One of the main challenges to upscale the fabrication of molecular devices is to achieve a mechanically stable device with reproducible and controllable electronic features that operates at room temperature1,2. This is crucial because structural and electronic fluctuations can lead to significant changes in the transport characteristics at the electrode-molecule interface3,4. In this study, we report on the realization of a mechanically and electronically robust graphene-based molecular junction. Robustness was achieved by separating the requirements for mechanical and electronic stability at the molecular level. Mechanical stability was obtained by anchoring molecules directly to the substrate, rather than to graphene electrodes, using a s...
We demonstrate the fabrication and complete characterization of vertical molecular tunneling junctio...
Molecular electronics offers a low cost and nanoscale alternative to create devices for electronic s...
In this study, we fabricated and characterized vertical molecular junctions consisting of self-assem...
One of the main challenges to upscale the fabrication of molecular devices is to achieve a mechanica...
A molecular-scale gap array is introduced into a single-layer graphene sheet by a lithographic dash-...
We demonstrate a robust graphene-molecule-graphene transistor architecture. We observe remarkably re...
We investigated the electrical characteristics of molecular electronic devices consisting of benzene...
We studied a molecular junction with arylalkane self-assembled monolayers sandwiched between two gra...
During the past decades the downscaling of integrated circuits has been governed by Moore's law, whi...
We report on the modulation of the electrical properties of graphene-based transistors that mirrors ...
CONSPECTUS: The development of reliable approaches to integrate individual or a small collection of ...
Recent advances in the engineering of pico-scale gaps between electroburnt graphene electrodes provi...
Compared with traditional semiconductor materials, graphene has unparalleled advantages on mobility,...
Resonant tunneling is an efficient mechanism for charge transport through nanoscale conductance junc...
This dissertation research is focused on first principles studies of graphene and single organic mol...
We demonstrate the fabrication and complete characterization of vertical molecular tunneling junctio...
Molecular electronics offers a low cost and nanoscale alternative to create devices for electronic s...
In this study, we fabricated and characterized vertical molecular junctions consisting of self-assem...
One of the main challenges to upscale the fabrication of molecular devices is to achieve a mechanica...
A molecular-scale gap array is introduced into a single-layer graphene sheet by a lithographic dash-...
We demonstrate a robust graphene-molecule-graphene transistor architecture. We observe remarkably re...
We investigated the electrical characteristics of molecular electronic devices consisting of benzene...
We studied a molecular junction with arylalkane self-assembled monolayers sandwiched between two gra...
During the past decades the downscaling of integrated circuits has been governed by Moore's law, whi...
We report on the modulation of the electrical properties of graphene-based transistors that mirrors ...
CONSPECTUS: The development of reliable approaches to integrate individual or a small collection of ...
Recent advances in the engineering of pico-scale gaps between electroburnt graphene electrodes provi...
Compared with traditional semiconductor materials, graphene has unparalleled advantages on mobility,...
Resonant tunneling is an efficient mechanism for charge transport through nanoscale conductance junc...
This dissertation research is focused on first principles studies of graphene and single organic mol...
We demonstrate the fabrication and complete characterization of vertical molecular tunneling junctio...
Molecular electronics offers a low cost and nanoscale alternative to create devices for electronic s...
In this study, we fabricated and characterized vertical molecular junctions consisting of self-assem...