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Antiviral and Antimicrobial Coatings Based on Functionalized Nanomaterials: Design, Applications, and Devices

Antiviral and Antimicrobial Coatings Based on Functionalized Nanomaterials: Design, Applications, and Devices

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  • More about Antiviral and Antimicrobial Coatings Based on Functionalized Nanomaterials: Design, Applications, and Devices

Antiviral and Antimicrobial Coatings Based on Functionalized Nanomaterials: Design, Applications, and Devices is the first book on functionalized nanoparticles-based coatings, providing a fundamental, interdisciplinary look at this emerging field. It focuses on the most advanced coating systems being utilized by various industries and discusses the current challenges during manufacturing.

Format: Paperback / softback
Length: 678 pages
Publication date: 22 June 2023
Publisher: Elsevier - Health Sciences Division


Antiviral and Antimicrobial Coatings Based on Functionalized Nanomaterials: Design, Applications, and Devices is a comprehensive and pioneering work that delves into the realm of functionalized nanoparticles-based coatings, encompassing a wide range of aspects related to antimicrobial and antiviral coatings. The utilization of functionalized nanoparticles has brought about a revolutionary transformation across various scientific and engineering disciplines, and this book offers a fundamental and interdisciplinary exploration of this rapidly evolving field. It specifically focuses on the most advanced coating systems currently employed by diverse industries, while also addressing the key challenges that need to be considered during manufacturing. This book serves as an invaluable resource for both academics and professionals engaged in the field of modern antimicrobial coatings practices.

Functionalized nanoparticles have emerged as powerful tools in various scientific and engineering fields, revolutionizing the way we approach various applications. In the context of antimicrobial and antiviral coatings, these nanoparticles have shown tremendous potential in combating infections and preventing the spread of diseases.

One of the key advantages of functionalized nanoparticles is their ability to enhance the antimicrobial properties of coatings. By modifying the surface properties of nanoparticles, such as their size, shape, and surface chemistry, researchers can create coatings that are more effective in killing bacteria, viruses, and other pathogens. For example, silver nanoparticles have been widely used in antimicrobial coatings due to their inherent antibacterial properties. However, by functionalizing these nanoparticles with specific molecules or polymers, researchers can enhance their efficacy and stability, making them more suitable for various applications.

Another advantage of functionalized nanoparticles is their ability to target specific pathogens or bacteria. By designing nanoparticles with specific ligands or receptors that bind to specific targets on the surface of pathogens, researchers can create coatings that are more selective and targeted in their action. This can lead to improved efficacy and reduced side effects, as the coatings are only active against the targeted pathogens, minimizing the risk of resistance development.

In addition to their antimicrobial properties, functionalized nanoparticles can also enhance the durability and longevity of coatings. By incorporating nanoparticles into coatings, researchers can improve their resistance to wear, tear, and environmental factors, making them more suitable for applications in harsh environments. For example, coatings functionalized with nanoparticles can be used in medical devices, such as implants or surgical instruments, to prevent the growth of bacteria and reduce the risk of infection.

Despite the many advantages of functionalized nanoparticles, there are also challenges that need to be addressed. One of the main challenges is the manufacturing of these coatings. The synthesis and characterization of functionalized nanoparticles can be complex and time-consuming, requiring specialized equipment and expertise. Additionally, the stability and durability of functionalized nanoparticles in coatings can be affected by factors such as pH, temperature, and humidity, making it challenging to ensure consistent performance over long periods.

To overcome these challenges, researchers are exploring various approaches to improve the manufacturing of functionalized nanoparticles. One approach is the use of scalable and reproducible synthesis methods, such as microfluidics or spray drying, which can help to reduce the cost and time required for manufacturing. Additionally, the development of new materials and coatings that can enhance the stability and durability of functionalized nanoparticles is an important area of research.

In conclusion, Antiviral and Antimicrobial Coatings Based on Functionalized Nanomaterials: Design, Applications, and Devices is a comprehensive and pioneering work that provides a fundamental and interdisciplinary understanding of functionalized nanoparticles-based coatings. The use of functionalized nanoparticles has revolutionized the field of antimicrobial and antiviral coatings, offering significant advantages in terms of efficacy, selectivity, durability, and longevity. However, there are still challenges that need to be addressed in terms of manufacturing and stability. By continuing to explore new approaches and materials, researchers can further enhance the performance and reliability of functionalized nanoparticles in coatings, leading to improved healthcare outcomes and a safer environment for all.


Dimension: 229 x 152 (mm)
ISBN-13: 9780323917834

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