Santoso Shella Permatasari, Angkawijaya Artik Elisa, Cheng Kuan-Chen, Lin Shin-Ping, Hsu Hsien-Yi, Hsieh Chang-Wei, Rahmawati Astrid, Shimomura Osamu, Ismadji Suryadi
Chemical Engineering Department, Faculty of Engineering, Universitas Katolik Widya Mandala Surabaya, Jl. Kalijudan 37, Surabaya 60114, East Java, Indonesia.
Chemical Engineering Master Program, Widya Mandala Surabaya Catholic University, Kalijudan 37, Surabaya 60114, East Java, Indonesia.
Molecules. 2025 Mar 8;30(6):1218. doi: 10.3390/molecules30061218.
Metal phenolic networks (MPNs) have attracted significant attention due to their environmentally benign nature, broad compatibility, and universal adhesive properties, making them highly effective for modifying adsorbent surfaces. These supramolecular complexes are formed through the coordination of metal ions with natural phenolic ligands, resulting in stable structures while retaining the active adsorption sites of the ligands, thereby enhancing the adsorption performance of unmodified substrates. Among various MPNs, metal ion gallic acid (GA) networks are particularly well-known for their exceptional stability, biological activity, and superior adsorption ability. This review offers a comprehensive examination of GA-based MPN adsorbents, focusing on their formation chemistry, characterization techniques, and applications. The coordination chemistry underlying the stability of GA-metal complexes is analyzed through equilibrium studies, which are critical for understanding the robustness of MPNs. The main analytical methods for assessing metal ligand interactions are discussed, along with additional characterization techniques for evaluating adsorbent properties. This review also explores various synthesis and performance enhancement strategies for GA-based MPN adsorbents, including stand-alone MPNs, MPN-mediated mesoporous materials, MPN-MOF composites, and MPN-coated substrates. By consolidating current advancements in MPN-based adsorbents and offering fundamental insights into their chemistry and characterization, this review serves as a valuable resource for researchers seeking to develop stable, functional metal-organic materials. It aims to drive innovation in sustainable and efficient adsorbent technologies for diverse environmental and industrial applications.
金属酚醛网络(MPNs)因其环境友好的性质、广泛的兼容性和通用的粘附性能而备受关注,使其在修饰吸附剂表面方面非常有效。这些超分子复合物是通过金属离子与天然酚类配体的配位形成的,形成稳定的结构,同时保留配体的活性吸附位点,从而提高未改性底物的吸附性能。在各种MPNs中,金属离子没食子酸(GA)网络因其卓越的稳定性、生物活性和优异的吸附能力而尤为著名。本综述全面考察了基于GA的MPN吸附剂,重点关注其形成化学、表征技术和应用。通过平衡研究分析了GA-金属配合物稳定性的配位化学,这对于理解MPNs的稳定性至关重要。讨论了评估金属配体相互作用的主要分析方法,以及用于评估吸附剂性能的其他表征技术。本综述还探讨了基于GA的MPN吸附剂的各种合成和性能增强策略,包括单独的MPNs、MPN介导的介孔材料、MPN-MOF复合材料和MPN涂层底物。通过整合基于MPN的吸附剂的当前进展,并提供对其化学和表征的基本见解,本综述为寻求开发稳定、功能性金属有机材料的研究人员提供了宝贵的资源。它旨在推动可持续和高效吸附剂技术在各种环境和工业应用中的创新。