Sharma / Sehgal / Kalia | Conjugated Polymers for Next-Generation Applications, Volume 2 | Buch | 978-0-12-824094-6 | sack.de

Buch, Englisch, 440 Seiten, Format (B × H): 152 mm x 229 mm, Gewicht: 1000 g

Sharma / Sehgal / Kalia

Conjugated Polymers for Next-Generation Applications, Volume 2

Energy Storage Devices
Erscheinungsjahr 2022
ISBN: 978-0-12-824094-6
Verlag: William Andrew Publishing

Energy Storage Devices

Buch, Englisch, 440 Seiten, Format (B × H): 152 mm x 229 mm, Gewicht: 1000 g

ISBN: 978-0-12-824094-6
Verlag: William Andrew Publishing


Conjugated Polymers for Next-Generation Applications, Volume Two: Energy Storage Devices describes the synthesis and characterization of varied conjugated polymeric materials and their key applications, including active electrode materials for electrochemical capacitors and lithium-ion batteries, along with new ideas of functional materials for next-generation high-energy batteries, a discussion of common design procedures, and the pros and cons of conjugated polymers for certain applications. The book's emphasis lies in the underlying electronic properties of conjugated polymers, their characterization and analysis, and the evaluation of their effectiveness for utilization in energy and electronics applications.

This book is ideal for researchers and practitioners in the area of materials science, chemistry and chemical engineering.
Sharma / Sehgal / Kalia Conjugated Polymers for Next-Generation Applications, Volume 2 jetzt bestellen!

Zielgruppe


<p>Primary: Materials Scientists and Engineers</p> <p>Secondary: Chemists and Chemical Engineers</p>

Weitere Infos & Material


1. Batteries and charge storage devices based on p-conjugated polymeric materials 2. Renewable cathode materials dependent on conjugated polymer composite systems 3. Classification and application of redox-active polymer materials for energy storage nanoarchitectonics 4. The growth of organic electrode materials for energy storage applications 5. p-Conjugated polymeric materials for cutting-edge electrochemical energy storage devices 6. Nanoarchitectonics of conjugated polymers in supercapacitor applications 7. Current trends in flexible and wearable supercapacitors based on conjugated polymers 8. Conjugated polymer-based electrodes for flexible all-solid-state supercapacitors 9. Conjugated polymers for flexible energy harvesting and storage devices 10. Conjugated polymer and phase-change materials for energy storage and green buildings 11. Supercapacitors: a review on electrode materials and models based on conjugated polymers 12. Conjugated polymers for solar cell applications


Kalia, Susheel
Susheel Kalia is Associate Professor and Head of the Department of Chemistry, at the Army Cadet College Wing of the Indian Military Academy in Dehradun, India. He was a Postdoc Researcher in 2013 and a Visiting Professor at the University of Bologna, Italy in 2020. Kalia has published over 85 research articles in international journals, as well as co-editing 20 books, authored 11 book chapters, and received more than 8,000 citations over his academic career. His research interests include polymeric bio- and nanocomposites, surface modification, conducting polymers, nanofibers, nanoparticles, nano ferrites, hybrid materials, and hydrogels. Dr. Kalia is Series Editor of a book series on polymer and composite materials, and an editorial board member of the International Journal of Plastics Technology. In addition, he is a member of several professional organizations, including the Asian Polymer Association, Indian Cryogenics Council, the Society for Polymer Science, the Indian Society of Analytical Scientists, and the International Association of Advanced Materials.

Sehgal, Rakesh
Rakesh Sehgal is a Professor (Higher Academic Grade) at the National Institute of Technology Srinagar (J&K), India. He is an outstanding leader with sustained international acclaim for his work on synthesis and characterization (mechanical, metallurgical/metallographic, and tribological) of materials for aerospace, automobile, and bio-medical applications. Dr. Sehgal has investigated various materials such as adamite, piston alloys, stir cast aluminum-silicon alloys (hyper and hypo-eutectoid), copolymers, titanium alloys, tool & die steels, polymers, and nano-composites for machining parameters optimization and tribological behaviour. Prof. Sehgal served as Vice-President of Indian Society of Theoretical & Applied Mechanics (ISTAM) during 2001-2003, Executive member of Tribology Society of India (TSI) for 02 terms, and member of academic bodies of many other institutions. He has chaired technical sessions in many prestigious International and National Conferences. Prof. Sehgal received the Best Teacher Award for the year 2006-07. He is instrumental in introducing the concept of Project-Based Learning in NIT Hamirpur which has benefitted a large number of UG students in securing admissions in prestigious International Universities for MS/Ph.D. Prof. Sehgal has a distinguished career of 35 years in the field, teaching, research and administration. Prof. Sehgal has supervised 11 Ph.D. scholars in the area of tribo-materials for various industrial applications in automobile, aerospace, metal rolling and biomedical sectors. He is presently guiding 04 Ph.D. scholars in the area of metal composites for biomedical applications. He has also supervised 09 M.Tech. and 48 B.Tech. dissertations. Prof. Sehgal has published 168 research papers in International/National Journals and International/National conference proceedings. He has attended more than 35 International/National conferences in India and abroad. He has published one reference book on Performance Evaluation of Bearings, thirteen high-quality book chapters, and edited four books for Springer and Elsevier. Prof. Sehgal has completed many externally sponsored research projects worth in the area of Bearings Tribology and Mechatronics. He has established state-of-the-art facilities for research in the area of Bearings and Materials Tribology at NIT Hamirpur (H.P.). Prof. Sehgal has delivered 40 invited expert talks in various organizations in India and Abroad. He is currently working in the field of biomedical science and technology including the synthesis of smart materials, nanomaterials and tribological materials.

Sharma, Kashma
Kashma Sharma is presently working as Assistant Professor of Chemistry, DAV College, Sector-10, Chandigarh. She was awarded UGC Post-Doctoral Fellowship to Women in 2017 and carried out the research work in the Institute of Forensic Science & Criminology, Panjab University Chandigarh. She was a postdoctoral research fellow in the material science group at the University of the Free State, South Africa. She earned her Ph.D. from Shoolini University of Biotechnology and Management Sciences, Solan (H.P.) in Collaboration with the National Institute of Technology (NIT) Jalandhar in 2014. She completed her MSc in Chemistry from Panjab University Chandigarh in 2010. She also worked in Grant-in-aid for the joint center project titled "Joint Center for generating tissue-engineered organs and controlling cell behavior" under Indo-US Joint R&D Networked Center. So far, she has been published more than 25 research papers, and edited two books, and published more than 5 book chapters. Her principal research interests include the synthesis, processing, and characterization of bio-based/biodegradable polymers; drug delivery devices, self-healing composites and multifunctional smart materials, tissue engineering, and wastewater treatment.


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