has an excellent thermal stability performance with an activation energy of Delta E = 0.33 eV. Importantly, it fits well with the commercial LED-chip because of its efficient excitation in blue (465 nm) and near-UV region (395 nm). Red-LED device packaged with the optimal phosphor was achieved with luminous efficiency of 43.75 lm/W. It was suggested that La2Ti6O15:Eu3+ could be a potential candidate for fabricating high-power warm white-LEDs.

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