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Updated: Mar 12, 2026

Biofunctionalization of Magnetic Nanomaterials
Published on: July 16, 2020
Designed synthesis and surface engineering strategies of magnetic iron oxide nanoparticles for biomedical
Wei Wu1, Chang Zhong Jiang2, Vellaisamy A L Roy3
1Laboratory of Printable Functional Nanomaterials and Printed Electronics, School of Printing and Packaging, Wuhan University, Wuhan 430072, P. R. China. weiwu@whu.edu.cn and Department of Physics and Materials Science, City University of Hong Kong, Hong Kong SAR, P. R. China. val.roy@cityu.edu.cn.
Abstract:
Iron oxide nanoparticles (NPs) hold great promise for future biomedical applications because of their magnetic properties as well as other intrinsic properties such as low toxicity, colloidal stability, and surface engineering capability. Numerous related studies on iron oxide NPs have been conducted. Recent progress in nanochemistry has enabled fine control over the size, crystallinity, uniformity, and surface properties of iron oxide NPs. This review examines various synthetic approaches and surface engineering strategies for preparing naked and functional iron oxide NPs with different physicochemical properties. Growing interest in designed and surface-engineered iron oxide NPs with multifunctionalities was explored in in vitro/in vivo biomedical applications, focusing on their combined roles in bioseparation, as a biosensor, targeted-drug delivery, MR contrast agents, and magnetic fluid hyperthermia. This review outlines the limitations of extant surface engineering strategies and several developing strategies that may overcome these limitations. This study also details the promising future directions of this active research field.
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