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|a Spectroscopy of polymer nanocomposites /
|c edited by Sabu Thomas, Didier Rouxel, Deepalekshmi Ponnamma.
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|a Oxford, UK :
|b William Andrew is an imprint of Elsevier,
|c 2016.
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|a 1 online resource.
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|a text
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|a computer
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|a online resource
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|a Micro and Nano Technologies
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|a Includes index.
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|a Online resource; title from PDF title page (ScienceDirect, viewed March 3, 2016).
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|6 880-01
|a Front Cover; Spectroscopy of Polymer Nanocomposites; Copyright Page; Contents; List of Contributors; Preface; 1 Spectroscopy-introducing the advantages and application areas in polymer nanocomposites; 1.1 Introduction; 1.2 Polymer nanocomposites; 1.2.1 A Large Range of Applications and a Large Market; 1.2.2 Bringing New Properties to Polymers: Applications of Nanocomposites in Plastics; 1.2.3 Fabrication and the Challenges Existing in the Field; 1.3 Nanocomposite spectroscopy; 1.3.1 What Can Spectroscopy Do?; 1.3.2 Various Spectral Techniques and the Advantages.
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|a 1.3.3 Spectral Applications in Polymers and its Nanocomposites1.4 Conclusion; References; 2 An overview of nanocomposite nanofillers and their functionalization; 2.1 Introduction; 2.2 Overview of nanofillers; 2.2.1 Inorganic Nanoparticles: Metals and Metalloids; 2.2.1.1 Nanoparticle structures; 2.2.1.2 Nucleation and growth; 2.2.1.3 Physicochemical properties; 2.2.1.4 Nanoparticle preparation; 2.2.1.4.1 Metallic nanoparticles; 2.2.1.4.1.1 Metal salt reduction; 2.2.1.4.1.2 Organometallic complex reduction/decomposition; 2.2.1.4.2 Metal oxide nanoparticles.
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|a 2.2.2 Carbon-Based Nano-objects: Fullerenes, Graphene, and Carbon Nanotubes2.2.2.1 Structural considerations; 2.2.2.2 Properties of carbon-based nanomaterials; 2.2.2.3 Preparation methods; 2.2.2.3.1 Fullerene and CNTs; 2.2.2.3.1.1 Laser ablation; 2.2.2.3.1.2 Arc discharge; 2.2.2.3.1.3 Catalyzed chemical vapor deposition; 2.2.2.3.1.4 Miscellaneous preparation techniques; 2.2.2.3.2 Graphene; 2.2.3 Clays; 2.2.3.1 Clay structures; 2.2.3.2 Clay modifications; 2.3 Inorganic Nanoparticles Including Clays: Chemical and Physical Modifications for Their Inclusion as Filler in Nanocompo ...
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|a 2.3.1 Physical Methods of Inclusion2.3.2 In situ Polymerization with Pre-formed Nanoparticles; 2.3.3 Grafting-to or Grafting-from Methods of Inclusion; 2.3.4 In situ Nanoparticle and/or Polymer Formation for Nanocomposite Synthesis; 2.4 Carbon Nanotubes as Fillers in Nanocomposites: The Dispersion Challenge; 2.4.1 Physical Methods of Dispersion of CNTs; 2.4.2 Chemical Methods of Dispersion of CNTs; 2.4.2.1 Chemical functionalization or surface modification of CNTs; 2.4.2.2 Defect functionalization of CNTs; 2.4.2.3 Other methods of sidewall and termini functionalization of CNTs.
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|a Includes bibliographical references and index.
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|a Knovel
|b ACADEMIC - Nanotechnology
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650 |
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|a Polymers
|x Spectra.
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|a Nanostructured materials
|x Spectra.
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|a Nanomatériaux
|x Spectre.
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|a Nanostructured materials
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|a Polymers
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|a Thomas, Sabu,
|e editor.
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|a Rouxel, Didier,
|e editor.
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700 |
1 |
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|a Ponnamma, Deepalekshmi,
|e editor.
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776 |
0 |
8 |
|i Print version:
|a Thomas, Sabu.
|t Spectroscopy of Polymer Nanocomposites.
|d Saint Louis : Elsevier Science, ©2016
|z 9780323401838
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830 |
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0 |
|a Micro & nano technologies.
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856 |
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|u https://appknovel.uam.elogim.com/kn/resources/kpSPN0000A/toc
|z Texto completo
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|6 505-01/(S
|a 2.4.3 Physical Functionalization (or Physical Blending) of CNTs2.5 Graphene as Filler in Nanocomposites: The Behavior of Graphene Layers; 2.5.1 Surface Modification of Graphene; 2.5.2 Covalent Functionalization of Graphene and Graphene Oxide Sheets; 2.5.3 Individualization by π-π Interactions; 2.5.4 Preparation Methods of Polymer/Graphene Nanocomposites; 2.6 Conclusion; References; 3 Thermodynamics, phase segregation, polymer morphology, and interface/interphases in polymer nanocomposites; 3.1 Introduction; 3.2 Thermodynamic solution behavior of nanoparticle systems.
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