Institute of Biological and Medical Engineering, Guangdong Academy of Sciences, Research Center for Sugarcane Industry, Engineering Technology of Light Industry, Guangzhou 510316, China; Faculty of Chemical Engineering and Light Industry, Guangdong University of Technology, Guangzhou 510006, China.
Institute of Biological and Medical Engineering, Guangdong Academy of Sciences, Research Center for Sugarcane Industry, Engineering Technology of Light Industry, Guangzhou 510316, China.
Carbohydr Polym. 2024 Jan 15;324:121516. doi: 10.1016/j.carbpol.2023.121516. Epub 2023 Oct 27.
The development of renewable, hydrophobic, and biodegradable intelligent packaging materials as an alternative to petroleum-based plastic products has become a new research focus in recent years, but remains a challenge. Herein, regenerated cellulose/curcumin composite films were fabricated by dispersing hydrophobic curcumin uniformly in a hydrophilic cellulose matrix using an aqueous alkali/urea solvent based on the pH-driven principle of curcumin. In addition, a unilateral hydrophobic modification was carried out using chemical vapor deposition of methyltrichlorosilane to obtain Janus structure. The composite films exhibited high transparency in the visible light spectrum, excellent antioxidation, thermal stability, mechanical strength, gas barrier properties, and antibacterial activity. Furthermore, the films demonstrated the capability to lower the overall levels of volatile basic nitrogen in stored fish. The color of the films shifted from a pale yellow to a reddish-brown over time during storage. The composite films can be completely degraded after approximately 98 days in soil with an average environmental temperature of 29 °C. This work provided a facile strategy to prepare biodegradable cellulose/curcumin films with Janus structure as packaging materials which could preserve the freshness of food products while offering visual monitor of their freshness in real-time.
近年来,开发可再生、疏水和可生物降解的智能包装材料作为石油基塑料产品的替代品已成为新的研究热点,但仍然具有挑战性。在此,基于姜黄素的 pH 驱动原理,通过在亲水纤维素基质中均匀分散疏水性姜黄素,用基于水的碱/尿素溶剂制备了再生纤维素/姜黄素复合膜。此外,通过甲基三氯硅烷的化学气相沉积进行单侧疏水改性,得到了 Janus 结构。复合膜在可见光范围内具有高透明度、优异的抗氧化、热稳定性、机械强度、气体阻隔性能和抗菌活性。此外,这些薄膜还具有降低储存鱼类中挥发性基本氮总含量的能力。随着储存时间的推移,薄膜的颜色从淡黄色逐渐变为红棕色。在平均环境温度为 29°C 的土壤中,复合膜大约 98 天后可完全降解。这项工作提供了一种简便的策略来制备具有 Janus 结构的可生物降解纤维素/姜黄素薄膜作为包装材料,既能保持食品的新鲜度,又能实时提供其新鲜度的视觉监测。