Plasma technology can facilitate the fabrication of nanomaterials and nanoscale structures. On the other hand, nanotechnology could be possibly used in plasma science. Several advanced nanomaterials and nanodevices could be used to fabricate nanoplasma (nanoscale plasma), such as nanoelectrodes, nanoantennae, nanolasers, nanoreactors, nanomagnets, nanosensors, nanobatteries, nanogenerator and supercapacitors. This book provides information on fundamental design concepts and promising applications of nanoplasma. It explains how, for the next generation of electronic devices with high data rate communications, a high-speed operation of electronic switches could be attained using nanoplasma. Similarly, in the field of heath and aesthetics, nanoplasma can be used as a non-surgical localized treatments for the face and neck, such as eyelid correction. In addition, various kinds of advanced nanostructures can be fabricated using the plasma technology
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Part 1: Basic Principles 1. Nanoplasma in the context of plasma 2. Nanoplasma: Basic principles, fundamentals, and classification 3. Fundamentals of nanoplasma interaction with materials 4. Methods for generation of nanoplasmas 5. Magnetically confined plasmas at the nanoscale 6. Methods for characterization and evaluation of nanoplasma 7. Mathematical modeling of nanoplasma 8. Regulatory, toxicological and environmental issues of nanoplasma Part 2: Applications 9. Potential applications of plasmas containing nanostructured species 10. Picosecond switches for ultrafast electronics 11. Potential applications of nanoplasma in biology and medicine 12. Aesthetics application (beauty care/nanocosmetics) 13. Nanoplasma for Oncotherapy 14. Nanoplasma for Sensing Application 15. Modern implantology (nanosurface, biocompative treatment…) 16. Sterilization/decontamination 17. Nanoplasma for Display panels for luxury mobile devices 18. Nanoplasma for Energy conversion and storage 19. Nanoplasma: Future perspectives
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Provides detailed information on how nanotechnology enhances the properties of plasma for a range of electronic applications
Outlines the main properties of nanotechnology-enhanced plasma Discusses major applications of plasma technology Assesses the major challenges of manufacturing nanoplasma on an industrial scale

Produktdetaljer

ISBN
9780323899307
Publisert
2022-08-16
Utgiver
Vendor
Elsevier - Health Sciences Division
Vekt
810 gr
Høyde
235 mm
Bredde
191 mm
Aldersnivå
P, 06
Språk
Product language
Engelsk
Format
Product format
Heftet
Antall sider
408

Om bidragsyterne

Huaihe Song is a Professor at the State Key Laboratory of Chemical Resource Engineering, College of Materials and Engineering, Beijing University of Chemical Technology, China. He has 28 years of experience in the field of carbon materials research. His research area is in the preparation of advanced carbon materials and their applications, including pitch-based carbon materials (mesophase pitch and mesocarbon microbeads), carbon nanomaterials (carbon nanotubes, graphene, carbon-encapsulated metal nanomaterials, and onion-like carbons), carbon-based materials for energy storage (lithium-ion batteries and supercapacitors), and mesoporous carbons (ordered mesoporous carbons and carbon aerogels). Tuan Anh Nguyen is Senior Principal Research Scientist at the Institute for Tropical Technology, Vietnam Academy of Science and Technology, Vietnam. He received B.S. in Physics from Hanoi University in 1992, and Ph.D. in Chemistry from the Paris Diderot University (France) in 2003. He was Visiting Scientist at Seoul National University (South Korea, 2004) and University of Wollongong (Australia, 2005). He then worked as Postdoctoral Research Associate and Research Scientist in the Montana State University (USA), 2006-2009. In 2012, he was appointed as the Head of the Microanalysis Department at Institute for Tropical Technology. His research activities include smart sensors, smart networks, smart hospitals, smart cities and digital twins. He edited over 70 Elsevier, 12 CRC Press, 1 Springer, 1 RSC and 2 IGI Global books. He is Editor-In-Chief of "Kenkyu Journal of Nanotechnology & Nanoscience". Amrane Abdeltif is Professor in the ENSCR – Laboratory UMR CNRS 6226 Institut des Sciences Chimiques de Rennes, France. His research area of interest is fermentation and biological treatment processes, optimisation, modelization, environmental bioengineering, fungal physiology, gas treatment, and wastewater treatment. Aymen Amine Assadi is Associate Professor in the the ENSCR – Laboratory UMR CNRS 6226 Institut des Sciences Chimiques de Rennes, France. His area of interest is in chemical and environmental engineering, including water gas treatment, coupling of process, adsorption and isotherms on activated carbon, modeling and simulations for water/air treatment with POA, aerodynamics and mass and heat transfer and chemical reactions. Ghulam Yasin is a researcher in the School of Environment and Civil Engineering at Dongguan University of Technology, Guangdong, China. His expertise covers the design and development of hybrid devices and technologies of carbon nanostructures and advanced nanomaterials for for real-world impact in energy-related and other functional applications.