Development of cornstarch aerogels with high porosity and their impregnation with natural bioactive compounds Abstract

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Stoja Milovanović
Jelena Pajnik
Darka Marković
https://orcid.org/0000-0001-8707-195X
Ivona Janković - Častvan
Ivana Lukić
https://orcid.org/0000-0001-6406-5813

Abstract

Aerogels are materials with high specific surface area and high porosity, which can be produced from polysaccharides such as starch [1,2]. Starch is an abundant and low-cost polymer with versatility in processing. Aerogel properties are influenced by the process parameters including starch-to-water ratio, gelatinization temperature (T), selection of non-solvent for water replacement in hydrogels, selection of drying method, drying pressure (P) and T, etc. 

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How to Cite
[1]
S. . Milovanović, J. . Pajnik, D. . Marković, I. . Janković - Častvan, and I. . Lukić, “Development of cornstarch aerogels with high porosity and their impregnation with natural bioactive compounds: Abstract”, Hem Ind, vol. 78, no. 1S, p. 30, Mar. 2024, Accessed: Nov. 22, 2024. [Online]. Available: https://www.ache-pub.org.rs/index.php/HemInd/article/view/1273
Section
Polymer gels and composites for biomedical applications

How to Cite

[1]
S. . Milovanović, J. . Pajnik, D. . Marković, I. . Janković - Častvan, and I. . Lukić, “Development of cornstarch aerogels with high porosity and their impregnation with natural bioactive compounds: Abstract”, Hem Ind, vol. 78, no. 1S, p. 30, Mar. 2024, Accessed: Nov. 22, 2024. [Online]. Available: https://www.ache-pub.org.rs/index.php/HemInd/article/view/1273

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References

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I. Lukic, J. Pajnik, V. Tadic, S. Milovanovic. Supercritical CO2-assisted processes for development of added-value materials: Optimization of starch aerogels preparation and hemp seed extracts impregnation. J. of CO2 Utiliz. 2022; 61: 102036. https://doi.org/10.1016/j.jcou.2022.102036

S. Milovanovic, D. Markovic, I. Jankovic - Castvan, I. Lukic. Cornstarch aerogels with thymol, citronellol, carvacrol, and eugenol prepared by supercritical CO2- assisted techniques for potential biomedical applications. Carbohydr. Polym. 2024; in press

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