Polypyrrole Nanocomposites
Synthesis, Characterization and Applications
- 1 Edición - 1 de mayo de 2027
- Última edición
- Editores: Kalim Deshmukh, Mayank Pandey
- Idioma: Inglés
Polypyrrole Nanocomposites: Synthesis, Characterization and Applications presents the latest advances in this rapidly evolving field of materials science and engineering. The bo… Leer más
Descripción
Descripción
The book serves as a valuable reference for academic researchers, industrial professionals, materials scientists, and engineers working in nanocomposites and advanced functional materials. It is also a useful resource for postgraduate students and early-career researchers seeking to develop a deeper understanding of polypyrrole-based systems and their emerging applications.
Puntos claves
Puntos claves
- Covers detailed discussions on synthesis methods, including both chemical and physical approaches
- Provides in-depth analysis of spectroscopic, microscopic, and thermal characterization techniques
- Explores applications with case study examples in energy storage, sensors, actuators, and biomedical devices
- Addresses practical implementations, industrial scalability, commercialization, sustainability and future research directions
De interès para
De interès para
Índice
Índice
2. Polypyrrole Nanocomposites: State of the Art Synthesis and Processing Methods, Functionalization Techniques and Role of Nanofillers in Property Enhancement
3. Morphological, Mechanical, Optical, and Thermal Properties of Polypyrrole Nanocomposites
4. Magnetic, Electrical, Rheological and Viscoelastic Properties of Polypyrrole Nanocomposites
5. Polypyrrole Nanocomposites for Dielectric Applications
6. Polypyrrole Nanocomposites for Thermoelectric Applications
7. Polypyrrole Nanocomposites for EMI Shielding Applications
8. Polypyrrole Nanocomposites for Corrosion Inhibition
9. Polypyrrole Nanocomposites for Sensing of Gases and Volatile Organic Compounds
10. Polypyrrole Nanocomposites Based Piezoresisitve Sensors
11. Polypyrrole Nanocomposites Based Biosensors
12. Polypyrrole Nanocomposites for Lithium-Ion Batteries
13. Polypyrrole Nanocomposites for Supercapacitor Applications
14. Polypyrrole Nanocomposites for Solar Cell Applications
15. Polypyrrole Nanocomposites for Fuel Cell Applications
16. Polypyrrole Nanocomposites for Removal of Organic Contaminants and Heavy Metal Ions from Wastewater
17. Polypyrrole Nanocomposites for Photocatalytic Applications
18. Polypyrrole Nanocomposites for Food Packaging Applications
19. Polypyrrole Nanocomposites for Antimicrobial Applications
20. Polypyrrole Nanocomposites for Tissue Engineering
21. Polypyrrole Nanocomposites Coatings for Biomedical Implants
22. Polypyrrole Nanocomposites Based Drug Delivery Systems
23. Insights on Theoretical Modelling and Molecular Dynamic Simulations of Polypyrrole Nanocomposites
24. Industrial Scalability, Commercialization Aspects, Life Cycle Assessment and Recycling and Environmental Impact of Polypyrrole Nanocomposites
Detalles del producto
Detalles del producto
- Edición: 1
- Última edición
- Publicado: 1 de mayo de 2027
- Idioma: Inglés
Sobre los editores
Sobre los editores
KD
Kalim Deshmukh
MP
Mayank Pandey
Dr. Mayank Pandey is an Assistant Professor, Department of Physical Sciences Kristu Jayanti (Deemed To Be University), Bangalore, India. He 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.