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金属有机框架材料在电化学水应用方面的基本观点

Fundamental Perspectives on the Electrochemical Water Applications of Metal-Organic Frameworks.

作者信息

He Xiang

机构信息

Department of Mechanical and Civil Engineering, Florida Institute of Technology, Melbourne, FL, 32901, USA.

出版信息

Nanomicro Lett. 2023 Jun 7;15(1):148. doi: 10.1007/s40820-023-01124-3.

Abstract

The recent development and implementation of metal-organic frameworks (MOFs) and MOF-based materials in electrochemical water applications are reviewed. The critical factors that affect the performances of MOFs in the electrochemical reactions, sensing, and separations are highlighted. Advanced tools, such as pair distribution function analysis, are playing critical roles in unraveling the functioning mechanisms, including local structures and nanoconfined interactions. Metal-organic frameworks (MOFs), a family of highly porous materials possessing huge surface areas and feasible chemical tunability, are emerging as critical functional materials to solve the growing challenges associated with energy-water systems, such as water scarcity issues. In this contribution, the roles of MOFs are highlighted in electrochemical-based water applications (i.e., reactions, sensing, and separations), where MOF-based functional materials exhibit outstanding performances in detecting/removing pollutants, recovering resources, and harvesting energies from different water sources. Compared with the pristine MOFs, the efficiency and/or selectivity can be further enhanced via rational structural modulation of MOFs (e.g., partial metal substitution) or integration of MOFs with other functional materials (e.g., metal clusters and reduced graphene oxide). Several key factors/properties that affect the performances of MOF-based materials are also reviewed, including electronic structures, nanoconfined effects, stability, conductivity, and atomic structures. The advancement in the fundamental understanding of these key factors is expected to shed light on the functioning mechanisms of MOFs (e.g., charge transfer pathways and guest-host interactions), which will subsequently accelerate the integration of precisely designed MOFs into electrochemical architectures to achieve highly effective water remediation with optimized selectivity and long-term stability.

摘要

本文综述了金属有机框架材料(MOFs)及其基材料在电化学水应用中的最新发展与应用。重点介绍了影响MOFs在电化学反应、传感和分离中性能的关键因素。先进的工具,如对分布函数分析,在揭示其作用机制(包括局部结构和纳米受限相互作用)方面发挥着关键作用。金属有机框架材料(MOFs)是一类具有高比表面积和可化学调控性的高孔隙率材料,正逐渐成为解决与能源-水系统相关的日益严峻挑战(如水短缺问题)的关键功能材料。在本文中,MOFs在基于电化学的水应用(即反应、传感和分离)中的作用得到了突出强调,其中基于MOF的功能材料在检测/去除污染物、回收资源以及从不同水源获取能量方面表现出卓越性能。与原始MOFs相比,通过对MOFs进行合理的结构调控(如部分金属取代)或与其他功能材料(如金属簇和还原氧化石墨烯)集成,可以进一步提高效率和/或选择性。本文还综述了影响基于MOF材料性能的几个关键因素/特性,包括电子结构、纳米受限效应、稳定性、导电性和原子结构。对这些关键因素的深入理解有望为MOFs的作用机制(如电荷转移途径和客体-主体相互作用)提供启示,这将随后加速将精确设计的MOFs集成到电化学体系结构中,以实现具有优化选择性和长期稳定性的高效水修复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/363c/10247659/d8921233db83/40820_2023_1124_Fig1_HTML.jpg

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