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Conducting polymers are versatile materials that possess both the unique properties of polymeric materials (elastic behavior, reversible deformation, flexibility, etc.) and the ability to conduct electricity with bulk conductivities comparable to those of metals and semiconductors. Conducting Polymers: Chemistries, Properties and Biomedical Applications provides current, state-of-the-art knowledge of conducting polymers and their composites for biomedical applications.
This book covers the fundamentals of conducting polymers, strategies to modify the structure of conducting polymers to make them biocompatible, and their applications in various biomedical areas such as drug/gene delivery, tissue engineering, antimicrobial activities, biosensors, etc.
Features
Covers the state-of-the-art progress on biodegradable conducting polymers for biomedical applications
Presents synthesis, characterization, and applications of conducting polymers for various biomedical research
Provides the fundamentals of biodegradation mechanisms and the role of conduction in biomedical devices
Offers details of novel methods and advanced technologies used in biomedical applications using conducting polymers
Highlights new directions for scientists, researchers, and students to better understand the chemistry, technologies, and applications of conducting polymers
This book is essential reading for all academic and industrial researchers working in the fields of materials science, polymers, nanotechnology, and biomedical technology.
Conducting Polymers: An Introduction
Conducting Polymers: Fundamentals to Biomedical Applications
Conducting Polymers: Fundamentals, Synthesis, Properties, and Applications
Chemistries and Biodegradability of Conducting Polymers
Strategies to Synthesize Biodegradable Conducting Polymers
Biodegradable Polymers: Synthesis to Advanced Biomedical Applications
Hybrid Conductive Polymers: Synthesis, Properties, and Multifunctionality
Electrically Conductive Polymers and Composites for Biomedical Applications
Conducting Polymers for Gene Delivery
Conducting Polymers for Regenerative Medicine
Conducting Polymers as Efficient Materials for Tissue Engineering
Conducting Polymer-Based Nanomaterials for Tissue Engineering
Conducting Polymers for Neural Tissue Engineering
Conducting Polymers for Ophthalmic Applications
Conducting Polymers for Biomedical Imaging
Conducting Polymer-Based Micro-Containers for Biomedical Applications
Antimicrobial Activities of Conducting Polymers and Their Derivatives
Biodegradable Electronic Devices
Microfluidic Devices with Integrated Conductive Polymeric Electrodes for Biosensing Applications
Advantages and Challenges of Biodegradable Electronic Devices
Conducting Polymers: An Efficient Way to Deal with Medical and Industrial Fouling
Antifouling Properties and Biomedical Applications of Conducting Polymers