The effects of applied hydrostatic pressure on the optical transitions in semiconducting single-walled car-bon nanotubes with different diameters and chiralities have been studied using optical absorption and pho-toluminescence spectroscopy. The excitonic transitions associated with the band-gap (the first van Hove transition) energies in the carbon nanotubes are found to shift to lower energy at a rate depending on nanotube structure. The excitonic transitions between the first excited confinement states (the second van Hove transitions) are found to be much less sensitive to the applied hydrostatic pressure. All nanotubes show a dependence on their chirality in terms of pressure coefficient of the band-gap energy, with the lar-ger-diamete...
The electronic structures of a series of carbon nanotubes with different sizes, chiralities, ends, a...
International audienceWe have measured the low-energy excitonic transitions of chiral assigned indiv...
We used simulations with a classical force field to study the transformation under hydrostatic press...
Summary: The hydrostatic pressure coefficients of interband transition energies of a number of singl...
In this Letter the electronic properties of double-walled carbon nanotubes (DWCNTs) were studied by ...
We present a systematic study of pressure effects in various CNTs samples: SWCNTs (unoriented and or...
We study the optical properties of carbon nanotubes within the single-band tight-binding approximati...
The high-pressure behavior of single-walled carbon nanotubes (SWCNTs) filled with C-60 molecules, so...
The unique nature of optical properties of single-walled carbon nanotubes (SWCNT), together with th...
The pressure dependence of the Raman-active modes in carbon nanotubes has become of interest because...
Abstract. We studied the high-energy Raman modes of single walled carbon nanotubes by pressure exper...
The main goal of the present work is to study the stability of carbon nanotubes via the pressure-ind...
We address the dependence of the relative photocurrent quantum yield (QY) on the excitation energy a...
Optical properties of a series of finite sized hydrogenated carbon nanotubes with the smallest diame...
We studied the structure of single-walled carbon nanotubes under hydrostatic pressure by first-princ...
The electronic structures of a series of carbon nanotubes with different sizes, chiralities, ends, a...
International audienceWe have measured the low-energy excitonic transitions of chiral assigned indiv...
We used simulations with a classical force field to study the transformation under hydrostatic press...
Summary: The hydrostatic pressure coefficients of interband transition energies of a number of singl...
In this Letter the electronic properties of double-walled carbon nanotubes (DWCNTs) were studied by ...
We present a systematic study of pressure effects in various CNTs samples: SWCNTs (unoriented and or...
We study the optical properties of carbon nanotubes within the single-band tight-binding approximati...
The high-pressure behavior of single-walled carbon nanotubes (SWCNTs) filled with C-60 molecules, so...
The unique nature of optical properties of single-walled carbon nanotubes (SWCNT), together with th...
The pressure dependence of the Raman-active modes in carbon nanotubes has become of interest because...
Abstract. We studied the high-energy Raman modes of single walled carbon nanotubes by pressure exper...
The main goal of the present work is to study the stability of carbon nanotubes via the pressure-ind...
We address the dependence of the relative photocurrent quantum yield (QY) on the excitation energy a...
Optical properties of a series of finite sized hydrogenated carbon nanotubes with the smallest diame...
We studied the structure of single-walled carbon nanotubes under hydrostatic pressure by first-princ...
The electronic structures of a series of carbon nanotubes with different sizes, chiralities, ends, a...
International audienceWe have measured the low-energy excitonic transitions of chiral assigned indiv...
We used simulations with a classical force field to study the transformation under hydrostatic press...