Charge transfer through noncovalent interactions is crucial to a variety of chemical phenomena. These interactions are often weak and nonspecific and can coexist, making it difficult to isolate the transfer efficiency of one type of bond versus another. Here, we show how core-hole clock spectroscopy can be used to measure charge transfer through noncovalent interactions. We study the model system 1,4-benzenediamine molecules bound on an Au surface through an Au-N donor-acceptor bond as these are known to provide a pathway for electronic conduction in molecular devices. We study different phases of the molecule/Au system and map charge delocalization times from carbon and nitrogen sites on the molecule. We show that charge delocalization acr...
The transfer of charge at the molecular level plays a fundamental role in many areas of chemistry, p...
The transfer of charge at the molecular level plays a fundamental role in many areas of chemistry, p...
Core-hole clock spectroscopy and near-edge x-ray-absorption fine structure measurements have been us...
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 rates at metal/organic interfaces affect the efficiencies of devices for organic bas...
We investigate bidirectional femtosecond charge transfer dynamics using the core-hole clock implemen...
Charge transfer (CT) dynamics across metal–molecule interfaces has important implications for perfor...
Charge transfer phenomena at metal/organic interfaces are a crucial step affecting the efficiencies ...
We investigate bidirectional femtosecond charge transfer dynamics using the core–hole clock implemen...
The transfer of charge at the molecular level plays a fundamental role in many areas of chemistry, p...
The transfer of charge at the molecular level plays a fundamental role in many areas of chemistry, p...
The transfer of charge at the molecular level plays a fundamental role in many areas of chemistry, p...
Organic semiconductor materials have important applications in organic electronics and other novel h...
The transfer of charge at the molecular level plays a fundamental role in many areas of chemistry, p...
The transfer of charge at the molecular level plays a fundamental role in many areas of chemistry, p...
The transfer of charge at the molecular level plays a fundamental role in many areas of chemistry, p...
Core-hole clock spectroscopy and near-edge x-ray-absorption fine structure measurements have been us...
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 rates at metal/organic interfaces affect the efficiencies of devices for organic bas...
We investigate bidirectional femtosecond charge transfer dynamics using the core-hole clock implemen...
Charge transfer (CT) dynamics across metal–molecule interfaces has important implications for perfor...
Charge transfer phenomena at metal/organic interfaces are a crucial step affecting the efficiencies ...
We investigate bidirectional femtosecond charge transfer dynamics using the core–hole clock implemen...
The transfer of charge at the molecular level plays a fundamental role in many areas of chemistry, p...
The transfer of charge at the molecular level plays a fundamental role in many areas of chemistry, p...
The transfer of charge at the molecular level plays a fundamental role in many areas of chemistry, p...
Organic semiconductor materials have important applications in organic electronics and other novel h...
The transfer of charge at the molecular level plays a fundamental role in many areas of chemistry, p...
The transfer of charge at the molecular level plays a fundamental role in many areas of chemistry, p...
The transfer of charge at the molecular level plays a fundamental role in many areas of chemistry, p...
Core-hole clock spectroscopy and near-edge x-ray-absorption fine structure measurements have been us...