Large area molecular junctions consisting of covalently bonded molecular layers between conducting carbon electrodes were compared for Co and Ru complexes as well as nitroazobenzene and anthraquinone to investigate the effect of molecular structures and orbital energies on electronic behavior. A wide range of molecular layer thickness (d) from 1.5–28 nm was examined and three distinct transport regimes in attenuation plots of current density (J) vs thickness were revealed. For d < 5 nm, the four molecular structures had comparable current densities and thickness dependence despite significant differences in orbital energies, consistent with coherent tunneling and strong electronic coupling between the molecules and contacts. For d > 12 nm, ...
Achieving atomic level control at the metal–molecule interface in a single molecule conductance meas...
The conductance of a molecular junction is commonly determined by either charge-transfer doping, whe...
The simplest component of molecular electronics consists of a single-molecule transport junction: a ...
Carbon-based molecular junctions consisting of aromatic oligomers between conducting sp2 hybridized ...
Carbon-based molecular junctions consisting of aromatic oligomers between conducting sp<sup>2</sup> ...
We review charge transport across molecular monolayers, which is central to molecular electronics (M...
One of the central problems of molecular electronics is to understand electron conduction properties...
In this work, we bridge the gap between short-range tunneling in molecular junctions and activated h...
ConspectusThe field of molecular electronics has grown rapidly since its experimental realization in...
Recent advances in nanofabrication techniques have made possible to contact individual molecules bet...
We present a combined experimental and computational study that probes the thermoelectric and electr...
A comprehensive overview of the physical mechanisms that control electron transport and the characte...
The creation of molecular components for use as electronic devices has made enormous progress. In or...
University of Minnesota Ph.D. dissertation. October 2008. Major: Materials science and engineering. ...
The most probable single-molecule conductance of each member of a series of 12 conjugated molecular ...
Achieving atomic level control at the metal–molecule interface in a single molecule conductance meas...
The conductance of a molecular junction is commonly determined by either charge-transfer doping, whe...
The simplest component of molecular electronics consists of a single-molecule transport junction: a ...
Carbon-based molecular junctions consisting of aromatic oligomers between conducting sp2 hybridized ...
Carbon-based molecular junctions consisting of aromatic oligomers between conducting sp<sup>2</sup> ...
We review charge transport across molecular monolayers, which is central to molecular electronics (M...
One of the central problems of molecular electronics is to understand electron conduction properties...
In this work, we bridge the gap between short-range tunneling in molecular junctions and activated h...
ConspectusThe field of molecular electronics has grown rapidly since its experimental realization in...
Recent advances in nanofabrication techniques have made possible to contact individual molecules bet...
We present a combined experimental and computational study that probes the thermoelectric and electr...
A comprehensive overview of the physical mechanisms that control electron transport and the characte...
The creation of molecular components for use as electronic devices has made enormous progress. In or...
University of Minnesota Ph.D. dissertation. October 2008. Major: Materials science and engineering. ...
The most probable single-molecule conductance of each member of a series of 12 conjugated molecular ...
Achieving atomic level control at the metal–molecule interface in a single molecule conductance meas...
The conductance of a molecular junction is commonly determined by either charge-transfer doping, whe...
The simplest component of molecular electronics consists of a single-molecule transport junction: a ...