The properties of novel and prospective 2D materials are dramatically influenced by the interaction with a substrate. For example, the electronic hybridization of silicene states on Ag(111) or graphene ones on Ni(111) disrupts the Dirac fermions of the freestanding layers. This calls for efficient approaches to tune the interaction strength at the interface. Here we focus on the case of graphene functionalized by organic molecules and grown on Ni(111) and on the interfacial charge transfer dynamics. This is investigated by X-ray resonant photoemission spectroscopy, that is able to measure electron transfer rates occurring within few femtoseconds, and by a theoretical framework based on density-functional theory [1,2]. We use 4,4\u2019-bipyr...
My investigation of graphene on different substrates demonstrates that there is a large variation of...
My investigation of graphene on different substrates demonstrates that there is a large variation of...
Understanding the nature of the interaction at the graphene/metal interfaces is the basis for graphe...
The properties of novel and prospective 2D materials are dramatically influenced by the interaction ...
Electron core-level spectroscopies can effectively be used to investigate electron transfer rates at...
We compare the ultrafast charge transfer dynamics of molecules on epitaxial graphene and bilayer gra...
We compare the ultrafast charge transfer dynamics of molecules on epitaxial graphene and bilayer gra...
We compare the ultrafast charge transfer dynamics of molecules on epitaxial graphene and bilayer gra...
We investigate by ab initio theoretical methods phenomena occurring on the femtosecond time scale as...
Electron core-level spectroscopies have emerged as effective tools to investigate several aspects of...
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 phenomena at metal/organic interfaces are a crucial step affecting the efficiencies ...
Measuring the transport of electrons through a graphene sheet necessarily involves contacting it wit...
My investigation of graphene on different substrates demonstrates that there is a large variation of...
My investigation of graphene on different substrates demonstrates that there is a large variation of...
Understanding the nature of the interaction at the graphene/metal interfaces is the basis for graphe...
The properties of novel and prospective 2D materials are dramatically influenced by the interaction ...
Electron core-level spectroscopies can effectively be used to investigate electron transfer rates at...
We compare the ultrafast charge transfer dynamics of molecules on epitaxial graphene and bilayer gra...
We compare the ultrafast charge transfer dynamics of molecules on epitaxial graphene and bilayer gra...
We compare the ultrafast charge transfer dynamics of molecules on epitaxial graphene and bilayer gra...
We investigate by ab initio theoretical methods phenomena occurring on the femtosecond time scale as...
Electron core-level spectroscopies have emerged as effective tools to investigate several aspects of...
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 phenomena at metal/organic interfaces are a crucial step affecting the efficiencies ...
Measuring the transport of electrons through a graphene sheet necessarily involves contacting it wit...
My investigation of graphene on different substrates demonstrates that there is a large variation of...
My investigation of graphene on different substrates demonstrates that there is a large variation of...
Understanding the nature of the interaction at the graphene/metal interfaces is the basis for graphe...