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Gallic acid-grafted chitosan and pullulan as a hydrogen bonding assembled, multifunctional coating for fruit
Haihua Wang1, Jianxia Yao2, Ying Hou2
1Shaanxi University of Science and Technology, School of Chemistry and Chemical Engineering, Xue Fu Road, Wei yang District, Xi'an, Shaanxi Province, 710021, China; Xi'an Key Laboratory of Advanced Performance Materials and Polymers, Shaanxi University of Science and Technology, Xi'an, Shaanxi Province, 710021, China; Shaanxi Key Laboratory of Chemical Additives for Industry, Shaanxi University of Science and Technology, Xi'an, Shaanxi Province, 710021, China.
Abstract:
The development of eco-friendly and multifunctional edible coatings is crucial for mitigating postharvest losses of perishable fruits. Hence, a novel composite coating was engineered based on chitosan (CS) and pullulan (PUL) matrix, enhanced by a gallic acid-grafted chitosan (GS) conjugate synthesized through free radical grafting. The GS conjugate served as a multifunctional crosslinker, establishing a dense intermolecular network within the CS-PUL matrix primarily (CP) through hydrogen bonding, as confirmed by structural characterization. This molecular-level interaction significantly improved the mechanical strength (Tensile stress = 4.95 MPa, Elongation at break =121.21%) and barrier properties of the resulting coating. The chitosan/pullulan-gallic acid grafted chitosan (CP-GS) coating, applicable by spraying or dipping, exhibited remarkable antioxidant activity, achieving 97.8% DPPH radical scavenging (25 °C, 50% RH), the CP-GS coating significantly reduced weight loss, delayed the decline in titratable acidity, and effectively suppressed microbial growth, thereby extending the shelf life by 7 to 9 days compared to the uncoated samples. This study highlights the effectiveness of molecular grafting in designing advanced bio-based coatings and presents a promising strategy for fruit preservation using biological macromolecules.
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