Dielectric Electroactive Polymers
Principles and Applications
Polymer Chemistry Series (Publisher)
1st Edition
Will be published approx. on 5. August 2026
Book
Hardback
728 pages
978-1-83767-531-9 (ISBN)
Description
This book, edited by experts in the area, presents an overview of the different types of dielectric electroactive polymers, covering the basic principles of their main characteristics and functional responses, and their applications. The book emphasizes both the established concepts as well as the most recent advances in materials, processing technologies and applications.
The compatibility of several of these polymers with additive manufacturing technologies, allowing improved integration into devices and tailored shapes, is further expanding their areas of application, being particularly relevant in the digitalization of society and industry.
More details
Series
Language
English
Place of publication
Cambridge
United Kingdom
Publishing group
Royal Society of Chemistry
Product notice
Unsewn / adhesive bound
Dimensions
Height: 234 mm
Width: 156 mm
ISBN-13
978-1-83767-531-9 (9781837675319)
DOI
10.1039/9781837678150
Schweitzer Classification
Content
- Dielectric Electroactive Polymers: Main Types, Characteristics and Functional Response
- Advancements in Synthetic Pathways for Dielectric Electroactive Polymers and Multifunctional Applications
- Methodologies to Obtain Bio-based Electroactive Polymers
- Electroactive Polymer Blends
- Electroactive Polymer Composites
- Processing Techniques, Applications and Trends for Dielectric Polymers
- Dielectric Electroactive Polymers for Emerging Electromechanical Sensors and Actuators
- Dielectric Elastomer Sensors: Principles and Applications
- Thermoresponsive Soft Actuators: Design, Fabrication and Properties
- Electroactive Polymers and Polymer Nanocomposites for Cooling Technology
- Dielectric Electroactive Polymers for Memory Applications
- Dielectric Polymers for Transistor Memories
- Dielectric Polymers for Capacitors
- Aromatic Polyamide-based Dielectric Materials for High-temperature Energy Storage Capacitor Applications
- Conducting Polymers and Their Composites: A Pathway to High-performance Supercapacitors
- Dielectric Electroactive Polymers for Battery Devices
- Development of a Piezo Biosensor for Pathogen-specific Biopolymer Detection Using Polymer Piezo Film:
- Investigation of Detection Characteristics of Piezo Biosensors and Self-assembly BaTiO3/Polymer Composite Materials
- Designing High-performance Electrical-responsive Artificial Muscles: From Materials to Applications
- Dielectric Electroactive Polymers for Tissue Engineering
- Mineralization of PVDF, VDF-based Copolymers and Other Fluoropolymers Using Superheated Water in the Presence of Alkaline Reagents
- High Performance PVDF-based Polymers: Per- and Polyfluoroalkyl Concerns and Remediation Strategies
- Outlook and Conclusions
- Advancements in Synthetic Pathways for Dielectric Electroactive Polymers and Multifunctional Applications
- Methodologies to Obtain Bio-based Electroactive Polymers
- Electroactive Polymer Blends
- Electroactive Polymer Composites
- Processing Techniques, Applications and Trends for Dielectric Polymers
- Dielectric Electroactive Polymers for Emerging Electromechanical Sensors and Actuators
- Dielectric Elastomer Sensors: Principles and Applications
- Thermoresponsive Soft Actuators: Design, Fabrication and Properties
- Electroactive Polymers and Polymer Nanocomposites for Cooling Technology
- Dielectric Electroactive Polymers for Memory Applications
- Dielectric Polymers for Transistor Memories
- Dielectric Polymers for Capacitors
- Aromatic Polyamide-based Dielectric Materials for High-temperature Energy Storage Capacitor Applications
- Conducting Polymers and Their Composites: A Pathway to High-performance Supercapacitors
- Dielectric Electroactive Polymers for Battery Devices
- Development of a Piezo Biosensor for Pathogen-specific Biopolymer Detection Using Polymer Piezo Film:
- Investigation of Detection Characteristics of Piezo Biosensors and Self-assembly BaTiO3/Polymer Composite Materials
- Designing High-performance Electrical-responsive Artificial Muscles: From Materials to Applications
- Dielectric Electroactive Polymers for Tissue Engineering
- Mineralization of PVDF, VDF-based Copolymers and Other Fluoropolymers Using Superheated Water in the Presence of Alkaline Reagents
- High Performance PVDF-based Polymers: Per- and Polyfluoroalkyl Concerns and Remediation Strategies
- Outlook and Conclusions