Issue 28, 2025

Green synthesis of scalable non-soluble hydrogels: rapid transesterification of maltodextrin with dimethylcarbonate using DABCO/DMSO

Abstract

This study presents novel synthetic approaches and catalysts to improve selectivity and energy efficiency, leveraging renewable feedstocks. Hydrogels, valued for their dynamic composition and versatile three-dimensional structure, hold significant promise in controlled release systems. Our investigation focuses on the synthesis of water-insoluble crosslinked hydrogels, particularly maltodextrin-based polymers, guided by green chemistry principles. Utilizing organocatalysis, notably 1,4-diazabicyclo[2.2.2]octane, and dimethylcarbonate as environmentally friendly alternatives, we demonstrate a synthesis pathway that minimizes waste and hazardous byproducts. This work aligns with the tenets of green chemistry, promoting sustainable chemistry practices while mitigating environmental impact.

Graphical abstract: Green synthesis of scalable non-soluble hydrogels: rapid transesterification of maltodextrin with dimethylcarbonate using DABCO/DMSO

Supplementary files

Article information

Article type
Paper
Submitted
29 Apr 2025
Accepted
20 Jun 2025
First published
01 Jul 2025
This article is Open Access
Creative Commons BY-NC license

Green Chem., 2025,27, 8649-8659

Green synthesis of scalable non-soluble hydrogels: rapid transesterification of maltodextrin with dimethylcarbonate using DABCO/DMSO

M. M. H. Desoky, G. Hoti, A. Tsaturyan, C. Cecone, F. Caldera and F. Trotta, Green Chem., 2025, 27, 8649 DOI: 10.1039/D5GC02156A

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