4.6 Article

Facile preparation of Eu3+-activated Ca7(VO4)4O nanoparticles: a blue light-triggered red-emitting platform for indoor solid-state lighting

Journal

NEW JOURNAL OF CHEMISTRY
Volume 43, Issue 17, Pages 6688-6695

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c9nj00999j

Keywords

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Funding

  1. K. C. Wong Magna Fund in Ningbo University [xkzw1507]
  2. Natural Science Foundation of Ningbo [2018A610076]
  3. National Research Foundation of Korea (NRF) - Korea government (MSIP) [2018R1A6A1A03025708]

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Using the sol-gel technique, Ca-7(VO4)(4)O nanoparticles with various doping concentrations of Eu3+ ions were achieved. With an excitation wavelength of 462 nm, the as-synthesized compounds can emit visible red light, which exhibited a high color purity of 82.8%, arising from the 4f-4f transitions of Eu3+ ions. The emission intensity of the Eu3+ ions in the Ca-7(VO4)(4)O host lattices was sensitive to the dopant content with an optimum value of 10 mol%. The critical distance for the Eu3+ ions in the Ca-7(VO4)(4)O host lattices was 32.64 angstrom, and dipole-dipole interactions resulted in the concentration quenching effect. By employing the Judd-Ofelt theory, the optical transition intensity parameters of the Eu3+ ions were calculated and the values of (2) and (4) were determined to be 2.81 x 10(-20) cm(-2) and 0.54 x 10(-20) cm(-2), respectively. The thermal stability of the resultant nanoparticles was verified by the temperature-dependent emission spectra, and the activation energy was determined to be around 0.47 eV. Additionally, the developed light-emitting diode device, which contained a blue chip, commercial Y3Al5O12:Ce3+ yellow-emitting phosphor and the prepared nanoparticles could emit visible white light with satisfactory colorific behavior; it had a proper color rendering index (76.5) and a low correlated color temperature (5435 K).

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