Synthesis and photoluminescence characteristics of a novel Eu and Tb doped Li2MoO4 phosphor

Li2MoO4:x Eu3+ and Li2MoO4:xTb3+ phosphors, where x = 0.5, 1, 2, 3, 5 and 7 wt%, were synthesized through a gel-combustion method. The XRD data reveals that Eu3+ and Tb3+ doped Li2MoO4 phosphors exhibit a Rhombohedral structure belonging to the space group R3 which matched well with the standard JCP...

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Veröffentlicht in:Applied radiation and isotopes 2021-09, Vol.175, p.109820-109820, Article 109820
Hauptverfasser: Souadi, G., Kaynar, U.H., Ayvacikli, M., Coban, M.B., Oglakci, M., Canimoglu, A., Can, N.
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Sprache:eng
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Zusammenfassung:Li2MoO4:x Eu3+ and Li2MoO4:xTb3+ phosphors, where x = 0.5, 1, 2, 3, 5 and 7 wt%, were synthesized through a gel-combustion method. The XRD data reveals that Eu3+ and Tb3+ doped Li2MoO4 phosphors exhibit a Rhombohedral structure belonging to the space group R3 which matched well with the standard JCPDS files (No.012-0763). We present photoluminescence (PL) spectra from Eu and Tb doped Li2MoO4 under 349 nm Nd:YLF pulses laser excitation over the temperature range of 10–300 K. Undoped Li2MoO4 shows a wide broad band around 600 nm because of the intrinsic PL emission of tetrahedral of MoO42− which was in good agreement with previous findings. Under the excitation of 394 nm, the as-synthesized phosphors exhibited sharp and strong intensity PL emission signals in the red (612 nm, 5D0→7F2 transition) and green (544 nm, 5D4→7F5 transition), respectively. The critical doping concentration of Eu3+ and Tb3+ ions in the Li2MoO4 were estimated to be 2 wt%. The concentration quenching phenomena were discussed, and the critical distances for energy transfer have also been evaluated by the concentration quenching. ➢A series of Eu and Tb doped host sensitized Li2MoO4 were synthesized➢Optimal doping concentration for all samples was 2 mol%➢Photoluminescence properties of Eu3+and Tb3+ activated Li2MoO4 phosphors are discussed➢Concentration quenching mechanism was discussed
ISSN:0969-8043
1872-9800
DOI:10.1016/j.apradiso.2021.109820