Although lithium-ion batteries are traditionally considered to be the most promising candidate for electrochemical energy storage owing to their relatively long cycle life and high energy efficiency, their limited energy density as well as high cost are still causing a bottleneck for their long-term applications. Alternatively, rechargeable Li-O2 batteries have the potential to practically provide 3-5 times the gravimetric energy density of conventional Li-ion batteries. However, the lack of advanced electrode design and efficient electrocatalysts for oxygen reduction-evolution reactions remains as one of the grand challenges before this technology can be commercialized. Among various catalyst formulations, nanocarbon composite materials ha...
Lithium-oxygen (Li-O-2) batteries are considered to be the next generation energy storage technology...
Although lithium–oxygen batteries are attracting considerable attention because of the potential for...
Despite the extremely high theoretical specific capacity of lithium oxygen (Li-O-2) electrochemistry...
Rechargeable lithium-oxygen (Li-O-2) batteries have been considered as the most promising candidates...
Alkaline oxygen electrocatalysis, targeting anion exchange membrane fuel cells, Zn-air batteries, an...
Rechargeable nonaqueous Li-O2 batteries are considered and are expected to be the most promising ene...
The global effort to improve the lifetime, power densities and energy efficiency of energy storage a...
The development of highly active and durable electrocatalysts has been of pivotal importance in rene...
The development of highly active, durable, and low-cost oxygen reduction reaction (ORR) catalysts is...
The finite nature of fossil fuels and environmental problems caused by traditional energy sources ca...
Development of advanced electrode materials for Li ion battery (LIB) has attracted great attention d...
Low-cost and highly active electrocatalysts are attractive for Li-O₂ applications. Herein, a 3D inte...
Rechargeable aprotic lithium-oxygen (Li-O2) batteries have attracted significant interest in recent ...
Li-O-2 batteries have attracted considerable attention due to their high energy density. The critica...
The development of electrocatalysts plays a pivotal role in electrocatalytic reactions because the c...
Lithium-oxygen (Li-O-2) batteries are considered to be the next generation energy storage technology...
Although lithium–oxygen batteries are attracting considerable attention because of the potential for...
Despite the extremely high theoretical specific capacity of lithium oxygen (Li-O-2) electrochemistry...
Rechargeable lithium-oxygen (Li-O-2) batteries have been considered as the most promising candidates...
Alkaline oxygen electrocatalysis, targeting anion exchange membrane fuel cells, Zn-air batteries, an...
Rechargeable nonaqueous Li-O2 batteries are considered and are expected to be the most promising ene...
The global effort to improve the lifetime, power densities and energy efficiency of energy storage a...
The development of highly active and durable electrocatalysts has been of pivotal importance in rene...
The development of highly active, durable, and low-cost oxygen reduction reaction (ORR) catalysts is...
The finite nature of fossil fuels and environmental problems caused by traditional energy sources ca...
Development of advanced electrode materials for Li ion battery (LIB) has attracted great attention d...
Low-cost and highly active electrocatalysts are attractive for Li-O₂ applications. Herein, a 3D inte...
Rechargeable aprotic lithium-oxygen (Li-O2) batteries have attracted significant interest in recent ...
Li-O-2 batteries have attracted considerable attention due to their high energy density. The critica...
The development of electrocatalysts plays a pivotal role in electrocatalytic reactions because the c...
Lithium-oxygen (Li-O-2) batteries are considered to be the next generation energy storage technology...
Although lithium–oxygen batteries are attracting considerable attention because of the potential for...
Despite the extremely high theoretical specific capacity of lithium oxygen (Li-O-2) electrochemistry...