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Tunable luminescent properties and structure of Sn2+-doped boroaluminate glasses

CERAMICS INTERNATIONAL [2024]
Xiaoman Li, Pengfei Zhai, Xinyu Liu, Guangqiang Liu, Rongfei Wei, Hai Guo
ABSTRACT

A series of novel Sn 2+ doped boroaluminate glasses were prepared by the traditional melt quenching method in this work. Their glass network structure, luminescent properties, and mechanisms were studied in detail. The main framework of the glass network was dependent on the glass network former (B 2 O 3 ) and intermediate (Al 2 O 3 ), and was characterized by the 11 B and 27 Al NMR spectra . Broadband tunable blue-violet emissions ranging from 320 to 550 nm were realized by regulating the glass network structure through optical basicity. The quantitative relationship between optical basicity and emission/excitation peak positions and intensities, FWHM, and Stokes-Shift of this Sn 2+ -doped glass were revealed, according to which the luminescent properties of Sn 2+ could be modulated and even predicted in the future. This work will enrich our understanding of the luminescent properties of Sn 2+ ions and the variations of glass network structure, guiding the design of efficient and tunable luminescent boroaluminate glass.

MATERIALS

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