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High-Performance Polymers for Engineering-Based Composites
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- 408 pages
- English
- PDF
- Available on iOS & Android
eBook - PDF
High-Performance Polymers for Engineering-Based Composites
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Table of contents
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About This Book
High-Performance Polymers for Engineering-Based Composites presents a selection of investigations and innovative research in polymer chemistry and advanced materials. The book includes case studies in the field of nanocomposites. The volume provides coverage of new research in polymer science and engineering with applications in chemical engineerin
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Yes, you can access High-Performance Polymers for Engineering-Based Composites by Omari V. Mukbaniani, Marc J. M. Abadie, Tamara Tatrishvili in PDF and/or ePUB format, as well as other popular books in Biological Sciences & Science General. We have over one million books available in our catalogue for you to explore.
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Table of contents
- Front Cover
- About AAP Research Notes on Polymer Engineering Science and Technology
- Books in the AAP Research Notes on Polymer Engineering Science and Technology Series
- Contents
- List of Contributors
- List of Abbreviations
- Preface
- About the Editors
- Part 1: Application of Polymer Chemistry and Promising Technologies
- Chapter 1: Raft Polymerization of Acrylic Esters Using Novel Chain Transfer Agents on the Basis of Thiocompounds
- Chapter 2: Ring-Opening Polymerization of Vinylcyclopropanes
- Chapter 3: Synthesis of Metal Dithiophosphates on HLaУ and HУ Zeolites and Polymerization of 1,3-Butadiene with Heterogeneous Catalytic Dithiosystems
- Chapter 4: Polyacrylamide Hydrogels Obtained by Frontal Polymerization and their Properties
- Chapter 5: Novel Lanthanide Polycomplexes for Electroluminescent Devices
- Chapter 6: Novel Heterogenized Cobalt Containing Catalytic Dithiosystems for Gas Phase Polymerization of Butadiene
- Chapter 7: Electric Conducting Properties of Electrolytes Based on Some Olyorganosiloxanes with Different Functional Pendant Groups
- Chapter 8: The Improvement of the Quality of Lubricating Oils by Polymeric Compounds
- Chapter 9: Thermooxidative Degradation of the Low-Density Polyethylene in the Presence of Fullerenes С60/С70
- Chapter 10: Mutual Activation and High Selectivity of Polymeric Structures in Intergel Systems
- Chapter 11: Emission of Multi Charged Ions
- Chapter 12: Gradually Oriented State of the Linear Polymers
- Chapter 13: Method of Obtaining of Gradually Oriented Polymeric Films
- Chapter 14: Method of Production of Microcapsules
- Chapter 15: Investigation of Fulvic Acids Isolated from Natural Waters by the Thermal Analyze
- Chapter 16: Fulvic and Humin Acids in Surface Waters of Georgia
- Chapter 17: Side Chains Azobenzene Moieties in Polymethacrylates for Liquid Crystal Alignment
- Part 2: Engineered-Based Composites and Models
- Chapter 18: Preparation of Nanopolyaniline and Its Polymer-Polymer Nanocompositions with High and Stable Electric Conductivity
- Chapter 19: Synthesis of Bentonite and Diatomite-Containing Polymer Nanocomposites and Their Characteristics
- Chapter 20: Influence of Single-Wall Nanotubes on the Stability of Frontal Modes and Properties of Obtained Polymer Nanocomposites
- Chapter 21: Study of Influence of Ionic Additives on the Structural Changes of Water Nanocages Confined in the AOT Reverse Micelles
- Chapter 22: Synthesis and Characterization of a New Nano Composite
- Chapter 23: Organomineral Ionites
- Chapter 24: Zeolite Based Hybrid Cationites
- Chapter 25: Composite Materials Based on Coal Tar Pitch
- Chapter 26: Tools for Modeling Advanced Materials
- Chapter 27: Modeling of the Physical Mechanism of Activation (Opening) of Ion Channels in Nerve Impulse Transmission
- Chapter 28: Influence of the Phase Structure of Double and Triple Copolymers of Ethylene Modified by Glycidoxyalkoxysilane on the Properties of the Compositions
- Chapter 29: Phase Equilibrium and Diffusion in the Systems of Ethylene Copolymers – Aminopropyltriethoxysilane
- Chapter 30: Characterization of CS-Based Nanofibrous Web for Antibacterial Filter Applications
- Chapter 31: Thermal Curing of Composites Based Epoxy
- Back Cover