Advanced polymer-based nanocomposite materials continue to become increasingly popular and important for a wide range of engineering applications, as evidenced by continued government initiatives involving R&D and commercialization of these substances. In the race to exploit the unique mechanical, thermal, and electrical properties of nanocomposite materials, researchers must also address new challenges to predict, understand, and manage the potentially adverse effects they could have on human lives and the environment.
Nano- and Biocomposites focuses on the structural makeup of nanomaterials and their range of applications. It details the latest research in which biological applications of nanostructural resins have been conducted within in vitro and in vivo environments. Some of the applications explored in this book include:
This compilation of author contributions is divided into two sections―Nanostructured Polymer Composites and Nano-Bio Composites. It provides a basic understanding of nanomaterial and nanocomposite research to explain the fundamentals of how nanostructured fillers strengthen polymer-based materials. With an emphasis on how nano- and biocomposites are used to create new biomedical applications, the text also focuses on the crucial yet often-ignored potential toxicity impact of using nanostructured materials. It presents important guidelines and new insights to stimulate investigation of anticipated research in this fascinating new field. Researchers, scientists, and academics will appreciate this cutting-edge exploration of nanomaterials, biomaterials, and the ever-evolving world of nano-biomaterials.
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Farzana Hussain has been involved with scientific endeavors of composite materials, focusing on manmade fibrous polymeric composites, nanocomposite and biocomposite materials since 2000. Hussain has authored numerous journal articles, technical and conference papers, book chapters, and a comprehensive review on polymer composites and nanocomposite materials.
Khalid Lafdi, Ph.D., is a professor at the University of Dayton (UD) and carbon group leader at University of Dayton Research Institute (UDRI). Dr. Lafdi has more than 140 articles and chapters published in refereed journals and four patents. He has gained valuable experience in developing new ideas and collaborations to develop a world-class carbon research program materials hybrids from the fundamental understanding to the manufacturing.
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