Charge transfer rates at metal/organic interfaces affect the efficiencies of devices for organic based electronics and photovoltaics. A quantitative study of electron transfer rates, which take place on the femtosecond timescale, is often difficult, especially since in most systems the molecular adsorption geometry is unknown. Here, we use X-ray resonant photoemission spectroscopy to measure ultrafast charge transfer rates across pyridine/Au(111) interfaces while also controlling the molecular orientation on the metal. We demonstrate that a bi-directional charge transfer across the molecule/metal interface is enabled upon creation of a core-exciton on the molecule with a rate that has a strong dependence on the molecular adsorption angle. T...
The ability to control direct electron transfer can facilitate the development of new molecular elec...
The ability to control direct electron transfer can facilitate the development of new molecular elec...
Charge transfer (CT) dynamics across metal–molecule interfaces has important implications for perfor...
Charge transfer rates at metal/organic interfaces affect the efficiencies of devices for organic bas...
Charge transfer phenomena at metal/organic interfaces are a crucial step affecting the efficiencies ...
Core-hole clock spectroscopy and near-edge x-ray-absorption fine structure measurements have been us...
Electron core-level spectroscopies can effectively be used to investigate electron transfer rates at...
The properties of novel and prospective 2D materials are dramatically influenced by the interaction ...
We investigate bidirectional femtosecond charge transfer dynamics using the core-hole clock implemen...
We compare the ultrafast charge transfer dynamics of molecules on epitaxial graphene and bilayer gra...
The properties of novel and prospective 2D materials are dramatically influenced by the interaction ...
Charge transfer (CT) dynamics across metal-molecule interfaces has important implications for perfor...
We compare the ultrafast charge transfer dynamics of molecules on epitaxial graphene and bilayer gra...
We investigate bidirectional femtosecond charge transfer dynamics using the core–hole clock implemen...
Charge transfer through noncovalent interactions is crucial to a variety of chemical phenomena. Thes...
The ability to control direct electron transfer can facilitate the development of new molecular elec...
The ability to control direct electron transfer can facilitate the development of new molecular elec...
Charge transfer (CT) dynamics across metal–molecule interfaces has important implications for perfor...
Charge transfer rates at metal/organic interfaces affect the efficiencies of devices for organic bas...
Charge transfer phenomena at metal/organic interfaces are a crucial step affecting the efficiencies ...
Core-hole clock spectroscopy and near-edge x-ray-absorption fine structure measurements have been us...
Electron core-level spectroscopies can effectively be used to investigate electron transfer rates at...
The properties of novel and prospective 2D materials are dramatically influenced by the interaction ...
We investigate bidirectional femtosecond charge transfer dynamics using the core-hole clock implemen...
We compare the ultrafast charge transfer dynamics of molecules on epitaxial graphene and bilayer gra...
The properties of novel and prospective 2D materials are dramatically influenced by the interaction ...
Charge transfer (CT) dynamics across metal-molecule interfaces has important implications for perfor...
We compare the ultrafast charge transfer dynamics of molecules on epitaxial graphene and bilayer gra...
We investigate bidirectional femtosecond charge transfer dynamics using the core–hole clock implemen...
Charge transfer through noncovalent interactions is crucial to a variety of chemical phenomena. Thes...
The ability to control direct electron transfer can facilitate the development of new molecular elec...
The ability to control direct electron transfer can facilitate the development of new molecular elec...
Charge transfer (CT) dynamics across metal–molecule interfaces has important implications for perfor...