Achieving highly reversible Zn metal anodes is a crucial step in advancing the performance of aqueous zinc ion batteries. However, despite the relative stability of Zn metal in aqueous environments, Zn metal is plagued by deterrents such as dendritic growth, H-2 evolution, and corrosion. This mainly stems from the absence of a stable solid-electrolyte interphase (SEI), an inevitable consequence of moderate concentration aqueous electrolytes. In response to such issues, herein, an artificial SEI formed from cross-linked gelatin is introduced by coating the surface of Zn metal. The presence of the gelatin layer significantly changes the deposition morphology of Zn, where its plated surface is much more uniform and dense compared to bare Zn me...
A solid-electrolyte interphase (SEI) is highly desirable to restrain Zn dendrite growth and side rea...
Aqueous zinc metal batteries with mild acidic electrolytes are considered promising candidates for l...
The effects of surface roughness on the performance of the Zn metal anode in aqueous electrolytes ar...
Although Zn metal has been regarded as the most promising anode for aqueous batteries, it persistent...
Rechargeable aqueous Zn-ion batteries promise high capacity, low cost, high safety, and sustainabili...
Zn metal has been regarded as the most promising anode for aqueous batteries due to its high capacit...
Zinc (Zn) metal is regarded as a promising anode material for aqueous batteries owing to its high na...
Aqueous rechargeable zinc ion batteries have attracted increased attention for large-scale energy st...
Uniform and compact Zn deposition–dissolution is essential to achieve high Coulombic efficiency and ...
Aqueous rechargeable zinc ion batteries have attracted increased attention for large-scale energy st...
57 pagesReversible electrodeposition of metals at liquid-solid interfaces is a requirement for long ...
Aqueous rechargeable zinc ion batteries have attracted increased attention for large-scale energy st...
The unsatisfactory cycling stability of Zn anode stemming from dendritic growth and side reactions h...
Rechargeable aqueous zinc batteries (AZBs) have been recognized as attractive energy storage devices...
Aqueous rechargeable zinc ion batteries are promising efficient energy storage systems due to remark...
A solid-electrolyte interphase (SEI) is highly desirable to restrain Zn dendrite growth and side rea...
Aqueous zinc metal batteries with mild acidic electrolytes are considered promising candidates for l...
The effects of surface roughness on the performance of the Zn metal anode in aqueous electrolytes ar...
Although Zn metal has been regarded as the most promising anode for aqueous batteries, it persistent...
Rechargeable aqueous Zn-ion batteries promise high capacity, low cost, high safety, and sustainabili...
Zn metal has been regarded as the most promising anode for aqueous batteries due to its high capacit...
Zinc (Zn) metal is regarded as a promising anode material for aqueous batteries owing to its high na...
Aqueous rechargeable zinc ion batteries have attracted increased attention for large-scale energy st...
Uniform and compact Zn deposition–dissolution is essential to achieve high Coulombic efficiency and ...
Aqueous rechargeable zinc ion batteries have attracted increased attention for large-scale energy st...
57 pagesReversible electrodeposition of metals at liquid-solid interfaces is a requirement for long ...
Aqueous rechargeable zinc ion batteries have attracted increased attention for large-scale energy st...
The unsatisfactory cycling stability of Zn anode stemming from dendritic growth and side reactions h...
Rechargeable aqueous zinc batteries (AZBs) have been recognized as attractive energy storage devices...
Aqueous rechargeable zinc ion batteries are promising efficient energy storage systems due to remark...
A solid-electrolyte interphase (SEI) is highly desirable to restrain Zn dendrite growth and side rea...
Aqueous zinc metal batteries with mild acidic electrolytes are considered promising candidates for l...
The effects of surface roughness on the performance of the Zn metal anode in aqueous electrolytes ar...