Article ID Journal Published Year Pages File Type
1427919 Materials Science and Engineering: C 2016 6 Pages PDF
Abstract

•For first time the effect of the Eu content vs antioxidant properties was studied.•Sol-gel particles of Lu2O3:Eu3 + nanopowders showed relevant antioxidant properties.•The antioxidant behavior remains stable at higher Eu levels.

This paper presents the synthesis of pure and europium-doped lutetium oxide (Lu2O3) powders prepared by sol-gel method. The influence of europium ion concentration into Lu2O3 nanocrystallites was investigated for first time in an in vitro system using a modified ABTS radical cation decolorization assay to determine the antioxidant activity. The crystalline structure of Lu2O3 and Eu:Lu2O3 powders was elucidated by XRD obtaining cubic phase in all system without secondary products in accordance with FT-IR results. By TEM and Scherrer equation, it was determined that Lu2O3 and Eu:Lu2O3 powders presented nearly spherical particle morphology with crystallites sizes in the range of 8 to 13 nm. The antioxidant assays results revealed that europium ion enhance Lu2O3 powders antioxidant properties, showing that 12.5 mol% of europium is sufficient to reach its maximum capacity.

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Physical Sciences and Engineering Materials Science Biomaterials
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