Abstract:Multilayering of optical thin films is widely used for a range of purposes in photonic technology, but the development of nanofiber structures that can outperform thin films and nanoparticles in optical applications cannot simply be disregarded. Hybrid structures composed of Tm3+-doped SiO2–HfO2 in the form of nanofibers (NFs) and thin films (TFs) are deposited on a single substrate using the electrospinning and dip-coating methods, respectively. Ultrafine nanofiber strands with a diameter of 10–60 nm were fab… Show more
“…The photoluminescent materials investigated include crystalline tris(8-hydroxyquinoline) aluminum (Alq3) micro-rods (MRs), Fe 2+ -doped CsPb(Cl x Br 1−x ) 3 nanocrystals (NCs), organosilica films, and Tm 3+ -doped SiO 2 –HfO 2 [ 4 , 5 , 6 , 7 ]. Kim et al fabricated hybrid Alq3/Ag structures using a self-assembly method under a mixed solution of protic and aprotic polar solvents [ 4 ].…”
mentioning
confidence: 99%
“…Since the defect density was reduced by the Fe 2+ doping, the full width at half maximums declined, while PL quantum yields (QYs) and photostability increased. Zulfikri et al deposited Tm 3+ -doped SiO 2 –HfO 2 in the form of nanofibers (NFs) and thin films (TFs) on a single substrate using the electrospinning and dip-coating methods, respectively [ 7 ]. Compared with single-layered NF and TF structures, the composites showed an about tenfold improvement in PL intensity.…”
Photoactive nanomaterials exhibit myriad customized properties, including a photon converting ability, specific surface area, physicochemical stability, and chemical reactivity, making them appealing for a wide range of practical applications [...]
“…The photoluminescent materials investigated include crystalline tris(8-hydroxyquinoline) aluminum (Alq3) micro-rods (MRs), Fe 2+ -doped CsPb(Cl x Br 1−x ) 3 nanocrystals (NCs), organosilica films, and Tm 3+ -doped SiO 2 –HfO 2 [ 4 , 5 , 6 , 7 ]. Kim et al fabricated hybrid Alq3/Ag structures using a self-assembly method under a mixed solution of protic and aprotic polar solvents [ 4 ].…”
mentioning
confidence: 99%
“…Since the defect density was reduced by the Fe 2+ doping, the full width at half maximums declined, while PL quantum yields (QYs) and photostability increased. Zulfikri et al deposited Tm 3+ -doped SiO 2 –HfO 2 in the form of nanofibers (NFs) and thin films (TFs) on a single substrate using the electrospinning and dip-coating methods, respectively [ 7 ]. Compared with single-layered NF and TF structures, the composites showed an about tenfold improvement in PL intensity.…”
Photoactive nanomaterials exhibit myriad customized properties, including a photon converting ability, specific surface area, physicochemical stability, and chemical reactivity, making them appealing for a wide range of practical applications [...]
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