Yang Rao, Liu Bingzhen, Yu Fuyou, Li Hui, Zhuang Yongliang
Faculty of Food Science and Technology, Kunming University of Science and Technology, Kunming 650500, China.
Faculty of Food Science and Technology, Kunming University of Science and Technology, Kunming 650500, China.
Int J Biol Macromol. 2023 Apr 15;234:123712. doi: 10.1016/j.ijbiomac.2023.123712. Epub 2023 Feb 14.
Cellulose paper packaging materials have gained considerable attention as substitutes for petroleum-based plastics owing to their biodegradability, renewability, flexibility, and good mechanical strength. However, high hydrophilicity and the absence of essential antibacterial activity limit their application in food packaging. In this study, a facile and energy-saving method was developed to improve the hydrophobicity of cellulose paper and endow it with a long-acting antibacterial effect by integrating cellulose paper substrate with metal-organic frameworks (MOFs). A dense and homogenous coating of regular hexagonal ZnMOF-74 nanorods was in-situ formed on a paper surface by layer-by-layer assembly followed by low-surface-energy polydimethylsiloxane (PDMS) modification to prepare a superhydrophobic PDMS@(ZnMOF-74)@paper. Excellent anti-fouling, self-cleaning, and antibacterial adhesion performances were obtained for this superhydrophobic paper. In addition, active carvacrol was loaded into the pores of ZnMOF-74 nanorods on PDMS@(ZnMOF-74)@paper to combine antibacterial adhesion together with bactericidal ability, ultimately resulting in a completely "bacteria-free" surface and sustained antibacterial performance. The resultant superhydrophobic papers not only showed overall migration values within the limit of 10 mg/dm but also good stability against various harsh mechanical, environmental, and chemical treatments. This work gave insights into the potential of in-situ-developed MOFs-dopped coating as a functionally modified platform for preparing active superhydrophobic paper-based packaging.
纤维素纸包装材料因其生物可降解性、可再生性、柔韧性和良好的机械强度,作为石油基塑料的替代品受到了广泛关注。然而,高亲水性和缺乏必要的抗菌活性限制了它们在食品包装中的应用。在本研究中,开发了一种简便且节能的方法,通过将纤维素纸基材与金属有机框架(MOFs)结合,提高纤维素纸的疏水性并赋予其长效抗菌效果。通过逐层组装在纸张表面原位形成致密且均匀的正六边形ZnMOF-74纳米棒涂层,随后进行低表面能聚二甲基硅氧烷(PDMS)改性,制备出超疏水的PDMS@(ZnMOF-74)@纸。这种超疏水纸具有优异的防污、自清洁和抗菌粘附性能。此外,将活性香芹酚负载到PDMS@(ZnMOF-74)@纸上的ZnMOF-74纳米棒孔隙中,将抗菌粘附与杀菌能力结合起来,最终形成完全“无细菌”的表面并具有持续的抗菌性能。所得的超疏水纸不仅显示出总迁移值在10 mg/dm的限值内,而且对各种苛刻的机械、环境和化学处理具有良好的稳定性。这项工作深入了解了原位开发的MOFs掺杂涂层作为制备活性超疏水纸质包装的功能改性平台的潜力。