Tailoring Hydrogel Structures: Investigating the Effects of Multistep Cellulose Defibrillation on Polyvinyl Alcohol Composites

Author:

de Lima Gabriel Goetten12ORCID,Aggio Bruno Bernardi3,Pedro Alessandra Cristina3,de Lima Tielidy A. de M.1,Magalhães Washington Luiz Esteves3ORCID

Affiliation:

1. Materials Research Institute, Technological University of the Shannon, N37HD68 Athlone, Ireland

2. Graduate Program in Engineering and Materials Science, Federal University of Parana, Curitiba 12516-410, Brazil

3. EMBRAPA Florestas, Colombo 83411-000, Brazil

Abstract

Defibrillating cellulose through various grinding steps and incorporating it into hydrogels introduces unique properties that warrant thorough exploration. This study investigates cellulose defibrillation at different steps (15–120) using an ultra-fine friction grinder, blended with high-molecular-weight polyvinyl alcohol (PVA), and crosslinked via freeze–thawing. A critical discovery is the influence of defibrillation on the hydrogel structure, as evidenced by reduced crystallinity, thermal degradation, and the enhanced swelling of PVA chains. Despite an increased elastic modulus of up to 120 steps, the synthesized material maintains remarkable strength under hydrated conditions, holding significant promise in biomaterial applications.

Funder

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior-Brasil

Publisher

MDPI AG

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