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This book is a collection of papers by individuals in industry and academia on research and application development of conductive polymers and plastics. Conductive plastics are positioned to play an increasingly important role in affairs of mankind, specifically in the area of electrical and electronic conductivity. While general knowledge about conductive polymers and plastics has been available for many years, a true understanding of their application has only taken place in the last 3 to 4 years. This is attributed to advances in materials and processing techniques. Engineers have only begun to explore the design freedom and economic benefits of specifying conductive polymers and plastics in industrial and business applications. This book is a key reference and guide to the use of conductive polymers and plastics. It is a summary of existing technologies, but also a look at future possibilities.
Those who recognize that our modern life style is dependent, to a large extent, on the use of organic polymers as thermal and elec trical insulators, may be surprised to learn that specific plastics may also be used as conductors of electricity. In addition to demon strating the versatility of polymers, this use as conductors will lead to developments which were not possible with other available materials of construction. This is a new field which is growing rapidly because of intensive research and developmental efforts by many different industrial, governmental and university investigators. Many of these researchers reported advances in this art at a symposium on conductive polymers sponsored by the American Chemical Society's Division of Organic Coatings and Plastics Chemistry held at the Second Chemical Congress of the North American Continent at Las Vegas, in August 1980. The proceedings of this timely symposium are presented in this book. The editor wishes to take this opportunity to express his grati tude to the authors who contributed to this book and to the ACS Organic Coatings and Plastics Division for sponsoring this effort. Raymond B. Seymour Department of Polymer Science University of Southern Mississippi Hattiesburg, MS 39401 v CONTENTS 1 New Horizons in Conductive Polymers Raymond B. Seymour Synthesis and Characterization of Conductive 7 Palladium Containing Polyimide Films • T.L. Wohlford. J. Schaff. L.T. Taylor.
Those who recognize that our modern life style is dependent, to a large extent, on the use of organic polymers as thermal and elec trical insulators, may be surprised to learn that specific plastics may also be used as conductors of electricity. In addition to demon strating the versatility of polymers, this use as conductors will lead to developments which were not possible with other available materials of construction. This is a new field which is growing rapidly because of intensive research and developmental efforts by many different industrial, governmental and university investigators. Many of these researchers reported advances in this art at a symposium on conductive polymers sponsored by the American Chemical Society's Division of Organic Coatings and Plastics Chemistry held at the Second Chemical Congress of the North American Continent at Las Vegas, in August 1980. The proceedings of this timely symposium are presented in this book. The editor wishes to take this opportunity to express his grati tude to the authors who contributed to this book and to the ACS Organic Coatings and Plastics Division for sponsoring this effort. Raymond B. Seymour Department of Polymer Science University of Southern Mississippi Hattiesburg, MS 39401 v CONTENTS 1 New Horizons in Conductive Polymers Raymond B. Seymour Synthesis and Characterization of Conductive 7 Palladium Containing Polyimide Films • T.L. Wohlford. J. Schaff. L.T. Taylor.
This book is derived from the findings of an EU-funded project.Tthe objective of the project was to develop conductive plastic composites that are eco-friendly, cost effective and of high added value. This was achieved through an ambitious multidisciplinary approach developing new, radically innovative, knowledge-based and sustainable products for protection against the effects of electromagnetic interference (EMI) and electrostatic discharge (ESD). Research was based on the compounding of engineering polymers and inherently conductive polymers (ICP) with improved conductivity, or hybrid systems of ICP with conductive nanotubes and other fibrous conductors. Innovative processing technologies specifically tailored to the new materials were also developed. the project aimed to dramatically extend the current performance and processability of ICP and alternative materials to enable significant replacement of metals in EMI shielding and ESD protection applications. This book will benefit plastics converters who wish to take full advantage of the potential of conductive plastic materials.
Edited by well-known pioneers in the field, this handbook and ready reference provides a comprehensive overview of transparent conductive materials with a strong application focus. Following an introduction to the materials and recent developments, subsequent chapters discuss the synthesis and characterization as well as the deposition techniques that are commonly used for energy harvesting and light emitting applications. Finally, the book concludes with a look at future technological advances. All-encompassing and up-to-date, this interdisciplinary text runs the gamut from chemistry and materials science to engineering, from academia to industry, and from fundamental challenges to readily available applications.
This book is derived from the findings of an EU-funded project. The objective ofthe project was to develop conductive plastic composites that are eco-friendly,cost effective and of high added value. This was achieved through an ambitiousmultidisciplinary approach developing new, radically innovative, knowledge-basedand sustainable products for protection against the effects of electromagneticinterference (EMI) and electrostatic discharge (ESD).Research was based on the compounding of engineering polymers and inherentlyconductive polymers (ICP) with improved conductivity, or hybrid systems of ICPwith conductive nanotubes and other fibrous conductors. Innovative processingtechnologies specifically tailored to the new materials were also developed. theproject aimed to dramatically extend the current performance and processabilityof ICP and alternative materials to enable significant replacement of metals in EMIshielding and ESD protection applications.This book will benefit plastics converters who wish to take full advantage of thepotential of conductive plastic materials.
While there is information available in handbooks on polythiophene chemistry and physics, until now, few if any books have focused exclusively on the most forwardly developed electrically conductive polymer, Poly (3,4-ethylenedioxythiophene)-otherwise known as PEDOT. This resource provides full chemical, physical, and technical information about this important conducting polymer, discussing basic knowledge and exploring its technical applications. Presented information is based on information generated at universities and through academic research, as well as by industrial scientists, providing a complete picture of the experimental and the practical aspects of this important polymer.