Metal-organic frameworks and composites on their basis: structure, synthesis methods, electrochemical properties and application prospects (a review)

D. Muratov, Lev Kozhitov, I. Zaporotskova, A. Popkova, Vladimir V. Sleptsov, Artem V. Zorin
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Abstract

Various types of metal-organic frameworks (MOF) and their structural parameters have been reviewed and their classification has been presented. Most widely used synthesis methods and approaches for MOF and composites on their basis have been discussed. MOF structure is a regular 3D lattice formed by organic linkers and metallic clusters. It has been shown for an example of literary data on MOF synthesis and structural studies that the types of bonds and metals can strongly affect the spatial structure and dimensions of MOF crystals: they can have nano-, micro- and meso-dimensions, be dense or porous, bulk or layered. This variety of structural parameters determines the wide range of their properties and potential applications. Prospects and methods of controlling the shapes of the crystals, their size and spatial bonds between organic components and metal ions have been reviewed. Major attention has been paid to zeolite-like frameworks (ZIF) as the most promising ones from the viewpoint of structure, synthesis and electrochemical current source applications. Discussion has touched on possible modifications and methods of controlling the properties of those MOFs and composites on their basis and introduction of impurities, including those having magnetic properties. Possible synthesis options of complex composites through controlled MOF pyrolysis have been presented, for either small-batch or scalable processes. The effect of heat treatment conditions on the final properties and electrochemical applications of those materials has been demonstrated. ZIF-67 structured MOF doping with one more metal has been presented as variant of modifying the properties of MOF and composites on their basis. For example, the Authors have implemented cobalt MOF synthesis wherein cobalt is partially substituted for manganese at the synthesis stage. Furthermore, a simple water solution co-deposition synthesis technique has been modified with ultrasonication thus reducing the time consumption of the process. Electrochemical studies have shown that the unit electrochemical capacity of pyrolyzed MOF electrodes with partial cobalt substitution for manganese is appreciably higher as compared to the manganese-free materials. The unit capacity and energy density increase with manganese content in the MOF. MOF manganese doping delivers a considerable improvement in the electrochemical parameters of the electrode materials for hybrid supercapacitors on their basis (from 100 to 298 F/g at 0.25 A/g current density). The results suggest that cobalt substitution for manganese is an effective method of improving the electrochemical parameters of MOFs. It has been demonstrated that the development of new approaches to the design of MOF based composite materials and the study of the physicochemical regularities of their interaction with various carriers is an important task.
金属有机框架及其基础复合材料:结构、合成方法、电化学性能和应用前景(综述)
本文综述了各种类型的金属有机框架(MOF)及其结构参数,并介绍了它们的分类。在此基础上讨论了最广泛使用的 MOF 和复合材料的合成方法和途径。MOF 结构是由有机连接体和金属簇形成的规则三维晶格。有关 MOF 合成和结构研究的文学数据实例表明,键和金属的类型会强烈影响 MOF 晶体的空间结构和尺寸:它们可以具有纳米、微米和中微米尺寸,致密或多孔,块状或层状。结构参数的多样性决定了它们具有广泛的特性和潜在应用。本文综述了控制晶体形状、尺寸以及有机成分和金属离子之间空间键的前景和方法。从结构、合成和电化学电流源应用的角度来看,类沸石框架(ZIF)是最有前途的框架,因此受到了广泛关注。讨论涉及在这些 MOFs 和复合材料的基础上控制其特性的可能修改和方法,以及杂质的引入,包括具有磁性的杂质。还介绍了通过受控 MOF 热解合成复杂复合材料的小批量或可扩展工艺的可能方案。热处理条件对这些材料最终特性和电化学应用的影响已得到证实。在 ZIF-67 结构 MOF 中掺入另一种金属,作为改变 MOF 和复合材料性能的变体。例如,作者已经实现了钴 MOF 合成,在合成阶段用钴部分替代了锰。此外,他们还对简单的水溶液共沉积合成技术进行了改进,采用了超声波处理,从而减少了工艺耗时。电化学研究表明,与不含锰的材料相比,部分用钴替代锰的热解 MOF 电极的单位电化学容量明显更高。单位容量和能量密度随 MOF 中锰含量的增加而增加。在混合超级电容器电极材料的基础上,MOF 锰掺杂大大改善了其电化学参数(电流密度为 0.25 A/g 时,从 100 F/g 提高到 298 F/g)。结果表明,用钴替代锰是改善 MOFs 电化学参数的有效方法。这表明,开发设计基于 MOF 的复合材料的新方法以及研究它们与各种载体相互作用的物理化学规律是一项重要任务。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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