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用于食品包装应用的含Ce-UiO-66纳米颗粒的紫外线阻隔和机械增强淀粉薄膜。

UV-blocking and mechanically reinforced starch films incorporating Ce-UiO-66 nanoparticles for food packaging applications.

作者信息

Le Giang H, Thanh Duong A, Pham Trang T T, Tran Quang Vinh, Dao Nhiem Ngoc, Nguyen Kien Trung, Pham Són Tung, Quan Trang T T

机构信息

Institute of Chemistry, Vietnam Academy of Science and Technology 18 Hoang Quoc Viet Cau Giay Hanoi 100000 Vietnam

Graduate University of Science and Technology, Vietnam Academy of Science and Technology 18 Hoang Quoc Viet Cau Giay Hanoi 100000 Vietnam.

出版信息

RSC Adv. 2025 Aug 26;15(37):30415-30426. doi: 10.1039/d5ra03117f. eCollection 2025 Aug 22.

Abstract

Hazardous ultraviolet (UV) radiation found in sunlight can seep into food packaging and cause unfavorable physicochemical changes in food items. This study aimed to develop starch-based polymeric biofilms with UV-blocking capability by incorporating CeUiO-66 metal-organic framework nanoparticles (Ce66 NPs). These nanoparticles were synthesized a solvothermal method using formic acid as a modulator. A Box-Behnken design was used to optimize modulator concentration, reaction temperature, and time to maximize surface area and yield. Under optimal conditions, Ce66 NPs exhibited high crystallinity, an average particle size of 287 nm, a large surface area (832.20 m g), and a yield of 66.25%. The Ce66 NPs were incorporated into starch films (SCe, = 0.5-3.0 wt%) solution casting using glycerol as a plasticizer in an acetic acid medium. Although the addition of Ce66 NPs reduced film transparency, it significantly improved UV-blocking efficiency. Specifically, the SCe1 film blocked 83.5% UVA, 95.6% UVB, and 100% UVC radiation. Water vapor permeability decreased to 1.69 g mm m d kPa, and solubility dropped to one third compared to the control film. The tensile strength also increased from 2.2 MPa to 8.4 MPa. Moreover, Ce66 NPs exhibited notable photocatalytic activity, degrading up to 65% of RR195 dye under visible light. This dual functionality underscores the potential of Ce66 NPs for developing multifunctional biofilms for food packaging and environmental treatment.

摘要

阳光中存在的有害紫外线(UV)会渗入食品包装,并导致食品发生不利的物理化学变化。本研究旨在通过掺入CeUiO-66金属有机框架纳米颗粒(Ce66 NPs)来开发具有紫外线阻隔能力的淀粉基聚合物生物膜。这些纳米颗粒采用甲酸作为调节剂,通过溶剂热法合成。采用Box-Behnken设计优化调节剂浓度、反应温度和时间,以最大化表面积和产率。在最佳条件下,Ce66 NPs表现出高结晶度,平均粒径为287 nm,大表面积(832.20 m²/g),产率为66.25%。将Ce66 NPs掺入淀粉膜(SCe,含量 = 0.5 - 3.0 wt%)中,在乙酸介质中以甘油作为增塑剂通过溶液浇铸法制备。虽然添加Ce66 NPs降低了薄膜透明度,但显著提高了紫外线阻隔效率。具体而言,SCe1薄膜阻隔了83.5%的UVA、95.6%的UVB和100%的UVC辐射。与对照薄膜相比,水蒸气透过率降至1.69 g·mm/m²·d·kPa,溶解度降至三分之一。拉伸强度也从2.2 MPa增加到8.4 MPa。此外,Ce66 NPs表现出显著的光催化活性,在可见光下降解高达65%的RR195染料。这种双重功能突出了Ce66 NPs在开发用于食品包装和环境处理的多功能生物膜方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c638/12380046/87ee630f5ce7/d5ra03117f-f1.jpg

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