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One-step enzymatic grafting of ferulic acid with cellulose to enhance matrices–fibres compatibility in bio-composites
- Source :
- Journal of Materials Science. 54:13314-13321
- Publication Year :
- 2019
- Publisher :
- Springer Science and Business Media LLC, 2019.
-
Abstract
- Bio-composites elaboration is limited by poor interfaces between cellulose and polymer matrices and the cellulose degradation. Achieving cellulose grafting with ferulic acid should enhance those resulting bio-composites mechanical properties. Therefore, a cellulose suspension was modified with ferulic acid using laccase under reaction conditions set at 60 °C, acetate buffer pH 5 for 24 h. Grafted cellulose fibrils were extruded in polypropylene-grafted maleic acid (PPgMA) for mechanical properties studies. Even if ferulic acid interacted with cellulose without any enzyme presence, the acid resilience was only detected for cellulose fibres modified with ferulic acid proving the surface grafting. Cellulose fibrillary lengths were unaffected by the enzymatic treatment suggesting a tiny coating. The resulting bio-composites had a Young modulus reduction of 12%. The elongation at maximal stress had 23% improvement, corresponding to a material mechanical resistance. This result was also confirmed by bio-composite elaboration with natural fibres under the same conditions. Ferulic acid and cellulose blends have improved the hardness properties of the resulting bio-composites with PP-PPgMA.
- Subjects :
- chemistry.chemical_classification
Laccase
Materials science
Maleic acid
020502 materials
Mechanical Engineering
02 engineering and technology
Polymer
engineering.material
Fibril
Ferulic acid
chemistry.chemical_compound
0205 materials engineering
chemistry
Coating
Chemical engineering
Mechanics of Materials
engineering
General Materials Science
Cellulose
Elongation
Subjects
Details
- ISSN :
- 15734803 and 00222461
- Volume :
- 54
- Database :
- OpenAIRE
- Journal :
- Journal of Materials Science
- Accession number :
- edsair.doi...........3abb5e243b95bbbd4d14d611f6cd0573
- Full Text :
- https://doi.org/10.1007/s10853-019-03832-x