Carbon nanostructures are ideal substrates for functionalization with molecules since they consist of a single atomic layer giving rise to an extraordinary sensitivity to changes in their surrounding. The functionalization opens a new research field of hybrid nanostructures with tailored properties. Here, we present a microscopic view on the substrate–molecule interaction in the exemplary hybrid material consisting of graphene functionalized with perylene molecules. First experiments on similar systems have been recently realized illustrating an extremely efficient transfer of excitation energy from adsorbed molecules to the carbon substrate, a process with a large application potential for high-efficiency photovoltaic devices and biomedica...
As structure defined cutouts of the graphene lattice, nanographene molecules have gained plenty of a...
The ability to modify the electronic properties of monolayer graphene via charge-donating or charge-...
Electron core-level spectroscopies have emerged as effective tools to investigate several aspects of...
ABSTRACT: Carbon nanostructures are ideal substrates for functionalization with molecules since they...
Carbon nanostructures are ideal substrates for functionalization with molecules since they consist o...
We present a theoretical study on the molecule–substrate interaction within the porphyrin-functional...
Electron core-level spectroscopies can effectively be used to investigate electron transfer rates at...
Förster resonance energy transfer (FRET) entails the transfer of energy from a photoexcited energy d...
In this work we quantify the distance dependence for the extraction of energy from excited chromopho...
The properties of novel and prospective 2D materials are dramatically influenced by the interaction ...
We investigate by ab initio theoretical methods phenomena occurring on the femtosecond time scale as...
The properties of novel and prospective 2D materials are dramatically influenced by the interaction ...
As structure defined cutouts of the graphene lattice, nanographene molecules have gained plenty of a...
Graphene (Gr)—a single layer of two-dimensional sp2 carbon atoms—and Carbon Dots (CDs)—a novel class...
Recently, we have reported theoretical studies on the rate of energy transfer from an electronically...
As structure defined cutouts of the graphene lattice, nanographene molecules have gained plenty of a...
The ability to modify the electronic properties of monolayer graphene via charge-donating or charge-...
Electron core-level spectroscopies have emerged as effective tools to investigate several aspects of...
ABSTRACT: Carbon nanostructures are ideal substrates for functionalization with molecules since they...
Carbon nanostructures are ideal substrates for functionalization with molecules since they consist o...
We present a theoretical study on the molecule–substrate interaction within the porphyrin-functional...
Electron core-level spectroscopies can effectively be used to investigate electron transfer rates at...
Förster resonance energy transfer (FRET) entails the transfer of energy from a photoexcited energy d...
In this work we quantify the distance dependence for the extraction of energy from excited chromopho...
The properties of novel and prospective 2D materials are dramatically influenced by the interaction ...
We investigate by ab initio theoretical methods phenomena occurring on the femtosecond time scale as...
The properties of novel and prospective 2D materials are dramatically influenced by the interaction ...
As structure defined cutouts of the graphene lattice, nanographene molecules have gained plenty of a...
Graphene (Gr)—a single layer of two-dimensional sp2 carbon atoms—and Carbon Dots (CDs)—a novel class...
Recently, we have reported theoretical studies on the rate of energy transfer from an electronically...
As structure defined cutouts of the graphene lattice, nanographene molecules have gained plenty of a...
The ability to modify the electronic properties of monolayer graphene via charge-donating or charge-...
Electron core-level spectroscopies have emerged as effective tools to investigate several aspects of...