Publication | Closed Access
Self‐Healing Materials for Energy‐Storage Devices
177
Citations
181
References
2020
Year
Grid Storage StationsEngineeringBrilliant DesignsSelf‐healing ChemistrySelf-healing SurfaceSelf-repairChemical EngineeringSelf-healing MaterialBiomedical DevicesEnergy Storage DeviceEnergy‐storage DevicesHybrid MaterialsSelf-healing MaterialsMaterials ScienceRegenerative EngineeringEnergy StorageEnergy MaterialElectrochemistryElectronic MaterialsFlexible Electronics
Abstract The booming development of electronics, electric vehicles, and grid storage stations has led to a high demand for advanced energy‐storage devices (ESDs) and accompanied attention to their reliability under various circumstances. Self‐healing is the ability of an organism to repair damage and restore function through its own internal vitality. Inspired by this, brilliant designs have emerged in recent years using self‐healing materials to significantly improve the lifespan, durability, and safety of ESDs. Extrinsic and intrinsic self‐healing materials and their working principles are first introduced. Then, the application of self‐healing materials in ESDs according to their self‐healing chemistry, including hydrogen bonds, electrostatic interactions, and borate ester bonds, are described in detail. Based on these, critical challenges and important future directions of self‐healing ESDs are discussed.
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