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This new volume focuses on polymers, their characterization, and
their various applications. These include drug delivery
applications, electromagnetic shielding, ferroelectric
applications, and many more. The book covers synthesis,
characterization, and property studies of some of these polymers
including their morphology, structure, and dynamics. It also
introduces the most recent innovations and applications of
polymers, fillers, and their composites in the electronics,
biomedical, pharmaceutical, and engineering industries. Topics also
include ferroelectric ceramics and the numerous polymers used for
radiation shielding applications. The bottleneck in the development
of novel technologies is often defined by the limitations of the
available materials. Polymer science, for instance, has lately made
large steps towards innovative materials and processes. Polymeric
materials are ideal examples of structural and functional materials
because of their versatility in practically all areas of modern
life and technology. Some of their outstanding properties are high
elasticity, stiffness, toughness, strength, good thermal
resistance, and high chemical stability. This volume, Advances in
Diverse Applications of Polymer Composites: Synthesis, Application,
and Characterization, provides important information that will be
valuable for researchers, postgraduate students, professors, and
instructors working in the field of polymers.
This new resource focuses on many recent advances in recycling and
reuse of materials, outlining basic tools and novel approaches. It
covers such important issues as e-waste recycling, bio-mass
recycling, vermitechnology, recovery of metals, polymer recycling,
environmental remediation, waste management, recycling of
nanostructured materials, and more. Also included is coverage of
new research in the use of laser spectroscopy, pyrolysis, and
recycled biomaterials for biomedical applications.
This volume brings together innovative research, new concepts, and
novel developments in the application of new tools for chemical
engineers. It presents significant research, reporting on new
methodologies and important applications in the field of chemical
engineering. Highlighting theoretical foundations, real-world
cases, and future directions, this book covers selected topics in a
variety of areas, including: chemoinformatics and computational
chemistry advanced dielectric materials nanotechniques polymer
composites It also presents several advanced case studies. The
topics discussed in this volume will be valuable for researchers,
practitioners, professionals, and students of chemistry material
and chemical engineering.
The aim of this new compendium is to provide a solid understanding
of the recent developments in advanced polymeric materials from
macro- to nano-length scales. Composites are becoming more
important because they can help to improve our quality of life,
such as being put into service in flight vehicles, automobiles,
boats, pipelines, buildings, roads, bridges, and dozens of other
products, including medical products. The chapters cover a
multitude of important advances, including explanations of the
significance of the new fillers, like graphene and carbon
nanotubes, in different matrix systems. Coverage of the application
of these materials in biological and others fields also makes this
book unique. Topics include advances on the processing, properties,
recyclability, and reparability, and applications for polymer
matrix composites, ceramic matrix composites, carbon matrix
composites, wood-based composites, biocomposites, ecocomposites,
nanocomposites, and more.
Polymer Blend Nanocomposites for Energy Storage Applications
presents the latest developments in polymer blend-based
nanocomposites for applications in energy storage, covering
theoretical concepts, preparation methods, characterization
techniques, properties and performance. The book begins by
introducing polymer blend-based nanocomposites, preparation
methods, mechanisms, requirements, theory, modeling, and
simulation, with subsequent sections covering the use of specific
base materials, including elastomers, thermoplastics, thermoset
polymers, and biodegradable polymers. Final sections covers polymer
blend nanocomposites with different fillers, both for conducting
polymers and non-conducting polymers. Devices discussed include
capacitors, supercapacitors, batteries, fuel cells, and solar
cells. Finally, other key aspects are considered, including the
conversion from laboratory to industry and recycling and lifecycle
assessment of polymer blend nanocomposites used in energy devices.
The aim of this new compendium is to provide a solid understanding
of the recent developments in advanced polymeric materials from
macro- to nano-length scales. Composites are becoming more
important because they can help to improve our quality of life,
such as being put into service in flight vehicles, automobiles,
boats, pipelines, buildings, roads, bridges, and dozens of other
products, including medical products. The chapters cover a
multitude of important advances, including explanations of the
significance of the new fillers, like graphene and carbon
nanotubes, in different matrix systems. Coverage of the application
of these materials in biological and others fields also makes this
book unique. Topics include advances on the processing, properties,
recyclability, and reparability, and applications for polymer
matrix composites, ceramic matrix composites, carbon matrix
composites, wood-based composites, biocomposites, ecocomposites,
nanocomposites, and more.
This new resource focuses on many recent advances in recycling and
reuse of materials, outlining basic tools and novel approaches. It
covers such important issues as e-waste recycling, bio-mass
recycling, vermitechnology, recovery of metals, polymer recycling,
environmental remediation, waste management, recycling of
nanostructured materials, and more. Also included is coverage of
new research in the use of laser spectroscopy, pyrolysis, and
recycled biomaterials for biomedical applications.
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