Supramolecular engineering offers opportunities for creating polymer-based materials with tailored conductive properties. However, this requires an understanding of intermolecular interaction effects on intramolecular charge transport. We present a study of hole transport along molecular wires consisting of fluorene-p-biphenyl or Zn-porphyrin monomer units, in dilute solutions. The intramolecular hole mobility was studied by pulse radiolysis time-resolved microwave conductivity. Experiments were supplemented by charge transport simulations employing a quantum-mechanical description of the hole and a classical description of the polymer and solvent dynamics. The model was parametrized using ab initio and molecular dynamics calculations. It w...
This paper explores charge transport at the single molecule level. The conductive properties of both...
Modeling charge transport along molecular wires immersed in polarizable environments poses a grand c...
Modeling charge transport along molecular wires immersed in polarizable environments poses a grand c...
Supramolecular engineering offers opportunities for creating polymer-based materials with tailored c...
Supramolecular engineering offers opportunities for creating polymer-based materials with tailored c...
Supramolecular engineering offers opportunities for creating polymer-based materials with tailored c...
In this study charge transport along zinc porphyrin-based molecular wires is simulated, considering ...
Organic materials are currently being examined for their potential use as active conducting media in...
Organic materials are currently being examined for their potential use as active conducting media in...
The high frequency mobility of charge carriers on isolated ladder-type polymer chains with lengths r...
We present a computational approach to model hole transport in an amorphous semiconducting fluorene-...
We present a computational approach to model hole transport in an amorphous semiconducting fluorene-...
We present a computational approach to model hole transport in an amorphous semiconducting fluorene-...
How does classical reality emerge from quantum mechanics? When does an electron in a molecule stop b...
We present a computational approach to model hole transport in an amorphous semiconducting fluorene-...
This paper explores charge transport at the single molecule level. The conductive properties of both...
Modeling charge transport along molecular wires immersed in polarizable environments poses a grand c...
Modeling charge transport along molecular wires immersed in polarizable environments poses a grand c...
Supramolecular engineering offers opportunities for creating polymer-based materials with tailored c...
Supramolecular engineering offers opportunities for creating polymer-based materials with tailored c...
Supramolecular engineering offers opportunities for creating polymer-based materials with tailored c...
In this study charge transport along zinc porphyrin-based molecular wires is simulated, considering ...
Organic materials are currently being examined for their potential use as active conducting media in...
Organic materials are currently being examined for their potential use as active conducting media in...
The high frequency mobility of charge carriers on isolated ladder-type polymer chains with lengths r...
We present a computational approach to model hole transport in an amorphous semiconducting fluorene-...
We present a computational approach to model hole transport in an amorphous semiconducting fluorene-...
We present a computational approach to model hole transport in an amorphous semiconducting fluorene-...
How does classical reality emerge from quantum mechanics? When does an electron in a molecule stop b...
We present a computational approach to model hole transport in an amorphous semiconducting fluorene-...
This paper explores charge transport at the single molecule level. The conductive properties of both...
Modeling charge transport along molecular wires immersed in polarizable environments poses a grand c...
Modeling charge transport along molecular wires immersed in polarizable environments poses a grand c...