Design and Synthesis of Π-conjugated Polymers for Organic Optoelectronics

Design and Synthesis of Π-conjugated Polymers for Organic Optoelectronics
Title Design and Synthesis of Π-conjugated Polymers for Organic Optoelectronics PDF eBook
Author 陳宏揚
Publisher
Pages
Release 2011
Genre
ISBN

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Conjugated Polymers for Organic Electronics

Conjugated Polymers for Organic Electronics
Title Conjugated Polymers for Organic Electronics PDF eBook
Author Andrew Grimsdale
Publisher Cambridge University Press
Pages 277
Release 2024-05-31
Genre Technology & Engineering
ISBN 1107008166

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Covers the chemistry and physics of conjugated polymers, and how they can be designed and optimised for various electronic applications.

Conjugated Polymers for Next-Generation Applications, Volume 1

Conjugated Polymers for Next-Generation Applications, Volume 1
Title Conjugated Polymers for Next-Generation Applications, Volume 1 PDF eBook
Author Vijay Kumar
Publisher Woodhead Publishing
Pages 618
Release 2022-06-24
Genre Science
ISBN 0128236345

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Conjugated Polymers for Next-Generation Applications, Volume One: Synthesis, Properties and Optoelectrochemical Devices describes the synthesis and characterization of varied conjugated polymeric materials and their key applications, including active electrode materials for electrochemical capacitors and lithium-ion batteries, along with new ideas of functional materials for next-generation high-energy batteries, a discussion of common design procedures, and the pros and cons of conjugated polymers for certain applications. The book's emphasis lies in the underlying electronic properties of conjugated polymers, their characterization and analysis, and the evaluation of their effectiveness for utilization in energy and electronics applications. This book is ideal for researchers and practitioners in the area of materials science, chemistry and chemical engineering. - Provides an overview of the synthesis and functionalization of conjugated polymers and their composites - Reviews important photovoltaics applications of conjugated polymeric materials, including their use in energy storage, batteries and optoelectronic devices - Discusses conjugated polymers and their application in electronics for sensing, bioelectronics, memory, and more

Design, Synthesis, and Application of Novel π-Conjugated Materials - Part II

Design, Synthesis, and Application of Novel π-Conjugated Materials - Part II
Title Design, Synthesis, and Application of Novel π-Conjugated Materials - Part II PDF eBook
Author Haichang Zhang
Publisher Frontiers Media SA
Pages 70
Release 2021-11-09
Genre Science
ISBN 2889716112

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Design, Synthesis, and Application of Novel π-Conjugated Materials

Design, Synthesis, and Application of Novel π-Conjugated Materials
Title Design, Synthesis, and Application of Novel π-Conjugated Materials PDF eBook
Author Haichang Zhang
Publisher Frontiers Media SA
Pages 126
Release 2021-02-11
Genre Science
ISBN 2889664813

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Design, Synthesis and Characterization of Self-assembling Conjugated Polymers for Use in Organic Electronic Applications

Design, Synthesis and Characterization of Self-assembling Conjugated Polymers for Use in Organic Electronic Applications
Title Design, Synthesis and Characterization of Self-assembling Conjugated Polymers for Use in Organic Electronic Applications PDF eBook
Author Kathy Beckner Woody
Publisher
Pages
Release 2011
Genre Organic electronics
ISBN

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Conjugated polymers comprise some of the most promising materials for new technologies such as organic field effect transistors, solar light harvesting technology and sensing devices. In spite of tremendous research initiatives in materials chemistry, the potential to optimize device performance and develop new technologies is remarkable. Understanding relationships between the structure of conjugated polymers and their electronic properties is critical to improving device performance. The design and synthesis of new materials which self-organize into ordered nanostructures creates opportunities to establish relationships between electronic properties and morphology or molecular packing. This thesis details our progress in the development of synthetic routes which provide access to new classes of conjugated polymers that contain dissimilar side chains that segregate or dissimilar conjugated blocks which phase separate, and summarizes our initial attempts to characterize these materials. Poly(1,4-phenylene ethynylene)s (PPEs) have been used in a variety of organic electronic applications, most notably as fluorescent sensors. Using traditional synthetic methods, asymmetrically disubstituted PPEs have irregular placement of side chains on the conjugated backbone. Herein, we establish the first synthetic route to an asymmetrically substituted regioregular PPEs. The initial PPEs in this study have different lengths of alkoxy side chains, and both regioregular and regiorandom analogs are synthesized and characterized for comparison. The design of amphiphilic structures provides additional opportunities for side chains to influence the molecular packing and electronic properties of conjugated polymers. A new class of regioregular, amphiphilic PPEs has been prepared bearing alkoxy and semifluoroalkoxy side chains, which have a tendency to phase separate. Fully conjugated block copolymers can provide access to interesting new morphologies as a result of phase separation of the conjugated blocks. In particular, donor-acceptor block copolymers that phase separate into electron rich and electron poor domains may be advantageous in organic electronic devices such as bulk heterojunction solar cells, of which the performance relies on precise control of the interface between electron donating and accepting materials. The availability of donor-acceptor block copolymers is limited, largely due to the challenges associated with synthesizing these materials. In this thesis, two new synthetic routes to donor-acceptor block copolymers are established. These methods both utilize the catalyst transfer condensation polymerization, which proceeds by a chain growth mechanism. The first example entails the synthesis of a monofunctionalized, telechelic poly(3-alkylthiophene) which can be coupled to electron accepting polymers in a subsequent reaction. The other method describes the first example of a one-pot synthesis of a donor-acceptor diblock copolymer. The methods of synthesis are described, and characterization of the block copolymers is reported.

Conjugated Polymers for Next-Generation Applications, Volume 2

Conjugated Polymers for Next-Generation Applications, Volume 2
Title Conjugated Polymers for Next-Generation Applications, Volume 2 PDF eBook
Author Vijay Kumar
Publisher Woodhead Publishing
Pages 443
Release 2022-06-23
Genre Technology & Engineering
ISBN 0128240954

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Conjugated Polymers for Next-Generation Applications, Volume Two: Energy Storage Devices describes the synthesis and characterization of varied conjugated polymeric materials and their key applications, including active electrode materials for electrochemical capacitors and lithium-ion batteries, along with new ideas of functional materials for next-generation high-energy batteries, a discussion of common design procedures, and the pros and cons of conjugated polymers for certain applications. The book's emphasis lies in the underlying electronic properties of conjugated polymers, their characterization and analysis, and the evaluation of their effectiveness for utilization in energy and electronics applications. This book is ideal for researchers and practitioners in the area of materials science, chemistry and chemical engineering. - Provides an overview of the synthesis and functionalization of conjugated polymers and their composites - Reviews important photovoltaics applications of conjugated polymeric materials, including their use in energy storage, batteries and optoelectronic devices - Discusses conjugated polymers and their application in electronics for sensing, bioelectronics, memory, and more