Design of metal ion-catecholate complexes towards advanced materials

IF 21.1 1区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Yuan Zou , Xianheng Wang , Yiwen Li , Yiyun Cheng
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Abstract

Metal ion-catecholate complexes (MCCs) extensively exist in plants and animals, which are in charge of versatile biological functions, such as constructing organs, controlled releasing metal ions and antibacterial. Inspired by this, researchers have exploited various kinds of artificial MCCs, which can serve as structural and functional synthons to construct advanced materials. In terms of the structural contribution, these complexes exhibit not only physical interactions, including metal-coordination, hydrogen bonding, π-π stacking and cation-π interactions, but also rich chemical reactions, including radical polymerization, Schiff base reaction and Michael addition. In terms of functional contribution, the complexes can endow the materials with the intrinsic properties of polyphenols and metal ions, including antioxidant, adhesion, antibacterial, bioimaging and catalyst. In addition, some emerging and fantastic functions are also originally from the complexes, such as tunable mechanical property, self-healing, controlled release and photothermal effect. In this review paper, we comprehensively discuss the recent development of MCC-based materials, including coatings, particles, metallogels and metal–organic frameworks (MOFs). Perspectives in this field has also been put forward as well.

Abstract Image

设计金属离子-邻苯二酚复合物,开发先进材料
金属离子-儿茶酚复合物(MCCs)广泛存在于动植物体内,具有构建器官、控制释放金属离子和抗菌等多种生物功能。受此启发,研究人员开发了各种人工 MCC,它们可以作为结构和功能合成物来构建先进材料。在结构贡献方面,这些配合物不仅表现出物理相互作用,包括金属配位、氢键、π-π堆叠和阳离子-π相互作用,还表现出丰富的化学反应,包括自由基聚合、席夫碱反应和迈克尔加成反应。在功能贡献方面,配合物可以赋予材料多酚和金属离子的固有特性,包括抗氧化、粘附、抗菌、生物成像和催化剂。此外,复合物还具有一些新兴的奇妙功能,如可调机械性能、自愈、控释和光热效应。在这篇综述论文中,我们全面讨论了基于 MCC 材料的最新发展,包括涂层、颗粒、金属凝胶和金属有机框架(MOFs)。同时还提出了该领域的展望。
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来源期刊
Materials Today
Materials Today 工程技术-材料科学:综合
CiteScore
36.30
自引率
1.20%
发文量
237
审稿时长
23 days
期刊介绍: Materials Today is the leading journal in the Materials Today family, focusing on the latest and most impactful work in the materials science community. With a reputation for excellence in news and reviews, the journal has now expanded its coverage to include original research and aims to be at the forefront of the field. We welcome comprehensive articles, short communications, and review articles from established leaders in the rapidly evolving fields of materials science and related disciplines. We strive to provide authors with rigorous peer review, fast publication, and maximum exposure for their work. While we only accept the most significant manuscripts, our speedy evaluation process ensures that there are no unnecessary publication delays.
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