“…The two excitation bands at 250–300 nm are attributed to the excitation transition of Bi. 16,20,21 The host material of YABO does not exhibit any emission, and thus the emission bands in the ranges of 350–500 nm, 500–590 nm and 590–750 nm are due to the Bi doping. Notably, in YABO, there is only one crystallographic site for Y/Bi, which is not expected to lead to three emission bands.…”
Section: Resultsmentioning
confidence: 99%
“…The two excitation bands at 250-300 nm are attributed to the excitation transition of Bi. 16,20,21 The host material of YABO does not exhibit any emission, and thus the emission bands in the ranges of 350-500 nm, 500-590 nm and 590-750 nm are due to the Bi doping.…”
In typical single-composition white phosphors, various doping elements account for the different emission wavelengths. However, it is challenging to tune the doping ratios, and the coexistence of different activators can...
“…The two excitation bands at 250–300 nm are attributed to the excitation transition of Bi. 16,20,21 The host material of YABO does not exhibit any emission, and thus the emission bands in the ranges of 350–500 nm, 500–590 nm and 590–750 nm are due to the Bi doping. Notably, in YABO, there is only one crystallographic site for Y/Bi, which is not expected to lead to three emission bands.…”
Section: Resultsmentioning
confidence: 99%
“…The two excitation bands at 250-300 nm are attributed to the excitation transition of Bi. 16,20,21 The host material of YABO does not exhibit any emission, and thus the emission bands in the ranges of 350-500 nm, 500-590 nm and 590-750 nm are due to the Bi doping.…”
In typical single-composition white phosphors, various doping elements account for the different emission wavelengths. However, it is challenging to tune the doping ratios, and the coexistence of different activators can...
“…[75][76][77][78] Quantum yield (QY; generally defined as the ratio of photons emitted to photons absorbed) is an essential parameter in evaluating fluorescent materials. 79 The quantum yield of the prepared sample ( particularly calcined at 1400 °C for 1 h and 1500 °C for 1-6 h) varied between ∼61% and ∼77% (Table 1). The value of QY was comparable to the literature and bulk Ce-doped YAG.…”
The work explores dual precipitating reagents-assisted Ce-based deep blue emitting borate and near-white oxide-based luminescent materials. The first precipitating reagent, i.e., aqueous sodium borohydride, was used till the gelation, and...
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