Using time-resolved reflectivity measurements on unaligned and aligned bundled single-wall carbon nanotubes with a pump energy of 1.55 eV, quasi-resonant with the second Van Hoye singularity of semiconducting tubes, a positive sign of the transient reflectivity is detected in unaligned nanotubes. In contrast a negative sign is detected in aligned nanotubes. This discovery addresses a long-standing question showing that in unaligned nanotubes the stronger intertube interactions favor the formation of short-lived free charge carriers in semiconducting tubes. A detailed analysis of the transient reflectivity spectral response shows that the free carriers in the photo-excited state of semiconducting tubes move towards metallic tubes in about 40...
Carrier dynamics is investigated in both luminescent and nonluminescent samples of single wall carbo...
Time-resolved carrier dynamics in single wall carbon nanotubes is investigated by means of two-color...
Carrier dynamics is investigated in both luminescent and non luminescent samples of single wall carb...
Using time-resolved reflectivity measurements on unaligned and aligned bundled single-wall carbon na...
One-color transient reflectivity measurements are carried out on two different samples of vertically...
We show that charge-carriers are instantaneously photogenerated in semiconducting carbon nanotubes b...
We show that excitons are not the unique outcome of photoexcitation in single-walled carbon nanotube...
Theory predicts peculiar features for excited-state dynamics in one dimension (1D) that are difficul...
Photoconductivity in individual semiconducting single-wall carbon nanotubes was investigated, using...
This paper focuses on photoconductivity and electroluminescence studies on individual single-wall ca...
High-resolution time resolved transmittivity measurements on horizontally aligned free-standing mult...
Photocurrent spectroscopy has recently been used by several research groups to study the light–matte...
Here, the ability of a novel near‐infrared dye to noncovalently self‐assemble onto the surface of si...
Carrier dynamics is investigated in both luminescent and nonluminescent samples of single wall carbo...
Time-resolved carrier dynamics in single wall carbon nanotubes is investigated by means of two-color...
Carrier dynamics is investigated in both luminescent and non luminescent samples of single wall carb...
Using time-resolved reflectivity measurements on unaligned and aligned bundled single-wall carbon na...
One-color transient reflectivity measurements are carried out on two different samples of vertically...
We show that charge-carriers are instantaneously photogenerated in semiconducting carbon nanotubes b...
We show that excitons are not the unique outcome of photoexcitation in single-walled carbon nanotube...
Theory predicts peculiar features for excited-state dynamics in one dimension (1D) that are difficul...
Photoconductivity in individual semiconducting single-wall carbon nanotubes was investigated, using...
This paper focuses on photoconductivity and electroluminescence studies on individual single-wall ca...
High-resolution time resolved transmittivity measurements on horizontally aligned free-standing mult...
Photocurrent spectroscopy has recently been used by several research groups to study the light–matte...
Here, the ability of a novel near‐infrared dye to noncovalently self‐assemble onto the surface of si...
Carrier dynamics is investigated in both luminescent and nonluminescent samples of single wall carbo...
Time-resolved carrier dynamics in single wall carbon nanotubes is investigated by means of two-color...
Carrier dynamics is investigated in both luminescent and non luminescent samples of single wall carb...