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Luminescence and optical properties of cerium oxide nanoparticles

机译:氧化铈纳米粒子的发光和光学性质

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摘要

Cerium oxide (CeO2) nanoparticles present an interesting material for various applications in biotechnology and medicine. The mechanism of CeO2 nanoparticles activity is supposed to be related to the presence both Ce3+ and Ce4+ ions on the surface of the nanocrystal. Due to the Ce3+ ions, the charge deficiency of a crystal is compensated by oxygen vacancies in the lattice. The present work is devoted to study the cerium oxide defects by optical and luminescence spectroscopy methods. The CeO2 nanoparticles was produced by the method of pulsed electron evaporation of ceramic oxide targets with condensation of the vapors in a vacuum. The strong non-equilibrium conditions of this method could lead to higher oxygen non-stoichiometry of cerium oxide. The results of work show the cerium nanocrystal manifests an emission provided by intracenter transitions in the Ce3+ ions, F-0-centers and Ce4+-O2- complexes with charge transfer. The band gap E-g of the CeO2 nanoparticles for direct and indirect transitions was estimated. The cerium oxide was found to demonstrate catalase-mimic activity, as well as differential cytotoxicity in relation to tumor and healthy cell cultures.
机译:氧化铈(CeO2)纳米粒子为生物技术和医学中的各种应用提供了一种有趣的材料。 CeO2纳米粒子活性的机制被认为与纳米晶体表面上Ce3 +和Ce4 +离子的存在有关。由于Ce3 +离子,晶体的电荷不足可以通过晶格中的氧空位来补偿。本工作致力于通过光学和发光光谱法研究氧化铈缺陷。 CeO2纳米粒子是通过脉冲电子蒸发陶瓷氧化物靶材并在真空中冷凝水汽的方法生产的。此方法的强非平衡条件可能导致氧化铈的氧非化学计量更高。工作结果表明,铈纳米晶体表现出由Ce3 +离子,F-0中心和Ce4 + -O2-配合物的中心内跃迁和电荷转移提供的发射。估计了CeO2纳米粒子直接和间接跃迁的带隙E-g。发现氧化铈表现出过氧化氢酶模拟活性,以及​​与肿瘤和健康细胞培养有关的不同细胞毒性。

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