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◆ ACS Nano2026-04-12· Postharvest

Dual-Function Metal–Phenolic Network-Capped Starch Nanoparticles for Postharvest Pesticide Removal and Produce Preservation

Tianyi Jin, Zhangmin Wan, Ivy Chiu, Song Yan, Gary Othniel Wijaya, Orlando J. Rojas, Keng C. Chou, Rickey Y. Yada, Tianxi Yang

原始摘要(英文原文)· Original abstract
to form a metal-phenolic network (MPN) and capping the MPN onto starch nanoparticles. Wash performance was evaluated using SNPs concentrations of 0.5-1.25 wt % and varying FTN loadings, and the best performance was obtained at 1.0 wt % SNPs with 0.25 mM FTN. Comprehensive evaluations on fresh produce demonstrated that the FTN@SNP wash significantly reduced a range of surface pesticide residues, achieving over 86% removal of thiabendazole as quantified by surface-enhanced Raman spectroscopy. The optimized formulation further achieved 93.51% and 89.03% removal of acetamiprid and imidacloprid, respectively, outperforming conventional wash solutions. Molecular dynamics simulations supported high pesticide-MPN affinity with binding energies of -32.40 kcal/mol (acetamiprid), -24.45 kcal/mol (imidacloprid), and -20.98 kcal/mol (thiabendazole), consistent with interactions dominated by π-π stacking, hydrogen bonding, and van der Waals forces. In addition, the wash solution helped maintain postharvest quality of both whole and fresh-cut produce over 15 days of storage, as reflected in the visual appearance, weight loss, titratable acidity, and total soluble solids. This dual-action approach highlights the potential of the FTN@SNPs wash as a sustainable, biodegradable, and scalable strategy to improve food safety and minimize postharvest losses across the fresh produce supply chain.
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Dual-Function Metal–Phenolic Network-Capped Starch Nanoparticles for Postharvest Pesticide Removal and Produce Preservation — 科研速览 Science Skim