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This volume focuses on the developments in theory and materials
science of conjugated materials for nonlinear optics, and on the
processing of conjugated polymers. It describes the microscopic
origin and mechanism of the nonlinear optical susceptibilities in
the framework of quantum field theory.
This volume focuses on the developments in theory and materials
science of conjugated materials for nonlinear optics, and on the
processing of conjugated polymers. It describes the microscopic
origin and mechanism of the nonlinear optical susceptibilities in
the framework of quantum field theory.
This book provides an overview of the state of the art of several
of the subfields of electroresponsive polymer science. It also
provides a sufficiently broad perspective to stimulate development
in new direction and to bring researchers up to date on the fields
as a whole.
The Fourth Edition of the Handbook of Conducting Polymers,
Two-Volume Set continues to be the definitive resource on the topic
of conducting polymers. Completely updated with an extensive list
of authors that draws on past and new contributors, the book takes
into account the significant developments both in fundamental
understanding and applications since publication of the previous
edition. One of two volumes comprising the comprehensive Handbook,
Conjugated Polymers: Perspective, Theory, and New Materials
features new chapters on the fundamental theory and new materials
involved in conducting polymers. It discusses the history of
physics and chemistry of these materials and the theory behind
them. Finally, it details polymer and materials chemistry including
such topics as conjugated block copolymers, metal-containing
conjugated polymers, and continuous flow processing. Aimed at
researchers, advanced students, and industry professionals working
in materials science and engineering, this book covers
fundamentals, recent progress, and new materials involved in
conducting polymers and includes a wide-ranging listing of
comprehensive chapters authored by an international team of
experts.
In the last 10 years there have been major advances in fundamental
understanding and applications and a vast portfolio of new polymer
structures with unique and tailored properties was developed. Work
moved from a chemical repeat unit structure to one more based on
structural control, new polymerization methodologies, properties,
processing, and applications. The 4th Edition takes this into
account and will be completely rewritten and reorganized, focusing
on spin coating, spray coating, blade/slot die coating,
layer-by-layer assembly, and fiber spinning methods; property
characterizations of redox, interfacial, electrical, and optical
phenomena; and commercial applications.
The Fourth Edition of the Handbook of Conducting Polymers,
Two-Volume Set continues to be the definitive resource on the topic
of conducting polymers. Completely updated with an extensive list
of authors that draws on past and new contributors, the book takes
into account the significant developments both in fundamental
understanding and applications since publication of the previous
edition. One of two volumes comprising the comprehensive Handbook,
Conjugated Polymers: Properties, Processing, and Applications
features new chapters focusing on these topics within conducting
polymers. It discusses properties and characterization, including
thermoelectric and mechanical properties, as well as processing and
morphology, covering such topics as thermal phase behavior
influence on optoelectronic properties, effect of miscibility on
organic solar cells, and more. Finally, the book discusses
applications, including the use of conducting polymers in
stretchable electronics, electrochemical capacitors, and biomedical
applications. Aimed at researchers, advanced students, and industry
professionals working in materials science and engineering, this
book covers properties, processing, characterization, and
morphology in a wide-ranging listing of comprehensive chapters
authored by an international team of experts.
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