We present atomistic calculations of quantum coherent electron transport through fulleropyrrolidine terminated molecules bridging a graphene nanogap. We predict that three difficult problems in molecular electronics with single molecules can be solved by utilizing graphene contacts: (1) a back gate modulating the Fermi level in the graphene leads facilitates control of the device conductance in a transistor effect with high on-off current ratio; (2) the size mismatch between leads and molecule is avoided, in contrast to the traditional metal contacts; (3) as a consequence, distinct features in charge flow patterns throughout the device are directly detectable by scanning techniques. We show that moderate graphene edge disorder is unimportan...
Graphene nanostructures are promising candidates for future nanoelectronics and solid-state quantum ...
As a result of progress in nanotechnology, smaller and smaller electronic circuits can be made. The ...
A molecular junction consists of a single molecule or self-assembled monolayer (SAM) placed between ...
We present atomistic calculations of quantum coherent electron transport through fulleropyrrolidine ...
Graphene provides a two-dimensional platform for contacting individual molecules, which enables tran...
Graphene provides a two-dimensional platform for contacting individual molecules, which enables tran...
Graphene provides a two-dimensional platform for contacting individual molecules, which enables tran...
Over the past decade, interest in using graphene in condensed-matter physics and materials science a...
Graphene provides a two-dimensional platform for contacting individual molecules, which enables tran...
In this thesis, we focus on different aspects of electron transport in nanostructured graphene (such...
Graphene quantum dots (QDs) are intensively studied as platforms for the next generation of quantum ...
Single-molecule electronics have attracted widespread attention for both basic scientific interests ...
Graphene quantum dots (QDs) are intensively studied as platforms for the next generation of quantum ...
Single molecule transistors are useful for studying both the charge and spin states of molecules. T...
Graphene quantum dots (QD_s) are intensively studied as platforms for the next generation of quantum...
Graphene nanostructures are promising candidates for future nanoelectronics and solid-state quantum ...
As a result of progress in nanotechnology, smaller and smaller electronic circuits can be made. The ...
A molecular junction consists of a single molecule or self-assembled monolayer (SAM) placed between ...
We present atomistic calculations of quantum coherent electron transport through fulleropyrrolidine ...
Graphene provides a two-dimensional platform for contacting individual molecules, which enables tran...
Graphene provides a two-dimensional platform for contacting individual molecules, which enables tran...
Graphene provides a two-dimensional platform for contacting individual molecules, which enables tran...
Over the past decade, interest in using graphene in condensed-matter physics and materials science a...
Graphene provides a two-dimensional platform for contacting individual molecules, which enables tran...
In this thesis, we focus on different aspects of electron transport in nanostructured graphene (such...
Graphene quantum dots (QDs) are intensively studied as platforms for the next generation of quantum ...
Single-molecule electronics have attracted widespread attention for both basic scientific interests ...
Graphene quantum dots (QDs) are intensively studied as platforms for the next generation of quantum ...
Single molecule transistors are useful for studying both the charge and spin states of molecules. T...
Graphene quantum dots (QD_s) are intensively studied as platforms for the next generation of quantum...
Graphene nanostructures are promising candidates for future nanoelectronics and solid-state quantum ...
As a result of progress in nanotechnology, smaller and smaller electronic circuits can be made. The ...
A molecular junction consists of a single molecule or self-assembled monolayer (SAM) placed between ...