Graphynes, two-dimensional layers of sp- and sp(2)-bonded carbon atoms, have recently received considerable attention because of their potential as new Dirac materials. Here, focusing on their large surface area, we explore the applicability of graphynes as lithium ion battery anodes through the first-principles density functional calculations. We have found that Li potential energies are in the range suitable to be used as anodes. Furthermore, the maximum composite of Li-intercalated multilayer alpha- and gamma-graphynes is found to be C(6)Li3, which corresponds to a specific capacity of 1117 mAh g(-1), twice as large as the previous theoretical prediction for graphynes. The volumetric capacity of Li-intercalated multilayer alpha- and gamm...
Many key performance characteristics of carbon-based lithium-ion battery anodes are largely determin...
Two-dimensional (2D) materials are promising for use in lithium (Li) electrodes due to their high su...
Lithium metal batteries (LMBs) have attracted increasing attentions for their ultrahigh specific cap...
Using the first-principles calculations, we explored the feasibility of using graphdiyne, a 2D layer...
Graphdiyne (GD) is a new carbon allotrope, consisting of an sp- and sp -hybridized carbon network. I...
The breakthrough in the synthesis of graphyne, graphdiyne and graph-4-yne stimulates interest in stu...
The breakthrough in the synthesis of graphyne, graphdiyne and graph-4-yne stimulates interest in stu...
We present results of density functional theory calculations on the lithium (Li) ion storage capacit...
Based on first-principles calculations, the potential of holey graphyne is investigated for battery ...
Based on first-principles calculations, the potential of holey graphyne is investigated for battery ...
N-graphdiyne monolayers, a set of carbon nitride nanosheets, have been synthesized recently through ...
In chloroaluminate ion based aluminum-ion batteries, a graphite cathode shows promising electrochemi...
Sodium-ion batteries (SIBs) are promising candidates for the replacement of lithium-ion batteries (L...
In this article, we investigate the storage of lithium ions between two parallel graphene sheets usi...
Graphene, a two-dimensional all-sp2-hybridized honeycomb nanostructure carbon, has attracted a great...
Many key performance characteristics of carbon-based lithium-ion battery anodes are largely determin...
Two-dimensional (2D) materials are promising for use in lithium (Li) electrodes due to their high su...
Lithium metal batteries (LMBs) have attracted increasing attentions for their ultrahigh specific cap...
Using the first-principles calculations, we explored the feasibility of using graphdiyne, a 2D layer...
Graphdiyne (GD) is a new carbon allotrope, consisting of an sp- and sp -hybridized carbon network. I...
The breakthrough in the synthesis of graphyne, graphdiyne and graph-4-yne stimulates interest in stu...
The breakthrough in the synthesis of graphyne, graphdiyne and graph-4-yne stimulates interest in stu...
We present results of density functional theory calculations on the lithium (Li) ion storage capacit...
Based on first-principles calculations, the potential of holey graphyne is investigated for battery ...
Based on first-principles calculations, the potential of holey graphyne is investigated for battery ...
N-graphdiyne monolayers, a set of carbon nitride nanosheets, have been synthesized recently through ...
In chloroaluminate ion based aluminum-ion batteries, a graphite cathode shows promising electrochemi...
Sodium-ion batteries (SIBs) are promising candidates for the replacement of lithium-ion batteries (L...
In this article, we investigate the storage of lithium ions between two parallel graphene sheets usi...
Graphene, a two-dimensional all-sp2-hybridized honeycomb nanostructure carbon, has attracted a great...
Many key performance characteristics of carbon-based lithium-ion battery anodes are largely determin...
Two-dimensional (2D) materials are promising for use in lithium (Li) electrodes due to their high su...
Lithium metal batteries (LMBs) have attracted increasing attentions for their ultrahigh specific cap...