Hard carbon exhibits high theoretical capacity for sodium-ion batteries. However, its practical application suffers from low electric conductivity, poor electrochemical stability, and sluggish kinetics. To tackle these challenges, novel nitrogen-doped carbon spheres with mesopores, ultrathin nanostructure, and optimal graphitization are prepared by a three-step procedure. We find that the as-prepared sample (NMCSs-800) with an optimal structure and nitrogen content delivers a high reversible sodium storage capacity of 334.7 mA h/g at 50 mA/g and an ultrahigh rate performance of 93.9 mA h/g at 5 A/g, which is better than most state-of-the-art carbon materials. The improved energy storage capacity is attributed to its unique architecture and ...
Nitrogen-rich carbon with interconnected mesoporous structure has been simply prepared via a nano-Ca...
Hard carbon (HC) doped with heteroatoms is considered an ideal anode for sodium-ion batteries (SIBs)...
\u3cp\u3eThe realization of electrochemical energy storage devices combining high energy and power d...
Hard carbons with a disordered graphitic structure show promise as anode materials in next generatio...
Nitrogen‐doped hollow carbon nanospheres (N‐HCSs) were prepared by a facile template method with dop...
The realization of electrochemical energy storage devices combining high energy and power density pl...
The realization of electrochemical energy storage devices combining high energy and power density pl...
We demonstrate an approach to prepare nitrogen-rich hard carbon (N-HCS) from biomass as a robust ano...
A three-dimensional nitrogen-doped carbon framework (NCF) has been synthesized by annealing a zeolit...
The realization of electrochemical energy storage devices combining high energy and power density pl...
The realization of electrochemical energy storage devices combining high energy and power density pl...
The realization of electrochemical energy storage devices combining high energy and power density pl...
A three-dimensional nitrogen-doped carbon framework (NCF) has been synthesized by annealing a zeolit...
Hard carbon is the most promising anode material for sodium–ion batteries (SIBs). However, its elect...
The realization of electrochemical energy storage devices combining high energy and power density pl...
Nitrogen-rich carbon with interconnected mesoporous structure has been simply prepared via a nano-Ca...
Hard carbon (HC) doped with heteroatoms is considered an ideal anode for sodium-ion batteries (SIBs)...
\u3cp\u3eThe realization of electrochemical energy storage devices combining high energy and power d...
Hard carbons with a disordered graphitic structure show promise as anode materials in next generatio...
Nitrogen‐doped hollow carbon nanospheres (N‐HCSs) were prepared by a facile template method with dop...
The realization of electrochemical energy storage devices combining high energy and power density pl...
The realization of electrochemical energy storage devices combining high energy and power density pl...
We demonstrate an approach to prepare nitrogen-rich hard carbon (N-HCS) from biomass as a robust ano...
A three-dimensional nitrogen-doped carbon framework (NCF) has been synthesized by annealing a zeolit...
The realization of electrochemical energy storage devices combining high energy and power density pl...
The realization of electrochemical energy storage devices combining high energy and power density pl...
The realization of electrochemical energy storage devices combining high energy and power density pl...
A three-dimensional nitrogen-doped carbon framework (NCF) has been synthesized by annealing a zeolit...
Hard carbon is the most promising anode material for sodium–ion batteries (SIBs). However, its elect...
The realization of electrochemical energy storage devices combining high energy and power density pl...
Nitrogen-rich carbon with interconnected mesoporous structure has been simply prepared via a nano-Ca...
Hard carbon (HC) doped with heteroatoms is considered an ideal anode for sodium-ion batteries (SIBs)...
\u3cp\u3eThe realization of electrochemical energy storage devices combining high energy and power d...