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Emission of Eu^(3+) in sol-gel oxyfluoride glass materials obtained by different preparation methods 被引量:5
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作者 M.Zadlo B.Szpikowska-Sroka +2 位作者 l.zur R.Czoik W.A.Pisarski 《Journal of Rare Earths》 SCIE EI CAS CSCD 2014年第3期269-272,共4页
Silica glasses doped with Eu3+ ions prepared by sol-gel methods were investigated. The X-ray diffraction (XRD) was used to verify the nature of the studied systems. Excitation and emission spectra of Eu3+ ions in ... Silica glasses doped with Eu3+ ions prepared by sol-gel methods were investigated. The X-ray diffraction (XRD) was used to verify the nature of the studied systems. Excitation and emission spectra of Eu3+ ions in sol-gel glass materials were detected. Red-to-orange luminescence intensity ratios R/O related to integrated intensities of 5D0→TF2 to 5D0→7TF1 transitions and luminescence lifetimes for 5D0 state of Eu3+ ions were determined. The results indicated that spectroscopic parameters for Eu3+ ions strongly de- pended on reagents and their relative ratios used for sol-gel glass preparation. 展开更多
关键词 sol-gel glasses europium ions LUMINESCENCE rare earths
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Excitation and luminescence of Dy^(3+) ions in PbO-P_2O_5-Ga_2O_3 glass system 被引量:3
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作者 M.Soltys l.zur +1 位作者 J.Pisarska W.A.Pisarski 《Journal of Rare Earths》 SCIE EI CAS CSCD 2014年第3期213-216,共4页
Lead phosphate glasses singly doped with Dy^3+ ions were studied. The samples were prepared in a glove box in order to eliminate hydroxyl groups. Local structures were examined using FT-IR. Excitation and luminescenc... Lead phosphate glasses singly doped with Dy^3+ ions were studied. The samples were prepared in a glove box in order to eliminate hydroxyl groups. Local structures were examined using FT-IR. Excitation and luminescence spectra for Dy^3+ ions in inves- tigated lead phosphate glasses were registered. Luminescence intensity ratio Y/B related to 4F9/2→^6HJ/2 (where J=15, 13) transitions was determined and luminescence lifetime (ζm) for the 4F9/2 state of Dy^3+ions were also measured. 展开更多
关键词 phosphate glasses Dy^3+ ions LUMINESCENCE rare earths
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Local structure and luminescent properties of lead phosphate glasses containing rare earth ions 被引量:1
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作者 J.Pisarska l.zur +1 位作者 T.Goryczka W.A.Pisarski 《Journal of Rare Earths》 SCIE EI CAS CSCD 2011年第12期1157-1160,共4页
Local structure and luminescent properties of lead phosphate glasses containing rare earth ions were studied. Optically active ions such as Eu^3+, Dy^3+, Tb^3+ and Er^3+ were chosen as dopants. The local structure... Local structure and luminescent properties of lead phosphate glasses containing rare earth ions were studied. Optically active ions such as Eu^3+, Dy^3+, Tb^3+ and Er^3+ were chosen as dopants. The local structure was verified using X-ray diffraction and Fourier transform inflared (FT-IR) spectroscopy. The visible luminescence bands recorded for the studied samples corresponded to ^5D0→^7Fj (J=0÷4) transitions of Eu^3+, ^4F9/2→^6Hj/2 (J=11÷15) transitions of Dy^3+, ^5D3→^7FJ, (J'=1÷6) and ^5Da→^7FJ (J=3÷6) transitions of Tb^3+, and ^4S1/2→^4I15/2 transitions of Er^3+. 展开更多
关键词 lead phosphate glasses rare earth ions local structure luminescent properties
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Terbium-doped heavy metal glasses for green luminescence
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作者 l.zur J.Pisarska W.A.Pisarski 《Journal of Rare Earths》 SCIE EI CAS CSCD 2011年第12期1198-1200,共3页
Compositional-dependent heavy metal lead borate glasses doped with Tb^3+ ions were investigated. Green luminescence related to main ^5D4→^7F5 (543 nm) transition was registered under excitation of ^5D3 state of T... Compositional-dependent heavy metal lead borate glasses doped with Tb^3+ ions were investigated. Green luminescence related to main ^5D4→^7F5 (543 nm) transition was registered under excitation of ^5D3 state of Tb^3+ ions. Based on excitation and luminescence measurements, several spectroscopic parameters for Tb3+ ions were examined as a function of heavy metal PbO content. Luminescence decay analysis indicated that the ^5D4 luminescence lifetime of Tb^3+ reduced from 2.83 to 1.42 ms, when PbO:B203 ratio was changed from 1:1 to 4:1. 展开更多
关键词 GLASSES Tb^3+ ions excitation LUMINESCENCE rare earths
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