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Bio-nanocomposites combine the enhanced properties of commercial polymer nanocomposites with the low environmental impact of biodegradable material, making them a topic of great current interest. Because of their tremendous role in reducing dependency on commercial non-biodegradable polymers, and their environmentally-friendly nature, bio-nanocomposites need to be studied in greater detail. In this book, recent advancements in their development are brought together in a single text, to provide researchers with a thorough insight into the various systems, and to open up future perspectives. Although the commercial applications of these bio-nanocomposites are in their infancy, these materials have a huge commercial potential. In setting out the next generation of advances in nanocomposite technology, this book opens the way for further developments in the field.Describing the subject as a whole, from a basic introduction to the more specific systems and advancements, this book can be used both as a professional reference and for teaching purposes.
This monograph investigates the synthesis, characterization, and potential industrial applications of bio-nanocomposites as sustainable alternatives to traditional, non-biodegradable polymer materials. Vikas Mittal, an established researcher in polymer science, synthesizes current academic literature and experimental data to provide a comprehensive framework for understanding how biodegradable polymers can be enhanced through nanotechnology. The text addresses the technical challenges of material integration and outlines the trajectory for future development in environmentally conscious manufacturing. By bridging the gap between basic material properties and advanced system applications, the author establishes a foundation for both academic study and industrial implementation.
What You Will Find
Experts identify this text as a foundational reference for researchers and graduate students working within the intersection of materials science and green chemistry. Readers frequently note the technical density of the prose, which serves as a rigorous guide for those seeking to understand the specific chemical interactions within these complex material systems.
Page Count:
400
Publication Date:
2011-06-24
Publisher:
Oxford University Press
ISBN-10:
0199581924
ISBN-13:
9780199581924
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