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Aqueous medium induced optical transitions in cerium oxide nanoparticles

机译:水性介质在二氧化铈纳米粒子中引起的光学跃迁

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Experimental and theoretical investigations were performed to investigate the effect of water on optical properties of nanoceria as a function of Ce3+ concentration. Theoretical studies based on density functional plane-wave calculations reveal that the indirect optical transitions in bare ceria nanoparticles are red-shifted with an increase in the concentration of Ce3+. However, ceria nanoparticles model with adsorbed water molecules show a blue shift in the indirect optical spectra under identical conditions. Direct optical transitions are almost independent of Ce3+ concentration but show a pronounced blue shift in the aqueous environment relative to the bare nanoparticles. The theoretical study is consistent with our experimental observation in difference of shift behaviour in bare and aqueous suspended ceria nanoparticles. This change from red- to blue-shift in indirect optical transitions is associated with the polarization effect of water molecules on f-electron states.
机译:进行了实验和理论研究,以研究水对纳米氧化铈的光学性能与Ce3 +浓度的关系。基于密度泛函平面波计算的理论研究表明,随着Ce3 +浓度的增加,裸露的二氧化铈纳米粒子中的间接光学跃迁发生红移。然而,在相同条件下,具有吸附水分子的氧化铈纳米颗粒模型在间接光谱中显示出蓝移。直接光学跃迁几乎与Ce3 +浓度无关,但相对于裸露的纳米粒子,在水环境中显示出明显的蓝移。理论研究与我们在裸露的和水性悬浮的二氧化铈纳米颗粒的迁移行为差异方面的实验观察一致。间接光学跃迁中从红移到蓝移的这种变化与水分子对f电子态的极化效应有关。

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