We studied Li-intercalated carbon nanotube ropes by first-principles methods. Results show charge transfer between Li and C and small structural deformation due to intercalation. Both the interior of the nanotube and the interstitial space are susceptible for intercalation. The Li intercalation potential of a single-walled nanotube rope is comparable to that of graphite and almost independent of the Li density up to around LiC2, as observed in recent experiments. This density is significantly higher than that of Li-intercalated graphite, making the nanorope a promising candidate for the anode material in battery applications
Nanomaterials are expected to overcome the challenges imposed from bulk materials in the design of e...
Single walled carbon nanotubes (SWNTs) were reacted with molten lithium at 220 °C for two weeks. Thi...
[eng] Theoretical investigations on single-walled carbon nanotubes (SWCNT) have been carried out usi...
We studied Li-intercalated carbon nanotube ropes by first-principles methods. Results show charge tr...
Vertically aligned carbon nanotube (VA-CNT) arrays have been synthesized with lithium (Li) intercala...
The effects of structure and morphology on lithium storage in single-wall carbon nanotube (SWNT) bun...
Vertically aligned carbon nanotube (VA-CNT) arrays have been synthesized with lithium (Li) intercala...
ABSTRACT: Vertically aligned carbon nanotube (VA-CNT) arrays have been synthesized with lithium (Li)...
First-principles calculations based on density functional theory are carried out to investigate the ...
Using first principles calculations, we explore the energetics of intercalating Li atoms into the in...
Carbon nanotubes are promising Li-ion battery (LIB) anode for its nanocavities available for Li. How...
The energetic, geometric, and electronic evolutions of a K-doped single-wall (10,10) carbon nanotube...
The NASA Glenn Research Center is evaluating the use of carbon nanotubes as anode materials for thin...
The intercalation of lithium into the polymorph of titania, TiO2-B, has been examined using firstpri...
We report a composite system for Li intercalation, in which ultrasmall-diameter (4 Angstrom) carbon ...
Nanomaterials are expected to overcome the challenges imposed from bulk materials in the design of e...
Single walled carbon nanotubes (SWNTs) were reacted with molten lithium at 220 °C for two weeks. Thi...
[eng] Theoretical investigations on single-walled carbon nanotubes (SWCNT) have been carried out usi...
We studied Li-intercalated carbon nanotube ropes by first-principles methods. Results show charge tr...
Vertically aligned carbon nanotube (VA-CNT) arrays have been synthesized with lithium (Li) intercala...
The effects of structure and morphology on lithium storage in single-wall carbon nanotube (SWNT) bun...
Vertically aligned carbon nanotube (VA-CNT) arrays have been synthesized with lithium (Li) intercala...
ABSTRACT: Vertically aligned carbon nanotube (VA-CNT) arrays have been synthesized with lithium (Li)...
First-principles calculations based on density functional theory are carried out to investigate the ...
Using first principles calculations, we explore the energetics of intercalating Li atoms into the in...
Carbon nanotubes are promising Li-ion battery (LIB) anode for its nanocavities available for Li. How...
The energetic, geometric, and electronic evolutions of a K-doped single-wall (10,10) carbon nanotube...
The NASA Glenn Research Center is evaluating the use of carbon nanotubes as anode materials for thin...
The intercalation of lithium into the polymorph of titania, TiO2-B, has been examined using firstpri...
We report a composite system for Li intercalation, in which ultrasmall-diameter (4 Angstrom) carbon ...
Nanomaterials are expected to overcome the challenges imposed from bulk materials in the design of e...
Single walled carbon nanotubes (SWNTs) were reacted with molten lithium at 220 °C for two weeks. Thi...
[eng] Theoretical investigations on single-walled carbon nanotubes (SWCNT) have been carried out usi...