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Functional Properties of Kenaf Bast Fibre Anhydride Modification Enhancement with Bionanocarbon in Polymer Nanobiocomposites

The miscibility between hydrophilic biofibre and hydrophobic matrix has been a challenge in developing polymer biocomposite. This study investigated the anhydride modification effect of propionic and succinic anhydrides on Kenaf fibre’s functional properties in vinyl ester bionanocomposites. Bionano...

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Autores principales: Rizal, Samsul, H.P.S., Abdul Khalil, Mistar, E. M., Olaiya, Niyi Gideon, Muksin, Umar, Marwan, Marwan, Ikramullah, Suriani, A. B., Abdullah, C. K., Alfatah, Tata
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8659641/
https://www.ncbi.nlm.nih.gov/pubmed/34883716
http://dx.doi.org/10.3390/polym13234211
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author Rizal, Samsul
H.P.S., Abdul Khalil
Mistar, E. M.
Olaiya, Niyi Gideon
Muksin, Umar
Marwan, Marwan
Ikramullah,
Suriani, A. B.
Abdullah, C. K.
Alfatah, Tata
author_facet Rizal, Samsul
H.P.S., Abdul Khalil
Mistar, E. M.
Olaiya, Niyi Gideon
Muksin, Umar
Marwan, Marwan
Ikramullah,
Suriani, A. B.
Abdullah, C. K.
Alfatah, Tata
author_sort Rizal, Samsul
collection PubMed
description The miscibility between hydrophilic biofibre and hydrophobic matrix has been a challenge in developing polymer biocomposite. This study investigated the anhydride modification effect of propionic and succinic anhydrides on Kenaf fibre’s functional properties in vinyl ester bionanocomposites. Bionanocarbon from oil palm shell agricultural wastes enhanced nanofiller properties in the fibre-matrix interface via the resin transfer moulding technique. The succinylated fibre with the addition of the nanofiller in vinyl ester provided great improvement of the tensile, flexural, and impact strengths of 92.47 ± 1.19 MPa, 108.34 ± 1.40 MPa, and 8.94 ± 0.12 kJ m(−2), respectively than the propionylated fibre. The physical, morphological, chemical structural, and thermal properties of bionanocomposites containing 3% bionanocarbon loading showed better enhancement properties. This enhancement was associated with the effect of the anhydride modification and the nanofiller’s homogeneity in bionanocarbon-Kenaf fibre-vinyl ester bonding. It appears that Kenaf fibre modified with propionic and succinic anhydrides incorporated with bionanocarbon can be successfully utilised as reinforcing materials in vinyl ester matrix.
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spelling pubmed-86596412021-12-10 Functional Properties of Kenaf Bast Fibre Anhydride Modification Enhancement with Bionanocarbon in Polymer Nanobiocomposites Rizal, Samsul H.P.S., Abdul Khalil Mistar, E. M. Olaiya, Niyi Gideon Muksin, Umar Marwan, Marwan Ikramullah, Suriani, A. B. Abdullah, C. K. Alfatah, Tata Polymers (Basel) Article The miscibility between hydrophilic biofibre and hydrophobic matrix has been a challenge in developing polymer biocomposite. This study investigated the anhydride modification effect of propionic and succinic anhydrides on Kenaf fibre’s functional properties in vinyl ester bionanocomposites. Bionanocarbon from oil palm shell agricultural wastes enhanced nanofiller properties in the fibre-matrix interface via the resin transfer moulding technique. The succinylated fibre with the addition of the nanofiller in vinyl ester provided great improvement of the tensile, flexural, and impact strengths of 92.47 ± 1.19 MPa, 108.34 ± 1.40 MPa, and 8.94 ± 0.12 kJ m(−2), respectively than the propionylated fibre. The physical, morphological, chemical structural, and thermal properties of bionanocomposites containing 3% bionanocarbon loading showed better enhancement properties. This enhancement was associated with the effect of the anhydride modification and the nanofiller’s homogeneity in bionanocarbon-Kenaf fibre-vinyl ester bonding. It appears that Kenaf fibre modified with propionic and succinic anhydrides incorporated with bionanocarbon can be successfully utilised as reinforcing materials in vinyl ester matrix. MDPI 2021-12-01 /pmc/articles/PMC8659641/ /pubmed/34883716 http://dx.doi.org/10.3390/polym13234211 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Rizal, Samsul
H.P.S., Abdul Khalil
Mistar, E. M.
Olaiya, Niyi Gideon
Muksin, Umar
Marwan, Marwan
Ikramullah,
Suriani, A. B.
Abdullah, C. K.
Alfatah, Tata
Functional Properties of Kenaf Bast Fibre Anhydride Modification Enhancement with Bionanocarbon in Polymer Nanobiocomposites
title Functional Properties of Kenaf Bast Fibre Anhydride Modification Enhancement with Bionanocarbon in Polymer Nanobiocomposites
title_full Functional Properties of Kenaf Bast Fibre Anhydride Modification Enhancement with Bionanocarbon in Polymer Nanobiocomposites
title_fullStr Functional Properties of Kenaf Bast Fibre Anhydride Modification Enhancement with Bionanocarbon in Polymer Nanobiocomposites
title_full_unstemmed Functional Properties of Kenaf Bast Fibre Anhydride Modification Enhancement with Bionanocarbon in Polymer Nanobiocomposites
title_short Functional Properties of Kenaf Bast Fibre Anhydride Modification Enhancement with Bionanocarbon in Polymer Nanobiocomposites
title_sort functional properties of kenaf bast fibre anhydride modification enhancement with bionanocarbon in polymer nanobiocomposites
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8659641/
https://www.ncbi.nlm.nih.gov/pubmed/34883716
http://dx.doi.org/10.3390/polym13234211
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