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October 2, 2025Nanomaterials25 citationsOpen Access

Magnetic Iron Oxide Nanoparticles: Advances in Synthesis, Mechanistic Understanding, and Magnetic Property Optimization for Improved Biomedical Performance

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MNMinh Dang NguyenSHSupawitch HoijangRYRamtin Yarinia

Key Points

  • Magnetic iron oxide nanoparticles (MIONPs) were enhanced through improved synthesis, optimizing their biomedical applications.
  • Key improvements in reproducibility and uniformity in the synthesis of MIONPs were observed through various precursor methods.
  • The review emphasizes advances in the understanding of MIONP mechanisms to enhance their magnetic properties for effective applications.
  • Substantial progress in synthesis techniques supports the deployment of MIONPs in medical fields such as imaging and drug delivery.

Abstract

Magnetic iron oxide nanoparticles (MIONPs) represent a versatile magnetic nanoparticle (NP) system with considerable, yet underexplored, potential in diverse applications, particularly in emerging biomedical fields such as magnetic resonance imaging, magnetic hyperthermia, targeted drug delivery, and biosensing. The successful translation of MIONPs into these applications requires reproducible synthesis methods and precise control over particle uniformity in terms of size, shape, and composition. However, reproducibility in nanoparticle synthesis remains a persistent challenge, limiting the ability of researchers to replicate results and integrate MIONPs into application-oriented studies. In recent years, substantial efforts have been directed toward elucidating synthesis mechanisms and improving both reproducibility and particle uniformity, enabling notable advances in the biomedical deployment of MIONPs. This review summarizes progress in the synthesis of MIONPs, with emphasis on three widely employed precursors: iron oleate, iron acetylacetonate, and iron pentacarbonyl. The discussion focuses on key findings in NP synthesis, relevant chemical aspects, and the magnetic properties of MIONPs, which are critical for optimizing their functional performance. By consolidating recent advances, this review aims to provide a reliable framework for the preparation of high-quality MIONPs and to support their effective use in specific biomedical applications.

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Cite This Study

Nguyen et al. (2025) studied this question.

synapsesocial.com/papers/68de68ea83cbc991d0a215cfhttps://doi.org/10.3390/nano15191500
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