Polymer Nanocomposites in Biomedical Engineering / edited by Kishor Kumar Sadasivuni [y otros cuatro]
Contributor(s): SpringerLink (Online service)
| Sadasivuni, Kishor Kumar., editor literario
Series: (Engineering (Springer-11647)); (Lecture Notes in Bioengineering, 2195-271X).Publisher: Cham : Springer International Publishing : Imprint: Springer, 2019Description: 1 recurso en línea (X, 409 páginas) : .ISBN: 9783030047412.Subject: Polímeros
Abstract: This book presents a thorough discussion of the physics, biology, chemistry and medicinal science behind a new and important area of materials science and engineering: polymer nanocomposites. The tremendous opportunities of polymer nanocomposites in the biomedical field arise from their multitude of applications and their ability to satisfy the vastly different functional requirements for each of these applications. In the biomedical field, a polymer nanocomposite system must meet certain design and functional criteria, including biocompatibility, biodegradability, mechanical properties, and, in some cases, aesthetic demands. The content of this book builds on what has been learnt in elementary courses about synthesising polymers, different nanoparticles, polymer composites, biomedical requirements, uses of polymer nanocomposites in medicine as well as medical devices and the major mechanisms involved during each application. The impact of hybrid nanofillers and synergistic composite mixtures which are used extensively or show promising outcomes in the biomedical field are also discussed. These novel materials vary from inorganic/ceramic-reinforced nanocomposites for mechanical property improvement to peptide-based nanomaterials, with the chemistry designed to render the entire material biocompatible. .
| Item type | Current library | Collection | Call number | Status | Date due | Barcode | Item holds | |
|---|---|---|---|---|---|---|---|---|
LIBRO-E NO PRÉSTAMO
|
Madrid Digital Acceso Electrónico (UEM) | Ciencias e Ingeniería | TA455 .P58 2019 EB (Browse shelf(Opens below)) | Acceso electrónico | eBooks24062192 |
Browsing Madrid Digital shelves, Shelving location: Acceso Electrónico (UEM) Close shelf browser (Hides shelf browser)
| No cover image available | ||||||||
| TA455.P5 H834 2016 EB Simplified theory of plastic zones : based on Zarka's method | TA455 .P55 2019 EB Down Milling Trimming Process Optimization for Carbon Fiber-Reinforced Plastic | TA455.P55 ES Journal of Reinforced Plastics and Composites | TA455 .P58 2019 EB Polymer Nanocomposites in Biomedical Engineering | TA455.P58 2020 EB Advances in Polymer Processing 2020 : Proceedings of the International Symposium on Plastics Technology | TA455 .P58 2021 EB Advances in Hybrid Conducting Polymer Technology | TA455 .P58 2022 EB Shape Memory Composites Based on Polymers and Metals for 4D Printing : Processes, Applications and Challenges |
This book presents a thorough discussion of the physics, biology, chemistry and medicinal science behind a new and important area of materials science and engineering: polymer nanocomposites. The tremendous opportunities of polymer nanocomposites in the biomedical field arise from their multitude of applications and their ability to satisfy the vastly different functional requirements for each of these applications. In the biomedical field, a polymer nanocomposite system must meet certain design and functional criteria, including biocompatibility, biodegradability, mechanical properties, and, in some cases, aesthetic demands. The content of this book builds on what has been learnt in elementary courses about synthesising polymers, different nanoparticles, polymer composites, biomedical requirements, uses of polymer nanocomposites in medicine as well as medical devices and the major mechanisms involved during each application. The impact of hybrid nanofillers and synergistic composite mixtures which are used extensively or show promising outcomes in the biomedical field are also discussed. These novel materials vary from inorganic/ceramic-reinforced nanocomposites for mechanical property improvement to peptide-based nanomaterials, with the chemistry designed to render the entire material biocompatible. .
There are no comments on this title.