open access publication

Article, 2017

Electrospinning of Xanthan Polysaccharide

Macromolecular Materials and Engineering, ISSN 1522-9505, 0003-3146, 1438-7492, 1439-2054, Volume 302, 8, 10.1002/mame.201700067

Contributors

Shekarforoush, Elhamalsadat [1] Faralli, Adele [1] Ndoni, Sokol 0000-0002-6854-1909 [1] Mendes, Ana Carina Loureiro 0000-0002-6790-9185 [1] Chronakis, Ioannis S (Corresponding author) [1]

Affiliations

  1. [1] Technical University of Denmark
  2. [NORA names: DTU Technical University of Denmark; University; Denmark; Europe, EU; Nordic; OECD]

Abstract

Electrospun pure xanthan polysaccharide nanofibers are prepared using formic acid as a solvent. Morphological studies by scanning electron microscopy show that uniform fibers with average diameters ranging from 128 ± 36.7 to 240 ± 80.7 nm are formed depending on the polysaccharide concentration (0.5 to 2.5 wt/vol%). The correlation between the concentration and the rheological properties of xanthan solutions, with the morphology of the nanofibers is investigated. At the polysaccharide concentrations where nanofiber formation is observed, an increase of the elastic modulus and first normal stress differences is observed. The typical “weak gel‐like” and thixotropic properties known for aqueous xanthan solutions, are not observed for the xanthan solutions in formic acid. The Fourier transform infrared spectroscopic and circular dichroism studies verify that an esterification reaction takes place, where formic acid reacts with the pyruvic acid groups of xanthan. Hence, formate groups neutralize the pyruvic charges which in turn stabilize the helical conformation of xanthan. The results obtained from size‐exclusion chromatography reveal a small difference in the molecular weight of the polysaccharide when dissolved in distilled water or in formic acid. image

Keywords

Fourier, Fourier transform infrared, acid, aqueous xanthan solutions, average diameter, charge, chromatography, circular dichroism studies, concentration, conformation of xanthan, correlation, diameter, dichroism studies, differences, distilled water, elastic modulus, electron microscopy, esterification, esterification reaction, fibers, formate groups, formation, formic acid, gel-like, group, helical conformation, increase, infrared, microscopy, modulus, molecular weight, morphological studies, morphology, nanofiber formation, nanofibers, normal stress difference, polysaccharide concentration, polysaccharide nanofibers, polysaccharides, properties, pyruvic acid groups, reaction, results, rheological properties, scanning electron microscopy, size exclusion chromatography, solution, solvent, stress difference, study, thixotropic properties, transform infrared, uniform fibers, uniformity, water, weak gel-like, weight, xanthan, xanthan solutions

Funders

  • Danish National Research Foundation
  • Innovation Fund Denmark

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