The reversible formation of chemical bonds has potential for tuning multi-electron redox reactions in emerging energy-storage applications, such as lith...
Lithium-sulfur(Li-S)batteries are one of the most promising modern-day energy supply systems because of their high theoretical energy density and low co...
Lithium-sulfurbatteries (LSBs) are a potential electrochemical storage system for the future with high capacity (1675 mAh g(-1)) and energy density (si...
A novel sheet-on-sheet architecture with abundant sulfur vacancies (Vs) is designed by in situ growth of flake-like ZnIn2S4 on the reduced graphene oxid...
Lithium-sulfurbatteries(LSBs)are promising as the next generation energy storage options.However,their wide applications have been technically challeng...
Developing high energy density lithium-sulfur (Li–S) batteries mainly rely on the design of the electrode matrix which can accommodate highsulfur load...
Lithium-sulfurbatteries have gotten a growing number of investigations because of its overwhelming superiority in theoretical energy density and cost...
Lithium-sulfurbatteries have gotten a growing number of investigations because of its overwhelming superiority in theoretical energy density and cost...
The reasonable design of metal compound electrocatalysts is proved to be a good approach to accelerate the sluggish conversion kinetics ofpolysulfidesforhighperformancelithium鈥搒ulfur (Li鈥揝) batteries. Since metal cations usua...