Electrospun PVA nanofibers reinforced with chitosan and alginate biopolymers: Optimization of formulation and processing parameters for biomedical applications

This study investigates the development of poly(vinyl alcohol) (PVA)-based nanofibers reinforced with chitosan (CTS) and alginate (ALG), focusing on their structural and functional properties. Neat PVA, PVA/CTS, and PVA/ALG nanofibers were fabricated by electrospinning under varying parameters: PVA concentration (2–10 wt%), voltage (23–29 kV), feed rate (0.09–0.3 mL·h −1 ), and tip-to-collector distance (13–19 cm). Morphological analysis by SEM showed that within the investigated processing range, the most favorable morphology for PVA nanofibers was obtained around 6 wt% PVA, 29 kV, 0.3 mL·h −1 , and 19 cm, resulting in uniform, bead-free nanofibers with an average diameter of approximately 192 nm. The incorporation of 3 wt% CTS enhanced morphology and mechanical strength due to hydrogen bonding between –OH (PVA) and –NH 2 (CTS) groups, yielding flexible nanofibers (≈131 nm). Higher CTS content caused brittleness from restricted chain mobility. Conversely, ALG addition did not improve fiber quality, likely due to poor spinnability. The most favorable PVA, PVA/CTS, and PVA/ALG formulations identified within the investigated experimental domain exhibited improved structural integrity and mechanical performance, highlighting their potential for antibacterial materials, food packaging, and wound dressing applications.

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Journal
Proceedings of the Institution of Mechanical Engineers Part L Journal of Materials Design and Applications
Published
2026-09-21
DOI
https://doi.org/10.1177/14644207261488022
Primary Topic
Electrospun Nanofibers in Biomedical Applications
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article
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Electrospun PVA nanofibers reinforced with chitosan and alginate biopolymers: Optimization of formulation and processing parameters for biomedical applications

Khmais Zdiri, Floriane Leclinche
Proceedings of the Institution of Mechanical Engineers Part L Journal of Materials Design and Applications
Electrospun Nanofibers in Biomedical Applications
article

Electrospun PVA nanofibers reinforced with chitosan and alginate biopolymers: Optimization of formulation and processing parameters for biomedical applications

Khmais Zdiri, Floriane Leclinche
article en

Abstract

This study investigates the development of poly(vinyl alcohol) (PVA)-based nanofibers reinforced with chitosan (CTS) and alginate (ALG), focusing on their structural and functional properties. Neat PVA, PVA/CTS, and PVA/ALG nanofibers were fabricated by electrospinning under varying parameters: PVA concentration (2–10 wt%), voltage (23–29 kV), feed rate (0.09–0.3 mL·h −1 ), and tip-to-collector distance (13–19 cm). Morphological analysis by SEM showed that within the investigated processing range, the most favorable morphology for PVA nanofibers was obtained around 6 wt% PVA, 29 kV, 0.3 mL·h −1 , and 19 cm, resulting in uniform, bead-free nanofibers with an average diameter of approximately 192 nm. The incorporation of 3 wt% CTS enhanced morphology and mechanical strength due to hydrogen bonding between –OH (PVA) and –NH 2 (CTS) groups, yielding flexible nanofibers (≈131 nm). Higher CTS content caused brittleness from restricted chain mobility. Conversely, ALG addition did not improve fiber quality, likely due to poor spinnability. The most favorable PVA, PVA/CTS, and PVA/ALG formulations identified within the investigated experimental domain exhibited improved structural integrity and mechanical performance, highlighting their potential for antibacterial materials, food packaging, and wound dressing applications.

Proceedings of the Institution of Mechanical Engineers Part L Journal of Materials Design and Applications
University of Monastir (TN), Université de Haute-Alsace (FR)
Openalex Percentile: Top 22%
Electrospun Nanofibers in Biomedical Applications
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Electrospun PVA nanofibers reinforced with chitosan and alginate biopolymers: Optimization of formulation and processing parameters for biomedical applications — Khmais Zdiri, Floriane Leclinche · Proceedings of the Institution of Mechanical Engineers Part L Journal of Materials Design and Applications (2026) | TGRS Research Map | TGRS