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This book is the first comprehensive collection of electronic
aspects of different kinds of elastomer composites, including
combinations of synthetic, natural and thermoplastic elastomers
with different conducting fillers like metal nanoparticles, carbon
nanotubes, or graphenes, and many more. It covers elastomer
composites, which are useful in electronic applications, including
chemical and physical as well as material science aspects. The
presented elastomer composites have great potential for solving
emerging new material application requirements, for example as
flexible and wearable electronics. The book is structured and
organized by the rubber/elastomer type: each chapter describes a
different elastomer matrix and its composites. While introducing to
important fundamentals, it is application-oriented, discussing the
current issues and challenges in the field of elastomer composites.
This book will thus appeal to researchers and scientists, to
engineers and technologists, but also to graduate students, working
on elastomer composites, or on electronics engineering with the
composites, providing the readers with a sound introduction to the
field and solutions to both fundamental and applied problems.
This book is the first comprehensive collection of electronic
aspects of different kinds of elastomer composites, including
combinations of synthetic, natural and thermoplastic elastomers
with different conducting fillers like metal nanoparticles, carbon
nanotubes, or graphenes, and many more. It covers elastomer
composites, which are useful in electronic applications, including
chemical and physical as well as material science aspects. The
presented elastomer composites have great potential for solving
emerging new material application requirements, for example as
flexible and wearable electronics. The book is structured and
organized by the rubber/elastomer type: each chapter describes a
different elastomer matrix and its composites. While introducing to
important fundamentals, it is application-oriented, discussing the
current issues and challenges in the field of elastomer composites.
This book will thus appeal to researchers and scientists, to
engineers and technologists, but also to graduate students, working
on elastomer composites, or on electronics engineering with the
composites, providing the readers with a sound introduction to the
field and solutions to both fundamental and applied problems.
Functional, flexible and lightweight products are in high demand
for modern technologies ranging from microelectronics to energy
storage devices. The majority of polymers are thermal and
electrical insulators, which hinder their use in these
applications. The conductivity of polymers can be significantly
enhanced by the incorporation of conducting inorganic
nanoparticles. However, this relies not only on the structure and
function of the inorganic particles, but is highly determined by
the morphology and dispersion of the nanoparticles, interfacial
interactions and fabrication technologies of the composites. This
book highlights the synthesis, chemistry and applications of
two-dimensional (2D) inorganic nanoplatelets in polymer
nanocomposites. Chapters cover technical challenges, such as
surface functionalisation, compatibilization, interfacial
interaction, dispersion, and manufacturing technologies of the
polymer nanocomposites. The book also discusses the applications of
these polymer nanocomposites in electronics and energy storage.
With contributions from global experts, the book provides a
much-needed overview of the field, giving advanced undergraduates,
postgraduates and other researchers with a convenient introduction
to the topic.
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