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- W4320341462 abstract "The inclusion of rare-earth ions in nanofiber structures has attracted much attention because they can produce significant emissions peaks due to their unique physical properties. Nanofiber structures are preferred over nanoparticles and thin films because they have higher performance in terms of charge and energy transmission. Tm3+-doped (100−x) SiO2–(x)HfO2 nanofiber, where x = 0, 5, 10, 15, 20, 25, 30, was fabricated via sol-gel electrospinning method. Polyvinyl alcohol was used as a structure-directing template to produce a continuous nanofiber. Photoluminescence spectra showed that Tm3+-doped SiO2–HfO2 produced multiple emission intensities at a wavelength of 430–680 nm, prominently at 458 nm, under an excitation of 350 nm. Emission produced increases as the amount of HfO2 content increases. The sample with 10% HfO2 was found to have a finer diameter size (24 ± 14 nm) compared with pure SiO2 nanofiber (176 ± 70 nm). The nature of SiO2–HfO2 was in the amorphous phase, and all the samples displayed high transparency across the wavelength range of 200–2000 nm at a range of 92%–94% transmittance, which is ideal for photonic application." @default.
- W4320341462 created "2023-02-13" @default.
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- W4320341462 date "2023-05-01" @default.
- W4320341462 modified "2023-09-29" @default.
- W4320341462 title "Electrospun Light-emitting Tm3+-doped SiO2–HfO2 nanofiber for photonic applications" @default.
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- W4320341462 doi "https://doi.org/10.1016/j.jlumin.2023.119723" @default.
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