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用于改善壳聚糖薄膜导电性、柔韧性和抗菌性能的气氛控制高压电喷雾。

Atmosphere-controlled high-voltage electrospray for improving conductivity, flexibility, and antibacterial properties of chitosan films.

作者信息

Yang Qi, Hu Yin, Wang Yuchuan, Xu Baoguo, Zhou Cunshan, Adhikari Benu, Liu Jiguang, Xu Tiantian, Wang Bo

机构信息

School of Food and Biological Engineering, Jiangsu University, 212013, Zhenjiang, Jiangsu, China.

School of Food Engineering, Jiangnan University, 214122 Wuxi, Jiangsu, China.

出版信息

Food Res Int. 2025 Jan;200:115450. doi: 10.1016/j.foodres.2024.115450. Epub 2024 Nov 30.

Abstract

Atmosphere-controlled high-voltage electrospray (AHES) was utilised to modify the structure of chitosan (CS) films. The applied voltage in the AHES process ranged from 60 to 100 kV, with variations in the O content of the propellant gas from 0 to 100 %. The number density of cations in the charging environment reached 600 × 10 cations/cm. Under these specific conditions, the one-step AHES procedure facilitated the protonation of the amine groups in the CS molecular chains, resulting in a notable increase in electrical conductivity by over 95 % and tensile elongation by over 100 %. The generation of reactive oxygen species during the AHES process also improved the antibacterial properties of the charged CS films, as evidenced by a more than 36 % increase in the inhibition zone diameter. The treated (AHES) films were employed for preserving fresh-cut muskmelon slices. These films maintained satisfactory sensory quality and effectively controlled water evaporation for up to 3 days when utilised as the inner layer of the packaging. These enhancements were achieved through a single-step AHES treatment, without the addition of chemicals or the need to alter the ambient temperature (25 °C ± 5°C). Consequently, AHES presents itself as a viable method for modifying the electrostatic characteristics of CS films and can be extended to various other materials.

摘要

采用气氛控制高压电喷雾(AHES)对壳聚糖(CS)薄膜的结构进行改性。AHES过程中的施加电压范围为60至100 kV,推进气体中的O含量从0%变化到100%。充电环境中阳离子的数密度达到600×10个阳离子/cm。在这些特定条件下,一步AHES程序促进了CS分子链中胺基的质子化,导致电导率显著提高超过95%,拉伸伸长率提高超过100%。AHES过程中活性氧的产生也改善了带电CS薄膜的抗菌性能,抑菌圈直径增加超过36%即为证明。经处理的(AHES)薄膜用于保存鲜切甜瓜片。当用作包装内层时,这些薄膜保持了令人满意的感官品质,并有效控制水分蒸发长达3天。这些增强效果通过一步AHES处理实现,无需添加化学物质或改变环境温度(25°C±5°C)。因此,AHES是一种可行的改性CS薄膜静电特性的方法,并且可以扩展到各种其他材料。

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