© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Carbon materials have attracted considerable attention as anodes for lithium-ion and sodium-ion batteries due to their low cost and environmental friendliness. This work reports an advanced carbon nanostructure that takes advantage of the chelation effect of glucose and metal ions, which ensures the uniform dispersion of metal in the precursor. Thus, an effective catalytic conversion from sp3 to sp2 carbon occurs, enabling simultaneously formation of pores with catalyzed graphitic structures. Due to the low carbonization temperature and short carbonization time as well as the different catalytic degree of various metals, a series of expanded graphitic layers from 0.34 to 0.44 nm with defects...
First published:24 February 2020Porous carbon materials have demonstrated exceptional performance in...
Advent of nanotechnology has generated huge interest in application of carbon-based nanomaterials as...
Two-dimensional (2D) porous graphitic carbon nanosheets (PGC nanosheets) as a high-rate anode materi...
A hindrance to the practical use of sodium-ion batteries is the lack of adequate anode materials. By...
Lithium-ion batteries (LIBs) have dominated the energy storage market for more than two decades; how...
Carbon-based materials are the most prospective anodes. Typically, a single carbon-based material is...
Hard carbon has emerged as a candidate for anode material because of its abundant resources and larg...
The pursuit of a high-capacity anode material has been urgently required for commercializing sodium-...
Na-ion batteries and K-ion batteries are promising alternatives to vastly used lithium-ion batteries...
Hard carbon anodes with all-plateau capacities below 0.1 V are prerequisites to achieve high-energy-...
A long-range graphitic ordering in carbon anodes is desirable since it facilitates Li+ transport wit...
Hard carbons with a disordered graphitic structure show promise as anode materials in next generatio...
Taking advantage of sodium polyacrylate, composed of interlaced carbon chains and inorganic function...
Roomerature sodium-ion batteries have been regarded as promising candidates for grid-scale energy st...
In recent years, sodium-ion batteries (NIBs) have been greatly explored as an alternative technology...
First published:24 February 2020Porous carbon materials have demonstrated exceptional performance in...
Advent of nanotechnology has generated huge interest in application of carbon-based nanomaterials as...
Two-dimensional (2D) porous graphitic carbon nanosheets (PGC nanosheets) as a high-rate anode materi...
A hindrance to the practical use of sodium-ion batteries is the lack of adequate anode materials. By...
Lithium-ion batteries (LIBs) have dominated the energy storage market for more than two decades; how...
Carbon-based materials are the most prospective anodes. Typically, a single carbon-based material is...
Hard carbon has emerged as a candidate for anode material because of its abundant resources and larg...
The pursuit of a high-capacity anode material has been urgently required for commercializing sodium-...
Na-ion batteries and K-ion batteries are promising alternatives to vastly used lithium-ion batteries...
Hard carbon anodes with all-plateau capacities below 0.1 V are prerequisites to achieve high-energy-...
A long-range graphitic ordering in carbon anodes is desirable since it facilitates Li+ transport wit...
Hard carbons with a disordered graphitic structure show promise as anode materials in next generatio...
Taking advantage of sodium polyacrylate, composed of interlaced carbon chains and inorganic function...
Roomerature sodium-ion batteries have been regarded as promising candidates for grid-scale energy st...
In recent years, sodium-ion batteries (NIBs) have been greatly explored as an alternative technology...
First published:24 February 2020Porous carbon materials have demonstrated exceptional performance in...
Advent of nanotechnology has generated huge interest in application of carbon-based nanomaterials as...
Two-dimensional (2D) porous graphitic carbon nanosheets (PGC nanosheets) as a high-rate anode materi...