Department of Food Science and Technology, School of Nutritional Sciences and Dietetics, Tehran University of Medical Sciences, Tehran, Iran.
Student Research Committee, Department of Food Science and Technology, Faculty of Nutrition and Food Sciences, Tabriz University of Medical Sciences, Tabriz, Iran.
Adv Colloid Interface Sci. 2024 May;327:103153. doi: 10.1016/j.cis.2024.103153. Epub 2024 Apr 8.
Zeolite imidazole framework (ZIF) materials are a class of metallic organic framework (MOF) materials that have several potential applications in the food and other industries. They consist of metal ions or clusters of metal ions coordinated with imidazole-based organic linkers, creating a three-dimensional solid structure with well-defined pores and channels. ZIFs possess several important features, including high porosity, tunable pore sizes, high surface areas, adjustable surface chemistries, and good stabilities. These characteristics make them highly versatile materials that can be used in a variety of applications, including smart and active food packaging. Based on their controllable compositions, dimensions, and pore sizes, the properties of ZIFs can be tailored for a diverse range of applications, including energy storage, sensing, separation, encapsulation, and catalysis. In this article, we focus on recent progress and potential applications of ZIFs in food packaging materials. Previous studies have shown that ZIFs can significantly improve the optical, mechanical, barrier, thermal, sustainability, and preservative properties of packaging materials. Moreover, ZIFs can be used as carriers to encapsulate, protect, and control the release of bioactive agents in packaging materials. ZIFs are capable of selectively adsorbing and releasing molecules based on their size, shape, and surface properties. These unique characteristics make them particularly suitable for smart or active food packaging applications. By selectively removing gases (such as oxygen, carbon dioxide, water, or ethylene) ZIFs can improve the shelf life and quality of packaged foods. In addition, they can be employed to control the growth of spoilage microorganisms and minimize oxidation reactions, thereby enhancing the freshness and extending the shelf life of foods. They may also be used to create sensors capable of detecting and indicating food spoilage. For instance, ZIFs that change color or release specific compounds when spoilage products are present can provide visual or chemical indications of food deterioration. This feature is especially valuable in ensuring the safety and quality of packaged food, as it enables consumers and retailers to easily identify spoiled products. ZIFs can be functionalized using various additives, including antioxidants, antimicrobials, pigments, and flavors, which can improve the preservative and sensory properties of packaged foods. Moreover, ZIF-based packaging materials offer sustainability benefits. Unlike traditional plastic packaging, ZIFs are biodegradable and can easily be disposed of without causing harm to the environment, thereby reducing the adverse effects of plastic waste materials. The application of ZIFs in smart/active food packaging offers exciting possibilities for enhancing the shelf life, quality, and safety of foods. With further research and development, ZIF-based packaging could become a sustainable alternative to plastic-based packaging in the food industry. An important aim of this review article is to stimulate further research on the development and application of ZIFs within food packaging materials.
沸石咪唑骨架(ZIF)材料是一类金属有机骨架(MOF)材料,在食品和其他行业中有多种潜在应用。它们由金属离子或金属离子簇与咪唑基有机配体配位组成,形成具有明确孔和通道的三维固体结构。ZIF 具有几个重要特征,包括高孔隙率、可调孔径、高表面积、可调表面化学性质和良好的稳定性。这些特性使它们成为多功能材料,可用于各种应用,包括智能和活性食品包装。基于其可控的组成、尺寸和孔径,ZIF 的性质可以针对各种应用进行定制,包括储能、传感、分离、封装和催化。本文重点介绍 ZIF 在食品包装材料中的最新进展和潜在应用。先前的研究表明,ZIF 可以显著提高包装材料的光学、机械、阻隔、热学、可持续性和保鲜性能。此外,ZIF 可用作载体,在包装材料中封装、保护和控制生物活性物质的释放。ZIF 能够基于分子的大小、形状和表面性质选择性地吸附和释放分子。这些独特的特性使它们特别适合智能或活性食品包装应用。通过选择性地去除气体(如氧气、二氧化碳、水或乙烯),ZIF 可以延长包装食品的保质期和质量。此外,它们可用于控制腐败微生物的生长并最小化氧化反应,从而提高食品的新鲜度并延长保质期。它们还可用于创建能够检测和指示食品变质的传感器。例如,当存在变质产品时会变色或释放特定化合物的 ZIF 可以提供食品变质的视觉或化学指示。在确保包装食品的安全性和质量方面,这一特性特别有价值,因为它使消费者和零售商能够轻松识别变质产品。可以使用各种添加剂(包括抗氧化剂、抗菌剂、颜料和香料)对 ZIF 进行功能化,从而提高包装食品的保鲜和感官性能。此外,基于 ZIF 的包装材料具有可持续性优势。与传统塑料包装不同,ZIF 是可生物降解的,并且可以在不造成环境危害的情况下轻松处理,从而减少塑料废物对环境的不利影响。ZIF 在智能/活性食品包装中的应用为提高食品的保质期、质量和安全性提供了令人兴奋的可能性。随着进一步的研究和开发,基于 ZIF 的包装可能成为食品工业中塑料包装的可持续替代品。本文的一个重要目的是激发对 ZIF 在食品包装材料中的开发和应用的进一步研究。