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A fundamental study of chitosan/PEO electrospinning
- Source :
- Polymer. 52:4813-4824
- Publication Year :
- 2011
- Publisher :
- Elsevier BV, 2011.
-
Abstract
- A highly deacetylated (97.5%) chitosan in 50% acetic acid was electrospun at moderate temperatures (25-70 °C) in the presence of a low content of polyethylene oxide (10 wt% PEO) to beadless nanofibers of 60-80 nm in diameter. A systematic quantitative analysis of the solution properties such as surface tension, conductivity, viscosity and acid concentration was conducted in order to shed light on the electrospinnability of this polysaccharide. Rheological properties of chitosan and PEO solutions were studied in order to explain how PEO improves the electrospinnability of chitosan. Positive charges on the chitosan molecule and its chain stiffness were considered as the main limiting factors for electrospinability of neat chitosan as compared to PEO, since surface tension and viscosity of the respective solutions were similar. Various blends of chitosan and PEO solutions with different component ratios were prepared (for 4 wt% total polymer content). A significant positive deviation from the additivity rule in the zero shear viscosity of chitosan/PEO blends was observed and believed to be a proof for strong hydrogen bonding between chitosan and PEO chains, making their blends electrospinnable. The impact of temperature and blend composition on the morphology and diameter of electrospun fibers was also investigated. Electrospinning at moderate temperatures (40-70 °C) helped to obtain beadless nanofibers with higher chitosan content. Additionally, it was found that higher chitosan content in the precursor blends led to thinner nanofibers. Increasing chitosan/PEO ratio from 50/50 to 90/10 led to a diameter reduction from 123 to 63 nm. Producing defect free nanofibrous mats from the electrospinning process and with high chitosan content is particularly promising for antibacterial film packaging and filtration applications. © 2011 Elsevier Ltd. All rights reserved.
- Subjects :
- Materials science
Zero shear viscosity
Polymers and Plastics
Polymer content
Positive charges
Nanofibers
Conductivity
Acetic acid
Hydrogen bonds
Defect-free
Surface tension
Chitosan
Blend composition
Viscosity
chemistry.chemical_compound
Rheology
Polymer blends
Moderate temperature
Limiting factors
Materials Chemistry
Viscometers
Electrospinnability
Composite material
Chitosan molecule
chemistry.chemical_classification
Electrospun fibers
Electrospinning
Polyethylene oxides
Acid concentrations
Organic Chemistry
Chain stiffness
Diameter reduction
Polymer
Solution property
Electrospinning process
Rheological property
chemistry
Chemical engineering
Additivity rules
Nanofiber
Electrospuns
Hydrogen
Textile blends
Subjects
Details
- ISSN :
- 00323861
- Volume :
- 52
- Database :
- OpenAIRE
- Journal :
- Polymer
- Accession number :
- edsair.doi.dedup.....80a98c146aae7ea8108ff82e582cc454