Sustainable Hydrogels
Synthesis, Properties, and Applications
- 1 Edición - 11 de enero de 2023
- Última edición
- Editores: Sabu Thomas, Bhasha Sharma, Purnima Jain, Shashank Shekhar
- Idioma: Inglés
Sustainable Hydrogels: Synthesis, Properties and Applications highlights the development of sustainable hydrogels from various perspectives and covers a range of topics, includ… Leer más
Descripción
Descripción
Sustainable Hydrogels: Synthesis, Properties and Applications highlights the development of sustainable hydrogels from various perspectives and covers a range of topics, including the development and utilization of abundant and/or inexpensive biorenewable monomers to create hydrogels; the mimicry of variable properties inherent to successful commercial hydrogels; and the creation of bio-based hydrogels that are functional equivalents of fossil fuel-derived hydrogels with respect to their properties, yet are capable of benign degradation over much shorter timescales. Some of the challenges facing sustainable polymer chemistry are also discussed.
Puntos claves
Puntos claves
- Shifts the focus from theory to practice and demonstrates how the cradle-to-cradle approach support sustainability
- Includes discussion of life cycle assessments in the production and use of hydrogels
- Presents various materials for the production of hydrogels
De interès para
De interès para
Academic, Postgraduate researchers, and engineers and professionals within Industry
Índice
Índice
1. Hydrogels: An overview of the history, classification, principles, applications, and kinetics
2. Sustainable production of hydrogels
3. Characterization tools and techniques for sustainable hydrogels
4. Structure-property-function relationships of sustainable hydrogels
5. Nanohydrogels for achieving green economy
6. Peptide and protein-based hydrogels
7. Polysaccharide-based hydrogels
8. Eco-friendly and biodegradable cellulose hydrogels
9. Lignin-derived hydrogels
10. Sustainable polyester hydrogels
11. Carbon-based hydrogels
12. Bioinspired, biomimetic hydrogels
13. Sustainable hydrogels in food packaging systems
14. Sustainable hydrogels as an emerging material platform for water purification
15. Hydrogel-based vascular grafts: State of the art
16. Sustainable hydrogel-based cell therapy
17. Hydrogels and their combination with lipids and nucleotides
18. Complementing the circular economy with a life cycle assessment of sustainable hydrogels and their future prospects
2. Sustainable production of hydrogels
3. Characterization tools and techniques for sustainable hydrogels
4. Structure-property-function relationships of sustainable hydrogels
5. Nanohydrogels for achieving green economy
6. Peptide and protein-based hydrogels
7. Polysaccharide-based hydrogels
8. Eco-friendly and biodegradable cellulose hydrogels
9. Lignin-derived hydrogels
10. Sustainable polyester hydrogels
11. Carbon-based hydrogels
12. Bioinspired, biomimetic hydrogels
13. Sustainable hydrogels in food packaging systems
14. Sustainable hydrogels as an emerging material platform for water purification
15. Hydrogel-based vascular grafts: State of the art
16. Sustainable hydrogel-based cell therapy
17. Hydrogels and their combination with lipids and nucleotides
18. Complementing the circular economy with a life cycle assessment of sustainable hydrogels and their future prospects
Detalles del producto
Detalles del producto
- Edición: 1
- Última edición
- Publicado: 11 de enero de 2023
- Idioma: Inglés
Sobre los editores
Sobre los editores
ST
Sabu Thomas
Sabu Thomas is currently an Emeritus Professor of Mahatma Gandhi University, Kottayam, Kerala, India. He is the former Vice Chancellor of Mahatma Gandhi University and a Senior Professor of Christ University, Bangalore, India, as well as a visiting Professor at the Department of Chemical Sciences, University of Johannesburg, South Africa, Department of Chemical Engineering, Chulalongkorn University, Thailand, and an Adjunct Faculty in the Department of Polymer and Process Engineering, IIT Roorkee, India.
Afiliaciones y experiencia
Emeritus Professor, Mahatma Gandhi University, Kottayam, Kerala, IndiaBS
Bhasha Sharma
Dr. Bhasha Sharma is a visiting faculty member at University of Delhi, India. She holds a BSc in Polymer Sciences (2011) and a Ph.D. in Chemistry (2019) from University of Delhi. Dr. Sharma’s research focuses on topics such as graphene-based biopolymer nanocomposites, sustainable polymers, biodegradability, hydrogels, packaging materials, nanofillers, and advanced polysaccharide-based materials. Her work emphasizes the development of environmentally responsible polymer technologies and innovative materials for sustainable applications.
Afiliaciones y experiencia
Assistant Professor, University of Delhi, IndiaPJ
Purnima Jain
Dr. Purnima Jai is an Associate Professor in Department of Chemistry in Netaji Subhas University of Technology. She is the founder of laboratory “Advance Centre for Polymer Science in Department of Chemistry in NSUT. She has completed her M. Tech and Doctorate from Centre for Polymer Science & Technology, IIT Delhi. Besides teaching chemistry her general research interests are development and characterization of blends, alloys and nanocomposites of polymers.
Afiliaciones y experiencia
Associate Professor, Department of Chemistry, Netaji Subhas University of Technology, New Delhi, IndiaSS
Shashank Shekhar
Shashank Shekhar
Assistant Professor, Department of Chemistry, Netaji Subhas University of Technology, Delhi, India
Dr. Shashank Shekhar is currently an Assistant Professor at Netaji Subhas University of Technology and is also associated with the Quantum Research Centre of Excellence as Associate Director in the Department of Renewable Energy. He completed his PhD in Chemistry at the University of Delhi. Dr. Shekhar has been working on biopolymers and Schiff base metal complexes for the last 5 years and has published articles in reputed international journals.
Afiliaciones y experiencia
Assistant Professor, Department of Chemistry, Netaji Subhas University of Technology, Delhi, IndiaVer libro en ScienceDirect
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