Graphite, Graphene, and Their Polymer Nanocomposites (eBook, PDF)
Redaktion: Mukhopadhyay, Prithu; Gupta, Rakesh K.
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Graphite, Graphene, and Their Polymer Nanocomposites (eBook, PDF)
Redaktion: Mukhopadhyay, Prithu; Gupta, Rakesh K.
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Graphite, Graphene, and Their Polymer Nanocomposites presents a compilation of emerging research trends in graphene-based polymer nanocomposites (GPNC). International researchers from several disciplines share their expertise about graphene, its properties, and the behavior of graphene-based composites. Possibly the first published monograph of its
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Graphite, Graphene, and Their Polymer Nanocomposites presents a compilation of emerging research trends in graphene-based polymer nanocomposites (GPNC). International researchers from several disciplines share their expertise about graphene, its properties, and the behavior of graphene-based composites. Possibly the first published monograph of its
Dieser Download kann aus rechtlichen Gründen nur mit Rechnungsadresse in A, B, BG, CY, CZ, D, DK, EW, E, FIN, F, GR, HR, H, IRL, I, LT, L, LR, M, NL, PL, P, R, S, SLO, SK ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis eBooks
- Seitenzahl: 631
- Erscheinungstermin: 30. Oktober 2012
- Englisch
- ISBN-13: 9781439827802
- Artikelnr.: 40067626
- Verlag: Taylor & Francis eBooks
- Seitenzahl: 631
- Erscheinungstermin: 30. Oktober 2012
- Englisch
- ISBN-13: 9781439827802
- Artikelnr.: 40067626
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
Prithu Mukhopadhyay is a scientist with IPEX Technologies, Inc. in Montreal, Canada. Since 1997, he has been engaged in R&D as well as manufacturing and quality management for injection molding and extrusion. He earned his master's degree in organic chemistry and his Ph.D. in polymer chemistry from the Indian Institute of Technology, Kharagpur. Prithu is passionate about new plastics technologies, and he has been a member of the New Technology Committee of the Society of Plastics Engineers since 1998. He has chaired the committee in the past, and he has been active in developing New Technology Forums at the Annual Technical Conference of the Society since 2000. He is an expert on plastics piping materials, and he has published and spoken extensively on this and a variety of polymer topics. He is the founding editor of Plasticstrends, an educational website that was established in 2000. Rakesh K. Gupta is the George B. and Carolyn A. Berry professor and department chairman of chemical engineering at West Virginia University where he has been teaching since 1992. He holds B. Tech. and Ph.D. degrees in chemical engineering from the Indian Institute of Technology, Kanpur, and the University of Delaware, respectively. His research focuses on polymer rheology, polymer processing, and polymer composites. He has published more than 100 journal papers, 65 conference papers, and 12 book chapters on these topics. He also holds three U.S. patents. He is the author of Polymer and Composite Rheology, the coauthor of Fundamentals of Polymer Engineering and the coeditor of Polymer Nanocomposites Handbook.
Graphite: Structure, Properties, and Applications. Electronic Transport in
Graphene: Theory and Applications. Different Characterization Techniques to
Evaluate Graphene and its Properties. Electrochemical Exfoliation: A
Cost-Effective Approach to Produce Graphene Nanoplatelets in Bulk
Quantities. Exfoliation of Graphite toward Graphene from Lab to Industry.
Graphene-Based Materials for Clean Energy Applications. Electrochemistry of
Graphene-Based Nanomaterials. Graphene-Polymer Composites for Pulse Lasers.
Epoxy Nanocomposites: Graphene a Promising Filler. Nanoparticles and
Polymer Nanocomposites. Polymer-Functionalized Graphene via Atom Transfer
Radical Polymerization Route for Graphene-Based Polymer Nanocomposites.
Synthesis and Properties of Graphene-Based Nanocomposites in a
Biodegradable Polymer. Effect of Modified Graphene on Properties of
Polypropylene Nanocomposites. Diffusion through Polymers Containing
Platelike Nanomaterials. Using Functionalized Graphene Sheets to Restrain
Chemically Driven Composite Aging. Graphene/Polymer Nanocomposites. Highly
Filled Graphite-Polymer Composites: Synthesis, Processing, and
Characterization.
Graphene: Theory and Applications. Different Characterization Techniques to
Evaluate Graphene and its Properties. Electrochemical Exfoliation: A
Cost-Effective Approach to Produce Graphene Nanoplatelets in Bulk
Quantities. Exfoliation of Graphite toward Graphene from Lab to Industry.
Graphene-Based Materials for Clean Energy Applications. Electrochemistry of
Graphene-Based Nanomaterials. Graphene-Polymer Composites for Pulse Lasers.
Epoxy Nanocomposites: Graphene a Promising Filler. Nanoparticles and
Polymer Nanocomposites. Polymer-Functionalized Graphene via Atom Transfer
Radical Polymerization Route for Graphene-Based Polymer Nanocomposites.
Synthesis and Properties of Graphene-Based Nanocomposites in a
Biodegradable Polymer. Effect of Modified Graphene on Properties of
Polypropylene Nanocomposites. Diffusion through Polymers Containing
Platelike Nanomaterials. Using Functionalized Graphene Sheets to Restrain
Chemically Driven Composite Aging. Graphene/Polymer Nanocomposites. Highly
Filled Graphite-Polymer Composites: Synthesis, Processing, and
Characterization.
Graphite: Structure, Properties, and Applications. Electronic Transport in
Graphene: Theory and Applications. Different Characterization Techniques to
Evaluate Graphene and its Properties. Electrochemical Exfoliation: A
Cost-Effective Approach to Produce Graphene Nanoplatelets in Bulk
Quantities. Exfoliation of Graphite toward Graphene from Lab to Industry.
Graphene-Based Materials for Clean Energy Applications. Electrochemistry of
Graphene-Based Nanomaterials. Graphene-Polymer Composites for Pulse Lasers.
Epoxy Nanocomposites: Graphene a Promising Filler. Nanoparticles and
Polymer Nanocomposites. Polymer-Functionalized Graphene via Atom Transfer
Radical Polymerization Route for Graphene-Based Polymer Nanocomposites.
Synthesis and Properties of Graphene-Based Nanocomposites in a
Biodegradable Polymer. Effect of Modified Graphene on Properties of
Polypropylene Nanocomposites. Diffusion through Polymers Containing
Platelike Nanomaterials. Using Functionalized Graphene Sheets to Restrain
Chemically Driven Composite Aging. Graphene/Polymer Nanocomposites. Highly
Filled Graphite-Polymer Composites: Synthesis, Processing, and
Characterization.
Graphene: Theory and Applications. Different Characterization Techniques to
Evaluate Graphene and its Properties. Electrochemical Exfoliation: A
Cost-Effective Approach to Produce Graphene Nanoplatelets in Bulk
Quantities. Exfoliation of Graphite toward Graphene from Lab to Industry.
Graphene-Based Materials for Clean Energy Applications. Electrochemistry of
Graphene-Based Nanomaterials. Graphene-Polymer Composites for Pulse Lasers.
Epoxy Nanocomposites: Graphene a Promising Filler. Nanoparticles and
Polymer Nanocomposites. Polymer-Functionalized Graphene via Atom Transfer
Radical Polymerization Route for Graphene-Based Polymer Nanocomposites.
Synthesis and Properties of Graphene-Based Nanocomposites in a
Biodegradable Polymer. Effect of Modified Graphene on Properties of
Polypropylene Nanocomposites. Diffusion through Polymers Containing
Platelike Nanomaterials. Using Functionalized Graphene Sheets to Restrain
Chemically Driven Composite Aging. Graphene/Polymer Nanocomposites. Highly
Filled Graphite-Polymer Composites: Synthesis, Processing, and
Characterization.