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Updated: Mar 29, 2026

Molecular Entanglement and Electrospinnability of Biopolymers
Published on: September 3, 2014
Elucidating the improvement of starch drinking straws synergized by cationic polysaccharides: Structure,
Guoqing Wang1, Lu Lu1, Feixue Zou1
1State Key Laboratory of Green Papermaking and Resource Recycling, Shandong Key Laboratory of Healthy Food Resources Exploration and Creation, School of Food Sciences and Engineering, Qilu University of Technology (Shandong Academy of Sciences), Jinan, China.
Background:
With the implementation of plastic restriction policies and increasing environmental awareness, there is an urgent demand for starch-based straws as alternatives to traditional plastic straws. In this study, three cationic polysaccharides, namely chitosan (CTS), chitosan oligosaccharide (COS), and cationic guar gum (CGG), were selected to prepare starch straws via thermoplastic extrusion.
Results:
The results indicated that cationic polysaccharides enhanced the mechanical properties, hydrophobicity, compatibility, and short-range order of the starch straws. Mechanistic analyses revealed the presence of hydrogen bonding and electrostatic interactions between starch and polysaccharides. Gaussian fitting indicated that the hydrogen bonding was dominated by OH⋯O. Among the samples, S-COS exhibited the highest interaction energy (-58.94 kcal mol-1), complex index (598.3 g kg-1), and inter-strand hydrogen bond energy (9.805 kcal mol-1). Consequently, S-COS displayed the highest flexural strength, optimal flexural strain at break, and lower water absorption rate and swelling degree. S-CGG demonstrated better flexibility and lowest water absorption. Additionally, after 150 days of storage, the surface of the starch-polysaccharide straws remained uniform without cracks.
Conclusion:
Our results demonstrated that starch-polysaccharide straws possessed excellent mechanical properties and water resistance, providing a theoretical basis for the development and industrial application of high-performance starch-based materials. © 2026 Society of Chemical Industry.
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