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Polymer Nanocomposites Containing Graphene: Preparation, Properties
and Applications provides detailed up-to-date information on the
characterization, synthesis, processing, properties and application
of these materials. Key topics that are covered in the book
include: the methods of synthesis and preparation of graphene as
well as different processes and methods of functionalization and
modification of graphene for improving composite properties. The
preparation techniques focus on which method is advantageous for
getting improvements in properties along with their drawbacks. The
structure and property relationships are also discussed in detail.
The issues related to graphene dispersion in polymer matrices is
also addressed as well as the use of graphene as reinforcement in
thermoset resins. The different properties of the composites like
mechanical, electrical, dielectric, thermal, rheological,
morphology, spectroscopy, electronic, optical, and toxicity are
reviewed from the geometrical and functional point of view.
Applications cover electrical and electronic fields, flame and fire
retardancy, structural, sensing and catalysis, membrane, in fuel
cell and solar energy, hydrogen production, aerospace engineering,
packaging, and biomedical/bioengineering fields. Up-to-date patents
on graphene-polymer nanocomposites are also covered. Those working
in graphene-based materials will benefit from the detailed
knowledge presented in this book on graphene synthesis, composite
preparation methods, and the related problems associated with them.
The book will enable researchers to select the appropriate
composite as per their respective field of application.
This book discusses the methods synthesizing various carbon
materials, like graphite, carbon blacks, carbon fibers, carbon
nanotubes, and graphene. It also details different
functionalization and modification processes used to improve the
properties of these materials and composites. From a
geometrical-structural point of view, it examines different
properties of the composites, such as mechanical, electrical,
dielectric, thermal, rheological, morphological, spectroscopic,
electronic, optical, and toxic, and describes the effects of carbon
types and their geometrical structure on the properties and
applications of composites.
This book discusses the methods synthesizing various carbon
materials, like graphite, carbon blacks, carbon fibers, carbon
nanotubes, and graphene. It also details different
functionalization and modification processes used to improve the
properties of these materials and composites. From a
geometrical-structural point of view, it examines different
properties of the composites, such as mechanical, electrical,
dielectric, thermal, rheological, morphological, spectroscopic,
electronic, optical, and toxic, and describes the effects of carbon
types and their geometrical structure on the properties and
applications of composites.
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