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Metal-organic framework composites as electrocatalysts for electrochemical sensing applications

机译:金属-有机骨架复合材料作为电化学传感应用中的电催化剂

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HighlightsMOF composites have been developed with superior electrocatalytic properties.MOF composites can be applied as electrocatalysts for electrochemical sensing.They were employed for sensing environmental analytes like metals and organics.Their use was extended further to detect various biological targets like glucose.AbstractMetal–organic frameworks (MOFs) are porous coordination polymers linked by metal ions and ligands. With the progress of MOF research, many redox active MOFs have been synthesized by judicious selection of the electroactive metal ions and/or organic functional groups. Due to the unique properties (e.g., high surface areas, tailorable pore sizes, and exposed active sites), MOFs are found to have a wide range of redox activities to be applied in various fields (e.g., microporous conductors, electrocatalysts, energy storage devices, and electrochemical sensors). The potential of the MOFs composites has also been realized as ideal hosts for functional materials (like conducting nanoparticles). These composites are thus demonstrated to have superior electrocatalytic/electrochemical sensing properties than their pristine forms. Accordingly, various MOF composite-based platforms have been developed as efficient electrochemical sensors for environmental and biochemical targets. This review was organized to provide up-to-date information and insights into the fundamental aspects of MOF composites as electrocatalytic/electrochemical sensors.
机译: 突出显示 已开发出具有优异电催化性能的MOF复合材料。 MOF复合材料可用作电化学传感的电催化剂。 它们被用于感测环境分析物,例如金属和有机物。 它们的用途进一步扩展到可以检测各种生物日志诸如葡萄糖之类的目标。 摘要 金属有机骨架(MOF)是由金属离子和配体连接的多孔配位聚合物。随着MOF研究的进展,通过明智地选择电活性金属离子和/或有机官能团,已经合成了许多氧化还原活性MOF。由于其独特的性能(例如,高表面积,可定制的孔径和暴露的活性部位),MOF具有广泛的氧化还原活性,可应用于各种领域(例如,微孔导体,电催化剂,储能装置)以及电化学传感器)。 MOF复合材料的潜力也已被视为功能材料(如导电纳米颗粒)的理想主体。因此证明了这些复合物比其原始形式具有优异的电催化/电化学传感性能。因此,已经开发了各种基于MOF复合材料的平台,作为用于环境和生化目标的高效电化学传感器。此次审查的目的是提供有关MOF复合材料作为电催化/电化学传感器的基本方面的最新信息和见解。

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