Publication | Closed Access
Constructing Universal Ionic Sieves via Alignment of Two‐Dimensional Covalent Organic Frameworks (COFs)
164
Citations
64
References
2018
Year
EngineeringOrganic ChemistryChemistryShuttle EffectSodium BatteryMetal-organic PolyhedronUniversal Ionic SievesMaterials ScienceInorganic ChemistryMolecular SieveBattery Electrode MaterialsMolecular SievingCapacity LossCovalent Bonded FrameworkAnisotropic OrderingEnergy StoragePolymer MembranesSolid-state BatteryElectrochemistryOrganic Material ChemistrySelf-assemblyGrapheneElectrochemical Energy StorageFunctional Materials
The shuttle effect of electrode materials always leads to capacity loss and poor cycle life of batteries. Two-dimensional (2D) covalent organic frameworks (COFs) with uniform and controllable nanopores provide a promising strategy for fabricating ionic sieves to inhibit the shuttle effect. However, the insoluble nature of COFs made it difficult to fabricate compact and ordered membranes of COFs. Herein, we report a novel method for facilely anisotropic ordering of 2D COFs via depositing COFs onto graphene. The resulted double-layer membranes acting as ionic sieves impressively inhibit the shuttle effect and exhibit versatility to both organic sodium-ion batteries and Li-S batteries, leading to high cyclability.
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