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This book offers in-depth insights into the photochemical behavior
of multicomponent polymeric-based materials, with a particular
emphasis on the photodegradation and photostabilization of these
materials. Studying various classes of materials bases such as
polysaccharides, wood, synthetic polymers, rubber blends, and
nanocomposites, it offers a valuable reference source for graduate
and postgraduate students, engineering students, research scholars
and polymer engineers working in industry.
This book summarizes the preparation, characterization and
applications of rubber based nano blends. Rubbers from natural and
synthetic polymers and their blends are discussed in the individual
chapters, including nitrile, polyurethane, chlorosulphonated,
polybutadiene, styrene butadiene, polychloroprene rubbers. In each
chapter, contributors from academia and industry describe the
preparation and characterization of the rubber blends. Therefore, a
variety of characterization methods like tensile testing,
differential scanning calorimetry, dynamical mechanical analysis,
thermogravimetric analysis, electron microscopy, scattering and
diffraction techniques, and rheology measurements are utilized. The
authors evaluate the properties of the different materials and
discuss numerous fields of application, ranging from biomedicine,
packaging, coatings and automobile to aerospace.
Leading researchers from industry, academy, government and private
research institutions across the globe have contributed to this
book, which presents all types of rubber blend composites based on
biomaterials as well as nanocomposites. It discusses the
fundamental preparation methods of these materials and summarizes
many of the latest technical research advances, offering an
essential guide for academics, researchers, scientists, engineers
and students alike.
This book provides cutting-edge, up-to-date research findings on
the use of bionanocomposites in biodegradable and environmental
applications, while also detailing how to achieve bionanocomposites
preparation, characteristics, and significant enhancements in
physical, chemical, mechanical, thermal properties and
applications. This book on biodegradable and environmental
properties of bionanocomposites provides a comprehensive and
updated review of major innovations in the field of polymer-based
bionanocomposites for biodegradable and environmental applications.
It covers properties and applications, including the synthesis of
polymer-based bionanocomposites from different sources
biomaterials-based composites and tactics on the efficacy and major
challenges associated with successful scale-up fabrication on
bionanocomposites. It is an essential reference for future research
in bionanocomposites as topics such as sustainable, biodegradable,
and environmental methods for highly innovative and applied
materials are current topics of importance. The book covers a wide
range of research on bionanocomposite and their biodegradable and
environmental applications. Updates on the most relevant
polymer-based bionanocomposite and their prodigious potential in
the fields of biodegradable and the environment are presented.
Leading researchers from industry, academy, government, and private
research institutions across the globe contribute to this book.
Scientists, engineers, and students with interest in the most
important advancements in the field of bionanocomposites involving
high-performance bionanocomposites will benefit from this book
which is highly application-oriented.
This book summarizes many of the recent research accomplishments in
the area of polyvinylchloride (PVC)-based blends and their
preparation, characterization and applications. Various sub-topics
are addressed, such as the state-of-the-art of PVC based blends,
new challenges and opportunities, emphasis being given to the types
and sizes of components/fillers and optimum compositions of PVC
blends, their processing and structure-properties relationships,
modification/compatibilization methods, and possible applications.
PVC/thermoplastic based nano, micro and macro blends, PVC
membranes, bio-based plasticizers and PVC blends with components
from renewable resources are reported. The various chapters in this
book are contributed by prominent researchers from industry,
academia and government/private research laboratories across the
globe. It covers an up-to-date record on the major findings and
observations in the field of PVC-based blends.
This book offers a valuable reference source to graduate and post
graduate students, engineering students, research scholars polymer
engineers from industry. The book provides the reader with current
developments of theoretical models describing the thermodynamics
polyelectrolytes as well as experimental findings. A particular
emphasis is put on the rheological description of polyelectrolyte
solutions and hydrogels.
This book offers a valuable reference source to graduate and post
graduate students, engineering students, research scholars polymer
engineers from industry. The book provides the reader with current
developments of theoretical models describing the thermodynamics
polyelectrolytes as well as experimental findings. A particular
emphasis is put on the rheological description of polyelectrolyte
solutions and hydrogels.
This book summarizes many of the recent research accomplishments in
the area of polyvinylchloride (PVC)-based blends and their
preparation, characterization and applications. Various sub-topics
are addressed, such as the state-of-the-art of PVC based blends,
new challenges and opportunities, emphasis being given to the types
and sizes of components/fillers and optimum compositions of PVC
blends, their processing and structure-properties relationships,
modification/compatibilization methods, and possible applications.
PVC/thermoplastic based nano, micro and macro blends, PVC
membranes, bio-based plasticizers and PVC blends with components
from renewable resources are reported. The various chapters in this
book are contributed by prominent researchers from industry,
academia and government/private research laboratories across the
globe. It covers an up-to-date record on the major findings and
observations in the field of PVC-based blends.
This book summarizes the preparation, characterization and
applications of rubber based nano blends. Rubbers from natural and
synthetic polymers and their blends are discussed in the individual
chapters, including nitrile, polyurethane, chlorosulphonated,
polybutadiene, styrene butadiene, polychloroprene rubbers. In each
chapter, contributors from academia and industry describe the
preparation and characterization of the rubber blends. Therefore, a
variety of characterization methods like tensile testing,
differential scanning calorimetry, dynamical mechanical analysis,
thermogravimetric analysis, electron microscopy, scattering and
diffraction techniques, and rheology measurements are utilized. The
authors evaluate the properties of the different materials and
discuss numerous fields of application, ranging from biomedicine,
packaging, coatings and automobile to aerospace.
Leading researchers from industry, academy, government and private
research institutions across the globe have contributed to this
book, which presents all types of rubber blend composites based on
biomaterials as well as nanocomposites. It discusses the
fundamental preparation methods of these materials and summarizes
many of the latest technical research advances, offering an
essential guide for academics, researchers, scientists, engineers
and students alike.
This book offers in-depth insights into the photochemical behavior
of multicomponent polymeric-based materials, with a particular
emphasis on the photodegradation and photostabilization of these
materials. Studying various classes of materials bases such as
polysaccharides, wood, synthetic polymers, rubber blends, and
nanocomposites, it offers a valuable reference source for graduate
and postgraduate students, engineering students, research scholars
and polymer engineers working in industry.
There is much interest in biodegradable polymers for different uses
and polyhydroxyalkanoates (PHAs) have potential applications in a
broad range of areas from food packaging to biomedical
applications. The book will provide a comprehensive overview of the
recent accomplishments in the area of polyhydroxyalkanoates
providing a resource that helps find solutions to both fundamental
and applied problems. The book introduces polyhydroxyalkanoates
including their biosynthesis, recovery and extraction followed by
specific chapters on blends, composites and nanocomposites. The
book finishes with the applications of the materials including
additives in paints, adhesives, production of plastics as well as
tissue engineering and drug delivery. The book provides a reference
for students and researchers in chemistry, polymer science,
materials science, biotechnology and life sciences working in the
field of bio-based and biodegradable polymers and composites as
well as those interested in its applications.
Starch is one of the most widely available natural biomaterials and
is commonly used in biodegradable packaging. This book provides a
comprehensive overview of recent developments in starch-based
materials. The book focuses on the types of starch available from
different sources, in particular the various aspects of
preparation, structure, processing, morphology, properties and
applications of starch materials and their polymer blends,
composites and nanocomposites. It is ideal for students and
researchers in chemistry, polymer science, materials science,
biotechnology and life sciences working in bio-based and
biodegradable polymers and composites, well as those interested in
its applications.
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