We carry out a first-principles density-functional study of the interaction between a monatomic Pt wire and a CO molecule, comparing the energies of different adsorption configurations (bridge, on top, substitutional, and tilted bridge) and discussing the effects of spin-orbit (SO) coupling on the electronic structure and on the ballistic conductance of two of these systems (bridge and substitutional). We find that when the wire is unstrained, the bridge configuration is energetically favored, while the substitutional geometry becomes possible only after the breaking of the Pt-Pt bond next to CO. The interaction can be described by a donation/backdonation process similar to that occurring when CO adsorbs on transition-metal surfaces, a pict...
Electronic structure of Pt-modified Ge(001) surface with adsorbed CO molecules is studied...
A molecular wire is an organic molecule that forms a conducting bridge between electronic contacts. ...
The effects of spin-orbit coupling on the conductance of molecular devices made with Au electrodes a...
We carry out a first-principles density-functional study of the interaction between a monatomic Pt w...
We study the energetics, the electronic structure, and the ballistic transport of an infinite Au mon...
Equilibrium structure and electronic transport. properties of a gold nanowire made of a three-atom c...
CO adsorption on an Au monatomic chain is studied within density functional theory in nanocontact ge...
Atomic structure and magnetic properties of monatomic cobalt wires self-assembled on a stepped Pt su...
Platinum monatomic nanowires were predicted to spontaneously develop magnetism, involving a sizable ...
The approach proposed by Choi and Ihm Phys. Rev. B 59 2267 (1999) for calculating the ballistic cond...
Using density-functional theory, we investigate the possible adsorption sites of CO molecules on the...
In this work we present results of a periodic density-functional theory study of the adsorption of c...
We present an implementation of the ballistic Landauer-Buttiker transport scheme in one-dimensional ...
In this study, we perform density functional calculations to investigate the interplay between singl...
We analyze spin-dependent energetics and conductance for one-dimensional (1D) atomic carbon wires co...
Electronic structure of Pt-modified Ge(001) surface with adsorbed CO molecules is studied...
A molecular wire is an organic molecule that forms a conducting bridge between electronic contacts. ...
The effects of spin-orbit coupling on the conductance of molecular devices made with Au electrodes a...
We carry out a first-principles density-functional study of the interaction between a monatomic Pt w...
We study the energetics, the electronic structure, and the ballistic transport of an infinite Au mon...
Equilibrium structure and electronic transport. properties of a gold nanowire made of a three-atom c...
CO adsorption on an Au monatomic chain is studied within density functional theory in nanocontact ge...
Atomic structure and magnetic properties of monatomic cobalt wires self-assembled on a stepped Pt su...
Platinum monatomic nanowires were predicted to spontaneously develop magnetism, involving a sizable ...
The approach proposed by Choi and Ihm Phys. Rev. B 59 2267 (1999) for calculating the ballistic cond...
Using density-functional theory, we investigate the possible adsorption sites of CO molecules on the...
In this work we present results of a periodic density-functional theory study of the adsorption of c...
We present an implementation of the ballistic Landauer-Buttiker transport scheme in one-dimensional ...
In this study, we perform density functional calculations to investigate the interplay between singl...
We analyze spin-dependent energetics and conductance for one-dimensional (1D) atomic carbon wires co...
Electronic structure of Pt-modified Ge(001) surface with adsorbed CO molecules is studied...
A molecular wire is an organic molecule that forms a conducting bridge between electronic contacts. ...
The effects of spin-orbit coupling on the conductance of molecular devices made with Au electrodes a...