Ultra-Broadband Near-Infrared Phosphors Realized by the Heterovalent Substitution Strategy

Near-infrared (NIR) phosphor-converted light-emitting diodes with broadband emission have received considerable interest. However, there remains a challenge in the construction of ultra-broadband NIR phosphors, hindering their further application. In this work, a heterovalent substitution strategy i...

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Veröffentlicht in:Inorganic chemistry 2023-02, Vol.62 (8), p.3601-3608
Hauptverfasser: Yang, Ye, Lu, Zuizhi, Fan, Hua, Chen, Mianhong, Shen, Linawa, Zhang, Xinguo, Pang, Qi, Chen, Jianhua, Chen, Peican, Zhou, Liya
Format: Artikel
Sprache:eng
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Zusammenfassung:Near-infrared (NIR) phosphor-converted light-emitting diodes with broadband emission have received considerable interest. However, there remains a challenge in the construction of ultra-broadband NIR phosphors, hindering their further application. In this work, a heterovalent substitution strategy is proposed to construct a novel ultra-broadband NIR-emitting LaTiTaO :Cr phosphor with a full width at half maximum of ∼300 nm. Crystal structure, time-resolved emission spectroscopy, and electron paramagnetic resonance analyses confirm that only one crystallographic site of Cr with separated ions exists. Electron and phonon coupling (EPC) evaluated by the Huang-Rhys factor ( ) reveals that the heterovalent substitution strategy contributes to strong EPC with = 9.185, resulting in ultra-broadband emission. Interestingly, a remarkable blue shift of emission from 1050 to 922 nm with increasing temperature is observed. Moreover, the application of LaTiTaO :Cr phosphor is demonstrated in the qualitative analysis of ethanol/water mixtures. The work will enrich the toolbox for designing broadband NIR-emitting materials.
ISSN:0020-1669
1520-510X
DOI:10.1021/acs.inorgchem.2c04347