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by Semkin A. O., Visakh P. M.
High Performance Polymers and Their Nanocomposites
Cover
Title page
Copyright page
Preface
Chapter 1: High-Performance Polymer Nanocomposites and Their Applications: State of Art and New Challenges
1.1 Liquid Crystal Polymers
1.2 Polyamide 4, 6, (PA4,6)
1.3 Polyacrylamide
1.4 Effect of Nanostructured Polyhedral Oligomeric Silsesquioxone on High Performance Poly(urethane-Imide)
1.5 Thermoplastic Polyimide
1.6 Performance Properties and Applications of Polytetrafluoroethylene (PTFE)
1.7 Advances in High-Performance Polymers Bearing Phthalazinone Moieties
1.8 Poly(ethylene Terephthalate)—PET and Poly(ethylene Naphthalate)—PEN
1.9 High-Performance Oil Resistant Blends of Ethylene Propylene Diene Monomer (EPDM) and Epoxydized Natural Rubber (ENR)
1.10 High Performance Unsaturated Polyester/f-MWCNTs Nanocomposites Induced by F- Graphene Nanoplatelets
References
Chapter 2: Liquid Crystal Polymers
2.1 Introduction and History
2.2 Polymerization
2.3 Properties
2.4 Processing
2.5 Blends Based on Liquid Crystal Polymers
2.6 Composites of Liquid Crystal Polymers
2.7 Applications
2.8 Environmental Impact and Recycling
2.9 Concluding Remarks and Future Trends
Acknowledgment
References
Chapter 3: Polyamide 4,6, (PA4,6)
3.1 Introduction and History
3.2 Polymerization and Fabrication
3.3 Properties
3.4 Chemical Stability
3.5 Compounding and Special Additives
3.6 Processing
3.7 Applications
3.8 Blends of Polyamide 4,6, (PA4,6)
3.9 Composites of Polyamide 4,6, (PA4,6)
3.10 Nanocomposites of Polyamide 4,6, (PA4,6)
3.11 Environmental Impact and Recycling
3.12 Conclusions
References
Chapter 4: Polyacrylamide (PAM)
4.1 Introduction and History
4.2 Polymerization and Fabrication
4.3 Properties
4.4 Chemical Stability
4.5 Compounding and Special Additives
4.6 Processing
4.7 Applications
4.8 Blends of Polyacrylamide
4.9 Composites of Polyacrylamide
4.10 Nanocomposites of Polyacrylamide
4.11 Environmental Impact and Recycling
4.12 Conclusions
References
Chapter 5: Effect of Nanostructured Polyhedral Oligomeric Silsesquioxone on High Performance Poly(urethane-imide)
5.1 Introduction
5.2 Experimental
5.3 Results and Discussion
5.4 Conclusions
References
Chapter 6: Thermoplastic Polyimide (TPI)
6.1 Introduction and History
6.2 Polymerization and Fabrication
6.3 Properties
6.4 Chemical Stability
6.5 Compounding
6.6 Processing
6.7 Applications
6.8 Blends of Thermoplastic Polyimide (TPI)
6.9 Composites of Thermoplastic Polyimide (TPI)
6.10 Nanocomposites of Thermoplastic Polyimide (TPI)
6.11 Environmental Impact and Recycling
6.12 Conclusions
References
Chapter 7: Advances in High-Performance Polymers Bearing Phthalazinone Moieties
7.1 Introduction
7.2 A New Mmonomer: 1, 2-Dihydro-4-(4-hydroxyphenyl)-1-(2H)-phthalazinone
7.3 Synthesis and Properties of Phthalazinone-Containing Poly(aryl ether)s
7.4 Polyamides and Polyimides Containing Phthalazinone Moieties
7.5 Phthalazinone-Containing Polyarylates
7.6 Phthalazinone-Containing Polybenzimidazole
7.7 Conclusions and Prospects
Acknowledgments
References
Chapter 8: Poly(ethylene terephthalate)—PET and Poly(ethylene naphthalate)—PEN
8.1 Introduction
8.2 Synthesis of PET and PEN
8.3 Processing of Neat Polymers
8.4 Nanocomposites
8.5 Nanocomposites Production Processes
8.6 Structural and Functional Properties
References
Chapter 9: High-Performance Oil/Fuel-Resistant Blends of Ethylene Propylene Diene Monomer (EPDM) and Epoxidized Natural Rubber (ENR)
9.1 Introduction
9.2 Experimental
9.3 Result and Discussion
9.4 Summary and Conclusions
Acknowledgement
References
Chapter 10: High-Performance Unsaturated Polyester/f-MWCNTs Nanocomposites Induced by f-Graphene Nanoplatelets
10.1 Introduction and History
10.2 Nanocomposites of UPE
Conclusion and Future Challenges
References
Index
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