Single-wall carbon nanotubes (SWCNTs) exhibit a wide range of physical phenomena depending on their chirality. Nanotube networks typically contain a broad mixture of chiralities, which prevents an in-depth understanding of SWCNT ensemble properties. In particular, electronic-type mixing (the simultaneous presence of semiconductor and metallic nanotubes) in SWCNT networks remains the single largest hurdle to developing a comprehensive view of ensemble nanotube electrical transport, a critical step toward their use in optoelectronics. Here, we systematically study temperature-dependent magnetoconductivity (MC) in networks of highly enriched semiconductor and metal SWCNT films. In the semiconductor-enriched network, we observe two-dimensional ...
The assemblies (films) of carbon nanotubes (CNTs) possess very stable, reproducible, and extraordina...
Electronic and magnetotransport properties of carbon nanotubes have attracted much attention due to...
Electronic transport in an ensemble of multiwall carbon nanotubes and semiconductor nanowires was co...
An experimental study of the low temperature magnetotransport in optically transparent single-wall c...
We report the electric-field effects and magnetotransport in transparent networks of single-wall car...
We report on electrical resistance measurements of an individual carbon nanotube down to a temperatu...
International audienceThe assemblies (films) of carbon nanotubes (CNTs) possess very stable, reprodu...
Electrical transport properties and magnetoresistance of single-wall carbon nanotubes (SWCNT) films ...
Manipulating the electrical properties of carbon nanotubes through semi-metal or semiconductor filli...
Carbon Nanotubes are molecules with exceptional physical properties that are most useful for applica...
The electronic transport in both intrinsic and acid-treated single-walled carbon nanotube networks c...
We have studied the electronic properties of single-wall carbon nanotubes (SWNTs) from room temperat...
Transport mechanism in single wall carbon nanotubes (SWCNT) aggregates has been widely studied and u...
International audienceWe investigate the quantum transport in different individual carbon nanotubes ...
The assemblies (films) of carbon nanotubes (CNTs) possess very stable, reproducible, and extraordina...
Electronic and magnetotransport properties of carbon nanotubes have attracted much attention due to...
Electronic transport in an ensemble of multiwall carbon nanotubes and semiconductor nanowires was co...
An experimental study of the low temperature magnetotransport in optically transparent single-wall c...
We report the electric-field effects and magnetotransport in transparent networks of single-wall car...
We report on electrical resistance measurements of an individual carbon nanotube down to a temperatu...
International audienceThe assemblies (films) of carbon nanotubes (CNTs) possess very stable, reprodu...
Electrical transport properties and magnetoresistance of single-wall carbon nanotubes (SWCNT) films ...
Manipulating the electrical properties of carbon nanotubes through semi-metal or semiconductor filli...
Carbon Nanotubes are molecules with exceptional physical properties that are most useful for applica...
The electronic transport in both intrinsic and acid-treated single-walled carbon nanotube networks c...
We have studied the electronic properties of single-wall carbon nanotubes (SWNTs) from room temperat...
Transport mechanism in single wall carbon nanotubes (SWCNT) aggregates has been widely studied and u...
International audienceWe investigate the quantum transport in different individual carbon nanotubes ...
The assemblies (films) of carbon nanotubes (CNTs) possess very stable, reproducible, and extraordina...
Electronic and magnetotransport properties of carbon nanotubes have attracted much attention due to...
Electronic transport in an ensemble of multiwall carbon nanotubes and semiconductor nanowires was co...