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Synthesis of eco-friendly borosilicate glass with Eu3+ dopants: Harnessing recovered silica gel waste for reddish-orange emission materials
- Manyum, P.;
- Rittisut, W.;
- Wantana, N.;
- Ruangtaweep, Y.;
- Rachniyom, W.;
- ... Kim, H. J.;
- 외 7명
WEB OF SCIENCE
3SCOPUS
4초록
In this study, recovered silica gel waste (RSGW) is used as a key raw material to create borosilicate glass doped with Eu3+ ions in a new and environmentally friendly way. The glass compositions were fabricated using the melt quenching method, with different amounts of RSGW and a constant 1.0 mol% Eu3+ doping concentration. The study shows that increasing the doping concentration of RSGW improves the glass density and rigidity while reducing the molar volume, indicating enhanced glass stability. Photoluminescence and X-ray luminescence analyses confirm that the optimal composition with 50 mol% RSGW exhibits the strongest emission. Based on the phonon sideband analysis, the host glasses have a phonon energy of 966.53 cm(-1). An X-ray absorption near-edge structure (XANES) analysis showed that most of the europium ions were in the 3+ oxidation state. The CIE 1931 chromaticity investigation shows the x,y color coordinates at (0.645, 0.351) in the reddish-orange region. To optimize the doping concentration of Eu2O3, it was determined that a fixed concentration of 50 mol% RSGW created the most suitable mixture. Both luminescence emission spectra exhibit strong luminescence, with a peak emission wavelength of 615 nm (D-5(0)-> F-7(2)), confirming concentration quenching in both photoluminescence and x-ray luminescence at a concentration of 1.0 mol%. The study explores potential applications of this novel material in photonics and suggests that this eco-friendly synthesis approach holds great promise for sustainable and efficient production of reddish-orange emission materials.
키워드
- 제목
- Synthesis of eco-friendly borosilicate glass with Eu3+ dopants: Harnessing recovered silica gel waste for reddish-orange emission materials
- 저자
- Manyum, P.; Rittisut, W.; Wantana, N.; Ruangtaweep, Y.; Rachniyom, W.; Rujirawat, S.; Kamonsuangkasem, K.; Yimnirun, R.; Prasatkhetragarn, A.; Intachai, N.; Kothan, S.; Kim, H. J.; Kaewkhao, J.
- 발행일
- 2024-09
- 유형
- Article
- 권
- 222
- 언어
- ENG
- 출판사
- PERGAMON-ELSEVIER SCIENCE LTD
- 발행국가
- 영국
- ISSN
- E 1879-0895
P 0969-806X