Abstract: Molecular electronics promises a new generation of ultralow-energy information technologies, based around functional molecular junctions. Here, we report optical probing that exploits a gold nanoparticle in a plasmonic nanocavity geometry used as one terminal of a well-defined molecular junction, deposited as a self-assembled molecular monolayer on flat gold. A conductive transparent cantilever electrically contacts individual nanoparticles while maintaining optical access to the molecular junction. Optical readout of molecular structure in the junction reveals ultralow-energy switching of ∼50 zJ, from a nano-electromechanical torsion spring at the single molecule level. Real-time Raman measurements show these electronic device ch...
During the past decades the downscaling of integrated circuits has been governed by Moore's law, whi...
Quantum effects in plasmonic systems play an important role in defining the optical response of stru...
Electronic switches with nanoscale dimensions satisfy an urgent demand for further device miniaturiz...
Molecular electronics promises a new generation of ultralow-energy information technologies, based a...
Molecular electronics promises a new generation of ultralow-energy information technologies, based a...
Molecular junctions are building blocks for constructing future nanoelectronic devices that enable t...
Molecular junctions are excellent systems for studying electronic and vibrational properties at the ...
An appealing feature of molecular electronics is the possibility of inducing changes in the orbital ...
ABSTRACT: Quantum effects in plasmonic systems play an important role in defining the optical respon...
Conductance switching in metal/molecule/metal structures has attracted tremendous and broad interest...
We studied the light dependent conduction of gold–oligothiophene–gold molecular junctions as a fully...
We studied the light dependent conduction of gold-oligothiophene-gold molecular junctions as a fully...
An appealing feature of molecular electronics is the possibility of inducing changes in the orbital ...
© 2020 American Chemical Society. Molecular electronics is a promising route for down-sizing electro...
Molecular electronics is considered a promising approach for future nanoelectronic devices. In order...
During the past decades the downscaling of integrated circuits has been governed by Moore's law, whi...
Quantum effects in plasmonic systems play an important role in defining the optical response of stru...
Electronic switches with nanoscale dimensions satisfy an urgent demand for further device miniaturiz...
Molecular electronics promises a new generation of ultralow-energy information technologies, based a...
Molecular electronics promises a new generation of ultralow-energy information technologies, based a...
Molecular junctions are building blocks for constructing future nanoelectronic devices that enable t...
Molecular junctions are excellent systems for studying electronic and vibrational properties at the ...
An appealing feature of molecular electronics is the possibility of inducing changes in the orbital ...
ABSTRACT: Quantum effects in plasmonic systems play an important role in defining the optical respon...
Conductance switching in metal/molecule/metal structures has attracted tremendous and broad interest...
We studied the light dependent conduction of gold–oligothiophene–gold molecular junctions as a fully...
We studied the light dependent conduction of gold-oligothiophene-gold molecular junctions as a fully...
An appealing feature of molecular electronics is the possibility of inducing changes in the orbital ...
© 2020 American Chemical Society. Molecular electronics is a promising route for down-sizing electro...
Molecular electronics is considered a promising approach for future nanoelectronic devices. In order...
During the past decades the downscaling of integrated circuits has been governed by Moore's law, whi...
Quantum effects in plasmonic systems play an important role in defining the optical response of stru...
Electronic switches with nanoscale dimensions satisfy an urgent demand for further device miniaturiz...