Gupta / Farhad / Nguyen | Advanced Flexible Ceramics | Buch | 978-0-323-98824-7 | sack.de

Buch, Englisch, 630 Seiten, Format (B × H): 152 mm x 229 mm, Gewicht: 1000 g

Gupta / Farhad / Nguyen

Advanced Flexible Ceramics

Design, Properties, Manufacturing, and Emerging Applications
Erscheinungsjahr 2023
ISBN: 978-0-323-98824-7
Verlag: William Andrew Publishing

Design, Properties, Manufacturing, and Emerging Applications

Buch, Englisch, 630 Seiten, Format (B × H): 152 mm x 229 mm, Gewicht: 1000 g

ISBN: 978-0-323-98824-7
Verlag: William Andrew Publishing


Advanced Flexible Ceramics: Design, Properties, Manufacturing, and Emerging Applications provides detailed information on the properties and applications of advanced flexible ceramics. Sections cover materials dependent flexible behavior, microstructure and phases, the operational life of ceramics, how flexible materials can influence smart behavior (shape memory and self-healing), and thermal, physical, mechanical, electrical and optical properties. Various processing routes such as powder metallurgy, both physical and chemical vapor deposition, sol-gel, 3D print, and roll-to-roll processing are also explained in detail. The later section of the book provides detailed coverage of emerging technological applications.

Additional chapters cover cost-effectiveness and the global market and recycling and future challenges and perspectives. This will be an essential reference resource for academic and industrial researchers working in the fields of refractory linings, high-temperature equipment, shielding, and MEMS/NEMS.

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Zielgruppe


Academic and industrial researchers, materials scientists and engineers working in oxides and ceramic materials; Postgraduate students

Weitere Infos & Material


1. Flexible ceramics: An introduction 2. Shape Memory Ceramics 3. Characterizations of flexible ceramics 4. Microstructural characteristics of flexible ceramics 5. Mechanical Properties of Flexible Ceramics 6. ELECTRICAL PROPERTIES OF FLEXIBLE CERAMIC FILMS 7. OPTICAL PROPERTIES OF FLEXIBLE CERAMIC FILMS 8. CVD processing and its relevance to build flexible ceramics materials 9. Ceramic 3D printing 10.Methods for fabrication of ceramic coating 11.Methods for ceramic machining 12. Advanced flexible electronic devices for biomedical application 13. Transition Metal Oxide Ceramic Nanocomposites for flexible supercapacitors 14. MOF- and MXene- based flexible supercapacitors 15. Flexible Solar Cells 16. Ceramics as electrode materials for supercapacitors 17. Flexible ceramics for microfluidic-mediated biomedical devices 18. Advanced Tape cast Multilayer Thin Ceramics and Composites with Inelastic Failure Behaviours for Damage Resistant Applications 19. Flexible ceramics for environmental remediation 20. Ceramic-based coatings for solar energy collection 21. Advanced ceramics in the defense and security 22. Advanced ceramics for anti-corrosion and anti-wear ceramic coatings 23. Flexible photovoltaic application 24. Ceramic materials for coatings 25.Advanced Flexible Ceramics Material from Graphene-Incorporated Alumina Nanocomposites 26. Carbon fiber reinforced ceramics: A flexible material for sophisticated applications


Farhad, Siamak
Siamak Farhad is Associate Professor in the Department of Mechanical Engineering, at The University of Akron,
Ohio, USA. His primary and secondary research fields are energy and measurement, with a focus on energy, both energy conversion and storage, with particular emphasis on batteries, fuel cells, and piezoelectrics, from nano/microstructure design to the cell, device and system design. His focus in the field of measurement is on new sensors, is interdisciplinary and linked to nanotechnology, electrochemistry, thermal science, and material science. His research is based on both modeling and experiment; the selected research topics are, recycling and regeneration of lithium-ion battery materials, optimization of electrodes nano/microstructure for lithium battery, ceramic solid-state lithium battery, and piezoelectric materials for sensor and energy harvester.

Nguyen, Tuan Anh
Tuan Anh Nguyen is a Senior Principal Research Scientist at the Institute for Tropical Technology, Vietnam Academy of Science and Technology, Hanoi, Vietnam. He received a BS in physics from Hanoi University in 1992, a BS in economics from Hanoi National Economics University in 1997, and a PhD in chemistry from the Paris Diderot University, France, in 2003. He was a Visiting Scientist at Seoul National University, South Korea, in 2004, and the University of Wollongong, Australia, in 2005. He then worked as a Postdoctoral Research Associate and Research Scientist at Montana State University, United States in 2006-09. In 2012 he was appointed as the Head of the Microanalysis Department at the Institute for Tropical Technology. His research areas of interest include smart sensors, smart networks, smart hospitals, smart cities, complexiverse, and digital twins. He has edited more than 74 books for Elsevier, 12 books for CRC Press, 1 book for Springer, 1 book for RSC, and 2 books for IGI Global. He is the Editor-in-Chief of Kenkyu Journal of Nanotechnology & Nanoscience.

Gupta, Ram K.
Dr. Ram Gupta is an Associate Professor of Chemistry at Pittsburg State University. He is the Director of Research at the National Institute for Materials Advancement (NIMA). Dr. Gupta has been recently named by Stanford University as being among the top 2% of research scientists worldwide. Before joining Pittsburg State University, he worked as an Assistant Research Professor at Missouri State University, Springfield, MO then as a Senior Research Scientist at North Carolina A&T State University, Greensboro, NC. Dr. Gupta's research spans a range of subjects critical to current and future societal needs including: semiconducting materials & devices, biopolymers, flame-retardant polymers, green energy production & storage using nanostructured materials & conducting polymers, electrocatalysts, optoelectronics & photovoltaics devices, organic-inorganic heterojunctions for sensors, nanomagnetism, biocompatible nanofibers for tissue regeneration, scaffold & antibacterial applications, and bio-degradable metallic implants.



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