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Iron Oxide Nanoparticles: A Review on the Province of Its Compounds, Properties and Biological Applications

Authors :
Priyannth Ramasami Sundhar, Baabu
Hariprasad Krishna, Kumar
Manju Bhargavi, Gumpu
Jayanth, Babu K
Arockia Jayalatha, Kulandaisamy
John Bosco Balaguru, Rayappan
Source :
Materials. 16:59
Publication Year :
2022
Publisher :
MDPI AG, 2022.

Abstract

Materials science and technology, with the advent of nanotechnology, has brought about innumerable nanomaterials and multi-functional materials, with intriguing yet profound properties, into the scientific realm. Even a minor functionalization of a nanomaterial brings about vast changes in its properties that could be potentially utilized in various applications, particularly for biological applications, as one of the primary needs at present is for point-of-care devices that can provide swifter, accurate, reliable, and reproducible results for the detection of various physiological conditions, or as elements that could increase the resolution of current bio-imaging procedures. In this regard, iron oxide nanoparticles, a major class of metal oxide nanoparticles, have been sweepingly synthesized, characterized, and studied for their essential properties; there are 14 polymorphs that have been reported so far in the literature. With such a background, this review’s primary focus is the discussion of the different synthesis methods along with their structural, optical, magnetic, rheological and phase transformation properties. Subsequently, the review has been extrapolated to summarize the effective use of these nanoparticles as contrast agents in bio-imaging, therapeutic agents making use of its immune-toxicity and subsequent usage in hyperthermia for the treatment of cancer, electron transfer agents in copious electrochemical based enzymatic or non-enzymatic biosensors and bactericidal coatings over biomaterials to reduce the biofilm formation significantly.

Subjects

Subjects :
General Materials Science

Details

ISSN :
19961944
Volume :
16
Database :
OpenAIRE
Journal :
Materials
Accession number :
edsair.doi.dedup.....51cb8dffcaa683026ed4ccf24bf56b80
Full Text :
https://doi.org/10.3390/ma16010059