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Full Description
Fundamentals of Plasma-Polymer Interactions bridges the gap between theoretical knowledge and practical application, offering a comprehensive overview of the complex interaction between plasma and polymers. With a special emphasis on the mechanism of chemical reactions in the plasma polymerization process, the chemical structure of plasma polymers, and the latest advancements in plasma polymerization technology and applications, the book provides a thorough exploration of this subject. The book begins by discussing radiation generation, damage mechanisms in polymers, and molecular-level interactions to establish a fundamental understanding of plasma-polymer interactions. It then thoroughly describes radiation processing techniques, plasma polymerization mechanisms, and practical examples illustrating how plasma irradiation affects polymer properties, synthesis methods, and physical characteristics. The chapters also explore the diverse applications of plasma polymers across various industries and provide insights into future research directions, challenges, emerging trends, and the scale up processes to industrial applications. By offering a comprehensive review of plasma-enhanced processing and modification of polymers, the book serves as an ideal entry point for researchers engaged in interdisciplinary studies and as a guide for professionals interested in the utilization of plasma-processed polymers in various industries.
Contents
Part I. Introduction
1. Radiation Generation and Characteristics
2. Introduction to Radiation Damage in Materials
3. Interaction of Radiation with Polymers
Part II. Methods
4. Plasma-Polymer Interactions
5. Radiation and Plasma Processing Techniques of Polymers
6. Plasma Polymerization on Polymer Substrates. Mechanisms and Applications
7. Modelling and Simulation Approach
Part III. Case Studies and Applications
8. Effects of Plasma Irradiation on Polymer Properties
9. Polymer Synthesis by Plasma Processing Technique
10. Impact of Radiation Damage on Physical Properties of Polymers
11. Effect of Irradiation Parameters on Mechanical, Thermal, and Optical Properties of Polymers
12. Characterization of Plasma-Irradiated Polymers
13. Radiation Dosimetry and Measurement Techniques
14. Applications of Plasma Irradiation in Polymer Science and Engineering
15. Impact of Radiation on Polymer Applications and Advancements
Part IV. Future Research Directions
16. Challenges and Limitations in Plasma Irradiation of Polymers
17. Future Perspectives and Emerging Trends
18. Lab to Industry
19. Life Cycle Assessment (LCA)
20. Foreseeable Developments and the Future Landscape of Plasma Irradiation in Polymers



