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An aqueous electrolyte densified by perovskite SrTiO3 enabling high-voltage zinc-ion batteries

Rongyu Deng, Zhenjiang He, Fulu Chu, Jie Lei, Yi Cheng, You Zhou, Feixiang Wu

2023Nature Communications130 citationsDOIOpen Access PDF

Abstract

Abstract The conventional weak acidic electrolyte for aqueous zinc-ion batteries breeds many challenges, such as undesirable side reactions, and inhomogeneous zinc dendrite growth, leading to low Coulombic efficiency, low specific capacity, and poor cycle stability. Here, an aqueous densified electrolyte, namely, a conventional aqueous electrolyte with addition of perovskite SrTiO 3 powder, is developed to achieve high-performance aqueous zinc-ion batteries. The densified electrolyte demonstrates unique properties of reducing water molecule activity, improving Zn 2+ transference number, and inducing homogeneous and preferential deposition of Zn (002). As a result, the densified electrolyte exhibits an ultra-long cycle stability over 1000 cycles in Zn/Ti half cells. In addition, the densified electrolyte enables Zn/MnO 2 cells with a high specific capacity of 328.2 mAh g −1 at 1 A g −1 after 500 cycles under an extended voltage range. This work provides a simple strategy to induce dendrite-free deposition characteristics and high performance in high-voltage aqueous zinc-ion batteries.

Topics & Concepts

ElectrolyteAqueous solutionMaterials scienceZincFaraday efficiencyChemical engineeringDendrite (mathematics)Perovskite (structure)Inorganic chemistryChemistryElectrodeMetallurgyOrganic chemistryGeometryEngineeringMathematicsPhysical chemistryAdvanced battery technologies researchElectrocatalysts for Energy ConversionPerovskite Materials and Applications
An aqueous electrolyte densified by perovskite SrTiO3 enabling high-voltage zinc-ion batteries | Litcius