Molecular junctions are building blocks for constructing future nanoelectronic devices that enable the investigation of a broad range of electronic transport properties within nanoscale regions. Crossing both the nanoscopic and mesoscopic length scales, plasmonics lies at the intersection of the macroscopic photonics and nanoelectronics, owing to their capability of confining light to dimensions far below the diffraction limit. Research activities on plasmonic phenomena in molecular electronics started around 2010, and feedback between plasmons and molecular junctions has increased over the past years. These efforts can provide new insights into the near-field interaction and the corresponding tunability in properties, as well as resultant ...
We investigate photoinduced electron transport through nanoparticle dimers connected by linear and r...
In the last years fundamental advances have been achieved in the fields of molecular electronics [1]...
© 2020 American Chemical Society. Molecular electronics is a promising route for down-sizing electro...
The field of nanophotonics has realized rapid growth over the past several decades, as novel nanosca...
Quantum tunneling plays an important role in coupled plasmonic nanocavities with ultrasmall gap dist...
Molecular plasmonics explores and exploits the molecule–plasmon interactions on metal nanostructures...
Abstract: Molecular electronics promises a new generation of ultralow-energy information technologie...
Molecular junctions are excellent systems for studying electronic and vibrational properties at the ...
Molecular electronics promises a new generation of ultralow-energy information technologies, based a...
Plasmonic core–molecule–shell (CMS) nanojunctions provide a versatile platform for studying electron...
AbstractMolecular electronic plasmonics (MEP) is an area of research that utilizes the electronic pr...
ABSTRACT: Quantum effects in plasmonic systems play an important role in defining the optical respon...
The last decade has seen incredible growth in the quality of experiments being done on single molecu...
We show that chemically synthesized polycyclic aromatic hydrocarbons (PAHs) exhibit molecular plasmo...
We combine experiment, theory, and first-principles-based calculations to study the light-induced pl...
We investigate photoinduced electron transport through nanoparticle dimers connected by linear and r...
In the last years fundamental advances have been achieved in the fields of molecular electronics [1]...
© 2020 American Chemical Society. Molecular electronics is a promising route for down-sizing electro...
The field of nanophotonics has realized rapid growth over the past several decades, as novel nanosca...
Quantum tunneling plays an important role in coupled plasmonic nanocavities with ultrasmall gap dist...
Molecular plasmonics explores and exploits the molecule–plasmon interactions on metal nanostructures...
Abstract: Molecular electronics promises a new generation of ultralow-energy information technologie...
Molecular junctions are excellent systems for studying electronic and vibrational properties at the ...
Molecular electronics promises a new generation of ultralow-energy information technologies, based a...
Plasmonic core–molecule–shell (CMS) nanojunctions provide a versatile platform for studying electron...
AbstractMolecular electronic plasmonics (MEP) is an area of research that utilizes the electronic pr...
ABSTRACT: Quantum effects in plasmonic systems play an important role in defining the optical respon...
The last decade has seen incredible growth in the quality of experiments being done on single molecu...
We show that chemically synthesized polycyclic aromatic hydrocarbons (PAHs) exhibit molecular plasmo...
We combine experiment, theory, and first-principles-based calculations to study the light-induced pl...
We investigate photoinduced electron transport through nanoparticle dimers connected by linear and r...
In the last years fundamental advances have been achieved in the fields of molecular electronics [1]...
© 2020 American Chemical Society. Molecular electronics is a promising route for down-sizing electro...