Harnessing Nanotechnology for Advancements in Magnetism: Current Trends and Future Prospects


Authors : Dr. Subhash Chander

Volume/Issue : Volume 9 - 2024, Issue 2 - February

Google Scholar : https://tinyurl.com/2s3d5885

Scribd : https://tinyurl.com/4a22s83t

DOI : https://doi.org/10.38124/ijisrt/IJISRT24FEB1710

Abstract : Nanotechnology has revolutionized various fields, including magnetism, by enabling the manipulation of materials at the nanoscale. This paper explores the current trends and future prospects of harnessing nanotechnology for advancements in magnetism. We discuss the fundamental principles of magnetism at the nanoscale and review recent developments in nanomagnetic materials, fabrication techniques, and applications. Additionally, we highlight the potential impact of nanotechnology on diverse areas such as data storage, biomedical devices, magnetic sensors, and spintronics. Furthermore, challenges and opportunities in the field are addressed, offering insights into the direction of future research and technological innovations.

Keywords : Nano Magnetic Materials, Nanotechnology, Magnetism, Magnetic Nanoparticles, Magnetic Properties, Characterization Techniques, Size and Shape Effects.

Nanotechnology has revolutionized various fields, including magnetism, by enabling the manipulation of materials at the nanoscale. This paper explores the current trends and future prospects of harnessing nanotechnology for advancements in magnetism. We discuss the fundamental principles of magnetism at the nanoscale and review recent developments in nanomagnetic materials, fabrication techniques, and applications. Additionally, we highlight the potential impact of nanotechnology on diverse areas such as data storage, biomedical devices, magnetic sensors, and spintronics. Furthermore, challenges and opportunities in the field are addressed, offering insights into the direction of future research and technological innovations.

Keywords : Nano Magnetic Materials, Nanotechnology, Magnetism, Magnetic Nanoparticles, Magnetic Properties, Characterization Techniques, Size and Shape Effects.

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