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用于能源设备的离子共价有机框架

Ionic Covalent Organic Frameworks for Energy Devices.

作者信息

Liang Xiaoguang, Tian Ye, Yuan Yufei, Kim Yoonseob

机构信息

Department of Chemical and Biological Engineering, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong SAR, China.

出版信息

Adv Mater. 2021 Dec;33(52):e2105647. doi: 10.1002/adma.202105647. Epub 2021 Oct 8.

Abstract

Covalent organic frameworks (COFs) are a class of porous crystalline materials whose facile preparation, functionality, and modularity have led to their becoming powerful platforms for the development of molecular devices in many fields of (bio)engineering, such as energy storage, environmental remediation, drug delivery, and catalysis. In particular, ionic COFs (iCOFs) are highly useful for constructing energy devices, as their ionic functional groups can transport ions efficiently, and the nonlabile and highly ordered all-covalent pore structures of their backbones provide ideal pathways for long-term ionic transport under harsh electrochemical conditions. Here, current research progress on the use of iCOFs for energy devices, specifically lithium-based batteries and fuel cells, is reviewed in terms of iCOF backbone-design strategies, synthetic approaches, properties, engineering techniques, and applications. iCOFs are categorized as anionic COFs or cationic COFs, and how each of these types of iCOFs transport lithium ions, protons, or hydroxides is illustrated. Finally, the current challenges to and future opportunities for the utilization of iCOFs in energy devices are described. This review will therefore serve as a useful reference on state-of-the-art iCOF design and application strategies focusing on energy devices.

摘要

共价有机框架(COFs)是一类多孔晶体材料,其易于制备、具有功能性和模块化,这使得它们成为(生物)工程许多领域中分子器件开发的强大平台,如能量存储、环境修复、药物递送和催化。特别是离子型COFs(iCOFs)对于构建能量装置非常有用,因为它们的离子官能团能够高效传输离子,并且其骨架的稳定且高度有序的全共价孔结构为在苛刻的电化学条件下进行长期离子传输提供了理想途径。在此,从iCOF骨架设计策略、合成方法、性质、工程技术和应用等方面综述了iCOFs用于能量装置,特别是锂基电池和燃料电池的当前研究进展。iCOFs被分类为阴离子型COFs或阳离子型COFs,并说明了每种类型的iCOFs如何传输锂离子、质子或氢氧根离子。最后,描述了iCOFs在能量装置应用中的当前挑战和未来机遇。因此,本综述将作为聚焦于能量装置的最新iCOF设计和应用策略的有用参考。

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