
Conducting Polymers-Based Energy Storage Materials
- 338 pages
- English
- ePUB (mobile friendly)
- Available on iOS & Android
Conducting Polymers-Based Energy Storage Materials
About this book
Conducting polymers are organic polymers which contain conjugation along the polymer backbone that conduct electricity. Conducting polymers are promising materials for energy storage applications because of their fast chargeādischarge kinetics, high charge density, fast redox reaction, low-cost, ease of synthesis, tunable morphology, high power capability and excellent intrinsic conductivity compared with inorganic-based materials. Conducting Polymers-Based Energy Storage Materials surveys recent advances in conducting polymers and their composites addressing the execution of these materials as electrodes in electrochemical power sources.
Key Features:
- Provides an overview on the conducting polymer material properties, fundamentals and their role in energy storage applications.
- Deliberates cutting-edge energy storage technology based on synthetic metals (conducting polymers)
- Covers current applications in next-generation energy storage devices.
- Explores the new aspects of conducting polymers with processing, tunable properties, nanostructures and engineering strategies of conducting polymers for energy storage.
- Presents up-to-date coverage of a large, rapidly growing and complex conducting polymer literature on all-types electrochemical power sources.
This book is an invaluable guide for students, professors, scientists, and R&D industrial specialists working in the field of advanced science, nanodevices, flexible electronics, and energy science.
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Information
Table of contents
- Cover
- Half Title
- Title Page
- Copyright Page
- Table of Contents
- Preface
- Contributors
- Editors
- 1. Polythiophene-Based Battery Applications
- 2. Synthetic Strategies and Significant Issues for Pristine Conducting Polymers
- 3. Conducting Polymer-Derived Materials for Batteries
- 4. An Overview on Conducting Polymer-Based Materials for Battery Application
- 5. Polymer-Based Binary Nanocomposites
- 6. Polyaniline-Based Supercapacitor Applications
- 7. Conductive Polymer-derived Materials for Supercapacitor
- 8. Conducting Polymer-Metal Based Binary Composites for Battery Applications
- 9. Novel Conducting Polymer-Based Battery Application
- 10. Conducting PolymerāCarbon-Based Binary Composites for Battery Applications
- 11. Polyethylenedioxythiophene-Based Battery Applications
- 12. Polythiophene-Based Supercapacitor Applications
- 13. Conducting Fibers for Energy Applications
- 14. Conducting Polymer-Metal-Based Binary Composites for Supercapacitor Applications
- 15. Polyethylenedioxythiophene (PEDOT)-Based Supercapacitor Applications
- 16. Electrospun Composite Separator for Li-Ion Batteries: A Short Review
- 17. Conducting Polymers: Properties, Synthesis, and Energy Storage Devices
- 18. Applications of Polyethylenedioxythiophene in Photovoltaics
- 19. Conducting Polymer-Based Ternary Composites for Supercapacitor Applications
- Z