International audienceVia density functional theory calculations, we explore the process of graphene and carbon nanotube fluorination. Contrary to graphene, HF-catalyzed carbon nanotube fluorination adds fluorine pairs at (1,4) spacing, naturally leading to a self-organized C4F coverage, which call subsequently rearrange into dense axial C2F lines by fluorine diffusion upon solubilization or heat treatment. Controlling the fluorination process and subsequent nanotube processing results in fluorinated material types with unexplored electronic and chemical properties
Calculations of fluorine binding and migration on carbon nanotube surfaces show that fluorine forms ...
Here we investigated the fluorination of graphene oxide nanoribbons (GONRs) using H2 and F2 gases at...
Based on the results of first-principles calculations we demonstrate that significant distortion of ...
International audienceSingle-wall carbon nanotubes (SWCNTs) are fluorinated around 200 °C with molec...
We present a theoretical investigation on the chemical addition patterns governing the fluorination ...
Single-wall carbon nanotubes (SWCNTs) are fluorinated around 200 °C with molecular fluorine (F<sub>2...
Reaction temperatures and time are probed to get the optimal fluorination conditions in order to pro...
Direct fluorination utilizing F-2/N-2 was confirmed to be one of the most efficient approaches to de...
Calculations of fluorine binding and migration on carbon nanotube surfaces show that fluorine forms ...
Double‐walled carbon nanotubes (DWCNTs) have been fluorinated by pure molecular fluorine (F2) at roo...
International audienceTwo samples of double-walled carbon nanotubes (DWCNTs), one with well-graphiti...
[[abstract]]Arc-produced carbon multi-walled nanotubes (MVvNTs) were fluorinated at 420 degrees C in...
International audienceThree different modes of fluorine chemisorption at the surface of SWNTs have b...
The present contribution details, in an as exhaustive as possible way, the fundamental knowledge acq...
Double-walled carbon nanotubes (DWCNTs) are fluorinated using (1) fluorine F2 at 200 °C, (2) gaseous...
Calculations of fluorine binding and migration on carbon nanotube surfaces show that fluorine forms ...
Here we investigated the fluorination of graphene oxide nanoribbons (GONRs) using H2 and F2 gases at...
Based on the results of first-principles calculations we demonstrate that significant distortion of ...
International audienceSingle-wall carbon nanotubes (SWCNTs) are fluorinated around 200 °C with molec...
We present a theoretical investigation on the chemical addition patterns governing the fluorination ...
Single-wall carbon nanotubes (SWCNTs) are fluorinated around 200 °C with molecular fluorine (F<sub>2...
Reaction temperatures and time are probed to get the optimal fluorination conditions in order to pro...
Direct fluorination utilizing F-2/N-2 was confirmed to be one of the most efficient approaches to de...
Calculations of fluorine binding and migration on carbon nanotube surfaces show that fluorine forms ...
Double‐walled carbon nanotubes (DWCNTs) have been fluorinated by pure molecular fluorine (F2) at roo...
International audienceTwo samples of double-walled carbon nanotubes (DWCNTs), one with well-graphiti...
[[abstract]]Arc-produced carbon multi-walled nanotubes (MVvNTs) were fluorinated at 420 degrees C in...
International audienceThree different modes of fluorine chemisorption at the surface of SWNTs have b...
The present contribution details, in an as exhaustive as possible way, the fundamental knowledge acq...
Double-walled carbon nanotubes (DWCNTs) are fluorinated using (1) fluorine F2 at 200 °C, (2) gaseous...
Calculations of fluorine binding and migration on carbon nanotube surfaces show that fluorine forms ...
Here we investigated the fluorination of graphene oxide nanoribbons (GONRs) using H2 and F2 gases at...
Based on the results of first-principles calculations we demonstrate that significant distortion of ...