To reveal how the electronic transport properties of the silicon-sulfur molecular junction depend on its microscopic structure, we studied the configuration and electronic transport properties of a silicon-1, 6-hexanedithiol-silicon molecular device, based on density functional theory (DFT) combined with the non-equilibrium Green’s function (NEGF) method. Eight groups of molecular junctions were modeled, each consisting of a 1, 6-hexanedithiol molecule spanning two silicon tips. Following optimisation of the molecular structure, first of the 1, 6-hexanedithiol by itself and then of the junction as a whole, the zero-bias conductance and electronic transmission spectrum were calculated. The results show that silicon-sulfur molecular junctions...
The relationship between the molecular structure and the electronic transport properties of molecula...
This thesis presents the theoretical studies of electronic transport in molecular electronic devices...
Metal-organic molecule-semiconductor junctions are controlled not only by the molecular properties, ...
To reveal how the electronic transport properties of the silicon-sulfur molecular junction depend on...
To reveal how the electronic transport properties of the silicon-sulfur molecular junction depend on...
Self-assembly of a single-molecule membrane (Self-assembled monolayers,SAMs) has been widely used in...
As silicon-based microelectronics approaches its fundamental physical limit, molecular electronics i...
In 2020, silicon - molecule - silicon junctions were fabricated and shown to be on average one third...
Electron transport through metal-molecule-metal junctions has been widely studied both experimentall...
One of the most important challenges of molecular electronics is to enable systematic fabrication of...
For the realization of molecular electronics, one essential goal is the ability to systematically fa...
It is conceivable that molecules with their myriad and tunable properties including size, shape, abs...
In this thesis, a combination of density functional theory (DFT) based calculations and nonequilibri...
We investigate from first principles the electronic and transport properties of hybrid organic/silic...
We investigate from first principles the electronic and transport properties of hybrid organic/silic...
The relationship between the molecular structure and the electronic transport properties of molecula...
This thesis presents the theoretical studies of electronic transport in molecular electronic devices...
Metal-organic molecule-semiconductor junctions are controlled not only by the molecular properties, ...
To reveal how the electronic transport properties of the silicon-sulfur molecular junction depend on...
To reveal how the electronic transport properties of the silicon-sulfur molecular junction depend on...
Self-assembly of a single-molecule membrane (Self-assembled monolayers,SAMs) has been widely used in...
As silicon-based microelectronics approaches its fundamental physical limit, molecular electronics i...
In 2020, silicon - molecule - silicon junctions were fabricated and shown to be on average one third...
Electron transport through metal-molecule-metal junctions has been widely studied both experimentall...
One of the most important challenges of molecular electronics is to enable systematic fabrication of...
For the realization of molecular electronics, one essential goal is the ability to systematically fa...
It is conceivable that molecules with their myriad and tunable properties including size, shape, abs...
In this thesis, a combination of density functional theory (DFT) based calculations and nonequilibri...
We investigate from first principles the electronic and transport properties of hybrid organic/silic...
We investigate from first principles the electronic and transport properties of hybrid organic/silic...
The relationship between the molecular structure and the electronic transport properties of molecula...
This thesis presents the theoretical studies of electronic transport in molecular electronic devices...
Metal-organic molecule-semiconductor junctions are controlled not only by the molecular properties, ...