
Navigating Sustainability in Polymer Materials by Jomin Thomas
Navigating Sustainability in Polymer Materials: Principles, Practices, and Future Directions explores the evolving landscape of sustainable polymer science and offers a timely and comprehensive examination of one of the most pressing challenges facing the polymer industry today: how to embed sustainability at every stage of material design, development, and application. As global environmental concerns intensify and regulatory pressures increase, the demand for sustainable alternatives in polymers has never been greater. Organized into twelve focused chapters, it covers a diverse range of polymer classes and end-use sectors, including coatings, adhesives, elastomers, polyolefins, bioplastics, and synthetic fibers. Readers will explore sustainable practices in raw material selection, formulation strategies, product life cycle thinking, waste management, recycling technologies, and circular economy models.
Each chapter is authored or curated by experienced scientists and researchers from both academia and industry, ensuring the content reflects both scientific rigor and practical applicability. The result is a balanced blend of foundational principles, applied research, case studies, and emerging trends in sustainable polymer innovation. The book is designed for a wide audience: materials scientists, R&D professionals, chemical engineers, product developers, environmental consultants, academic researchers, and graduate students. It also serves as a valuable reference for policymakers and business leaders seeking to understand the evolving sustainability landscape in polymers.
Whether you're looking to deepen your expertise, guide strategic decision-making, or simply stay ahead of the curve, this book offers a rare, consolidated knowledge base and foresight to navigate the complexities of sustainability in polymer materials today—and tomorrow.
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Biopolymers from Plant Origin for Environmental Sustainability
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Tuning of Conducting Polymers
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Biopolymers
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Radiation Effects in Polymeric Materials
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Reinforcement of Rubber
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Molecularly Imprinted Polymers
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Lignin
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Carbon-Containing Polymer Composites
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Novel Bio-nanocomposites for Biomedical Applications
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Aquatic Biopolymers
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Hyperbranched Polymers for Biomedical Applications
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Polymer/POSS Nanocomposites and Hybrid Materials
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Nanomaterials Preparation by Thermolysis of Metal Chelates
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Polymeric Materials for Clean Water
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Cellulose Derivatives
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Lignocellulosic Composite Materials
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Keratin as a Protein Biopolymer
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Polyolefin Compounds and Materials
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Flexible and Stretchable Electronic Composites
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Smart Polymer Nanocomposites
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Conducting Polymer Hybrids
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Electrospun Nanofibers
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Nanocomposites for Visible Light-induced Photocatalysis
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Bio- and Nanosorbents from Natural Resources
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Polymeric Hydrogels as Smart Biomaterials
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Functional Biopolymers
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Microbial Exopolysaccharides as Novel and Significant Biomaterials
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Graphene-Based Polymer Nanocomposites in Electronics
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Two-Dimensional (2D) Nanomaterials in Separation Science
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Intumescent Coatings for Fire Protection of Building Structures and Materials
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Polyvinylchloride-based Blends
Dr. Jomin Thomas is a highly motivated polymer scientist and enthusiast experienced in working with polyurethane, acrylic polyol, alkyds, elastomers, and epoxides for polymer products such as coatings, composites, and tires. With an undergraduate degree in chemical engineering (2016) from Visvesvaraya National Institute of Technology (VNIT) and a Masters in polymer technology (2018) from Cochin University of Science and Technology (CUSAT), India, his passion for polymers started during his multiple polymer internships in India and Saudi Arabia. With a start-off to his industrial career as a researcher in Asian Paints, India he has worked on sustainable raw material synthesis for coatings. Following his PhD from the prestigious University of Akron’s Polymer Engineering program, he then worked at Tesla Nanocoatings which pioneered carbon nanotubes for Industrial coatings. He has also been the lead chemist at Nippon paint automotive Americas working on several novel sustainable coating technologies and currently works as the Principal R&D Scientist with Simiron, Inc developing innovative coatings and polymers for the floor coating industry. Dr. Thomas has years of global experience in the polymer industry authoring over 20 publications with multiple global corporations and academic institutions. He is also an active part of the industry wide substantiation efforts of biobased and sustainable polymers, and carbon footprint calculation and reduction guidelines.
Dr. Renuka Subhash Patil is a polymer formulation scientist with diverse experience in polymer adhesives, membranes, battery solutions, coatings, and composites. With an undergraduate degree in polymer and surface engineering technology (2017) from the Institute of Chemical Technology (ICT), followed by Polymer Engineering PhD from the prestigious University of Akron, her interests and research spanned across the fundamental adhesion science, membranes, sustainable composites, UV cure and functional coatings. With a start-off to her industrial career as an intern at 3M, India, she currently works as a Senior scientist at Henkel technologies concentrating on polymer solutions for the EV industry. Dr. Patil has authored over 10 publications on polymer membranes,coatings, polymer sustainability etc in addition to numerous patents on innovative technologies in adhesives and coatings alike. She is also an active part of the polymer coatings and adhesive industry developing new technologies to cater to the expanding EV market.
| SKU | Unavailable |
| ISBN 13 | 9783032049001 |
| ISBN 10 | 3032049008 |
| Title | Navigating Sustainability in Polymer Materials |
| Author | Jomin Thomas |
| Series | Springer Series On Polymer And Composite Materials |
| Condition | Unavailable |
| Binding Type | Hardback |
| Publisher | Springer Nature Switzerland AG |
| Year published | 2025-11-14 |
| Number of pages | 265 |
| Cover note | Book picture is for illustrative purposes only, actual binding, cover or edition may vary. |
| Note | Unavailable |






























