Resonant tunneling is an efficient mechanism for charge transport through nanoscale conductance junctions due to the relatively high currents involved. However, continuous charging and discharging cycles of the nanoconductor during resonant tunneling often lead to mechanical instability. The realization of efficient nanoscale electronic components therefore depends to a large extent on the ability to mechanically stabilize them during resonant transport. In this work, we focus on single-molecule junctions, demonstrating that their mechanical stability during resonant transport can be increased by increasing the bias voltage. This counter-intuitive effect is attributed to the energy dependence of the molecule–lead coupling densities, which p...
Molecular junctions formed using the scanning-tunneling-microscope-based break-junction technique (S...
Controlling charge transport through molecules is challenging because it requires engineering of the...
In this contribution we demonstrate structural control over a transport resonance in HS(CH2)n[1,4 −C...
Off-resonant charge transport through molecular junctions has been extensively studied since the adv...
An appealing feature of molecular electronics is the possibility of inducing changes in the orbital ...
An appealing feature of molecular electronics is the possibility of inducing changes in the orbital ...
Understanding and controlling heat transport in molecular junctions would provide new routes to desi...
One of the main challenges to upscale the fabrication of molecular devices is to achieve a mechanica...
During the past decades the downscaling of integrated circuits has been governed by Moore's law, whi...
We modulate the conductance of electrochemically inactive molecules in single-molecule junctions usi...
This thesis is concerned with vibrational effects in resonant charge transport through molecular jun...
In this Thesis we study several aspects of charge transport through single molecule junctions. Focu...
The promise of the field of single-molecule electronics is to reveal a new class of quantum devices ...
Exploring the charge transport process in molecular junctions is essential to the development of mol...
Electromechanical properties of single molecular junctions are investigated using scanning tunneling...
Molecular junctions formed using the scanning-tunneling-microscope-based break-junction technique (S...
Controlling charge transport through molecules is challenging because it requires engineering of the...
In this contribution we demonstrate structural control over a transport resonance in HS(CH2)n[1,4 −C...
Off-resonant charge transport through molecular junctions has been extensively studied since the adv...
An appealing feature of molecular electronics is the possibility of inducing changes in the orbital ...
An appealing feature of molecular electronics is the possibility of inducing changes in the orbital ...
Understanding and controlling heat transport in molecular junctions would provide new routes to desi...
One of the main challenges to upscale the fabrication of molecular devices is to achieve a mechanica...
During the past decades the downscaling of integrated circuits has been governed by Moore's law, whi...
We modulate the conductance of electrochemically inactive molecules in single-molecule junctions usi...
This thesis is concerned with vibrational effects in resonant charge transport through molecular jun...
In this Thesis we study several aspects of charge transport through single molecule junctions. Focu...
The promise of the field of single-molecule electronics is to reveal a new class of quantum devices ...
Exploring the charge transport process in molecular junctions is essential to the development of mol...
Electromechanical properties of single molecular junctions are investigated using scanning tunneling...
Molecular junctions formed using the scanning-tunneling-microscope-based break-junction technique (S...
Controlling charge transport through molecules is challenging because it requires engineering of the...
In this contribution we demonstrate structural control over a transport resonance in HS(CH2)n[1,4 −C...