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This book reviews the latest research, development, and future
potential of polyimides and green polymer chemistry. It combines
the major interdisciplinary research in this area. Polymers with
imidic structure, known as polyimides, are widely investigated
owing to their practical implications in numerous industrial
sectors. The book explains why polyimides offer versatility
unparalleled in comparison to most other classes of macromolecules.
In addition, developments in green polymer chemistry in this area
have been stimulated by health and environmental concerns, interest
in sustainability, desire to decrease the dependence on petroleum,
and opportunities to design and produce "green" products and
processes. Major advances include new uses of green processing
methodologies, and green polymeric products. Imidic Polymers and
Green Polymer Chemistry: New Technology and Developments in Process
and Product is targeted to scientists, engineers, and students who
are involved or interested in green polymer chemistry and imidic
polymers. This book will serve as a valuable reference for those
with an interest in synthesis of polyimides and the chemistry and
physical chemistry of polyimide compounds.
This book reviews the latest research, development, and future
potential of polyimides and green polymer chemistry. It combines
the major interdisciplinary research in this area. Polymers with
imidic structure, known as polyimides, are widely investigated
owing to their practical implications in numerous industrial
sectors. The book explains why polyimides offer versatility
unparalleled in comparison to most other classes of macromolecules.
In addition, developments in green polymer chemistry in this area
have been stimulated by health and environmental concerns, interest
in sustainability, desire to decrease the dependence on petroleum,
and opportunities to design and produce "green" products and
processes. Major advances include new uses of green processing
methodologies, and green polymeric products. Imidic Polymers and
Green Polymer Chemistry: New Technology and Developments in Process
and Product is targeted to scientists, engineers, and students who
are involved or interested in green polymer chemistry and imidic
polymers. This book will serve as a valuable reference for those
with an interest in synthesis of polyimides and the chemistry and
physical chemistry of polyimide compounds.
Phase morphology in multicomponent polymer-based systems represents
the main physical characteristic that allows for control of the
material design and implicitly the development of new plastics.
Emphasizing properties of these promising new materials in both
solution and solid phase, this book describes the preparation,
processing, properties, and practical implications of advanced
multiphase systems from macro to nanoscales. It covers a wide range
of systems including copolymers, polymer blends, polymer
composites, gels, interpenetrating polymers, and layered
polymer/metal structures, describing aspects of polymer science,
engineering, and technology. The book analyzes experimental and
theoretical aspects regarding the thermal and electrical transport
phenomena and magnetic properties of crucial importance in advanced
technologies. It reviews the most recent advances concerning
morphological, rheological, interfacial, physical, fire-resistant,
thermophysical, and biomedical properties of multiphase polymer
systems. Concomitantly the book deals with basic investigation
techniques that are sensitive in elucidating the features of each
phase. It also discusses the latest research trends that offer new
solutions for advanced bio- and nanotechnologies. Introduces an
overview of recent studies in the area of multiphase polymer
systems, their micro- and nanostructural evolutions in advanced
technologies, and provides future outlooks, new challenges and
opportunities. Discusses multicomponent structures that offer
enhanced physical, mechanical, thermal, electrical, magnetic, and
optical properties adapted to current requirements of modern
technologies. Covers a wide range of materials, such as composites,
blends, alloys, gels and interpenetrating polymer networks.
Presents new strategies for controlling the micro- and
nanomorphology and the mechanical properties of multiphase p
Bridging condensed matter physics, photochemistry, photophysics,
and materials science, Electromagnetic Radiation in Analysis and
Design of Organic Materials: Electronic and Biotechnology
Applications covers physical properties of materials in the
presence of radiation from across the electromagnetic spectrum. It
describes the optical, spectral, thermal, and morphological
properties of a wide range of materials and their practical
implications in electronic and biotechnologies. It discusses recent
advances in the use of radiation in analysis of materials and
design for advanced applications. The book contains experimental
and theoretical issues that reflect the impact of radiation on
materials characteristics highlighting their ease of analysis or
adaptation for applications as optical filters, drug delivery
systems, antimicrobial layers, amphetamine detectors, or liquid
crystal displays.
Bridging condensed matter physics, photochemistry, photophysics,
and materials science, Electromagnetic Radiation in Analysis and
Design of Organic Materials: Electronic and Biotechnology
Applications covers physical properties of materials in the
presence of radiation from across the electromagnetic spectrum. It
describes the optical, spectral, thermal, and morphological
properties of a wide range of materials and their practical
implications in electronic and biotechnologies. It discusses recent
advances in the use of radiation in analysis of materials and
design for advanced applications. The book contains experimental
and theoretical issues that reflect the impact of radiation on
materials characteristics highlighting their ease of analysis or
adaptation for applications as optical filters, drug delivery
systems, antimicrobial layers, amphetamine detectors, or liquid
crystal displays.
Phase morphology in multicomponent polymer-based systems represents
the main physical characteristic that allows for control of the
material design and implicitly the development of new plastics.
Emphasizing properties of these promising new materials in both
solution and solid phase, this book describes the preparation,
processing, properties, and practical implications of advanced
multiphase systems from macro to nanoscales. It covers a wide range
of systems including copolymers, polymer blends, polymer
composites, gels, interpenetrating polymers, and layered
polymer/metal structures, describing aspects of polymer science,
engineering, and technology. The book analyzes experimental and
theoretical aspects regarding the thermal and electrical transport
phenomena and magnetic properties of crucial importance in advanced
technologies. It reviews the most recent advances concerning
morphological, rheological, interfacial, physical, fire-resistant,
thermophysical, and biomedical properties of multiphase polymer
systems. Concomitantly the book deals with basic investigation
techniques that are sensitive in elucidating the features of each
phase. It also discusses the latest research trends that offer new
solutions for advanced bio- and nanotechnologies. Introduces an
overview of recent studies in the area of multiphase polymer
systems, their micro- and nanostructural evolutions in advanced
technologies, and provides future outlooks, new challenges and
opportunities. Discusses multicomponent structures that offer
enhanced physical, mechanical, thermal, electrical, magnetic, and
optical properties adapted to current requirements of modern
technologies. Covers a wide range of materials, such as composites,
blends, alloys, gels and interpenetrating polymer networks.
Presents new strategies for controlling the micro- and
nanomorphology and the mechanical properties of multiphase
polymeric materials. Describes different applications of multiphase
polymeric materials in various fields, including automotive,
aeronautics and space industry, displays, and medicine.
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