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Tailoring the Surface of Multifunctional Magnetic Nanoparticles: Modification and Functionalization Strategies

Valentine Chikaodili AnadebeAbhinay ThakurbDivision of Research and Development, Lovely Professional University, Punjab, 144411, IndiaChukwunonso Chukwuzuluoke OkoyecDepartment of Chemical Engineering, Nnamdi Azikwe University, PMB 5025, Awka, Anambra State, NigeriaInime Ime UdohdThe Hempel Foundation Coatings Science and Technology Centre (CoaST), Dept. of Chemical and Biochemical Engineering, Technical University of Denmark (DTU), 2800 kgs, Lyngby, DenmarkElyor BerdimurodoveChemical & Materials Engineering, New Uzbekistan University, 54 Mustaqillik Ave., Tashkent, 100007, UzbekistanEno E. EbensogCentre for Materials Science, College of Science, Engineering and Technology, University of South Africa, Johannesburg 1710, South Africa
2025en
ABI

Annotatsiya

Magnetic nanoparticles (MNPs) can have their surfaces modified to customize their functions and properties for a range of uses. In order to achieve multifunctionality, this chapter thoroughly analyzes the methods and tactics used to alter and functionalize the surfaces of MNPs. Surface modification is examined in the context of fundamental elements of MNPs, such as synthesis techniques and magnetic behavior. The benefits and drawbacks of several surface modification methods, including coating, ligand exchange, silanization, and polymer grafting, are explained. Furthermore, functionalization strategies are examined for environmental and biological applications, emphasizing the attachment of medicinal agents, adsorbents, imaging probes, and targeting ligands. For scholars and practitioners who are intrigued by the design and optimization of MNPs for various applications, this chapter provides a thorough reference.

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