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Graphene Quantum Dot-based Polymer Nanocomposites

Synthesis, Functionalization to Applications

  • 1st Edition - December 1, 2026
  • Latest edition
  • Editors: Srikanta Moharana, Kalim Deshmukh
  • Language: English

Graphene Quantum Dot-based Polymer Nanocomposites: Synthesis, Functionalization to Applications presents an extensive review of the latest advances in this important resear… Read more

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Description

Graphene Quantum Dot-based Polymer Nanocomposites: Synthesis, Functionalization to Applications presents an extensive review of the latest advances in this important research field. The chapters emphasize recent developments in the synthesis, surface modification, characterization, properties, and cutting-edge practical applications of these materials across various scientific and technological fields. The book will be a valuable reference resource for academic and industrial researchers, materials scientists and engineers, manufacturers, and all those working in the research and development of graphene quantum dots and their polymer nanocomposites for a broad range of different applications.

Key features

  • Presents the latest challenges and advancements in the field of graphene quantum dot-based polymer nanocomposites
  • Covers everything from the synthesis process inception to real-world applications in both lab and field settings
  • Focuses on practical applications including Electronic and Optoelectronic, Lithium-ion batteries, Supercapacitors, Solar cells, Fluorescent Sensors, Environmental Remediation, Gases and Volatile compounds, Dielectric and EMI shielding, Flame-Retardants, Biosensing, Bioimaging, Drug Delivery, and Tissue Engineering
  • Covers molecular dynamic simulations

Readership

Academic and industrial researchers, materials scientists and engineers, manufacturers, and all those working in the research and development of Graphene quantum dots and their polymer nanocomposites for a broad range of different scientific and industrial applications

Table of contents

1. Graphene Quantum Dots: Synthesis, Properties and Applications

2. Characterization and Surface Modification of Graphene Quantum Dots

3. Graphene Quantum Dot-based Polymer Nanocomposites: Design and Synthesis Methods

4. Spectroscopic and Microscopic Characterization of Graphene Quantum Dot-based Polymer Nanocomposites

5. Optical, Electrical and Mechanical Properties of Graphene Quantum Dot-based Polymer Nanocomposites

6. Thermal Analysis and Dynamic Mechanical Behaviour of Graphene Quantum Dot-based Polymer Nanocomposites

7. Synthesis and Characterization of Graphene Quantum Dot-based Polymeric Nanofibers

8. Synthesis and Characterization of Graphene Quantum Dot-based Polymeric Films and Membranes

9. Synthesis and Characterization of Graphene Quantum Dot-based Polymeric Hydrogels and Aerogels

10. Graphene Quantum Dot-based Polymer Nanocomposites for Electronic and Optoelectronic Applications

11. Graphene Quantum Dot-based Polymer Nanocomposites for Lithium-Ion Batteries

12. Graphene Quantum Dot-based Polymer Nanocomposites for Supercapacitor Applications

13. Graphene Quantum Dot-based Polymer Nanocomposites for Solar Cell Applications

14. Graphene Quantum Dot-based Polymer Nanocomposites for Dielectric and EMI Shielding Applications

15. Graphene Quantum Dot-based Polymer Nanocomposites for Flame Retardant Applications

16. Graphene Quantum Dot-based Polymer Nanocomposites as Fluorescent Sensors

17. Graphene Quantum Dot-based Polymer Nanocomposites for Detection of Hazardous Analytes and Environmental Remediation

18. Graphene Quantum Dot-based Polymer Nanocomposites for Gases and Volatile Compounds Sensing

19. Graphene Quantum Dot-based Polymer Nanocomposites for Biosensing Applications

20. Graphene Quantum Dot-based Polymer Nanocomposites for Bioimaging Applications

21. Graphene Quantum Dot-based Polymer Nanocomposites for Cancer Diagnostics and Therapy

22. Graphene Quantum Dot-based Polymer Nanocomposites for Drug Delivery Applications

23. Graphene Quantum Dot-based Polymer Nanocomposites for Tissue Engineering Applications

24. Molecular Dynamic Simulations and Theoretical Studies of Graphene Quantum Dot-based Polymer Nanocomposites

Product details

  • Edition: 1
  • Latest edition
  • Published: December 1, 2026
  • Language: English

About the editors

SM

Srikanta Moharana

Dr. Srikanta Moharana is presently working as an Associate Professor in the Department of Chemistry, School of Applied Sciences, Centurion University of Technology and Management, Odisha, India. He obtained his Ph.D. and M.Phil. degrees in Chemistry from the School of Chemistry, Sambalpur University, India. He received his M.Sc. degree in Chemistry from the National Institute of Technology, Rourkela. He has published more than 77 research papers in international peer-reviewed journals and over 85 book chapters in renowned international publications such as RSC, Elsevier, Wiley, Springer, and Taylor & Francis. Besides, he has edited 15 books under the banner of Elsevier, Springer Nature, RSC, and Taylor & Francis publications. Under his guidance, two PhD students have successfully received their Ph.D. degrees. Moreover, he has actively participated in and presented his research work at several international conferences and has been a Reviewer for reputed international journals. He has been awarded the Prof. G. B. Behera’s Best PhD thesis award under the banner of the Orissa Chemical Society, Odisha, India. He has more than 8 years of teaching and research experience. His research experience and interests lie in carbon nanomaterials (graphene and carbon nanotubes) and functional ceramic-based polymer nanocomposite synthesis and characterization for advanced energy storage applications. He is a Life Member of the Orissa Chemical Society.

Affiliations and expertise
Assistant Professor, Department of Chemistry, School of Applied Sciences, Centurion University of Technology and Management, Odisha, India

KD

Kalim Deshmukh

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.

Affiliations and expertise
Senior Researcher, New Technologies Research Centre, University of West Bohemia, Pilsen, Czech Republic