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Shahab, Nasr
Publications (3 of 3) Show all publications
Shahab, N., Khalili, P., Westman, G. & Skrifvars, M. (2025). Cellulose Nanocrystal–Reinforced Polyvinyl Acetate Nanolatex for Viscose Fabric Prepregs and Composite Materials. Journal of Applied Polymer Science, Article ID e70051.
Open this publication in new window or tab >>Cellulose Nanocrystal–Reinforced Polyvinyl Acetate Nanolatex for Viscose Fabric Prepregs and Composite Materials
2025 (English)In: Journal of Applied Polymer Science, ISSN 0021-8995, E-ISSN 1097-4628, article id e70051Article in journal (Refereed) Published
National Category
Composite Science and Engineering
Identifiers
urn:nbn:se:hb:diva-34706 (URN)10.1002/app.70051 (DOI)001619948400001 ()2-s2.0-105022628562 (Scopus ID)
Available from: 2025-12-10 Created: 2025-12-10 Last updated: 2026-01-21Bibliographically approved
Shahab, N., Skrifvars, M., Khalili, P. & Westman, G. (2024). Colloidal Nanocomposite Latex of Nanocellulose and Poly (Vinyl Acetate) for Sustainable Barrier Coatings: An Alternative to Non-Degradable Plastics. In: : . Paper presented at Treesearch Progress 2024, Vildmarkshotellet, Kolmården October 9 – 10, 2024..
Open this publication in new window or tab >>Colloidal Nanocomposite Latex of Nanocellulose and Poly (Vinyl Acetate) for Sustainable Barrier Coatings: An Alternative to Non-Degradable Plastics
2024 (English)Conference paper, Oral presentation with published abstract (Other academic)
Abstract [en]

Nanocomposites of latex and nanocellulose represent a significant advancement in material science. The research explores the semi-batch approach for the synthesis of colloidal nanocomposite latexes, facilitating scalability and reproducibility. The urgent need to replace non-degradable plastics with sustainable alternatives has driven research towards biobased and biodegradable materials. The colloidal nanocomposite latex demonstrates potential as a coating for barrier applications. We have been conducting research on scalability of manufacturing colloidal nanocomposites of vinyl acetate and cellulose nanocrystals. Chemical bonds between poly (vinyl acetate) and CNCs, stability, swelling, drying rate, water vapor transition rate, and topography of the final film have been investigated. The colloidal nanocomposite demonstrates potential as a coating on cellulosic substrates such as paper and cardboard. The colloidal nature of the nanocomposite allows for uniform coating deposition, ensuring consistent barrier performance across the substrate surface. Higher drying rate and lower water vapor transition rate for certain periods measured for nanocomposites. There was no obvious aggregation for CNCs which have been extracted through sulfuric acid hydrolysis. The reduction of hydroxyl groups showed successful bonding between CNCs and poly (vinyl acetate). Immersing the films of nanocomposites in water showed stability of the film, while poly (vinyl acetate) film disintegrated by water adsorption. Cellulose nanocrystals changed the surface topography of the films, and the roughness increases by increasing the dosage of CNCs. This research contributes to the development of eco-friendly alternatives to non-degradable plastics, paving the way for a more sustainable future.

National Category
Bio Materials
Research subject
Resource Recovery
Identifiers
urn:nbn:se:hb:diva-33146 (URN)
Conference
Treesearch Progress 2024, Vildmarkshotellet, Kolmården October 9 – 10, 2024.
Available from: 2025-01-15 Created: 2025-01-15 Last updated: 2025-09-24Bibliographically approved
Shahab, N., Skrifvars, M., Khalili, P. & Westman, G. (2024). Colloidal Nanocomposite Latex of Nanocellulose and Poly (Vinyl Acetate) for Sustainable Barrier Coatings: An Alternative to Non-Degradable Plastics. In: : . Paper presented at Recent advances in cellulose nanotechnology research, Trondheim, Norway 11 – 12 September, 2024..
Open this publication in new window or tab >>Colloidal Nanocomposite Latex of Nanocellulose and Poly (Vinyl Acetate) for Sustainable Barrier Coatings: An Alternative to Non-Degradable Plastics
2024 (English)Conference paper, Oral presentation with published abstract (Other academic)
National Category
Bio Materials
Research subject
Resource Recovery
Identifiers
urn:nbn:se:hb:diva-33147 (URN)
Conference
Recent advances in cellulose nanotechnology research, Trondheim, Norway 11 – 12 September, 2024.
Available from: 2025-01-15 Created: 2025-01-15 Last updated: 2025-09-24Bibliographically approved
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