A microscopic understanding of charge transport through molecule-based systems is essential for advancing the field of molecular electronics. In the present paper we highlight fundamental differences between devices with an individual molecule or a homogeneous monolayer as the active element. These differences arise from collective electrostatic effects that govern the electronic level alignment in monolayer-based devices, but are absent in the case of individual molecules. Employing density functional theory in conjunction with a Green’s function approach, we show that depending on the chemical nature of the employed molecules collective electrostatic effects can result in either a significant increase or a significant decrease of the curr...
In this work we describe a theoretical model that we have developed for describing electronic transp...
Recent advances in nanofabrication techniques have made possible to contact individual molecules bet...
Modeling the transport phenomenon in organic materials and molecular devices are important for ratio...
ABSTRACT: Tuning the transport properties of molecular junctions by chemically modifying the molecul...
Tuning the transport properties of molecular junctions by chemically modifying the molecular structu...
Metal-molecule-metal junctions are the key components of molecular electronics circuits. Gaining a m...
he putative field of “Molecular Elec-tronics ” involves charge transport by processes in which the s...
Metal–molecule–metal junctions are the key components of molecular electronics circuits. Gaining a m...
Predictions about the electrical conductance across molecular junctions based on self-assembled mono...
Metal–molecule–metal junctions are the key components of molecular electronics circuits. Gaining a m...
We review charge transport across molecular monolayers, which is central to molecular electronics (M...
Delineating the role of dipoles in large area junctions that are based on self-assembled monolayers ...
We report on the development of an accurate first-principles computational scheme for the charge tra...
We modulate the conductance of electrochemically inactive molecules in single-molecule junctions usi...
We present a theoretical analysis aimed at understanding electrical conduction in molecular tunnel j...
In this work we describe a theoretical model that we have developed for describing electronic transp...
Recent advances in nanofabrication techniques have made possible to contact individual molecules bet...
Modeling the transport phenomenon in organic materials and molecular devices are important for ratio...
ABSTRACT: Tuning the transport properties of molecular junctions by chemically modifying the molecul...
Tuning the transport properties of molecular junctions by chemically modifying the molecular structu...
Metal-molecule-metal junctions are the key components of molecular electronics circuits. Gaining a m...
he putative field of “Molecular Elec-tronics ” involves charge transport by processes in which the s...
Metal–molecule–metal junctions are the key components of molecular electronics circuits. Gaining a m...
Predictions about the electrical conductance across molecular junctions based on self-assembled mono...
Metal–molecule–metal junctions are the key components of molecular electronics circuits. Gaining a m...
We review charge transport across molecular monolayers, which is central to molecular electronics (M...
Delineating the role of dipoles in large area junctions that are based on self-assembled monolayers ...
We report on the development of an accurate first-principles computational scheme for the charge tra...
We modulate the conductance of electrochemically inactive molecules in single-molecule junctions usi...
We present a theoretical analysis aimed at understanding electrical conduction in molecular tunnel j...
In this work we describe a theoretical model that we have developed for describing electronic transp...
Recent advances in nanofabrication techniques have made possible to contact individual molecules bet...
Modeling the transport phenomenon in organic materials and molecular devices are important for ratio...