Three-Dimensional Printed Mulberry Anthocyanin Combined with Chitosan/Hydroxyethyl Cellulose Bilayer Films for Quality Preservation of Litchi

Yan Li, Jingman Li, R. Xiong, Rui Lu, Md. Alomgir Hossen, Jianwu Dai, Suqing Li, Wen Qin, Yaowen Liu
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Abstract

In this study, a bilayer antibacterial chromogenic material has been prepared using chitosan (CS) and hydroxyethyl cellulose (HEC) as the inner substrates, mulberry anthocyanins (MA) as natural tracers, and titanium dioxide nanoparticles (nano-TiO2) as bacteriostatic agent for the outer layer. By investigating its apparent viscosity and suitability for three-dimensional (3D) printing, the optimal ratio of the substrates was determined to be CS:HEC = 3:3 (CH). The CH viscosity was observed to be moderate. The printing process was consistent with no breakage or clogging, and the printed image was of high stability, and not susceptible to collapse and diffusion. Scanning electron microscopy and infrared spectroscopy indicated that the intermolecular binding between the substances exhibited good compatibility. Nano-TiO2 was evenly distributed in the CH, and no agglomeration occurred. The inner membrane fill rates affected the overall performance of the chromogenic material, with strong inhibitory effects against Escherichia coli and Staphylococcus aureus at different temperatures, as well as strong color stability. The experimental results indicated that the double-layer antibacterial chromogenic material can, to a certain extent, extend the shelf life of litchi fruit and determine the extent of its freshness. Therefore, from this study, we can infer that the research and development of intelligent materials have a certain reference value.
三维打印桑花青素复合壳聚糖/羟乙基纤维素双层膜在荔枝品质保鲜中的应用
本研究以壳聚糖(CS)和羟乙基纤维素(HEC)为内底物,桑椹花青素(MA)为天然示踪剂,二氧化钛纳米粒子(nano-TiO2)为外层抑菌剂,制备了一种双层抗菌显色材料。通过考察其表观黏度和3D打印适用性,确定其最佳配比为CS:HEC = 3:3 (CH)。CH粘度适中。印刷过程一致,无破损、堵塞,印刷图像稳定性高,不易塌陷、扩散。扫描电镜和红外光谱分析表明,两种物质的分子间结合具有良好的相容性。纳米tio2在CH中分布均匀,未发生团聚现象。内膜填充率影响显色材料的整体性能,在不同温度下对大肠杆菌和金黄色葡萄球菌具有较强的抑制作用,颜色稳定性较强。实验结果表明,双层抗菌显色材料可以在一定程度上延长荔枝果实的保质期,决定荔枝果实的新鲜度。因此,从本研究中可以推断,智能材料的研究与开发具有一定的参考价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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