Produktbild: Nanomaterials for the Life Sciences / Biomimetic and Bioinspired Nanomaterials
Band 7

Nanomaterials for the Life Sciences / Biomimetic and Bioinspired Nanomaterials

Fr. 355.00

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Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

11.08.2010

Abbildungen

160 schwarz-weiße und 20 farbige Abbildungen

Herausgeber

Challa S. S. R. Kumar

Verlag

Wiley-Vch

Seitenzahl

586

Maße (L/B/H)

24.5/18.2/3.5 cm

Gewicht

1232 g

Auflage

1. Auflage

Sprache

Englisch

ISBN

978-3-527-32167-4

Beschreibung

Rezension

"The book would be an appropriate supplementary text for teaching at the upper undergraduate or graduate levels and should find a useful place on the reference shelves of most bionanotechnology laboratories." (Journal of the American Chemical Society, 14 March 2011)

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

11.08.2010

Abbildungen

160 schwarz-weiße und 20 farbige Abbildungen

Herausgeber

Challa S. S. R. Kumar

Verlag

Wiley-Vch

Seitenzahl

586

Maße (L/B/H)

24.5/18.2/3.5 cm

Gewicht

1232 g

Auflage

1. Auflage

Sprache

Englisch

ISBN

978-3-527-32167-4

Herstelleradresse

Wiley-VCH GmbH
Boschstr. 12
69469 Weinheim
Deutschland
Email: trade@wiley.com
Url: www.wiley-vch.de
Fax: +49 6201 606328

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  • Produktbild: Nanomaterials for the Life Sciences / Biomimetic and Bioinspired Nanomaterials
  • Preface
    The Gecko and Its Adhesion Capabilities
    The Physics of Gecko Adhesion
    Fabrication Methods for Gecko-Inspired Adhesives
    Measuring Adhesion
    What Have We Learned About Fibrillar Adhesives?
    Applications in the Life Sciences
    Summary and Future Perspectives
    TOOTH-INSPIRED NANOCOMPOSITES
    Introduction
    Enamel
    Dentin
    Summary and Future Perspective
    BIOINSPIRED NANOMATERIALS FOR TISSUE ENGINEERING
    Introduction
    Biomimetic Material Properties
    Nanofiber Scaffold Fabrication Methods
    Modification of Nanofibrous Scaffolds
    Biological Effects of Nanofibers
    Conclusions
    BIOMIMETIC AND BIOINSPIRED SELF-ASSEMBLED PEPTIDE NANOSTRUCTURES
    Introduction
    Peptide-Based Self-Assembling Nanomaterials
    Matrices for Tissue Engineering and Regenerative Medicine
    Virus-Based and Virus-Inspired Nanomaterials
    Biomimetic Nanotubes
    BIOINSPIRED LAYERED NANOMATERIALS IN MEDICAL THERAPY
    Introduction
    Features of Layered Nanomaterials
    Layered Nanomaterials in Medical Applications
    Toxicity
    Conclusions
    BIOLOGICAL AND BIOMIMETIC SYNTHESIS OF METAL NANOMATERIALS
    Introduction
    Synthesis of Au/Ag Nanomaterials by Whole Organisms
    Synthesis of Au/Ag Nanomaterials by Biomolecule Mixtures
    Synthesis of Au/Ag Nanomaterials by Proteins
    Synthesis of Au/Ag Nanomaterials by Amino Acids/Peptides
    Conclusions
    BIOMIMETIC NANOSENSORS AND NANOACTUATORS
    Introduction
    Three-Dimensional Fabrication of BNNs
    Electrically Induced Robotic Actuation
    Distributed Nanosensing and Transduction
    Modeling and Simulation
    BIOMIMETIC NANOTECHNOLOGY
    Introduction
    Biocrystal Growth via Environmentally Friendly Nature-Mimetic Processing
    Biomimetic Morphology Control of Metal Oxides and Their Site-Selective Immobilization
    Application of Biomimetic Super-Hydrophobic Surfaces to Micropatterning of Biomolecules
    Summary and Outlook
    BIOMIMETIC APPROACHES TO SELF-ASSEMBLY OF NANOMATERIALS
    Introduction
    Self-Assembly
    Polypeptide-Based Nanomaterials
    Self-Assembly of Hybrid Nanomaterials
    Nanoparticle Assembly in Biodiagnostics
    Conclusions and Outlook
    BIOMIMETIC ARTIFICIAL NANOSTRUCTURED SURFACES
    Introduction
    Learning from Nature: Properties of Natural Nanostructured Surfaces
    Fabrication of Biomimetic Artificial Nanostructures
    Applications of Biomimetic Artificial Nanostructures
    Conclusions and Future Outlook
    NATURAL AND MODIFIED NANOMATERIALS FOR ENVIRONMENTAL APPLICATIONS
    Introduction
    Aluminosilicate Nanomaterials
    Environmental Applications of Aluminosilicate Nanomaterials
    Assessment of Aluminosilicate Nanomaterials for Environmental Applications
    Summary and Future Perspectives
    S-LAYER PROTEIN LATTICES STUDIED BY SCANNING FORCE MIRCOSCOPY
    Introduction
    Description of S-Layer Proteins
    S-Layer Protein Microstructures
    S-Layer Protein Reassembly at Interphases
    S-Layer Proteins Lattices with Functional Groups for Recognition Imaging and Molecule Templating
    Reassembly of S-Layer Proteins on Solid Supports with Modified Surface Properties
    Applications
    Summary and Conclusions
    NANOSCALE DEFORMATION MECHANISMS IN BIOLOGICAL TISSUES
    Introduction
    Approaches to Investigating Nanoscale Deformation of Biocomposites
    Nanoscale Deformation Mechanisms in Mineralized Tissues
    Deformation in Hypermineralized Systems: Enamel and Abalone Nacre
    Mechanics of the All-Organic Nanocomposite of the Wood Cell Wall
    Summary and Outlook