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Intrinsically Conducting Polymers: An Emerging Technology

Intrinsically Conducting Polymers: An Emerging Technology
Author: M. Aldissi
Publisher: Springer Science & Business Media
Total Pages: 233
Release: 2013-04-17
Genre: Technology & Engineering
ISBN: 9401719527

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This book contains the majority of the papers presented at the NATO Ad vanced Research Workshop (ARW) held in Burlington, Vermont, USA on October 12-15, 1992. This ARW was the first of its kind to address the subject of intrinsically conducting polymers with an emphasis on processing and technological applications. The NATO ARW format was followed in that the subjects addressed here were limited in number but discussed in detail with the attendance being limited to a small number of selected scientists. The ARW brought together lecturers who are leaders in their respective fields from a wide range of NATO and non-NATO countries (a total of 11 countries) with the support of the NATO Scientific Affairs Division and some support from Champlain Cable Corporation. The total number of par ticipants was 33 and the number of presentations was 24. The speakers were chosen based on the topics selected for this workshop and repre sented industry, universities and government laboratories. The field of conducting polymers has grown rapidly during the past few years with important developments in materials processing and fabrica tion that brought about active research programs focusing on the use of these polymers as "smart" materials in technological applications and devices in academic and industrial research laboratories.


Intrinsically Conducting Polymers

Intrinsically Conducting Polymers
Author: M. Aldissi
Publisher:
Total Pages: 240
Release: 2014-01-15
Genre:
ISBN: 9789401719537

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Conductive Polymer

Conductive Polymer
Author: Fouad Sabry
Publisher: One Billion Knowledgeable
Total Pages: 291
Release: 2022-01-16
Genre: Technology & Engineering
ISBN:

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What Is Conductive Polymer Conductive polymers or, more precisely, intrinsically conducting polymers (ICPs) are organic polymers that conduct electricity. Such compounds may have metallic conductivity or can be semiconductors. The biggest advantage of conductive polymers is their processability, mainly by dispersion. Conductive polymers are generally not thermoplastics, i.e., they are not thermoformable. But, like insulating polymers, they are organic materials. They can offer high electrical conductivity but do not show similar mechanical properties to other commercially available polymers. The electrical properties can be fine-tuned using the methods of organic synthesis and by advanced dispersion techniques. How You Will Benefit (I) Insights, and validations about the following topics: Chapter 1: Conductive polymer Chapter 2: Organic electronics Chapter 3: Organic semiconductor Chapter 4: Molecular electronics Chapter 5: Conjugated microporous polymer Chapter 6: Materials science Chapter 7: Materials science in science fiction (II) Answering the public top questions about conductive polymer. (III) Real world examples for the usage of conductive polymer in many fields. (IV) 17 appendices to explain, briefly, 266 emerging technologies in each industry to have 360-degree full understanding of conductive polymer' technologies. Who This Book Is For Professionals, undergraduate and graduate students, enthusiasts, hobbyists, and those who want to go beyond basic knowledge or information for any kind of conductive polymer.


Corrosion Protection of Metals by Intrinsically Conducting Polymers

Corrosion Protection of Metals by Intrinsically Conducting Polymers
Author: Pravin P. Deshpande
Publisher: CRC Press
Total Pages: 218
Release: 2016-01-13
Genre: Science
ISBN: 1498706932

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The use of conducting polymers for the anticorrosion protection of metals has attracted great interest during the last 30 years. The design and development of conducting polymers-based coating systems with commercial viability is expected to be advanced by applying nanotechnology and has received substantial attention recently. This book begins wit


PEDOT

PEDOT
Author: Andreas Elschner
Publisher: CRC Press
Total Pages: 380
Release: 2010-11-02
Genre: Technology & Engineering
ISBN: 1420069128

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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.


Recent Advances in Intrinsically Conducting Polymers and Composites

Recent Advances in Intrinsically Conducting Polymers and Composites
Author: Bluma Guenther Soares
Publisher: Frontiers Media SA
Total Pages: 131
Release: 2020-09-18
Genre: Technology & Engineering
ISBN: 2889660354

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This eBook is a collection of articles from a Frontiers Research Topic. Frontiers Research Topics are very popular trademarks of the Frontiers Journals Series: they are collections of at least ten articles, all centered on a particular subject. With their unique mix of varied contributions from Original Research to Review Articles, Frontiers Research Topics unify the most influential researchers, the latest key findings and historical advances in a hot research area! Find out more on how to host your own Frontiers Research Topic or contribute to one as an author by contacting the Frontiers Editorial Office: frontiersin.org/about/contact.


Conducting Polymers

Conducting Polymers
Author: György Inzelt
Publisher: Springer Science & Business Media
Total Pages: 282
Release: 2008-04-08
Genre: Science
ISBN: 3540759301

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This book is a systematic survey of the knowledge accumulated in this field in the last thirty years. It includes material on the thermodynamic aspects of the polymers, the theory of the mechanism of charge transport processes, and the chemical and physical properties of these compounds. Also covered are the techniques of characterization, the electrochemical methods of synthesis, and the application of these systems. Inzelt’s book is a must-read for electrochemists and others.


Advances in Hybrid Conducting Polymer Technology

Advances in Hybrid Conducting Polymer Technology
Author: Syed Shahabuddin
Publisher: Springer Nature
Total Pages: 349
Release: 2021-01-11
Genre: Technology & Engineering
ISBN: 3030620905

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This book presents synthesis methods, characterization techniques, properties and applications of hybrid conducting polymers. Special emphasis is given to the applications of hybrid conductive polymers, with chapters ranging from electronic devices, environmental remediation, and sensors, to medical applications.


Electrically Conducting Polymers: Science and Technology

Electrically Conducting Polymers: Science and Technology
Author:
Publisher:
Total Pages: 28
Release: 1997
Genre:
ISBN:

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The electrical conductivities of the intrinsically conducting polymer systems now range from that typical of insulators (


Optics of Conducting Polymer Thin Films and Nanostructures

Optics of Conducting Polymer Thin Films and Nanostructures
Author: Shangzhi Chen
Publisher: Linköping University Electronic Press
Total Pages: 142
Release: 2021-02-19
Genre:
ISBN: 9179297455

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Intrinsically conducting polymers forms a category of doped conjugated polymers that can conduct electricity. Since their discovery in the late 1970s, they have been widely applied in many fields, ranging from optoelectronic devices to biosensors. The most common type of conducting polymers is poly(3,4-ethylenedioxythiophene), or PEDOT. PEDOT has been popularly used as electrodes for solar cells or light-emitting diodes, as channels for organic electrochemical transistors, and as p-type legs for organic thermoelectric generators. Although many studies have been dedicated to PEDOT-based materials, there has been a lack of a unified model to describe their optical properties across different spectral ranges. In addition, the interesting optical properties of PEDOT-based materials, benefiting from its semi-metallic character, have only been rarely studied and utilized, and could potentially enable new applications. Plasmonics is a research field focusing on interactions between light and metals, such as the noble metals (gold and silver). It has enabled various opportunities in fundamental photonics as well as practical applications, varying from biosensors to colour displays. This thesis explores highly conducting polymers as alternatives to noble metals and as a new type of active plasmonic materials. Despite high degrees of microstructural disorder, conducting polymers can possess electrical conductivity approaching that of poor metals, with particularly high conductivity for PEDOT deposited via vapour phase polymerization (VPP). In this thesis, we systematically studied the optical and structural properties of VPP PEDOT thin films and their nanostructures for plasmonics and other optical applications. We employed ultra-wide spectral range ellipsometry to characterize thin VPP PEDOT films and proposed an anisotropic Drude-Lorentz model to describe their optical conductivity, covering the ultraviolet, visible, infrared, and terahertz ranges. Based on this model, PEDOT doped with tosylate (PEDOT:Tos) presented negative real permittivity in the near infrared range. While this indicated optical metallic character, the material also showed comparably large imaginary permittivity and associated losses. To better understand the VPP process, we carefully examined films with a collection of microstructural and spectroscopic characterization methods and found a vertical layer stratification in these polymer films. We unveiled the cause as related to unbalanced transport of polymerization precursors. By selection of suitable counterions, e.g., trifluoromethane sulfonate (OTf), and optimization of reaction conditions, we were able to obtain PEDOT films with electrical conductivity exceeding 5000 S/cm. In the near infrared range from 1 to 5 µm, these PEDOT:OTf films provided a well-defined plasmonic regime, characterized by negative real permittivity and lower magnitude imaginary component. Using a colloidal lithography-based approach, we managed to fabricate nanodisks of PEDOT:OTf and showed that they exhibited clear plasmonic absorption features. The experimental results matched theoretical calculations and numerical simulations. Benefiting from their mixed ionic-electronic conducting characters, such organic plasmonic materials possess redox-tunable properties that make them promising as tuneable optical nanoantennas for spatiotemporally dynamic systems. Finally, we presented a low-cost and efficient method to create structural colour surfaces and images based on UV-treated PEDOT films on metallic mirrors. The concept generates beautiful and vivid colours through-out the visible range utilizing a synergistic effect of simultaneously modulating polymer absorption and film thickness. The simplicity of the device structure, facile fabrication process, and tunability make this proof-of-concept device a potential candidate for future low-cost backlight-free displays and labels.