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金属-酚醛网络复合材料:从基础到应用

Metal-phenolic network composites: from fundamentals to applications.

作者信息

Lin Zhixing, Liu Hai, Richardson Joseph J, Xu Wanjun, Chen Jingqu, Zhou Jiajing, Caruso Frank

机构信息

Department of Chemical Engineering, The University of Melbourne, Parkville, Victoria, 3010, Australia.

College of Biomass Science and Engineering, Sichuan University, Chengdu, Sichuan, 610065, China.

出版信息

Chem Soc Rev. 2024 Nov 12;53(22):10800-10826. doi: 10.1039/d3cs00273j.

Abstract

Composites with tailored compositions and functions have attracted widespread scientific and industrial interest. Metal-phenolic networks (MPNs), which are composed of phenolic ligands and metal ions, are amorphous adhesive coordination polymers that have been combined with various functional components to create composites with potential in chemistry, biology, and materials science. This review aims to provide a comprehensive summary of both fundamental knowledge and advancements in the field of MPN composites. The advantages of amorphous MPNs, over crystalline metal-organic frameworks, for fabricating composites are highlighted, including their mild synthesis, diverse interactions, and numerous intrinsic functionalities. The formation mechanisms and state-of-the-art synthesis strategies of MPN composites are summarized to guide their rational design. Subsequently, a detailed overview of the chemical interactions and structure-property relationships of composites based on different functional components (, small molecules, polymers, biomacromolecules) is provided. Finally, perspectives are offered on the current challenges and future directions of MPN composites. This tutorial review is expected to serve as a fundamental guide for researchers in the field of metal-organic materials and to provide insights and avenues to enhance the performance of existing functional materials in applications across diverse fields.

摘要

具有定制组成和功能的复合材料已引起广泛的科学和工业关注。金属-酚醛网络(MPNs)由酚类配体和金属离子组成,是无定形的粘性配位聚合物,已与各种功能组分结合以制备在化学、生物学和材料科学领域具有潜力的复合材料。本综述旨在全面总结MPN复合材料领域的基础知识和进展。强调了无定形MPN在制备复合材料方面相对于结晶金属有机框架的优势,包括其温和的合成、多样的相互作用和众多的固有功能。总结了MPN复合材料的形成机制和最新合成策略,以指导其合理设计。随后,详细概述了基于不同功能组分(小分子、聚合物、生物大分子)的复合材料的化学相互作用和结构-性能关系。最后,对MPN复合材料当前面临的挑战和未来发展方向提出了展望。本教程综述有望为金属有机材料领域的研究人员提供基本指导,并为提高现有功能材料在不同领域应用中的性能提供见解和途径。

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