Samenvatting
A novel synthetic approach to 2,6-bis(acrylamido)pyridine (BAAPy) has been developed, producing a dual-function monomer able to self-crosslink while providing functional binding sites through its amide and pyridine groups. The monomer's structure and purity were confirmed through NMR, FTIR, and HPLC analyses. Poly(BAAPy) was subsequently synthesized and employed in the purification of stilbenes, including t-resveratrol, t-ε-viniferin, and t-piceatannol, all extracted from grape canes. These stilbenes, widely recognized for their antioxidant, antifungal, and antimicrobial properties, are valuable phytochemicals. Grape canes, a by-product of grapevine pruning, serve as a natural and cost-effective source of these bioactive compounds. Using a single-step adsorption–desorption process with an ethanol–water solvent system, the method achieved a 13-fold enrichment of stilbenes with gravimetric purities over 37%. The dual functionality of BAAPy eliminates the need for external crosslinkers and enhances adsorption capacity.
| Originele taal-2 | English |
|---|---|
| Artikelnummer | 114142 |
| Tijdschrift | European Polymer Journal |
| Volume | 236 |
| DOI's | |
| Status | Published - 20 aug. 2025 |
Duurzame ontwikkelingsdoelstellingen van de VN
Deze output draagt bij aan de volgende duurzame ontwikkelingsdoelstelling(en)
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SDG 09 – Industrie, innovatie en infrastructuur
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SDG 12 – Verantwoordelijke consumptie en productie
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SDG 15 – Leven op het land
Keywords
- Bioactieve fytochemicaliën
- Duurzame valorisatie
- Poly(BAAPy)
- Zuivering van stilbeen
- Druivenrietextracten
- Adsorptie-desorptieproces
Research Focus Areas Hanze University of Applied Sciences
- Ondernemerschap
Research Focus Areas Research Centre or Centre of Expertise
- Biobased chemistry
Publinova thema's
- Overig
- Techniek
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