JOURNAL ARTICLE

Magnetite-Silica Core/Shell Nanostructures: From Surface Functionalization towards Biomedical Applications—A Review

Angela SpoialăCornelia-Ioana IlieLuminița Narcisa CrăciunDenisa FicaiAnton FicaiEcaterina Andronescu

Year: 2021 Journal:   Applied Sciences Vol: 11 (22)Pages: 11075-11075   Publisher: Multidisciplinary Digital Publishing Institute

Abstract

The interconnection of nanotechnology and medicine could lead to improved materials, offering a better quality of life and new opportunities for biomedical applications, moving from research to clinical applications. Magnetite nanoparticles are interesting magnetic nanomaterials because of the property-depending methods chosen for their synthesis. Magnetite nanoparticles can be coated with various materials, resulting in “core/shell” magnetic structures with tunable properties. To synthesize promising materials with promising implications for biomedical applications, the researchers functionalized magnetite nanoparticles with silica and, thanks to the presence of silanol groups, the functionality, biocompatibility, and hydrophilicity were improved. This review highlights the most important synthesis methods for silica-coated with magnetite nanoparticles. From the presented methods, the most used was the Stöber method; there are also other syntheses presented in the review, such as co-precipitation, sol-gel, thermal decomposition, and the hydrothermal method. The second part of the review presents the main applications of magnetite-silica core/shell nanostructures. Magnetite-silica core/shell nanostructures have promising biomedical applications in magnetic resonance imaging (MRI) as a contrast agent, hyperthermia, drug delivery systems, and selective cancer therapy but also in developing magnetic micro devices.

Keywords:
Materials science Magnetite Nanotechnology Surface modification Magnetite Nanoparticles Nanomaterials Nanoparticle Nanostructure Silanol Biocompatibility Magnetic nanoparticles Magnetic hyperthermia Chemical engineering Chemistry Metallurgy Organic chemistry Engineering

Metrics

45
Cited By
3.37
FWCI (Field Weighted Citation Impact)
147
Refs
0.89
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Nanoparticle-Based Drug Delivery
Physical Sciences →  Materials Science →  Biomaterials
Nanomaterials for catalytic reactions
Physical Sciences →  Chemistry →  Organic Chemistry
Graphene and Nanomaterials Applications
Physical Sciences →  Engineering →  Biomedical Engineering

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