Nonlithium (Li) metal-sulfur batteries are a viable technology for large-scale energy storage due to their relative high energy densities and low cost. However, their practical application is still hindered by the insufficient reversibility and/or limited cycling stability. Herein, we report a high-performance calcium/sodium-sulfur (Ca/Na-S) hybrid battery enabled by a multi-ion chemistry. The introduction of Na ions in the electrolyte greatly boosts the conversion of Ca polysulfides, which has been verified by theoretical calculation and experimental investigation. Meanwhile, the presence of Ca ions constructs a protective electrostatic shield around the initial protrusions on the Na metal anode without prereduction, thus efficiently suppr...
The research on room-temperature sodium-sulfur batteries is gathering significant attention over the...
Emerging rechargeable sodium-ion storage systems—sodium-ion and room-temperature sodium–sulfur (RT-N...
In this work, we investigated the interface between the sodium anode and the sulfide-based solid ele...
Calcium batteries represent a promising alternative to lithium metal systems. The combination of the...
International audienceCalcium batteries represent a promising alternative to lithium metal batteries...
Rechargeable metal–sulfur batteries show great promise for energy storage applications because of th...
Sulfur/Polyacrylonitrile composites provide a promising route towards cathode materials that overcom...
Present mobile devices, transportation tools, and renewable energy technologies are more dependent o...
Sodium-ion batteries (SIBs) have drawn enormous attention in the past few years from both academic a...
In a room-temperature sodium–sulfur (RT Na–S) battery, the complicated reduction reaction of the sul...
Today, Li-ion batteries are the ultimate rechargeable energy storage systems; however, after decades...
Sodium and sulfur offer a promising application in rechargeable batteries due to their low cost, abu...
Lithium-sulfur (Li-S) batteries have drawn tremendous interest in the next-generation energy-storage...
Owing to the ever-increasing safety concerns about conventional lithium-ion batteries, whose applica...
Lithium-sulfur (Li-S) batteries have been receiving great recognition for the past few years. This i...
The research on room-temperature sodium-sulfur batteries is gathering significant attention over the...
Emerging rechargeable sodium-ion storage systems—sodium-ion and room-temperature sodium–sulfur (RT-N...
In this work, we investigated the interface between the sodium anode and the sulfide-based solid ele...
Calcium batteries represent a promising alternative to lithium metal systems. The combination of the...
International audienceCalcium batteries represent a promising alternative to lithium metal batteries...
Rechargeable metal–sulfur batteries show great promise for energy storage applications because of th...
Sulfur/Polyacrylonitrile composites provide a promising route towards cathode materials that overcom...
Present mobile devices, transportation tools, and renewable energy technologies are more dependent o...
Sodium-ion batteries (SIBs) have drawn enormous attention in the past few years from both academic a...
In a room-temperature sodium–sulfur (RT Na–S) battery, the complicated reduction reaction of the sul...
Today, Li-ion batteries are the ultimate rechargeable energy storage systems; however, after decades...
Sodium and sulfur offer a promising application in rechargeable batteries due to their low cost, abu...
Lithium-sulfur (Li-S) batteries have drawn tremendous interest in the next-generation energy-storage...
Owing to the ever-increasing safety concerns about conventional lithium-ion batteries, whose applica...
Lithium-sulfur (Li-S) batteries have been receiving great recognition for the past few years. This i...
The research on room-temperature sodium-sulfur batteries is gathering significant attention over the...
Emerging rechargeable sodium-ion storage systems—sodium-ion and room-temperature sodium–sulfur (RT-N...
In this work, we investigated the interface between the sodium anode and the sulfide-based solid ele...