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- W4200264502 abstract "This study presented an analysis of the TeO2/GeO2 molar ratio in an oxide glass system. A family of melt-quenched glasses with the range of 0-35 mol% of GeO2 has been characterized by using DSC, Raman, MIR, refractive index, PLE, PL spectra, and time-resolved spectral measurements. The increase in the content of germanium oxide caused an increase in the transition temperature but a decrease in the refractive index. The photoluminescence spectra of europium ions were examined under the excitation of 465 nm, corresponding to 7F0 → 5D2 transition. The PSB (phonon sidebands) analysis was carried out to determine the phonon energy of the glass hosts. It was reported that the red (5D0 → 7F2) to orange (5D0 → 7F1) fluorescence intensity ratio for Eu3+ ions decreased from 4.49 (Te0Ge) to 3.33 (Te15Ge) and showed a constant increase from 4.58 (Te20Ge) to 4.88 (Te35Ge). These optical features were explained in structural studies, especially changes in the coordination of [4]Ge to [6]Ge. The most extended lifetime was reported for the Eu3+ doped glass with the highest content of GeO2. This glass was successfully used for the drawing of optical fiber." @default.
- W4200264502 created "2021-12-31" @default.
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- W4200264502 date "2021-12-24" @default.
- W4200264502 modified "2023-10-11" @default.
- W4200264502 title "Investigation of the TeO2/GeO2 Ratio on the Spectroscopic Properties of Eu3+-Doped Oxide Glasses for Optical Fiber Application" @default.
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- W4200264502 cites W1990290061 @default.
- W4200264502 cites W2000314042 @default.
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- W4200264502 cites W2011021760 @default.
- W4200264502 cites W2012418901 @default.
- W4200264502 cites W2021129121 @default.
- W4200264502 cites W2026499269 @default.
- W4200264502 cites W2026533343 @default.
- W4200264502 cites W2037495310 @default.
- W4200264502 cites W2064161807 @default.
- W4200264502 cites W2073432913 @default.
- W4200264502 cites W2082561110 @default.
- W4200264502 cites W2082966273 @default.
- W4200264502 cites W2090559996 @default.
- W4200264502 cites W2092059712 @default.
- W4200264502 cites W2142398373 @default.
- W4200264502 cites W2262217942 @default.
- W4200264502 cites W2301199077 @default.
- W4200264502 cites W2348951696 @default.
- W4200264502 cites W2418190062 @default.
- W4200264502 cites W2476045630 @default.
- W4200264502 cites W2507959872 @default.
- W4200264502 cites W2566099763 @default.
- W4200264502 cites W2596293589 @default.
- W4200264502 cites W2596343541 @default.
- W4200264502 cites W2604743262 @default.
- W4200264502 cites W2611237569 @default.
- W4200264502 cites W2613226053 @default.
- W4200264502 cites W2777477550 @default.
- W4200264502 cites W2791430086 @default.
- W4200264502 cites W2791649078 @default.
- W4200264502 cites W2792271744 @default.
- W4200264502 cites W2793467011 @default.
- W4200264502 cites W2804055963 @default.
- W4200264502 cites W2806348439 @default.
- W4200264502 cites W2807456886 @default.
- W4200264502 cites W2884562421 @default.
- W4200264502 cites W2889599648 @default.
- W4200264502 cites W2896873662 @default.
- W4200264502 cites W2902431614 @default.
- W4200264502 cites W2913723111 @default.
- W4200264502 cites W2915255699 @default.
- W4200264502 cites W2920167928 @default.
- W4200264502 cites W2930308601 @default.
- W4200264502 cites W2939701634 @default.
- W4200264502 cites W2944585502 @default.
- W4200264502 cites W2946101923 @default.
- W4200264502 cites W2946130674 @default.
- W4200264502 cites W2949785900 @default.
- W4200264502 cites W2958878066 @default.
- W4200264502 cites W2971911745 @default.
- W4200264502 cites W2974599165 @default.
- W4200264502 cites W2980987022 @default.
- W4200264502 cites W2998556765 @default.
- W4200264502 cites W2999923660 @default.
- W4200264502 cites W3009943827 @default.
- W4200264502 cites W3015010262 @default.
- W4200264502 cites W3025441249 @default.
- W4200264502 cites W3034813064 @default.
- W4200264502 cites W3037301741 @default.
- W4200264502 cites W3037978334 @default.
- W4200264502 cites W3046113613 @default.
- W4200264502 cites W3080451528 @default.
- W4200264502 cites W3081864426 @default.
- W4200264502 cites W3084265376 @default.
- W4200264502 cites W3114649865 @default.
- W4200264502 cites W3117983284 @default.
- W4200264502 cites W3119614925 @default.
- W4200264502 cites W3122467149 @default.
- W4200264502 cites W3128274157 @default.
- W4200264502 cites W3139067589 @default.
- W4200264502 cites W3144050579 @default.
- W4200264502 cites W3144357617 @default.
- W4200264502 cites W3151627418 @default.
- W4200264502 cites W3155458123 @default.
- W4200264502 cites W3157255421 @default.
- W4200264502 cites W3162880253 @default.
- W4200264502 cites W3162913894 @default.
- W4200264502 doi "https://doi.org/10.3390/ma15010117" @default.