Semiconducting carbon nanotubes (CNTs) have a direct chirality-dependent bandgap and reduced dimensionality-related quantum confinement effects, which are closely related to the performance of optoelectronic devices. Here, taking advantage of the large energy separations between neutral singlet excitons and charged excitons, i.e. trions in CNTs, we have achieved for the first time all trion electroluminescence (EL) emission from chirality-sorted (8,3) and (8,4) CNT-based solid state devices. We showed that strong trion emission can be obtained as a result of localized impact excitation and electrically injected holes, with an estimated efficiency of similar to 5 x 10(-4) photons per injected hole. The importance of contact-controlled carrie...
High quantum efficiencies and low current thresholds are important properties for all classes of sem...
Electrically driven light emission from carbon nanotubes could be used in nanoscale lasers and singl...
We demonstrate random network single-walled carbon nanotube (SWNT) field-effect transistors (FETs) i...
Near-infrared emission from semiconducting single-walled carbon nanotubes (SWNTs) usually results fr...
We present evidence of all-optical trion generation and emission in pristine single-walled carbon na...
We have measured the electroluminescence and photoluminescence of (9,7)-semiconducting carbon nanotu...
We present evidence of all optical trion generation and emission in undoped single walled carbon nan...
We observe trion emission from suspended carbon nanotubes where carriers are introduced electrostati...
Applied as on-chip infrared light sources for future nanophotonic circuits and information optoelect...
We demonstrate efficient creation of defect-bound trions through chemical doping of controlled sp<su...
Electroluminescence (EL) measurements are carried out on a two-terminal carbon nanotube (CNT) based ...
The photophysics of single-wall carbon nanotubes (SWCNTs) is intensively studied due to their potent...
Gauging free carrier generation (FCG) in optically excited, charge-neutral single-walled carbon nano...
Electrically driven light-emitters based on carbon nanotubes are highly promising candidates for onc...
Near-infrared light-emitting devices based on chirality-sorted (8,3), (8,4) enriched carbon nanotube...
High quantum efficiencies and low current thresholds are important properties for all classes of sem...
Electrically driven light emission from carbon nanotubes could be used in nanoscale lasers and singl...
We demonstrate random network single-walled carbon nanotube (SWNT) field-effect transistors (FETs) i...
Near-infrared emission from semiconducting single-walled carbon nanotubes (SWNTs) usually results fr...
We present evidence of all-optical trion generation and emission in pristine single-walled carbon na...
We have measured the electroluminescence and photoluminescence of (9,7)-semiconducting carbon nanotu...
We present evidence of all optical trion generation and emission in undoped single walled carbon nan...
We observe trion emission from suspended carbon nanotubes where carriers are introduced electrostati...
Applied as on-chip infrared light sources for future nanophotonic circuits and information optoelect...
We demonstrate efficient creation of defect-bound trions through chemical doping of controlled sp<su...
Electroluminescence (EL) measurements are carried out on a two-terminal carbon nanotube (CNT) based ...
The photophysics of single-wall carbon nanotubes (SWCNTs) is intensively studied due to their potent...
Gauging free carrier generation (FCG) in optically excited, charge-neutral single-walled carbon nano...
Electrically driven light-emitters based on carbon nanotubes are highly promising candidates for onc...
Near-infrared light-emitting devices based on chirality-sorted (8,3), (8,4) enriched carbon nanotube...
High quantum efficiencies and low current thresholds are important properties for all classes of sem...
Electrically driven light emission from carbon nanotubes could be used in nanoscale lasers and singl...
We demonstrate random network single-walled carbon nanotube (SWNT) field-effect transistors (FETs) i...