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Fluorescent nanocomposite of embedded ceria nanoparticles in crosslinked PVA electrospun nanofibers

机译:交联PVA电纺纳米纤维中嵌入的二氧化铈纳米粒子的荧光纳米复合材料

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摘要

This paper introduces a new fluorescent nanocomposite of electrospun biodegradable nanofibers embedded with optical nanoparticles. In detail, this work introduces the fluorescence properties of PVA nanofibers generated by the electrospinning technique with embedded cerium oxide (ceria) nanoparticles. Under near-ultra violet excitation, the synthesized nanocomposite generates a visible fluorescent emission at 520 nm, varying its intensity peak according to the concentration of in situ embedded ceria nanoparticles. This is due to the fact that the embedded ceria nanoparticles have optical tri-valiant cerium ions, associated with formed oxygen vacancies, with a direct allowed bandgap around 3.5 eV. In addition, the impact of chemical crosslinking of the PVA on the fluorescence emission is studied in both cases of adding ceria nanoparticles in situ or of a post-synthesis addition via a spin-coating mechanism. Other optical and structural characteristics such as absorbance dispersion, direct bandgap, FTIR spectroscopy, and SEM analysis are presented. The synthesized optical nanocomposite could be helpful in different applications such as environmental monitoring and bioimaging.
机译:本文介绍了一种新型的嵌入了光学纳米粒子的电纺可生物降解纳米纤维的荧光纳米复合材料。详细地,这项工作介绍了通过静电纺丝技术和嵌入的氧化铈(二氧化铈)纳米粒子产生的PVA纳米纤维的荧光特性。在近紫外激发下,合成的纳米复合材料会在520 nm处产生可见的荧光发射,并根据原位嵌入的二氧化铈纳米颗粒的浓度改变其强度峰值。这是由于以下事实:嵌入的二氧化铈纳米粒子具有光学三价铈离子,与形成的氧空位有关,直接允许带隙约为3.5 eV。此外,在原位添加二氧化铈纳米粒子或通过旋涂机制合成后添加的两种情况下,都研究了PVA的化学交联对荧光发射的影响。还介绍了其他光学和结构特征,例如吸光度色散,直接带隙,FTIR光谱和SEM分析。合成的光学纳米复合材料可用于不同的应用,例如环境监测和生物成像。

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