Engineered Polyvinyl Pyrrolidone Products by Microwave Techniques: Processing, Characterization, and Applications
Autor Pinki Pal, Gautam Sen, Jayprakash Prakash Pandeyen Limba Engleză Paperback – 2 iun 2025
- Explores the development of a variety of smart polymer derivatives with tailored properties
- Showcases the customization achieved through a simple, highly efficient, and cost-effective microwave radiation technique utilizing free radical polymerization reactions
- Features multiple applications of engineered polyvinyl pyrrolidone products across diverse fields
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Specificații
ISBN-13: 9780443315404
ISBN-10: 044331540X
Pagini: 300
Dimensiuni: 191 x 235 mm
Editura: ELSEVIER SCIENCE
ISBN-10: 044331540X
Pagini: 300
Dimensiuni: 191 x 235 mm
Editura: ELSEVIER SCIENCE
Cuprins
1. Introduction
2. Synthesis and characterization of graft copolymer
3. Application of graft copolymer in algal biomass harvesting
4. Application of graft copolymer in wastewater treatment
5. Application of graft copolymer as programmable water-soluble adhesive
6. Application of graft copolymer in wound healing (an ‘in vivo’ study)
7. Synthesis and characterization of crosslinked graft copolymer of PVP (hydrogel)
8. Application of crosslinked graft copolymer in metal ions removal
9. Synthesis and characterization of hydrolyzed graft copolymer
10. Application of hydrolyzed graft copolymer in destabilization of nanoparticle suspension
11. Conclusions and future directions
2. Synthesis and characterization of graft copolymer
3. Application of graft copolymer in algal biomass harvesting
4. Application of graft copolymer in wastewater treatment
5. Application of graft copolymer as programmable water-soluble adhesive
6. Application of graft copolymer in wound healing (an ‘in vivo’ study)
7. Synthesis and characterization of crosslinked graft copolymer of PVP (hydrogel)
8. Application of crosslinked graft copolymer in metal ions removal
9. Synthesis and characterization of hydrolyzed graft copolymer
10. Application of hydrolyzed graft copolymer in destabilization of nanoparticle suspension
11. Conclusions and future directions