We studied the atomic and electronic structures of a one-dimensional (1-D) junction with low temperature scanning tunneling microscopy (STM). The junction smoothly connects two parts of single wall carbon nanotubes (CNTs) introducing defect structures. The two parts of the carbon nanotube are both semiconducting with the measured band gaps of 0.92 and 0.80 eV. In order to map out detailed electronic structures, we performed scanning tunneling spectroscopy (STS) measurement at the selected positions on the axis of carbon nanotubes. We observed gap states localized near the junction.close7
An individual single-wall carbon nanotube has a periodic structure. Despite that, and because nanotu...
Scanning tunneling microscopy, spectroscopy, and tight-binding calculations have been used to elucid...
Several intramolecular junctions (IMJs) connecting two semiconductor single-wall carbon nanotubes (S...
Intramolecular junctions in single-walled carbon nanotubes are potentially ideal structures for buil...
Scanning tunneling microscopy of semiconductor-semiconductor carbon nanotube junctions with differen...
This topical review summarizes scanning tunneling microscopy investigations of the electronic proper...
The local electronic structure of semiconducting single-wall carbon nanotubes was studied with scann...
Single-wall carbon nanotubes (SWNTs) are unique molecular conductors that can act as quantum wires o...
Recent scanning tunneling microscopy studies of the intrinsic electronic properties of single-walled...
The atomic and electronic structures of a single-wall carbon nanotube prepared on the Au(1 1 1) surf...
The electronic structure of single-wall nanotubes in intact, undissolved "buckypaper'' has been stud...
This communication describes scanning tunnelling microscopy investigations of the electronic propert...
In this thesis Postma presents transport experiments performed on individual single-wall carbon nano...
Recent years have witnessed an increased demand for more powerful computers and continuous miniaturi...
We have measured local electronic transport through a junction of single-wall carbon nanotube (SWNT)...
An individual single-wall carbon nanotube has a periodic structure. Despite that, and because nanotu...
Scanning tunneling microscopy, spectroscopy, and tight-binding calculations have been used to elucid...
Several intramolecular junctions (IMJs) connecting two semiconductor single-wall carbon nanotubes (S...
Intramolecular junctions in single-walled carbon nanotubes are potentially ideal structures for buil...
Scanning tunneling microscopy of semiconductor-semiconductor carbon nanotube junctions with differen...
This topical review summarizes scanning tunneling microscopy investigations of the electronic proper...
The local electronic structure of semiconducting single-wall carbon nanotubes was studied with scann...
Single-wall carbon nanotubes (SWNTs) are unique molecular conductors that can act as quantum wires o...
Recent scanning tunneling microscopy studies of the intrinsic electronic properties of single-walled...
The atomic and electronic structures of a single-wall carbon nanotube prepared on the Au(1 1 1) surf...
The electronic structure of single-wall nanotubes in intact, undissolved "buckypaper'' has been stud...
This communication describes scanning tunnelling microscopy investigations of the electronic propert...
In this thesis Postma presents transport experiments performed on individual single-wall carbon nano...
Recent years have witnessed an increased demand for more powerful computers and continuous miniaturi...
We have measured local electronic transport through a junction of single-wall carbon nanotube (SWNT)...
An individual single-wall carbon nanotube has a periodic structure. Despite that, and because nanotu...
Scanning tunneling microscopy, spectroscopy, and tight-binding calculations have been used to elucid...
Several intramolecular junctions (IMJs) connecting two semiconductor single-wall carbon nanotubes (S...