Produktbild: MXenes for Supercapacitors
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MXenes for Supercapacitors Design, Performance and Applications

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Beschreibung

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

01.06.2026

Herausgeber

Chaudhery Mustansar Hussain + weitere

Verlag

Elsevier

Seitenzahl

740

Maße (L/B)

22,9/15,2 cm

Sprache

Englisch

ISBN

978-0-443-38313-7

Beschreibung

Portrait

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.

Kalim Deshmukh is a senior researcher at the New Technologies-Research Centre, University of West Bohemia, Pilsen, Czech Republic. He has over 20 years of research experience working with a wide variety of polymers and nanomaterials, including metal oxide nanoparticles and two-dimensional (2D) materials like graphene and MXenes. His research interest is mainly focused on the synthesis, characterization, and investigations of the structure–property relationship of polymer nanocomposites and nanohybrids reinforced with different nanofillers, including various metal oxides, carbon allotropes, and novel 2D materials for energy storage and conversion, energy harvesting, electromagnetic interference shielding, gas sensing, and biomedical applications.

Chaudhery Mustansar Hussain is an adjunct professor and lab director in the Department of Chemistry & Environmental Sciences at the New Jersey Institute of Technology (NJIT), United States. His research is focused on sustainability, nanotechnology & 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 several 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.

Produktdetails

Einband

Taschenbuch

Erscheinungsdatum

01.06.2026

Herausgeber

Verlag

Elsevier

Seitenzahl

740

Maße (L/B)

22,9/15,2 cm

Sprache

Englisch

ISBN

978-0-443-38313-7

Herstelleradresse

Libri GmbH
Europaallee 1
36244 Bad Hersfeld
DE

Email: gpsr@libri.de

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  • Produktbild: MXenes for Supercapacitors
  • Part One: Foundations of MXenes for supercapacitors
    1. An introduction to the MXene family: Types of MXenes, synthesis approaches, historical development, unique structural properties, biocompatibility, and toxicity
    2. MXenes for supercapacitors: Status, challenges and prospects
    3. MXenes for supercapacitor applications: Structure, performance, and future prospects
    4. Materials science of MXenes for supercapacitors

    Part Two: Synthesis and characterization of MXenes for supercapacitors
    5. Advanced synthesis techniques of MXenes for supercapacitors
    6. Intercalation and delamination of MXenes
    7. Surface functionalization of MXene for supercapacitors
    8. Optical, electronic, electrical, magnetic and mechanical properties of MXene
    9. Advanced characterization techniques of MXenes for supercapacitors

    Part Three: Synthesis and characterization of MXenes for supercapacitors
    10. Electrode materials and electrolyte systems based on MXenes for supercapacitors
    11. Multifunctional MXene composites and engineering of MXene interfaces for supercapacitor applications
    12. Computational modeling and simulations of MXenes for supercapacitors
    13. High entropy MXene for supercapacitor
    14. Heteroatom doped MXene for supercapacitors

    Part Four: Applications of MXenes for supercapacitors
    15. MXene for supercapacitors in portable electronics and consumer electronics
    16. MXenes for supercapacitors in energy harvesting and renewable energy grids
    17. MXene for supercapacitors in electric vehicles
    18. MXenes for supercapacitors in medical devices
    19. MXene for supercapacitors in wearable technology
    20. MXenes for supercapacitors in military and defense sectors

    Part Five: Various aspects and future prospects of MXenes for supercapacitors
    21. Commercialization, industrial integration, and circular economy of MXene for supercapacitors
    22. Challenges, opportunities and emerging trends in MXene for supercapacitors