Uniform and compact Zn deposition–dissolution is essential to achieve high Coulombic efficiency and long lifespan for Zn anodes. More attention has been commonly focused on the suppression of macroscopic Zn dendrites in the previous reports. The rational control of the microstructure of Zn deposition to prevent the intrinsic volume expansion and pulverization of Zn metal so as to stabilize Zn anodes is less discussed. Herein, we construct a three-dimensional topological Zn deposition at the nanoscale through an in situ electrochemical process in the optimal hybrid aqueous electrolyte. The topological electrode structure can efficiently accommodate microscopic strain and volume variation and thus largely preserve the macroscopic integrity an...
Zinc ion batteries (ZIBs) have attracted extensive attention in recent years, benefiting from their ...
Aqueous Zn batteries (AZBs) are a promising energy storage technology, due to their high theoretical...
Aqueous zinc (Zn) chemistry features intrinsic safety, but suffers from severe irreversibility, as e...
Abstract Benefiting from the high capacity of Zn metal anodes and intrinsic safety of aqueous electr...
The unsatisfactory cycling stability of Zn anode stemming from dendritic growth and side reactions h...
Although Zn metal has been regarded as the most promising anode for aqueous batteries, it persistent...
Zn metal has been regarded as the most promising anode for aqueous batteries due to its high capacit...
Despite being one of the most promising candidates for grid-level energy storage, practical aqueous ...
Regulating the Zn deposition orientation is an efficient way to suppress Zn dendrites and stabilize ...
Achieving highly reversible Zn metal anodes is a crucial step in advancing the performance of aqueou...
Rechargeable aqueous zinc batteries (AZBs) have been recognized as attractive energy storage devices...
Rechargeable aqueous Zn-ion batteries promise high capacity, low cost, high safety, and sustainabili...
A solid-electrolyte interphase (SEI) is highly desirable to restrain Zn dendrite growth and side rea...
Zinc (Zn) metal is regarded as a promising anode material for aqueous batteries owing to its high na...
The development of aqueous zinc-ion batteries (AZIBs) has been severely restricted by metallic Zn an...
Zinc ion batteries (ZIBs) have attracted extensive attention in recent years, benefiting from their ...
Aqueous Zn batteries (AZBs) are a promising energy storage technology, due to their high theoretical...
Aqueous zinc (Zn) chemistry features intrinsic safety, but suffers from severe irreversibility, as e...
Abstract Benefiting from the high capacity of Zn metal anodes and intrinsic safety of aqueous electr...
The unsatisfactory cycling stability of Zn anode stemming from dendritic growth and side reactions h...
Although Zn metal has been regarded as the most promising anode for aqueous batteries, it persistent...
Zn metal has been regarded as the most promising anode for aqueous batteries due to its high capacit...
Despite being one of the most promising candidates for grid-level energy storage, practical aqueous ...
Regulating the Zn deposition orientation is an efficient way to suppress Zn dendrites and stabilize ...
Achieving highly reversible Zn metal anodes is a crucial step in advancing the performance of aqueou...
Rechargeable aqueous zinc batteries (AZBs) have been recognized as attractive energy storage devices...
Rechargeable aqueous Zn-ion batteries promise high capacity, low cost, high safety, and sustainabili...
A solid-electrolyte interphase (SEI) is highly desirable to restrain Zn dendrite growth and side rea...
Zinc (Zn) metal is regarded as a promising anode material for aqueous batteries owing to its high na...
The development of aqueous zinc-ion batteries (AZIBs) has been severely restricted by metallic Zn an...
Zinc ion batteries (ZIBs) have attracted extensive attention in recent years, benefiting from their ...
Aqueous Zn batteries (AZBs) are a promising energy storage technology, due to their high theoretical...
Aqueous zinc (Zn) chemistry features intrinsic safety, but suffers from severe irreversibility, as e...