| Literature DB >> 35548243 |
Jia Liang1, Liangling Sun1, Balaji Devakumar1, Shaoying Wang1, Qi Sun1, Heng Guo1, Bin Li1, Xiaoyong Huang1.
Abstract
A series of Mn4+-activated CaLaMgSbO6 far-red-emitting phosphors were synthesized by a solid-state reaction route and the microstructure and optical characterizations were investigated in detail. Upon excitation at 370 and 469 nm, the samples showed intense far-red emission at about 708 nm originating from the 2Eg → 4A2g transition and the optimal Mn4+ concentration was 0.7 mol%. The as-prepared phosphors also exhibited excellent internal quantum efficiency (88%) and high thermal stability. The emission intensity at room temperature dropped to 54% when the temperature rose to 423 K and the activation energy was 0.34 eV. The outstanding optical properties and the fact that the emission band of the obtained phosphors had a broad overlap with the absorption band of phytochrome P FR demonstrated that the CaLaMgSbO6:Mn4+ phosphors may be promising potential spectral converters for applying to indoor plant cultivation light-emitting diodes. This journal is © The Royal Society of Chemistry.Entities:
Year: 2018 PMID: 35548243 PMCID: PMC9085751 DOI: 10.1039/c8ra06708b
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Fig. 1(a) XRD patterns of CLMS:xMn4+ (x = 0.1%, 0.7%, and 1.5%) phosphors. (b and c) Rietveld refinement (b) and crystal structure (c) of CLMS:0.7% Mn4+ phosphors.
Crystallographic data of CLMS:0.7% Mn4+ phosphors
| Formula | CaLaMgSbO6:0.7% Mn4+ |
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Fig. 2(a) PLE and PL spectra of CLMS:0.7% Mn4+ phosphors. (b) Comparison of emission spectrum of CLMS:0.7% Mn4+ phosphors (λex = 370 nm) and absorption spectrum of phytochrome PFR.
Fig. 3(a) PL spectra of CLMS:xMn4+ phosphors (λex = 370 nm). Inset shows the normalized PL intensity of CLMS:xMn4+ phosphors as a function of Mn4+ concentration. (b) Relationship between log(x) and log(I/x).
Fig. 4(a) Decay curves of CLMS:xMn4+ phosphors (λex = 370 nm; λem = 708 nm). (b) CIE chromaticity diagram of CLMS:0.7% Mn4+ phosphors (λex = 370 nm). Inset shows the digital image of CLMS:0.7% Mn4+ phosphors under a 365 nm UV lamp. (c) The excitation line of BaSO4 and the PL spectrum of CLMS:0.7% Mn4+ phosphors collected using an integrating sphere.
Fig. 5(a) Temperature-dependent PL spectra of CLMS:0.7% Mn4+ phosphors excited at 370 nm. (b) Normalized emission intensity of CLMS:0.7% Mn4+ phosphors as a function of temperature. (c) Plot of ln(I0/I − 1) vs. 1/kT.
Fig. 6EL spectrum of the fabricated far-red-emitting LED device. Insets show CIE chromaticity diagram and the luminescent image of the fabricated LED device.