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Synthesis and Electronic Properties of Poly (3-Hexylthiophene)-based Semiconducting Polymers

Synthesis and Electronic Properties of Poly (3-Hexylthiophene)-based Semiconducting Polymers
Author: Mussie Alemseghed
Publisher:
Total Pages: 246
Release: 2009
Genre: Conducting polymers
ISBN:

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The synthesis and characterization of a di-block copolymer containing regioregular poly(3-hexylthiophene) and elastomeric poly(tetrahydrofuran) is presented. Hydroxypropyl-terminated poly(3-hexylthiophene) was subjected to chemical modification to generate end groups amenable for ring-opening cationic polymerization of tetrahydrofuran. This macroinitiator was used for the cationic ring-opening polymerization of tetrahydrofuran. 1 H NMR and SEC data confirmed the formation of poly(3-hexylthiophene)-b-poly(tetrahydrofuran) di-block copolymer with an estimated mobility value of 8.9 x 10 -3 cm 2 /V s.


Semiconducting Polymers

Semiconducting Polymers
Author: Raquel Aparecida Domingues
Publisher: CRC Press
Total Pages: 225
Release: 2021-06-25
Genre: Science
ISBN: 1000727963

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Semiconducting polymers are of great interest for applications in electroluminescent devices, solar cells, batteries, and diodes. This volume provides a thorough introduction to the basic concepts of the photophysics of semiconducting polymers as well as a description of the principal polymerization methods for luminescent polymers. Divided into two main sections, the book first introduces the advances made in polymer synthesis and then goes on to focus on the photophysics aspects, also exploring how new advances in the area of controlled syntheses of semiconducting polymers are applied. An understanding of the photophysics process in this kind of material requires some knowledge of many different terms in this field, so a chapter on the basic concepts is included. The process that occurs in semiconducting polymers spans time scales that are unimaginably fast, sometimes less than a picosecond. To appreciate this extraordinary scale, it is necessary to learn a range of vocabularies and concepts that stretch from the basic concepts of photophysics to modern applications, such as electroluminescent devices, solar cells, batteries, and diodes. This book provides a starting point for a broadly based understanding of photophysics concepts applied in understanding semiconducting polymers, incorporating critical ideas from across the scientific spectrum.


Semiconducting Polymers

Semiconducting Polymers
Author: Bing R. Hsieh
Publisher:
Total Pages: 490
Release: 1999-09-30
Genre: Science
ISBN:

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This book examines the most recent developments in electronic conductive polymers. Topics include properties, applications, synthesis, processing and device fabrication.


Semiconducting Polymers

Semiconducting Polymers
Author: Christine Luscombe
Publisher: Royal Society of Chemistry
Total Pages: 293
Release: 2016-10-12
Genre: Technology & Engineering
ISBN: 1782624007

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Semiconducting polymers are of great interest for applications in electroluminescent devices, solar cells, batteries and diodes. In recent years vast advances have been made in the area of controlled synthesis of semiconducting polymers, specifically polythiophenes. The book is separated into two main sections, the first will introduce the advances made in polymer synthesis, and the second will focus on the microstructure and property analysis that has been enabled because of the recent advances in synthetic strategies. Edited by one of the leaders in the area of polythiophene synthesis, this new book will bring the field up to date with more recent models for understanding semiconducting polymers. The book will be applicable to materials and polymers chemists in industry and academia from postgraduate level upwards.


Synthesis and Characterization of Pyrrole and Thiophene Semiconducting Polymers

Synthesis and Characterization of Pyrrole and Thiophene Semiconducting Polymers
Author: Hien Q. Nguyen
Publisher:
Total Pages: 260
Release: 2012
Genre: Polymers in medicine
ISBN:

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Chapter 3 describes the synthesis of novel low band gap conjugated thienodipyrrole squarine dye. Structural identification and characterization procedures are described. This donor-acceptor polymer had a low band gap and can be used in bulk heterojunction solar cells. Chapter 4 describes the synthesis of polyisoprene-b- polystyrene- b- poly(3-hexylthiophene) triblock copolymer by anionic coupling of living polyisoprene-b- polystyryl lithium with allyl-terminated poly(3-hexylthiophene). The opto-electronic properties and the morphology of the triblock copolymer are discussed in this chapter. The triblock copolymer has good opto-electronic properties and displayed nanofibrillar morphology.


Organic Thermoelectric Materials

Organic Thermoelectric Materials
Author: Zhiqun Lin
Publisher: Royal Society of Chemistry
Total Pages: 330
Release: 2019-10-18
Genre: Science
ISBN: 1788014707

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This book summarises the significant progress made in organic thermoelectric materials, focusing on effective routes to minimize thermal conductivity and maximize power factor.


Synthesis and Characterization of Poly(3-alkylthiophene)-containing Block Copolymers

Synthesis and Characterization of Poly(3-alkylthiophene)-containing Block Copolymers
Author: Victor Ho
Publisher:
Total Pages: 132
Release: 2014
Genre:
ISBN:

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Conjugated polymers have been widely studied for their use in lightweight, flexible, and solution-processable electronic devices. However, the optimization of such polymer-based devices has been largely Edisonian in nature due to both a poor understanding of and an inability to control the complex hierarchical structure observed in semicrystalline polymers. In this thesis, we show that simple chemical modifications to commonly-studied conjugated polymers can have a large effect on the observed structure ranging from the unit cell to that on the order of device features. In particular, the self-assembly of block copolymers in which one of the components is optoelectronically-active is presented as a facile method to obtain nanostructured materials. For the work in this thesis, we will focus on poly(3-alkylthiophenes), a widely studied class of conjugated polymers due to their favorable optoelectronic properties, high solubility in organic solvents, and susceptibility to simple chemical modification. Although the synthesis of conjugated block copolymers has been presented in the past, complexities arising from crystallization of the conjugated moiety have dominated the observed solid state morphologies. Specifically, the crystallization of the semicrystalline block dictates the block copolymer microphase separation, a well-known phenomenon in the literature for non-conjugated semicrystalline block copolymers, which has resulted in solid state morphologies that do not differ significantly from that of the semiconducting homopolymer. To address this, we first show that the side chain chemistry controls the thermal transitions and optoelectronic properties in poly(3-alkylthiophenes). Such control over the crystallization kinetics provides an experimentally convenient approach to investigate the importance of the crystalline structure over a wide range of length scales on the optoelectronic properties. Furthermore, the ability to control the thermal transition temperatures can be used to directly manipulate, and thereby balance, the competition between the driving forces for crystallization and self-assembly. As evidence, the nanoscale structure is shown to be directly controlled via synthesis of block copolymers in which one block is the low melting temperature semiconducting polymer, poly(3-(2-ethylhexyl)thiophene). A wide range of morphologies with curved interfaces are observed which, in the past, have been precluded by the crystallization of poly(3-alkylthiophenes) with unbranched aliphatic side chains such as poly(3-hexylthiophene). Importantly, confinement of the conjugated polymer to nanoscale domains is not detrimental to the crystallinity or to charge transport over device-scale dimensions. Additionally, this approach is shown to be effective for a number of different chemistries providing a flexible methodology for obtaining periodic, semiconducting domains on the nanoscale. Together, these simple synthetic strategies can be used to tune the morphology of various length scales of thin film active layers and provide synthetic rules for design of novel semiconducting polymer systems.


Semiconducting Polymers

Semiconducting Polymers
Author: Georges Hadziioannou
Publisher: John Wiley & Sons
Total Pages: 786
Release: 2006-12-15
Genre: Technology & Engineering
ISBN: 3527312714

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The field of semiconducting polymers has attracted many researchers from a diversity of disciplines. Printed circuitry, flexible electronics and displays are already migrating from laboratory successes to commercial applications, but even now fundamental knowledge is deficient concerning some of the basic phenomena that so markedly influence a device's usefulness and competitiveness. This two-volume handbook describes the various approaches to doped and undoped semiconducting polymers taken with the aim to provide vital understanding of how to control the properties of these fascinating organic materials. Prominent researchers from the fields of synthetic chemistry, physical chemistry, engineering, computational chemistry, theoretical physics, and applied physics cover all aspects from compounds to devices. Since the first edition was published in 2000, significant findings and successes have been achieved in the field, and especially handheld electronic gadgets have become billion-dollar markets that promise a fertile application ground for flexible, lighter and disposable alternatives to classic silicon circuitry. The second edition brings readers up-to-date on cutting edge research in this field.


Semiconducting Polymer Composites

Semiconducting Polymer Composites
Author: Xiaoniu Yang
Publisher: John Wiley & Sons
Total Pages: 553
Release: 2012-10-05
Genre: Technology & Engineering
ISBN: 3527648704

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The first part of Semiconducting Polymer Composites describes the principles and concepts of semiconducting polymer composites in general, addressing electrical conductivity, energy alignment at interfaces, morphology, energy transfer, percolation theory and processing techniques. In later chapters, different types of polymer composites are discussed: mixtures of semiconducting and insulating or semiconducting and semiconducting components, respectively. These composites are suitable for a variety of applications that are presented in detail, including transistors and solar cells, sensors and detectors, diodes and lasers as well as anti-corrosive and anti-static surface coatings.


Conjugated Polymers for Organic Electronics

Conjugated Polymers for Organic Electronics
Author: Andrew Grimsdale
Publisher: Cambridge University Press
Total Pages: 277
Release: 2024-04-04
Genre: Technology & Engineering
ISBN: 1009566032

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Focusing on how conjugated polymers can be designed and made for use in efficient organic electronic devices, this book covers the tools for future development of more environmentally and economically friendly devices. Including examples of interdisciplinary science, it exemplifies how chemists and physicists work together to enable the design and synthesis of high-performance material in devices, allowing polymer-based electronic devices to become viable commercial products. It provides the main classes of conjugated polymers and their applications in organic electronic devices such as transistors, light-emitting diodes, and solar cells, making this a comprehensive introduction. This complete guide includes the methods for making conjugated polymers, the properties and specific structures that make them suitable for use, and how their synthesis can be optimised to improve device performance. Written by experts in the field, this is the ideal guide for researchers and practitioners across materials science, physics, chemistry, and electrical engineering.