We investigated the electronic structure of semiconducting single-walled carbon nanotubes (CNTs) adsorbed on the (111) surfaces of Au, Ag, Pt, and Pd and on the (0001) surfaces of Mg by first-principles calculations. Our calculations show that the electronic structure of the CNTs adsorbed on the metal surfaces strongly depends on the metal species. We found that on Pd surfaces, the characteristic one-dimensional electronic structure of the CNTs is totally disrupted by the strong hybridization between the π state of the CNTs and the d state of the Pd surfaces. In sharp contrast, on the Au surfaces, the CNTs retain the one-dimensional properties of their electronic structure. The distribution of the total valence charge of the CNTs on the Pd ...
We study quasi-ballistic electron transport in metallic $(6,0)$ carbon nanotubes (CNTs) of variable ...
We have examined the effects of radial deformation and transfer doping on the electronic properties ...
We have studied the binding energies and electronic structures of metal (Ti, Al, Au) chains adsorbed...
A total-energy electronic-structure calculation is performed to explore energetics and electronic st...
Our first-principles study of the contact between a semiconducting single-walled carbon nanotube ~s...
The interactions between carbon nanotubes (CNTs) and metal adatoms as well as metal contacts are stu...
Adsorption geometries and binding affinities of metal nanoparticles onto carbon nanotubes (CNTs) are...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
We have explored the room temperature response of metal nanoparticle decorated single-walled carbon ...
We study the effect of the molecular charge transfer on the electronic structure of metallic (5,5) a...
In this paper we show the results of systematic investigations for the electronic-structure modifica...
The Schottky barrier at the metal-nanotube contact has been a prime issue in the nanoscale devices. ...
We present the first ab initio study of semiconducting carbon nanotubes adsorbed on the unpassivated...
We have explored the room temperature response of metal nanoparticle decorated single-walled carbon ...
The structural and electronic structure of single wall carbon nanotubes adsorbed on Au(111) has been...
We study quasi-ballistic electron transport in metallic $(6,0)$ carbon nanotubes (CNTs) of variable ...
We have examined the effects of radial deformation and transfer doping on the electronic properties ...
We have studied the binding energies and electronic structures of metal (Ti, Al, Au) chains adsorbed...
A total-energy electronic-structure calculation is performed to explore energetics and electronic st...
Our first-principles study of the contact between a semiconducting single-walled carbon nanotube ~s...
The interactions between carbon nanotubes (CNTs) and metal adatoms as well as metal contacts are stu...
Adsorption geometries and binding affinities of metal nanoparticles onto carbon nanotubes (CNTs) are...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
We have explored the room temperature response of metal nanoparticle decorated single-walled carbon ...
We study the effect of the molecular charge transfer on the electronic structure of metallic (5,5) a...
In this paper we show the results of systematic investigations for the electronic-structure modifica...
The Schottky barrier at the metal-nanotube contact has been a prime issue in the nanoscale devices. ...
We present the first ab initio study of semiconducting carbon nanotubes adsorbed on the unpassivated...
We have explored the room temperature response of metal nanoparticle decorated single-walled carbon ...
The structural and electronic structure of single wall carbon nanotubes adsorbed on Au(111) has been...
We study quasi-ballistic electron transport in metallic $(6,0)$ carbon nanotubes (CNTs) of variable ...
We have examined the effects of radial deformation and transfer doping on the electronic properties ...
We have studied the binding energies and electronic structures of metal (Ti, Al, Au) chains adsorbed...