Issue 25, 2012

Facile synthesis of bifunctional silica-coated core–shell Y2O3:Eu3+,Co2+ composite particles for biomedical applications

Abstract

In the present study, bifunctional silica-coated Y2O3:Eu3+,Co2+ spherical-shaped submicron composite particles were successfully prepared using a facile urea-assisted homogenous precipitation method. Synthesized Y2O3:Eu3+,Co2+ phosphor composites showed both ferromagnetic behaviour and strong visible red luminescence emission. The surface of the Y2O3:Eu3+,Co2+ phosphor composites was modified with a thin silica layer to enhance the luminescent properties and obtain higher biocompatibility of the samples. The composite particles with silica coatings resulted in a small decrease in the viability of L-929 fibroblastic cells at concentrations lower than 25 ppm and allowed cell imaging via internalization and wide distribution into the cells. Overall, these synthesized novel SiO2@Y2O3:Eu3+,Co2+ core–shell phosphor composites with both magnetic and luminescent properties have potential biomedical applications, including bioimaging and diagnosis, and can be also potentially used as MRI contrast agents.

Graphical abstract: Facile synthesis of bifunctional silica-coated core–shell Y2O3:Eu3+,Co2+ composite particles for biomedical applications

Article information

Article type
Paper
Submitted
02 Jul 2012
Accepted
02 Aug 2012
First published
03 Aug 2012

RSC Adv., 2012,2, 9495-9501

Facile synthesis of bifunctional silica-coated core–shell Y2O3:Eu3+,Co2+ composite particles for biomedical applications

T. Sh. Atabaev, O. S. Jin, J. H. Lee, D. Han, H. H. T. Vu, Y. Hwang and H. Kim, RSC Adv., 2012, 2, 9495 DOI: 10.1039/C2RA21332J

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