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structures and spectroscopic characteristics of barium-sulfur-telluro-borate glasses: role of sm3+ and dy3+ co-activation
Published 2020“…This paper reports the preparation of some samarium ions (Sm3+) and dysprosium ions (Dy3+) co-doped barium-sulfur-telluro-borate glasses using the standard melt quenching. …”
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2
Amplified optical response of dy3+-activated lithium-strontium-zinc-borate glasses: role of ag nanoparticles concentration changes.
Published 2023“…The melt-quenching approach was used to make a series of dysprosium ions (Dy3+)-activated lithium-strontium-zinc-borate glasses sensitised with Ag nanoparticles (AgNPs). …”
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3
Tailored spectroscopic characteristics of a new type of CuO nanoparticles-inserted borate glass system: Samarium concentration tuning effect
Published 2023“…Thus, some new types of Sm2O3-activated strontium-telluro-alumino-magnesium-borate glasses with copper oxide nanoparticles (CuONps) insertion were made using melt-quenching approach. …”
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4
Waveguide laser potency of samarium doped BaSO4-TeO2-B2O3 glasses: Evaluation of structural and optical qualities
Published 2019“…A series of samarium ions (Sm3+) doped barium-sulfur-telluro-borate glasses of composition (70-x)B2O3-15BaSO4-15TeO2-xSm2O3 (x ranged from 0.0 to 2.5 mol%) was prepared by melt-quenching method and examined via diverse analytical tools. …”
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5
Intense up-conversion luminescence from Dy3+-doped multi-component telluroborate glass matrix: Role of CuO nanoparticles embedment
Published 2023“…This paper reports an intense up-conversion luminescence from Dy3+-doped strontium-telluro-alumino-magnesium-borate glasses for the first time. The samples were made via the melt-quenching method and characterized to determine the influence of various CuO nanoparticles contents change on their up-conversion emission traits. …”
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6
Enhanced up- and down-conversion luminescence from Dy3+-Sm3+ co-doped B2O3-SrCO3-TeO2-Al2O3-MgO glass hosts: effects of CuO nanoparticles embedment
Published 2023“…Thus, new CuONps-infused strontium-telluro-aluminum-magnesium-borate glass samples were prepared using the standard melt-quenching technique with Dy3+-Sm3+ co-doping. …”
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