Long linear carbon chains (LLCCs) encapsulated inside double-walled carbon nanotubes (DWCNTs) are regarded as a promising realization of carbyne, the truly one-dimensional allotrope of carbon. While the electronic and vibronic properties of the encapsulated LLCC are expected to be influenced by its nanotube host, this dependence has not been investigated experimentally so far. Here we bridge this gap by studying individual LLCCs encapsulated in DWCNTs with tip-enhanced Raman scattering (TERS). We reveal that the nanotube host, characterized by its chirality, determines the vibronic and electronic properties of the encapsulated LLCC. By choice of chirality, the fundamental Raman mode (C-mode) of the chain is tunable by ∼95 cm–1 and its band ...
We report on the direct visualization of chirality changes in carbon nanotubes by mapping local chan...
Evaluations of quantum coupling between electrons and phonons in well-defined nanostructure will be ...
Specific and tunable modification to the optical properties of single-wall carbon nanotubes (SWCNTs)...
Carbyne, i.e. an infinitely long linear carbon chain (LCC), has been at the focus of a lot of resear...
Single-chirality (n, m) carbon nanotubes exhibit the same richness in physics of graphene including ...
In this work, the Raman spectra of LCCs encapsulated single-walled carbon nanotubes (SWCNTs) are cal...
Structural and electronic properties of multiwall carbon nanotubes (MWCNTs) containing linear carbon...
Long linear chains of carbon encapsulated in carbon nanotubes represent the finite realization of ca...
Ultralong linear carbon chains of more than 6000 carbon atoms have recently been synthesized within ...
Multiwalled carbon nanotubes (MWCNT) have been synthesized on graphite cathodes by arc discharge in ...
International audienceThe goal of this chapter is to review the main information derived from Raman ...
Linear carbon chains (LCCs) have been shown to grow inside double-walled carbon nanotubes (DWCNTs), ...
Carbyne, a linear chain of carbon atoms, is the truly one-dimensional allotrope of carbon and the st...
The sigma+pi electron densities of states of chiral carbon nanotubes are computed with a tight-bindi...
Raman spectroscopy's D:G ratio is a well-known indicator of graphitic crystallinity in single-wall c...
We report on the direct visualization of chirality changes in carbon nanotubes by mapping local chan...
Evaluations of quantum coupling between electrons and phonons in well-defined nanostructure will be ...
Specific and tunable modification to the optical properties of single-wall carbon nanotubes (SWCNTs)...
Carbyne, i.e. an infinitely long linear carbon chain (LCC), has been at the focus of a lot of resear...
Single-chirality (n, m) carbon nanotubes exhibit the same richness in physics of graphene including ...
In this work, the Raman spectra of LCCs encapsulated single-walled carbon nanotubes (SWCNTs) are cal...
Structural and electronic properties of multiwall carbon nanotubes (MWCNTs) containing linear carbon...
Long linear chains of carbon encapsulated in carbon nanotubes represent the finite realization of ca...
Ultralong linear carbon chains of more than 6000 carbon atoms have recently been synthesized within ...
Multiwalled carbon nanotubes (MWCNT) have been synthesized on graphite cathodes by arc discharge in ...
International audienceThe goal of this chapter is to review the main information derived from Raman ...
Linear carbon chains (LCCs) have been shown to grow inside double-walled carbon nanotubes (DWCNTs), ...
Carbyne, a linear chain of carbon atoms, is the truly one-dimensional allotrope of carbon and the st...
The sigma+pi electron densities of states of chiral carbon nanotubes are computed with a tight-bindi...
Raman spectroscopy's D:G ratio is a well-known indicator of graphitic crystallinity in single-wall c...
We report on the direct visualization of chirality changes in carbon nanotubes by mapping local chan...
Evaluations of quantum coupling between electrons and phonons in well-defined nanostructure will be ...
Specific and tunable modification to the optical properties of single-wall carbon nanotubes (SWCNTs)...