The properties of very thin (up to 16Å diameter) wires, cut out from the bulk in either zinc-blende or wurtzite material, are studied theoretically. In the total energy calculations we use ab initio methods and consider three different crystallographic growth axes for the zinc-blende and one for the wurtzite structure. We show that the most stable zinc-blende nanowires are those growing along (111) direction, however, the wurtzite structure is found to be energetically more favorable than the zinc-blende for wires of the same diameter. In addition, the band structure of the wires was calculated
The opportunity to engineer III–V nanowires in wurtzite and zinc blende crystal structure allows for...
We investigate by first-principles pseudopotential calculations the structural properties and the en...
High quality GaAs nanowires (NWs) are nowadays experimentally grown on different substrates, regular...
Using a first-principles approach we have calculated the formation energies of small diameter GaAs n...
Using a first-principles approach we have calculated the formation energies of small diameter GaAs n...
On the basis of accurate ab initio calculations, we propose a model for predicting the stability of ...
Using the first-principles density functional theory, we have investigated the geometric structure a...
Using the first-principles density functional theory, we have investigated the geometric structure a...
On the basis of accurate ab initio calculations, we propose a model for predicting the stability of ...
International audienceNanowires and in general nanostructures present surface energy that makes thei...
International audienceThe continuous model of hexagonal wurtzite nanowires is presented[1-4]. This m...
Structural stability and electronic properties of bare and hydrogenated GaP nanowires in zinc-blende...
The opportunity to engineer III-V nanowires in wurtzite and zinc blende crystal structure allows for...
The control of electronic properties of GaP nanowires is of particular importance for their applicat...
Results of our ab initio calculations of -oriented GaP, GaAs, GaSb, InP, InAs and InSb nanowires wit...
The opportunity to engineer III–V nanowires in wurtzite and zinc blende crystal structure allows for...
We investigate by first-principles pseudopotential calculations the structural properties and the en...
High quality GaAs nanowires (NWs) are nowadays experimentally grown on different substrates, regular...
Using a first-principles approach we have calculated the formation energies of small diameter GaAs n...
Using a first-principles approach we have calculated the formation energies of small diameter GaAs n...
On the basis of accurate ab initio calculations, we propose a model for predicting the stability of ...
Using the first-principles density functional theory, we have investigated the geometric structure a...
Using the first-principles density functional theory, we have investigated the geometric structure a...
On the basis of accurate ab initio calculations, we propose a model for predicting the stability of ...
International audienceNanowires and in general nanostructures present surface energy that makes thei...
International audienceThe continuous model of hexagonal wurtzite nanowires is presented[1-4]. This m...
Structural stability and electronic properties of bare and hydrogenated GaP nanowires in zinc-blende...
The opportunity to engineer III-V nanowires in wurtzite and zinc blende crystal structure allows for...
The control of electronic properties of GaP nanowires is of particular importance for their applicat...
Results of our ab initio calculations of -oriented GaP, GaAs, GaSb, InP, InAs and InSb nanowires wit...
The opportunity to engineer III–V nanowires in wurtzite and zinc blende crystal structure allows for...
We investigate by first-principles pseudopotential calculations the structural properties and the en...
High quality GaAs nanowires (NWs) are nowadays experimentally grown on different substrates, regular...