Publication | Open Access
Covalent Organic Framework Based Lithium–Sulfur Batteries: Materials, Interfaces, and Solid‐State Electrolytes
247
Citations
171
References
2023
Year
EngineeringLithium–sulfur BatteriesAdjustable FrameworksChemistryPolysulfide IntermediatesSolid‐state ElectrolytesHybrid MaterialsMaterials ScienceBattery Electrode MaterialsAbstract Lithium–sulfur BatteriesAdvanced Electrode MaterialLithium-ion BatteriesBattery AdditivesCovalent Organic FrameworkLithium-ion BatteryEnergy StorageSolid-state BatteryElectrochemistryLi-ion Battery MaterialsElectrochemical Energy StorageBatteriesFunctional Materials
Abstract Lithium–sulfur batteries are recognized as one of the most promising next‐generation energy‐storage technologies owing to their high energy density and low cost. Nevertheless, the shuttle effect of polysulfide intermediates and the formation of lithium dendrites are the principal reasons that restrict the practical adoption of current Li–S batteries. Adjustable frameworks, structural variety, and functional adaptability of covalent organic frameworks (COFs) have the potential to overcome the issues associated with Li–S battery technology. Herein, a summary is presented of emerging COF materials in addressing the challenging problems in terms of sulfur hosts, modified separators, artificial solid electrolyte interphase layers, and solid‐state electrolytes. This comprehensive overview focuses on the design and chemistry of COFs used to upgrade Li–S batteries. Furthermore, existing difficulties, prospective remedies, and prospective research directions for COFs for Li–S batteries are discussed, laying the groundwork for future advancements in this class of fascinating materials.
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