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用于可持续包装的仿生分层生态先进多功能薄膜。

Biomimetic layered, ecological, advanced, multi-functional film for sustainable packaging.

作者信息

Dhatt Puneet S, Hu Acadia, Hu Cheng, Huynh Vincent, Dai Susie Y, Yuan Joshua S

机构信息

Department of Energy, Environmental and Chemical Engineering, McKelvey School of Engineering, Washington University in St. Louis, St. Louis, MO, USA.

Carbon Utilization Redesign for Biomanufacturing (CURB) Engineering Research Center, St. Louis, MO, USA.

出版信息

Nat Commun. 2025 Jul 19;16(1):6649. doi: 10.1038/s41467-025-61693-2.

Abstract

Plastic pollution is one of most daunting sustainability challenges. Multi-functional and biodegradable plastics are critical for both desirable end-of-life outcomes and petrochemical plastics replacement. Current bioplastics are either: short of mechanical properties, like polyhydroxybutyrate (PHB); lack room temperature biodegradability, like polylactic acid (PLA); or lack the functionality to create additional values. Here, we present the bioinspired Layered, Ecological, Advanced, and multi-Functional Film (LEAFF), for sustainable plastic packaging. This biomimetic composite, based on the structure of the natural plant leaf, synergistically improves mechanical strength while empowering PLA for rapid ambient soil biodegradability, achieving complete degradation in 5 weeks. The film is also highly transparent and water stable, and achieves high gas barrier properties to improve food shelf life and reduce waste. The biomimetic design showcases the synergistic advantage leveraged by the LEAFF's multilayer structure to enhance mechanical performance while simultaneously retaining biodegradability and achieving multifunctionality for broad applications.

摘要

塑料污染是最严峻的可持续发展挑战之一。多功能且可生物降解的塑料对于实现理想的生命周期终结结果以及替代石化塑料至关重要。当前的生物塑料存在以下问题:要么机械性能不足,如聚羟基丁酸酯(PHB);要么缺乏室温生物降解性,如聚乳酸(PLA);要么缺乏创造额外价值的功能。在此,我们展示了受生物启发的分层、生态、先进和多功能薄膜(LEAFF),用于可持续塑料包装。这种基于天然植物叶片结构的仿生复合材料,在增强聚乳酸快速在环境土壤中生物降解能力的同时,协同提高机械强度,可在5周内实现完全降解。该薄膜还具有高透明度和水稳定性,并具有高气体阻隔性能,可延长食品保质期并减少浪费。这种仿生设计展示了LEAFF多层结构所利用的协同优势,以增强机械性能,同时保持生物降解性并实现广泛应用的多功能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f5af/12274478/a60d3d0e7ba1/41467_2025_61693_Fig1_HTML.jpg

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