Biological and Bio inspired Nanomaterials Properties and Assembly Mechanisms 1st edition by Sarah Perrett, Alexander K. Buell, Tuomas P.J. Knowles – Ebook PDF Instant Download/DeliveryISBN: 9811397912, 9789811397912
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Product details:
ISBN-10 : 9811397912
ISBN-13 : 9789811397912
Author: Sarah Perrett, Alexander K. Buell, Tuomas P.J. Knowles
This book summarizes naturally occurring and designed bio-inspired molecular building blocks assembled into nanoscale structures. It covers a fascinating array of biomimetic and bioinspired materials, including inorganic nanozymes, structures formed by DNA origami, a wide range of peptide and protein-based nanomaterials, as well as their applications in diagnostics and therapeutics. The book elucidates the mechanism of assembly of these materials and characterisation of their mechanical and physico-chemical properties which inspires readers not only to exploit the potential applications of nanomaterials, but also to understand their potential risks and benefits. It will be of interest to a broad audience of students and researchers spanning the disciplines of biology, chemistry, engineering, materials science, and physics.
Biological and Bio inspired Nanomaterials Properties and Assembly Mechanisms 1st Table of contents:
1. Dynamics and Control of Peptide Self-Assembly and Aggregation
2. Peptide Self-Assembly and Its Modulation: Imaging on the Nanoscale
3. The Kinetics, Thermodynamics and Mechanisms of Short Aromatic Peptide Self-Assembly
4. Bacterial Amyloids: Biogenesis and Biomaterials
5. Fungal Hydrophobins and Their Self-Assembly into Functional Nanomaterials
6. Nanostructured, Self-Assembled Spider Silk Materials for Biomedical Applications
7. Protein Microgels from Amyloid Fibril Networks
8. Protein Nanofibrils as Storage Forms of Peptide Drugs and Hormones
9. Nanozymes: Biomedical Applications of Enzymatic Fe3O4 Nanoparticles from In Vitro to In Vivo
10. Self-Assembly of Ferritin: Structure, Biological Function and Potential Applications in Nanotechnology
11. DNA Nanotechnology for Building Sensors, Nanopores and Ion-Channels
12. Bio Mimicking of Extracellular Matrix
13. Bioinspired Engineering of Organ-on-Chip Devices
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Tags: Biological, Bio inspired Nanomaterials, Properties, Assembly Mechanisms, Sarah Perrett, Alexander Buell, Tuomas Knowles