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Trends and applications in advanced polymeric materials
""Cover""; ""Title Page""; ""Copyright Page""; ""Contents""; ""Preface""; ""1 Polymer Nanocomposites and Coatings: The Game Changers""; ""1.1 Introduction""; ""1.2 Polymer Nanocomposites""; ""1.2.1 Types of Polymer Nanocomposites: Processing""; ""1.2.1.1 Equipment and Processing""; ""1.2.2 Polymer Property Enhancements""; ""1.2.3 Polymer Nanocomposite Structure and Morphology""; ""1.2.4 Characterization of Polymer Nanocomposites""; ""1.2.4.1 Morphological Testing""; ""1.2.4.2 Spectral Testing""; ""1.2.4.3 Testing""; ""1.2.5 Applications
""1.2.5.1 Nanocomposite Coatings: Focus PU-Clay Coatings""""1.3 Conclusions""; ""Acknowledgments""; ""References""; ""2 DGEBA Epoxy/CaCO3 Nanocomposites for Improved Chemical Resistance and Mechanical Properties for Coating Applications""; ""2.1 Introduction""; ""2.2 Experimental""; ""2.2.1 Preparation of Epoxy/CaCO3 Nanocomposites""; ""2.2.2 Preparation of Panels""; ""2.2.3 Preparation of Reagents for Chemical Resistance""; ""2.2.3.1 Artificial Seawater (ASW)""; ""2.2.4 Preparation of Films""; ""2.3 Characterization of Epoxy/CaCO3 Nanocomposite
""2.3.1 Fourier Transform Infrared (FTIR) Spectra""""2.3.2 Mechanical Properties""; ""2.3.2.1 Impact Resistance""; ""2.3.2.2 Scratch Hardness""; ""2.3.2.3 Adhesion and Flexibility Test""; ""2.3.2.4 Chemical Resistance Test""; ""2.3.2.5 Morphological Properties""; ""2.4 Results and Discussion""; ""2.4.1 FTIR Spectroscopic Analysis""; ""2.4.2 Studies on Mechenical Properties""; ""2.4.2.1 Impact Resistance""; ""2.4.2.2 Studies of Scratch Hardness""; ""2.4.2.3 Adhesion and Flexibility Test (Mandrel Bend Test)""; ""2.4.3 Studies on Chemical Resistance""; ""2.4.4 Morphological Studies
""2.5 Conclusion""""References""; ""3 An Industrial Approach to FRLS (Fire Retardant Low Smoke) Compliance in Epoxy Resin-Based Polymeric Products""; ""3.1 Introduction""; ""3.1.1 Incorporation of Additives""; ""3.2 Experimental""; ""3.3 Characterization, Results and Discussion""; ""3.4 Conclusion""; ""Acknowledgments""; ""References""; ""4 Polymer-Based Organic Solar Cell: An Overview""; ""4.1 Introduction""; ""4.2 Polymer Solar Cells: An Insight""; ""4.2.1 Why Polymer Solar Cells are Preferable""; ""4.3 Layer Stack Construction of Polymer Solar Cells
""4.4 Simple Working of a Polymer Solar Cell""""4.5 Life-Cycle Analysis (LCA)""; ""4.6 Current Condition of Polymer Solar Cells""; ""4.7 Materials Used for Developing PSC""; ""4.7.1 Synthesis of Polymer Materials""; ""4.7.1.1 Stille Cross-Coupling""; ""4.7.1.2 Suzuki Cross-Coupling""; ""4.7.1.3 Direct Arylation Polymerization""; ""4.7.1.4 Polymerization Rates""; ""4.7.2 Conjugated Polymers""; ""4.7.3 Side-Chain Influence in Polymers""; ""4.7.4 Purification""; ""4.8 Degradation and Stability of a PSC""; ""4.8.1 Physical Degradation""; ""4.8.1.1 Morphological Stability
Trends and applications in advanced polymeric materials
""Cover""; ""Title Page""; ""Copyright Page""; ""Contents""; ""Preface""; ""1 Polymer Nanocomposites and Coatings: The Game Changers""; ""1.1 Introduction""; ""1.2 Polymer Nanocomposites""; ""1.2.1 Types of Polymer Nanocomposites: Processing""; ""1.2.1.1 Equipment and Processing""; ""1.2.2 Polymer Property Enhancements""; ""1.2.3 Polymer Nanocomposite Structure and Morphology""; ""1.2.4 Characterization of Polymer Nanocomposites""; ""1.2.4.1 Morphological Testing""; ""1.2.4.2 Spectral Testing""; ""1.2.4.3 Testing""; ""1.2.5 Applications
""1.2.5.1 Nanocomposite Coatings: Focus PU-Clay Coatings""""1.3 Conclusions""; ""Acknowledgments""; ""References""; ""2 DGEBA Epoxy/CaCO3 Nanocomposites for Improved Chemical Resistance and Mechanical Properties for Coating Applications""; ""2.1 Introduction""; ""2.2 Experimental""; ""2.2.1 Preparation of Epoxy/CaCO3 Nanocomposites""; ""2.2.2 Preparation of Panels""; ""2.2.3 Preparation of Reagents for Chemical Resistance""; ""2.2.3.1 Artificial Seawater (ASW)""; ""2.2.4 Preparation of Films""; ""2.3 Characterization of Epoxy/CaCO3 Nanocomposite
""2.3.1 Fourier Transform Infrared (FTIR) Spectra""""2.3.2 Mechanical Properties""; ""2.3.2.1 Impact Resistance""; ""2.3.2.2 Scratch Hardness""; ""2.3.2.3 Adhesion and Flexibility Test""; ""2.3.2.4 Chemical Resistance Test""; ""2.3.2.5 Morphological Properties""; ""2.4 Results and Discussion""; ""2.4.1 FTIR Spectroscopic Analysis""; ""2.4.2 Studies on Mechenical Properties""; ""2.4.2.1 Impact Resistance""; ""2.4.2.2 Studies of Scratch Hardness""; ""2.4.2.3 Adhesion and Flexibility Test (Mandrel Bend Test)""; ""2.4.3 Studies on Chemical Resistance""; ""2.4.4 Morphological Studies
""2.5 Conclusion""""References""; ""3 An Industrial Approach to FRLS (Fire Retardant Low Smoke) Compliance in Epoxy Resin-Based Polymeric Products""; ""3.1 Introduction""; ""3.1.1 Incorporation of Additives""; ""3.2 Experimental""; ""3.3 Characterization, Results and Discussion""; ""3.4 Conclusion""; ""Acknowledgments""; ""References""; ""4 Polymer-Based Organic Solar Cell: An Overview""; ""4.1 Introduction""; ""4.2 Polymer Solar Cells: An Insight""; ""4.2.1 Why Polymer Solar Cells are Preferable""; ""4.3 Layer Stack Construction of Polymer Solar Cells
""4.4 Simple Working of a Polymer Solar Cell""""4.5 Life-Cycle Analysis (LCA)""; ""4.6 Current Condition of Polymer Solar Cells""; ""4.7 Materials Used for Developing PSC""; ""4.7.1 Synthesis of Polymer Materials""; ""4.7.1.1 Stille Cross-Coupling""; ""4.7.1.2 Suzuki Cross-Coupling""; ""4.7.1.3 Direct Arylation Polymerization""; ""4.7.1.4 Polymerization Rates""; ""4.7.2 Conjugated Polymers""; ""4.7.3 Side-Chain Influence in Polymers""; ""4.7.4 Purification""; ""4.8 Degradation and Stability of a PSC""; ""4.8.1 Physical Degradation""; ""4.8.1.1 Morphological Stability
Trends and applications in advanced polymeric materials
Unnikrishnan, Lakshmi (editor) / Nayak, Sanjay K. (editor) / Mohanty, Smita (editor)
2017
1 Online-Ressource
Includes index
Book
Electronic Resource
English
DDC:
620.1/92
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