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    MXenes for Supercapacitors

    Design, Performance and Applications

    AvMayank Pandey,Kalim Deshmukh

    Häftad, Engelska, 2026

    Del i serien Elsevier Series in Advanced Ceramic Materials

    3 113 kr

    Beställningsvara. Skickas inom 10-15 vardagar. Fri frakt över 249 kr.

    Beskrivning

    MXenes for Supercapacitors: Design, Performance and Applications focuses on design principles and strategies for optimizing performance that are crucial for harnessing the full potential of these materials in supercapacitors, which include detailed discussions on MXene-based electrode materials, electrolyte systems, and device configurations. The book also offers new insights into enhancing energy storage capacity, power density, and cycling stability. By bridging the gap between fundamental research and practical implementation, it will equip the reader (researchers, engineers, and industry professionals) with the knowledge and tools necessary to develop the next generation of supercapacitor technologies with MXenes at the forefront of research.

    The book will serve as a comprehensive guide addressing, both fundamental aspects and practical implications for this cutting-edge technology and its use in supercapacitors.

    • Provides an in-depth exploration of the design principles, performance characteristics, and diverse applications of MXenes in supercapacitors
    • Discusses their unique properties, structural characteristics, and synthesis techniques
    • Covers applications in portable and consumer electronics, including in energy harvesting, renewable energy grids, electric vehicles, aerospace, medical devices in smart grids, wearable technology, and in the military and defense sectors

    Produktinformation

    • Utgivningsdatum:2026-06-29
    • Mått:152 x 229 x 41 mm
    • Vikt:1 000 g
    • Format:Häftad
    • Språk:Engelska
    • Serie:Elsevier Series in Advanced Ceramic Materials
    • Antal sidor:842
    • Förlag:Elsevier Science
    • ISBN:9780443383137

    Utforska kategorier

    • Maskinteknik och material inom Naturvetenskap och teknik

    Mer om författaren

    Dr. Mayank Pandey completed his Ph.D. in materials science from VIT University, Vellore, India, on the topic “Preparation and characterization of polymer electrolyte for electrochemical device applications”. He then went on to complete his postdoctoral studies in electrical and thermal degradation of graphene-based polymer composite for electronic device applications from CHRIST (Deemed To Be University) Bangalore, India. He is an experienced material physicist with an experimental background in synthesizing graphene quantum dot- (GQDs) based polymer nanocomposites. His research areas also include fabrication of polymer blends and composite electrolytes, organic semiconductor/organic solar cells, and their impedance spectroscopy analysis. Besides investigating the structural, optical, and electronic properties of GQDs based materials, he has also contributed towards the development of new approaches in the field of nanocarbon derivatives. 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.

    Innehållsförteckning

    • Part One: Foundations of MXenes for supercapacitors1. An introduction to the MXene family: Types of MXenes, synthesis approaches, historical development, unique structural properties, biocompatibility, and toxicity2. MXenes for supercapacitors: Status, challenges and prospects3. MXenes for supercapacitor applications: Structure, performance, and future prospects4. Materials science of MXenes for supercapacitorsPart Two: Synthesis and characterization of MXenes for supercapacitors5. Advanced synthesis techniques of MXenes for supercapacitors6. Intercalation and delamination of MXenes7. Surface functionalization of MXene for supercapacitors8. Optical, electronic, electrical, magnetic and mechanical properties of MXene9. Advanced characterization techniques of MXenes for supercapacitorsPart Three: Synthesis and characterization of MXenes for supercapacitors10. Electrode materials and electrolyte systems based on MXenes for supercapacitors11. Multifunctional MXene composites and engineering of MXene interfaces for supercapacitor applications12. Computational modeling and simulations of MXenes for supercapacitors13. High entropy MXene for supercapacitor14. Heteroatom doped MXene for supercapacitorsPart Four: Applications of MXenes for supercapacitors15. MXene for supercapacitors in portable electronics and consumer electronics16. MXenes for supercapacitors in energy harvesting and renewable energy grids17. MXene for supercapacitors in electric vehicles18. MXenes for supercapacitors in medical devices19. MXene for supercapacitors in wearable technology20. MXenes for supercapacitors in military and defense sectorsPart Five: Various aspects and future prospects of MXenes for supercapacitors21. Commercialization, industrial integration, and circular economy of MXene for supercapacitors22. Challenges, opportunities and emerging trends in MXene for supercapacitors