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Metal-organic frameworks and their derived materials for electrochemical energy storage and conversion: Promises and challenges

机译:用于电化学能量存储和转换的金属有机框架及其衍生材料:承诺和挑战

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摘要

In addition to their conventional uses, metal-organic frameworks (MOFs) have recently emerged as an interesting class of functional materials and precursors of inorganic materials for electrochemical energy storage and conversion technologies. This class of MOF-related materials can be broadly categorized into two groups: pristine MOF-based materials and MOF-derived functional materials. Although the diversity in composition and structure leads to diverse and tunable functionalities of MOF-based materials, it appears that much more effort in this emerging field is devoted to synthesizing MOF-derived materials for electrochemical applications. This is in view of two main drawbacks of MOF-based materials: the low conductivity nature and the stability issue. On the contrary, MOF-derived synthesis strategies have substantial advantages in controlling the composition and structure of MOF-derived materials. From this perspective, we review some emerging applications of both groups of MOF-related materials as electrode materials for rechargeable batteries and electrochemical capacitors, efficient electrocatalysts, and even electrolytes for electrochemical devices. By highlighting the advantages and challenges of each class of materials for different applications, we hope to shed some light on the future development of this highly exciting area.
机译:除了常规用途外,金属有机骨架(MOF)最近也成为一类有趣的功能材料和无机材料的前体,用于电化学能量存储和转换技术。此类与MOF相关的材料可以大致分为两类:原始的基于MOF的材料和基于MOF的功能材料。尽管组成和结构的多样性导致基于MOF的材料的功能多样化和可调节,但似乎在这个新兴领域投入了更多的精力来合成MOF衍生的材料用于电化学领域。鉴于基于MOF的材料的两个主要缺点:低导电性和稳定性问题。相反,MOF衍生的合成策略在控制MOF衍生材料的组成和结构方面具有实质优势。从这个角度出发,我们回顾了两组与MOF相关的材料的新兴应用,这些材料作为可再充电电池和电化学电容器的电极材料,高效的电催化剂,甚至是电化学装置的电解质。通过强调每种材料在不同应用中的优势和挑战,我们希望为这个令人兴奋的领域的未来发展提供一些启示。

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