Produktbild: Nanotechnology Commercialization

Nanotechnology Commercialization Manufacturing Processes and Products

155,99 €

inkl. gesetzl. MwSt., Versandkostenfrei


Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

06.11.2017

Verlag

John Wiley & Sons Inc

Seitenzahl

448

Maße (L/B/H)

23,1/15,5/2,8 cm

Gewicht

757 g

Auflage

1. Auflage

Sprache

Englisch

ISBN

978-1-119-37172-4

Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

06.11.2017

Verlag

John Wiley & Sons Inc

Seitenzahl

448

Maße (L/B/H)

23,1/15,5/2,8 cm

Gewicht

757 g

Auflage

1. Auflage

Sprache

Englisch

ISBN

978-1-119-37172-4

Herstelleradresse

Libri GmbH
Europaallee 1
36244 Bad Hersfeld
DE

Email: GPSR Kontakt

Noch keine Bewertungen vorhanden

Verfassen Sie die erste Bewertung zu diesem Artikel

Helfen Sie anderen Kundinnen und Kunden durch Ihre Meinung.

Kundinnen und Kunden meinen

Bewertungen (0)

Die Leseprobe wird geladen.
  • Produktbild: Nanotechnology Commercialization
  • List of Contributors xv
     
    Preface xix
     
    Editor in Chief xxi
     
    1 Overview: Affirmation of Nanotechnology between 2000 and 2030 1
    Mihail C. Roco
     
    1.1 Introduction 1
     
    1.2 Nanotechnology - A FoundationalMegatrend in Science and Engineering 2
     
    1.3 Three Stages for Establishing the New General Purpose Technology 9
     
    1.4 Several Challenges for Nanotechnology Development 15
     
    1.5 About the Return on Investment 16
     
    1.6 Closing Remarks 21
     
    Acknowledgments 22
     
    References 22
     
    2 Nanocarbon Materials in Catalysis 25
    Xing Zhang, Xiao Zhang, and Yongye Liang
     
    2.1 Introduction to Nanocarbon Materials 25
     
    2.2 Synthesis and Functionalization of Nanocarbon Materials 26
     
    2.2.1 Synthesis and Functionalization of Carbon Nanotubes 26
     
    2.2.2 Synthesis and Functionalization of Graphene and Graphene Oxide 27
     
    2.2.3 Synthesis and Functionalization of Carbon Nanodots 29
     
    2.2.4 Synthesis and Functionalization of Mesoporous Carbon 29
     
    2.3 Applications of Nanocarbon Materials in Electrocatalysis 31
     
    2.3.1 Oxygen Reduction Reaction 32
     
    2.3.2 Oxygen Evolution Reaction 36
     
    2.3.3 Hydrogen Evolution Reaction 39
     
    2.3.4 Roles of Nanocarbon Materials in Catalytic CO2 Reduction Reaction 43
     
    2.4 Applications of Nanocarbon Materials in Photocatalysis 47
     
    2.4.1 Application of Nanocarbon Materials as Photogenerated Charge Acceptors 48
     
    2.4.2 Application of Nanocarbon Materials as Electron Shuttle Mediator 48
     
    2.4.3 Application of Nanocarbon Materials as Cocatalyst for Photocatalysts 50
     
    2.4.4 Application of Nanocarbon Materials as Active Photocatalyst 51
     
    2.5 Summary 51
     
    Acknowledgments 52
     
    References 52
     
    3 Controlling and Characterizing Anisotropic Nanomaterial Dispersion 65
    Virginia A. Davis andMicah J. Green
     
    3.1 Introduction 65
     
    3.2 What Is Dispersion andWhy Is It Important? 66
     
    3.2.1 Factors Affecting Dispersion 73
     
    3.2.2 Thermodynamic Dissolution of Pristine Nanomaterials 73
     
    3.2.3 Intermolecular Potential in Dispersions 74
     
    3.2.4 Functionalization of Nanomaterials 75
     
    3.2.5 Physical Mixing 77
     
    3.2.5.1 Sonication 77
     
    3.2.5.2 Solvent IntercalationMethods 78
     
    3.2.5.3 Shear Mixing Methods 78
     
    3.3 Characterizing Dispersion State in Fluids 81
     
    3.3.1 Visualization 81
     
    3.3.2 Spectroscopy 83
     
    3.3.3 TEM 85
     
    3.3.4 AFM 85
     
    3.3.5 Light Scattering 85
     
    3.3.6 Rheology 86
     
    3.4 Characterization of Dispersion State in Solidified Materials 88
     
    3.4.1 Microscopy 89
     
    3.4.2 Electrical Percolation 89
     
    3.4.3 Mechanical Property Enhancement 89
     
    3.4.4 Thermal Property Changes 90
     
    3.5 Conclusion 90
     
    Acknowledgments 90
     
    References 91
     
    4 High-Throughput Nanomanufacturing via Spray Processes 101
    Gauri Nabar,Matthew Souva, Kil Ho Lee, Souvik De, Jodie Lutkenhaus, Barbara Wyslouzil, and Jessica O.Winter
     
    4.1 Introduction 101
     
    4.2 Flash Nanoprecipitation 104
     
    4.2.1 Overview 104
     
    4.2.2 Importance of Rapid Mixing 105
     
    4.2.3 Mixers Employed in FNP 106
     
    4.2.3.1 Confined Impinging Jet Mixers (CIJMs) 106
     
    4.2.3.2 Multi-Inlet Vortex Mixers (MIVMs) 107
     
    4.2.3.3 Mixer Selection 107
     
    4.2.4 FNP Product Structure 107
     
    4.2.5 Applications of FNP Nanocomposites 108
     
    4.3 Electrospray 108
     
    4.3.1 Overview 108
     
    4.3.2 Single Nozzle Electrospray 109
     
    4.3.2.1 Forces