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Industrial Applications of Functionalized Magnetic Nanoparticles (Micro and Nano Technologies) - Softcover

 
9780443338953: Industrial Applications of Functionalized Magnetic Nanoparticles (Micro and Nano Technologies)

Inhaltsangabe

Industrial Applications of Functionalized Magnetic Nanoparticles (FMNPs) exhibit exceptional mechanical properties owing to their polymer matrix, substantial surface area to volume ratios, and heightened interfacial reactivity. These versatile tools find application in various industrial sectors, and their functionalization with diverse chemical groups can enhance their affinity toward specific targets. Industrial Applications of Functionalized Magnetic Nanoparticles thoroughly explores recent progress in FMNPs, addressing their properties, industrial-scale fabrication methods, and applications across various industrial sectors at both experimental and theoretical scales. This comprehensive book offers detailed insights into the latest technologies, serving as an invaluable resource for researchers keen on understanding the characteristics, unique properties, and synthesis methods of magnetic nanoparticles. Additionally, professionals seeking to apply these nanoparticles in various industries will find this book to be a guiding resource, seamlessly transitioning from laboratory insights to real-world applications.

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Über die Autorinnen und Autoren

Dr. Kalim Deshmukh is a senior researcher at the New Technologies Research Centre, University of West Bohemia in Pilsen, Czech Republic. He has over 20 years of research experience in nanomaterials and polymeric materials, with particular expertise in polymer blends, nanocomposites, and nanohybrids. His work emphasizes nanoscale dispersion, interfacial chemistry, and structure–property relationships that influence material performance in applications such as energy storage, gas sensing, biosensing, electromagnetic interference (EMI) shielding, and high-k dielectrics. He has authored more than 200 publications, including original research articles and review papers, in leading international journals and with major publishers, such as the Royal Society of Chemistry (RSC), American Chemical Society (ACS), Elsevier, Wiley-VCH, Springer, and Taylor & Francis. In addition to his research contributions, he has edited or co-edited several books published by ACS, RSC, Elsevier, Springer, Wiley-VCH, and Wiley Scrivener.



Prof. Chaudhery Mustansar Hussain, PhD, is an adjunct professor and director of laboratories in the Department of Chemistry & Environmental Sciences at the New Jersey Institute of Technology (NJIT), Newark, New Jersey, United States. His research focuses on sustainability, the applications of nanotechnology and advanced materials, environmental management, analytical chemistry and other various industries. Dr. Hussain is the author of numerous papers in peer-reviewed journals as well as a prolific author and editor of around 200 books, including scientific monographs and handbooks in his research areas. He has published with ELSEVIER, American Chemical Society, Royal Society of Chemistry, John Wiley & Sons, CRC Press, and Springer.

Von der hinteren Coverseite

Functionalized magnetic nanoparticles (FMNPs) are versatile nanomaterials that exhibit a large surface area-to-volume ratio, unique magnetic properties, and tunable surface chemistry. These nanoparticles can be further modified or functionalized to attach specific targeting molecules or functional groups to their surface. The functionalization of magnetic nanoparticles (MNPs) improves their stability, reactivity, and compatibility with biological systems, reduces toxicity, and expands their application potential in various research fields, including biomedicine, catalysis, and environmental remediation.

The book Industrial Applications of Functionalized Magnetic Nanoparticles explores recent progress in FMNPs, addressing their properties, industrial-scale fabrication methods, and applications across various industrial sectors. This book provides detailed insights into the latest technologies and serves as an invaluable resource for researchers interested in understanding the characteristics, unique properties, and synthesis methods of FMNPs. In addition, this book will be a guiding source for professionals seeking FMNPs in various industries, seamlessly transitioning from laboratory insights to real-world applications.

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