Publication | Closed Access
2D Conductive Metal–Organic Frameworks: An Emerging Platform for Electrochemical Energy Storage
76
Citations
78
References
2020
Year
Materials ScienceChemical EngineeringEngineeringElectronic MaterialsOrganic ElectrochemistryMolecular ElectrochemistryConductive Metal–organic FrameworksIntrinsic Permanent PorosityEnergy StorageStructure–function CorrelationsElectrochemical Energy StorageChemistryMetal-organic PolyhedronEnergy MaterialMetal-organic FrameworksFunctional MaterialsElectrochemistryHybrid Materials
Abstract Two‐dimensional conductive metal–organic frameworks (2D c‐MOFs) as an emerging class of multifunctional materials have attracted extensive attention due to their predictable and diverse structures, intrinsic permanent porosity, high charge mobility, and excellent electrical conductivity. Such unique characteristics render them as a promising new platform for electrical related devices. This Minireview highlights the recent key progress of 2D c‐MOFs with emphasis on the design strategies, unique electrical properties, and potential applications in electrochemical energy storage. The thorough elucidation of structure–function correlations may offer a guidance for the development of 2D c‐MOFs based next‐generation energy storage devices.
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