2022
DOI: 10.1016/j.mssp.2022.106828
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Observation of up conversion/ down conversion luminescence and structural analysis of La2Zr2O7: Pr3+ nano phosphors

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Cited by 19 publications
(5 citation statements)
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“…The remaining maxima can An additional peak of the luminescence excitation band at 386 nm was observed for all SCMS glass samples. In [8], an additional peak with a maximum at 355 nm was also observed for the luminescence excitation spectra of La 2 Zr 2 O 7 :Pr 3+ nanophosphors, and the authors associated the appearance of this peak with the intrinsic defect absorption or the virtual charge transfer of Pr 3+ ions.…”
Section: Excitation and Down-converted Luminescence Spectramentioning
confidence: 87%
See 1 more Smart Citation
“…The remaining maxima can An additional peak of the luminescence excitation band at 386 nm was observed for all SCMS glass samples. In [8], an additional peak with a maximum at 355 nm was also observed for the luminescence excitation spectra of La 2 Zr 2 O 7 :Pr 3+ nanophosphors, and the authors associated the appearance of this peak with the intrinsic defect absorption or the virtual charge transfer of Pr 3+ ions.…”
Section: Excitation and Down-converted Luminescence Spectramentioning
confidence: 87%
“…Visible-to-UV conversion of Pr 3+ ions occurs due to the absorption of blue or violet light (430-490 nm) through 3 H 4 → 3 P J transitions, followed by the UC of the excitation energy in one Pr 3+ ion through Excited State Absorption (ESA) or involving two Pr 3+ ions Energy Transfer Up-conversion (ETU) [2,7]. In addition, Pr 3+ ions as activators can produce greenish-blue or red emissions due to their excited energy levels 3 P 0 or 1 D 2 [8].…”
Section: Introductionmentioning
confidence: 99%
“…was evaluated using the formula [55] and is listed in Table 4. These values indicated that, under blue light excitation, the prepared LiSrVO 4 :x mol% Pr 3+ phosphors generate exceptionally pure red light.…”
Section: Colorimetric Propertiesmentioning
confidence: 99%
“…In the 2010s, Xia et al [12,13] studied the electrical properties as a function of chemical composition for pyrozirconates: Gd 2 (Zr 1−x Nb x ) 2 O 7−x [12], and (Sm 1−x Dy x ) 2 Zr 2 O 7 [13]. Solid solutions involving RE-based zirconates were also studied for luminescent applications by Kumar and Manam [14,15], which investigated the up-and down-conversion emission processes for La-Pr [14] and Y-Er [15] composition series and correlating their optical properties with the synthesis process, as well as the structural and thermal features [16]. In the same direction, pyrosilicates and pyrotitanates were also produced and studied in detail regarding the already known polymorphism phenomena, mainly to understand the correlation between the structural and the photoluminescent properties [17][18][19][20].…”
Section: Introductionmentioning
confidence: 99%