Advanced Energy Materials · 2024 · 57 citations · 53 references
Polyiodine IonsEngineeringElectrode-electrolyte InterfaceChemistryZn‐i 2Chemical EngineeringNanoelectronicsInterfacial ChemistryMaterials ScienceElectrical EngineeringBattery Electrode MaterialsAdvanced Electrode MaterialEnergy StorageElectrochemical ProcessElectrochemistryNatural SciencesApplied PhysicsElectrochemical Energy StorageBatteriesRaman Characterizations
Abstract Zn‐I 2 batteries suffer from uncontrollable shuttle effects of polyiodine ions (I 3 − and I 5 − ) at the cathode/electrolyte interface and side reactions induced by reactive H 2 O at the anode/electrolyte interface. In this study, a hydrated eutectic electrolyte is designed that synergizes the eutectic network and functional interfacial adsorbed layer to develop high‐performance Zn‐I 2 batteries. The eutectic network can restrain active H 2 O molecules in the electrolyte to inhibit the side reaction at the anode/electrolyte interface and shuttle effect at the cathode/electrolyte interface. Additionally, the functional interfacial adsorbed layer guides the nucleation behavior of Zn 2+ to inhibit the growth of dendrites and also separates the zinc anode from direct contact with active H 2 O molecules and polyiodine ions to inhibit corrosion. Theoretical calculation, in situ Ultraviolet–visible spectroscopy (UV‐vis) and Raman characterizations, and visualization experiments demonstrate that the hydrated eutectic electrolyte effectively inhibits the shuttling effect and improves the reversibility of zinc deposition/stripping behavior. Consequently, the Zn‐I 2 battery can maintain a capacity of 133 mAh g −1 after 5000 cycles at 5 C. This highly efficient synergistic strategy offers a practical approach to the development of advanced Zn‐I 2 batteries.
53
Polyiodide Confinement by Starch Enables Shuttle‐Free Zn–Iodine Batteries
Shaojian Zhang, Junnan Hao, Huan Li et al. · Advanced Materials · 2022 · 378 citations · Full text
A Double-Functional Additive Containing Nucleophilic Groups for High-Performance Zn-Ion Batteries
Jiandong Wan, Rui Wang, Zi-Xiang Liu et al. · ACS Nano · 2023 · 358 citations
A biocompatible electrolyte enables highly reversible Zn anode for zinc ion battery
Guanjie Li, Zihan Zhao, Shilin Zhang et al. · Nature Communications · 2023 · 354 citations · Full text