Materials Futures · 2023 · 31 citations · 114 references
Materials ScienceInorganic ChemistryChemical EngineeringEngineeringElectrode-electrolyte InterfaceUnique Solvation StructuresEnergy StorageAqueous Zinc-ion BatteriesSolvation StructuresElectrochemical Energy StorageBatteriesChemistrySolid-state BatterySodium BatteryAqueous BatteryElectrochemistryZn 2+
Abstract Aqueous zinc-ion batteries, due to their high power density, intrinsic safety, low cost, and environmental benign, have attracted tremendous attentions recently. However, their application is severely plagued by the inferior energy density and short cycling life, which was mainly ascribed to zinc dendrites, and interfacial side reactions, narrow potential window induced by water decomposition, all of which are highly related with the Zn 2+ solvation structures in the aqueous electrolytes. Therefore, in this review, we comprehensively summarized the recent development of strategies of regulating Zn 2+ solvation structures, specially, the effect of zinc salts, nonaqueous co-solvents, and functional additives on the Zn 2+ solvation structures and the corresponding electrochemical performance of aqueous zinc-ion batteries. Moreover, future perspectives focused on the challenges and possible solutions for design and commercialization of aqueous electrolytes with unique solvation structures are provided.
114
Highly reversible zinc metal anode for aqueous batteries
Fei Wang, Oleg Borodin, Tao Gao et al. · Nature Materials · 2018 · 3.1K citations
Reversible aqueous zinc/manganese oxide energy storage from conversion reactions
Huilin Pan, Yuyan Shao, Pengfei Yan et al. · Nature Energy · 2016 · 2.9K citations
Scientific Challenges for the Implementation of Zn-Ion Batteries
Lauren Blanc, Dipan Kundu, Linda F. Nazar · Joule · 2020 · 1.9K citations · Full text