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This book presents a unified overview of eco-friendly
bionanocomposites on the basis of characterization, design,
manufacture, and application. It also explores replacing
conventional materials with bionanocomposites with a focus on their
use in packaging applications. In addition, the book broadens
readers' insights by providing illustrations and tables summarizing
the latest research on the packaging applications of different
bionanocomposites. By offering a detailed account of this field of
research and describing real-world applications, it enables
researchers, scientists, and professionals in industry to develop a
more informed understanding of the need for bionanocomposites in
the development of green, biodegradable, and sustainable packaging
applications.
Nanostructured Polymer Composites for Biomedical Applications
addresses the challenges researchers face regarding the creation of
nanostructured polymer composites that not only have superior
performance and mechanical properties, but also have acceptable
biological function. This book discusses current efforts to meet
this challenge by discussing the multidisciplinary nature of
nanostructured polymer composite biomaterials from various fields,
including materials science, polymer science, biomedical
engineering and biomedicine. This compilation of existing knowledge
will lead to the generation of new terminology and definitions
across individual disciplines. As such, this book will help
researchers and engineers develop new products and devices for use
in effective medical treatment.
Sensors are significantly relevant to many aspects of life. The
advancements in nanotechnology-based sensing systems are giving
rise to exciting developments in sensor applications. Recently,
nanocomposites have become highly promising candidates for the
designing of new chemical sensing and biosensing platforms.
Graphene-based nanocomposites have been successfully employed in
many sensing applications in view of their excellent physical
properties including high surface area, electrical conductivity,
flexibility and optical transparency. They provide remarkable
advantages such as lower fabrication costs, improved
biocompatibility, prominent sensitivity, stability and selectivity
for effective real-world implementation. The aim of the book is to
give an overview on the properties and novel applications of
graphene-based nanocomposites as chemical and biosensors. Chapters
highlight various biosensing applications such as diabetes
monitoring, cancer cell detection, virus, bacteria, DNA, protein
and amino acid sensing, as well as hormone and cholesterol
detection. Moreover, chemical sensing applications like gas,
alcohol, and food toxin sensing, heavy metal ion detection, and
H2O2 sensing are also covered. The book is ideal for postgraduates,
analytical chemists, biomedical scientists and researchers in both
academic and industrial settings working on materials science,
chemical science and nanotechnology.
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