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Optical properties of silica sol-gel materials singly- and doubly-doped with Eu^3+and Gd^3+ ions 被引量:2
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作者 Natalia Pawlik barbara szpikowska-sroka +1 位作者 Marta Soltys Wojciech A. Pisarski 《Journal of Rare Earths》 SCIE EI CAS CSCD 2016年第8期786-795,共10页
In present work, the optical and structural properties of silica sol-gel glasses and glass-ceramic materials singly- and dou- bly-doped with Eu3+ and Gd3+ ions were investigated. The optical properties of studied sy... In present work, the optical and structural properties of silica sol-gel glasses and glass-ceramic materials singly- and dou- bly-doped with Eu3+ and Gd3+ ions were investigated. The optical properties of studied systems were determined based on absorption, excitation and emission spectra as well as luminescence decay analysis. Conducted studies clearly indicated a significant enhance- ment of visible emission originated from Eu3+ ions as a result of changing the excitation mechanism, via Gd3+Eu3+ energy transfer. The luminescence intensity R-ratio was analyzed before and after heat-treatment process upon excitation at λex=393 nm and λex=273 nm. Moreover, the influence of excitation wavelength on luminescence decay time of the 5D0 excited state was also analyzed. The GdS+-Eu3+ energy transfer efficiencies for precursor and annealed samples were calculated based on luminescence lifetime of the 6p7/2 level of Gd3+ ions. The X-ray diffraction measurements were conducted to verify the nature of obtained sol-gel materials. In re- sult, the formation of orthorhombic GdF3 nanocrystal phase dispersed in amorphous silica glass host was identified after annealing. Obtained results clearly indicated an incorporation of Eu3+ activators into formed GdF3 nanocrystals. Thus, conducted heat-treatment process led to considerable changes in surrounding environment around Eu3+ ions. Actually, it was found that en- ergy transfer phenomenon and heat-treatment process were responsible for significant improvement of Eu3+ luminescence in stud- ied sol-gel samples. 展开更多
关键词 NANOCRYSTALS sol-gel method LUMINESCENCE rare earths
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Photoluminescence and energy transfer in transparent glass-ceramics based on GdF3:RE3+(RE=Tb,Eu)nanocrystals 被引量:1
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作者 Natalia Pawlik barbara szpikowska-sroka +2 位作者 Ewa Pietrasik Tomasz Goryczka Wojciech A.Pisarski 《Journal of Rare Earths》 SCIE EI CAS CSCD 2019年第11期1137-1144,共8页
In the present work,the transparent oxyfluoride glass-ceramic samples containing GdF3:RE^3+(RE=Tb,Eu)nanocrystals(nGCs)were fabricated via controlled heat-treatment of precursor xerogels prepared using a sol-gel metho... In the present work,the transparent oxyfluoride glass-ceramic samples containing GdF3:RE^3+(RE=Tb,Eu)nanocrystals(nGCs)were fabricated via controlled heat-treatment of precursor xerogels prepared using a sol-gel method.The formation of GdF3 nanocrystalline phase from gadolinium(III)trifluoroacetate was verified based on XRD measurements.The average crystal sizes calculated from Scherrer formula were estimated to^10 nm as well as^6 nm for Tb^3+-and Eu^3+-doped samples,respectively.The optical behavior of prepared sol-gel samples was evaluated based on photoluminescence excitation(PLE)and emission spectra(PL)as well as luminescence decay analysis.Obtained samples exhibit the 5D4→7FJ(J=6-3,Tb3+)and the 5D0→7FJ(J=0-4,Eu3+)emission bands recorded within the visible spectral area under excitation at near-UV(393 nm(Eu^3+),351,369,378 nm(Tb^3+))as well as middle-UV illumination(273 nm(Gd3+)).Additionally,based on recorded decay curves,the luminescence lifetimes(τm)for the 5D4(Tb^3+)and the 5D0(Eu3+)excited states were also evaluated.In general,recorded luminescence spectra and double-exponential character of decay curves for nGCs indicate a successful migration of Tb^3+and Eu^3+dopant ions from amorphous silicate framework to lowphonon energy GdF3 nanocrystal phase. 展开更多
关键词 Sol-gel method GdF3 NANOCRYSTALS TERBIUM EUROPIUM RARE earths
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