Modeling charge transport along molecular wires immersed in polarizable environments poses a grand challenge due to the high dimensionality of the problem and the various time scales involved. A previous multiscale nonequilibrium Green's function simulation scheme (Popescu, B.; Woiczikowski, P. B.; Elstner, M.; Kleinekathofer, U. Phys. Rev. Lett. (2012), 109, 176802) has been extended significantly so that the present approach provides a much more complete physical description of the process. While the previous scheme involved the environmental fluctuations and their influence of the electronic structure of the wire, several previously neglected effects were added to the formalism: the electric field between the leads, the polarization of t...
Supramolecular engineering offers opportunities for creating polymer-based materials with tailored c...
The popularity of organic semiconductors for use in microelectronics has grown in both academia and ...
The popularity of organic semiconductors for use in microelectronics has grown in both academia and ...
Modeling charge transport along molecular wires immersed in polarizable environments poses a grand c...
For the detailed understanding of the conduction mechanism in DNA we use models based on the concep...
Abstract A polaron model proposed as a possible mechanism for non-linear conductance (Galperin et al...
We present a DFT/classical molecular dynamics model of DNA charge conductivity. The model involves a...
In this study charge transport along zinc porphyrin-based molecular wires is simulated, considering ...
We present a DFT/classical molecular dynamics model of DNA charge conductivity. The model involves a...
Measurements of electron transfer rates as well as of charge transport characteristics in DNA produc...
Much current experimental research on transport in molecular junctions focuses on finite voltages, w...
Supramolecular engineering offers opportunities for creating polymer-based materials with tailored c...
Organic photovoltaics (OPVs) are a promising carbon-neutral energy conversion technology, with recen...
Supramolecular engineering offers opportunities for creating polymer-based materials with tailored c...
Charge transport below the mobility edge, where the charge carriers are hopping between localized el...
Supramolecular engineering offers opportunities for creating polymer-based materials with tailored c...
The popularity of organic semiconductors for use in microelectronics has grown in both academia and ...
The popularity of organic semiconductors for use in microelectronics has grown in both academia and ...
Modeling charge transport along molecular wires immersed in polarizable environments poses a grand c...
For the detailed understanding of the conduction mechanism in DNA we use models based on the concep...
Abstract A polaron model proposed as a possible mechanism for non-linear conductance (Galperin et al...
We present a DFT/classical molecular dynamics model of DNA charge conductivity. The model involves a...
In this study charge transport along zinc porphyrin-based molecular wires is simulated, considering ...
We present a DFT/classical molecular dynamics model of DNA charge conductivity. The model involves a...
Measurements of electron transfer rates as well as of charge transport characteristics in DNA produc...
Much current experimental research on transport in molecular junctions focuses on finite voltages, w...
Supramolecular engineering offers opportunities for creating polymer-based materials with tailored c...
Organic photovoltaics (OPVs) are a promising carbon-neutral energy conversion technology, with recen...
Supramolecular engineering offers opportunities for creating polymer-based materials with tailored c...
Charge transport below the mobility edge, where the charge carriers are hopping between localized el...
Supramolecular engineering offers opportunities for creating polymer-based materials with tailored c...
The popularity of organic semiconductors for use in microelectronics has grown in both academia and ...
The popularity of organic semiconductors for use in microelectronics has grown in both academia and ...