W. Z. Chen, Ming Ni, Wenxue Li, Ying Shi, H JIANG
Chitosan (CS) films were enhanced by incorporating varying volumes of loquat peel extract (LPE) to address limitations in mechanical strength and antioxidant capacity. The CS/LPE films showed remarkable improvement in elongation at break (increasing from 12.71 to 33.12%) and barrier properties, with CS/20LPE achieving a 44.5% reduction in water vapor permeability (5.31 × 10 –11 g/(m·Pa·s)) and 77.6% lower oxygen transmission (1.04 × 10 –6 g·mm/(m 2 ·s)). Characterization confirmed hydrogen bonding between CS and LPE components induces molecular rearrangement (XRD), denser morphology (SEM), and enhanced intermolecular interactions (FTIR/XPS). XPS analysis revealed significant linear correlations between C–OH/C–N content and mechanical properties ( R 2 = 0.99), directly evidencing hydrogen bonding’s role. HPLC-TOF-MS/MS identified 14 bioactive constituents in LPE, demonstrating 58.78% DPPH and 60.74% ABTS scavenging rates with 99% antimicrobial inhibition against E. coli / S. aureus . The films achieved complete biodegradation within 40 days and extended fresh-cut cantaloupe shelf life by 7 days, advancing sustainable packaging through agricultural waste valorization.