An electrolyte cation additive strategy provides a versatile route for developing high-energy and long-life aqueous zinc-ion hybrid capacitors. However, the mechanisms of energy storage and Zn anode protection are still unclear in Zn-based systems with dual-ion electrolytes. Here, a dual charge storage mechanism for zinc-ion hybrid capacitors with both cations and anions adsorption/desorption and the reversible formation of Zn4SO4(OH)6·xH2O enabled by the Mg2+ additive in the common aqueous ZnSO4 electrolyte are proposed. Theoretical calculations verify that the self-healing electrostatic shield effect and the solvation-sheath structure regulation rendered by the Mg2+ additive account for the observed uniform Zn deposition and dendrite supp...
Aqueous zinc ion batteries exhibit a promising application prospect for next-generation energy stora...
With their cost-effectiveness and superior safety features, zinc-ion batteries (ZIBs) have emerged a...
Aqueous zinc-ion batteries, due to their high power density, intrinsic safety, low cost, and environ...
An electrolyte cation additive strategy provides a versatile route for developing high-energy and lo...
The serious zinc dendrites and poor cyclability at high cathode loading owing to the strong solvatio...
While aqueous Zn-Na hybrid batteries have garnered widespread attention because of their low cost an...
© 2018 With rapid development of portable electronics and electric vehicles, high-performance energy...
Zinc as an anode, with low potential (−0.762 V vs. SHE) and high theoretical capacity (820 mAh g−1 o...
Zinc as an anode, with low potential (−0.762 V vs. SHE) and high theoretical capacity (820 mAh g−1 o...
Aqueous zinc-ion hybrid supercapacitors (AZHSs) are promising candidates for powering mobile devices...
The cycle life of aqueous zinc-ion batteries (ZIBs) is limited by the notable challenges of cathode ...
The cycle life of aqueous zinc-ion batteries (ZIBs) is limited by the notable challenges of cathode ...
First published: 25 August 2021Practical application of aqueous Zn-ion batteries (AZIBs) is signific...
Aqueous zinc ion batteries exhibit a promising application prospect for next-generation energy stora...
Aqueous zinc ion batteries exhibit a promising application prospect for next-generation energy stora...
Aqueous zinc ion batteries exhibit a promising application prospect for next-generation energy stora...
With their cost-effectiveness and superior safety features, zinc-ion batteries (ZIBs) have emerged a...
Aqueous zinc-ion batteries, due to their high power density, intrinsic safety, low cost, and environ...
An electrolyte cation additive strategy provides a versatile route for developing high-energy and lo...
The serious zinc dendrites and poor cyclability at high cathode loading owing to the strong solvatio...
While aqueous Zn-Na hybrid batteries have garnered widespread attention because of their low cost an...
© 2018 With rapid development of portable electronics and electric vehicles, high-performance energy...
Zinc as an anode, with low potential (−0.762 V vs. SHE) and high theoretical capacity (820 mAh g−1 o...
Zinc as an anode, with low potential (−0.762 V vs. SHE) and high theoretical capacity (820 mAh g−1 o...
Aqueous zinc-ion hybrid supercapacitors (AZHSs) are promising candidates for powering mobile devices...
The cycle life of aqueous zinc-ion batteries (ZIBs) is limited by the notable challenges of cathode ...
The cycle life of aqueous zinc-ion batteries (ZIBs) is limited by the notable challenges of cathode ...
First published: 25 August 2021Practical application of aqueous Zn-ion batteries (AZIBs) is signific...
Aqueous zinc ion batteries exhibit a promising application prospect for next-generation energy stora...
Aqueous zinc ion batteries exhibit a promising application prospect for next-generation energy stora...
Aqueous zinc ion batteries exhibit a promising application prospect for next-generation energy stora...
With their cost-effectiveness and superior safety features, zinc-ion batteries (ZIBs) have emerged a...
Aqueous zinc-ion batteries, due to their high power density, intrinsic safety, low cost, and environ...