We present results of density functional theory calculations on the lithium (Li) ion storage capacity of three different two dimensional porous graphene-like membranes. The graphitic carbon nitride membrane, g-CN, is found to have a large Li storage capacity of at least 813 mA h g(-1) (LiCN). However, it is also found that the Li interacts very strongly with the membrane indicating that this is most likely irreversible. According to the calculations, graphenylene or biphenylene carbon (BPC) has a storage capacity of 487 mA h g(-1) (Li15C6) which is higher than that for graphite. We also find that Li is very mobile on these materials and does not interact as strongly with the membrane making it a more suitable anode material. Inorganic graph...
Distinct from pure graphene, N-doped graphene (GN) has been found to possess high rate capability an...
N-graphdiyne monolayers, a set of carbon nitride nanosheets, have been synthesized recently through ...
The adsorption of Li ions on boron doped graphene was investigated using a first-principles method. ...
We present results from density functional theory calculations of the lithium adsorption onto 2D gra...
We present results from density functional theory calculations of the lithium adsorption onto 2D gra...
We present results of density functional theory calculations on the lithium (Li) ion storage capacit...
Graphdiyne (GD) is a new carbon allotrope, consisting of an sp- and sp -hybridized carbon network. I...
Graphitic carbon nitride nanosheet (i.e., g‐C3N4) is identified as a suitable graphene analogue due ...
Nanomaterials are anticipated to be promising storage media, owing to their high surface-to-mass rat...
Using first-principles calculations based on density functional theory, we show that recently synthe...
Graphynes, two-dimensional layers of sp- and sp(2)-bonded carbon atoms, have recently received consi...
First-principles calculations based on density functional theory are carried out to investigate the ...
Graphitic carbon nitride nanosheet (i.e., g-CN) is identified as a suitable graphene analogue due to...
In this article, we investigate the storage of lithium ions between two parallel graphene sheets usi...
Many key performance characteristics of carbon-based lithium-ion battery anodes are largely determin...
Distinct from pure graphene, N-doped graphene (GN) has been found to possess high rate capability an...
N-graphdiyne monolayers, a set of carbon nitride nanosheets, have been synthesized recently through ...
The adsorption of Li ions on boron doped graphene was investigated using a first-principles method. ...
We present results from density functional theory calculations of the lithium adsorption onto 2D gra...
We present results from density functional theory calculations of the lithium adsorption onto 2D gra...
We present results of density functional theory calculations on the lithium (Li) ion storage capacit...
Graphdiyne (GD) is a new carbon allotrope, consisting of an sp- and sp -hybridized carbon network. I...
Graphitic carbon nitride nanosheet (i.e., g‐C3N4) is identified as a suitable graphene analogue due ...
Nanomaterials are anticipated to be promising storage media, owing to their high surface-to-mass rat...
Using first-principles calculations based on density functional theory, we show that recently synthe...
Graphynes, two-dimensional layers of sp- and sp(2)-bonded carbon atoms, have recently received consi...
First-principles calculations based on density functional theory are carried out to investigate the ...
Graphitic carbon nitride nanosheet (i.e., g-CN) is identified as a suitable graphene analogue due to...
In this article, we investigate the storage of lithium ions between two parallel graphene sheets usi...
Many key performance characteristics of carbon-based lithium-ion battery anodes are largely determin...
Distinct from pure graphene, N-doped graphene (GN) has been found to possess high rate capability an...
N-graphdiyne monolayers, a set of carbon nitride nanosheets, have been synthesized recently through ...
The adsorption of Li ions on boron doped graphene was investigated using a first-principles method. ...