Molecular electronics aims at exploiting the internal structure and electronic orbitals of molecules to construct functional building blocks(1). To date, however, the overwhelming majority of experimentally realized single-molecule junctions can be described as single quantum dots, where transport is mainly determined by the alignment of the molecular orbital levels with respect to the Fermi energies of the electrodes(2) and the electronic coupling with those electrodes(3,4). Particularly appealing exceptions include molecules in which two moieties are twisted with respect to each others(5,6) and molecules in which quantum interference effects are possible(7,8). Here, we report the experimental observation of pronounced negative differentia...
We modulate the conductance of electrochemically inactive molecules in single-molecule junctions usi...
An appealing feature of molecular electronics is the possibility of inducing changes in the orbital ...
Electron transfer processes are investigated through conductance measurements of single molecules. M...
Molecular electronics aims at exploiting the internal structure and electronic orbitals of molecules...
Molecular electronics aims at exploiting the internal structure and electronic orbitals of molecules...
In the pursuit of down-sizing electronic components, the ultimate limit is the use of single molecul...
Controlling charge transport through molecules is challenging because it requires engineering of the...
Electronic factors in molecules such as quantum interference and cross-conjugation can lead to drama...
Recent advances in nanofabrication techniques have made possible to contact individual molecules bet...
We theoretically explored the combined role of conformational fluctuations and quantum interference ...
Solvents can play a significant role in tuning the electrical conductance of single-molecule junctio...
Controlling charge transport through molecular wires by utilizing quantum interference (QI) is a gro...
Combining insights from quantum chemistry calculations with master equations, we discuss a mechanism...
ConspectusThis Account provides an overview of our recent efforts to unravel charge transport charac...
Single-molecule junctions — devices in which a single molecule is electrically connected by two elec...
We modulate the conductance of electrochemically inactive molecules in single-molecule junctions usi...
An appealing feature of molecular electronics is the possibility of inducing changes in the orbital ...
Electron transfer processes are investigated through conductance measurements of single molecules. M...
Molecular electronics aims at exploiting the internal structure and electronic orbitals of molecules...
Molecular electronics aims at exploiting the internal structure and electronic orbitals of molecules...
In the pursuit of down-sizing electronic components, the ultimate limit is the use of single molecul...
Controlling charge transport through molecules is challenging because it requires engineering of the...
Electronic factors in molecules such as quantum interference and cross-conjugation can lead to drama...
Recent advances in nanofabrication techniques have made possible to contact individual molecules bet...
We theoretically explored the combined role of conformational fluctuations and quantum interference ...
Solvents can play a significant role in tuning the electrical conductance of single-molecule junctio...
Controlling charge transport through molecular wires by utilizing quantum interference (QI) is a gro...
Combining insights from quantum chemistry calculations with master equations, we discuss a mechanism...
ConspectusThis Account provides an overview of our recent efforts to unravel charge transport charac...
Single-molecule junctions — devices in which a single molecule is electrically connected by two elec...
We modulate the conductance of electrochemically inactive molecules in single-molecule junctions usi...
An appealing feature of molecular electronics is the possibility of inducing changes in the orbital ...
Electron transfer processes are investigated through conductance measurements of single molecules. M...