Graphene provides a two-dimensional platform for contacting individual molecules, which enables transport spectroscopy of molecular orbital, spin, and vibrational states. Here we report single-electron tunneling through a molecule that has been anchored to two graphene leads. Quantum interference within the graphene leads gives rise to an energy-dependent transmission and fluctuations in the sequential tunnel-rates. The lead states are electrostatically tuned by a global back-gate, resulting in a distinct pattern of varying intensity in the measured conductance maps. This pattern could potentially obscure transport features that are intrinsic to the molecule under investigation. Using ensemble averaged magneto-conductance measurements, lead...
We present atomistic calculations of quantum coherent electron transport through fulleropyrrolidine ...
As a result of progress in nanotechnology, smaller and smaller electronic circuits can be made. The ...
Molecular systems can exhibit a complex, chemically tailorable inner structure which allows for targ...
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...
We present atomistic calculations of quantum coherent electron transport through fulleropyrrolidine ...
Graphene nanoribbons could potentially be used to create molecular wires with tailored conductance p...
The ability to understand and control the electronic properties of individual molecules in a device ...
The ability to understand and control the electronic properties of individual molecules in a device ...
Single-molecule junctions — devices in which a single molecule is electrically connected by two elec...
Single-molecule junctions — devices in which a single molecule is electrically connected by two elec...
Molecular systems can exhibit a complex, chemically tailorable inner structure which allows for targ...
Molecular electronics is based on the use of single molecules as elementary functional electronic co...
Molecular systems can exhibit a complex, chemically tailorable inner structure which allows for targ...
We present atomistic calculations of quantum coherent electron transport through fulleropyrrolidine ...
As a result of progress in nanotechnology, smaller and smaller electronic circuits can be made. The ...
Molecular systems can exhibit a complex, chemically tailorable inner structure which allows for targ...
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...
We present atomistic calculations of quantum coherent electron transport through fulleropyrrolidine ...
Graphene nanoribbons could potentially be used to create molecular wires with tailored conductance p...
The ability to understand and control the electronic properties of individual molecules in a device ...
The ability to understand and control the electronic properties of individual molecules in a device ...
Single-molecule junctions — devices in which a single molecule is electrically connected by two elec...
Single-molecule junctions — devices in which a single molecule is electrically connected by two elec...
Molecular systems can exhibit a complex, chemically tailorable inner structure which allows for targ...
Molecular electronics is based on the use of single molecules as elementary functional electronic co...
Molecular systems can exhibit a complex, chemically tailorable inner structure which allows for targ...
We present atomistic calculations of quantum coherent electron transport through fulleropyrrolidine ...
As a result of progress in nanotechnology, smaller and smaller electronic circuits can be made. The ...
Molecular systems can exhibit a complex, chemically tailorable inner structure which allows for targ...