Growing graphene nanoribbons from small organic molecules encapsulated in carbon nanotubes can result in products with uniform width and chirality. We propose a method based on encapsulation of 1,2,4-trichlorobenzene from the liquid phase and subsequent annealing. This procedure results in graphene nanoribbons several tens of nanometers long. The presence of nanoribbons was proven by Raman spectra both on macroscopic samples and on the nanoscale by tip-enhanced Raman scattering and high-resolution transmission electron microscopic images
Graphene nanoribbons with sub-nanometer widths are extremely interesting for nanoscale electronics a...
In this issue of Chem, Rubin and coworkers have developed a new approach for the bottom-up synthesis...
In this issue of Chem, Rubin and coworkers have developed a new approach for the bottom-up synthesis...
Growing graphene nanoribbons from small organic molecules encapsulated in carbon nanotubes can resul...
Growing graphene nanoribbons from small organic molecules encapsulated in carbon nanotubes can resul...
Growing graphene nanoribbons from small organic molecules encapsulated in carbon nanotubes can resul...
Graphene nanoribbons are prepared inside boron nitride nanotubes by liquid phase encapsulation and s...
Recently, the formation of graphene by exfoliation of carbon nanotubes (CNT) has shown increasing in...
Carbon nanotubes (CNTs) act as efficient nanoreactors, templating the assembly of sulfur-terminated ...
Carbon nanotubes (CNTs) act as efficient nanoreactors, templating the assembly of sulfur-terminated ...
A novel physico-chemical route to produce few layer graphene nanoribbons with atomically smooth edge...
Chemical functionalization of the outer graphene layer of carbon nanotubes (CNT) has been increasing...
Controlling the edge morphology and terminations of graphene nanoribbons (GNR) allows tailoring thei...
The process of formation of graphene by exfoliation of carbon nanotubes (CNT) or graphite originates...
Graphene nanoribbons with sub-nanometer widths are extremely interesting for nanoscale electronics a...
Graphene nanoribbons with sub-nanometer widths are extremely interesting for nanoscale electronics a...
In this issue of Chem, Rubin and coworkers have developed a new approach for the bottom-up synthesis...
In this issue of Chem, Rubin and coworkers have developed a new approach for the bottom-up synthesis...
Growing graphene nanoribbons from small organic molecules encapsulated in carbon nanotubes can resul...
Growing graphene nanoribbons from small organic molecules encapsulated in carbon nanotubes can resul...
Growing graphene nanoribbons from small organic molecules encapsulated in carbon nanotubes can resul...
Graphene nanoribbons are prepared inside boron nitride nanotubes by liquid phase encapsulation and s...
Recently, the formation of graphene by exfoliation of carbon nanotubes (CNT) has shown increasing in...
Carbon nanotubes (CNTs) act as efficient nanoreactors, templating the assembly of sulfur-terminated ...
Carbon nanotubes (CNTs) act as efficient nanoreactors, templating the assembly of sulfur-terminated ...
A novel physico-chemical route to produce few layer graphene nanoribbons with atomically smooth edge...
Chemical functionalization of the outer graphene layer of carbon nanotubes (CNT) has been increasing...
Controlling the edge morphology and terminations of graphene nanoribbons (GNR) allows tailoring thei...
The process of formation of graphene by exfoliation of carbon nanotubes (CNT) or graphite originates...
Graphene nanoribbons with sub-nanometer widths are extremely interesting for nanoscale electronics a...
Graphene nanoribbons with sub-nanometer widths are extremely interesting for nanoscale electronics a...
In this issue of Chem, Rubin and coworkers have developed a new approach for the bottom-up synthesis...
In this issue of Chem, Rubin and coworkers have developed a new approach for the bottom-up synthesis...