Nanomaterials and Nanotechnology: Biomedical, Environmental, and Industrial Applications
Nanomaterials and Nanotechnology: Biomedical, Environmental, and Industrial Applications
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This book provides a comprehensive overview of nanomaterials, their synthesis, characterization, and potential applications in biomedical, environmental, and industrial fields. It highlights the relationship between nanocompound synthesis, bio-physico-chemical properties, and interactions in various matrices.
Format: Paperback / softback
Length: 471 pages
Publication date: 01 March 2022
Publisher: Springer Verlag, Singapore
This comprehensive book offers a thorough exploration of a diverse array of nanomaterials, encompassing their synthesis, characterization, and potential applications, with a particular emphasis on their utilization as functional agents in biomedical, environmental, and industrial domains. It delves into the intricate interplay between various aspects, such as the synthesis of nanocompounds, their bio-physico-chemical properties, and their interactions within biomedical, environmental, and industrial matrices. This invaluable resource is of immense interest to engineers, academics, and research scholars engaged in these fields.
Introduction:
Nanomaterials, defined as materials with dimensions ranging from 1 to 100 nanometers (nm), have gained significant attention in recent years due to their unique properties and vast potential applications. These tiny particles exhibit extraordinary characteristics, such as high surface area, quantum effects, and specific interactions with biological systems, making them ideal for various fields. This book aims to provide a comprehensive overview of nanomaterials, from their synthesis and characterization to their current and potential applications.
Synthesis and Characterization:
Chapter 1 provides an introduction to the synthesis methods of nanomaterials, including bottom-up and top-down approaches. It discusses the various techniques used to create nanomaterials, such as chemical vapor deposition, sol-gel synthesis, and template-based synthesis. The chapter also highlights the importance of characterizing nanomaterials to understand their properties and behavior.
Chapter 2 focuses on the characterization techniques used to study nanomaterials. It covers methods such as X-ray diffraction, scanning electron microscopy, transmission electron microscopy, and Raman spectroscopy. These techniques allow researchers to obtain detailed information about the size, shape, structure, and chemical composition of nanomaterials.
Chapter 3 explores the bio-physico-chemical properties of nanomaterials, including their interactions with biological systems. It discusses the potential toxicological effects of nanomaterials and the mechanisms by which they can enter the body and cause harm. The chapter also examines the potential applications of nanomaterials in medicine, such as drug delivery systems and imaging agents.
Interactions in Biomedical, Environmental, and Industrial Matrix:
Chapter 4 examines the interactions between nanomaterials and biological systems. It discusses the mechanisms by which nanomaterials can interact with cells, tissues, and organs, and the potential implications of these interactions for human health and the environment. The chapter also explores the use of nanomaterials in various biomedical applications, such as tissue engineering, drug delivery, and medical imaging.
Chapter 5 focuses on the interactions between nanomaterials and environmental systems. It discusses the potential impacts of nanomaterials on soil, water, and air quality, and the mechanisms by which they can be degraded or dispersed in the environment. The chapter also examines the use of nanomaterials in environmental remediation, such as the removal of pollutants and the treatment of waste.
Chapter 6 explores the interactions between nanomaterials and industrial systems. It discusses the potential applications of nanomaterials in various industries, such as electronics, energy, and materials science. The chapter also examines the challenges associated with the commercialization of nanomaterials and the need for regulatory frameworks to ensure their safe and sustainable use.
Conclusion:
In conclusion, this book provides a comprehensive overview of nanomaterials, from their synthesis and characterization to their current and potential applications. It addresses the intrinsic relationship between aspects involving the synthesis of nanocompounds, their bio-physico-chemical properties, and their interactions occurring in biomedical, environmental, and industrial matrix. This resource is of immense interest to engineers, academics, and research scholars engaged in these fields, as it offers valuable insights into the latest developments and advancements in this rapidly evolving field.
Weight: 730g
Dimension: 235 x 155 (mm)
ISBN-13: 9789813360587
Edition number: 1st ed. 2021
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