We studied the light dependent conduction of gold-oligothiophene-gold molecular junctions as a fully-customized platform. The flexibility and novelty of the platform relies on its plug-and-play connection to an external electronic board to perform eight parallel nanogap fabrications by Electromigration Induced Break Junction (EIBJ) and molecular electrical characterization. In addition, the octithiophene molecules are synthesized ad-hoc to efficiently self-assembly and selectively bridge the nanogap electrodes upon deposition, which can be carried out directly and in parallel on the 8 nanogap array platforms. The high portability of the platform is well suited for in- situ microscopic and spectroscopic analyses. In particular, we tested the...
During the last years, material science was focusing on the exploration of the material characterist...
International audiencePhoto-modulable molecular transport junctions are developed via on-wire lithog...
Molecular junctions are excellent systems for studying electronic and vibrational properties at the ...
We studied the light dependent conduction of gold–oligothiophene–gold molecular junctions as a fully...
This paper presents a fully–customized platform for the self–assembling and the electric and spectro...
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...
In this work, an electrochemical method of fabricating and modifying nanogap electrodes on a silicon...
In this work, an electrochemical method of fabricating and modifying nanogap electrodes on a silicon...
This thesis presents a study on electronic and optoelectronic properties of polythiophene molecular ...
Over the years many techniques have been proposed for the purpose of the formation of electrically c...
The use of individual molecules as functional components in electronic circuits offers the great opp...
An approach to reproducibly fabricate molecular electronic devices is presented. Lateral nanometer-s...
Here we describe enhanced Raman scattering at Au electrode 1 (E1)/Ag nanowire (NW)/4-aminothiophenol...
The main focus of this thesis is the theoretical investigations of a nanogap platform used for molec...
During the last years, material science was focusing on the exploration of the material characterist...
International audiencePhoto-modulable molecular transport junctions are developed via on-wire lithog...
Molecular junctions are excellent systems for studying electronic and vibrational properties at the ...
We studied the light dependent conduction of gold–oligothiophene–gold molecular junctions as a fully...
This paper presents a fully–customized platform for the self–assembling and the electric and spectro...
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...
In this work, an electrochemical method of fabricating and modifying nanogap electrodes on a silicon...
In this work, an electrochemical method of fabricating and modifying nanogap electrodes on a silicon...
This thesis presents a study on electronic and optoelectronic properties of polythiophene molecular ...
Over the years many techniques have been proposed for the purpose of the formation of electrically c...
The use of individual molecules as functional components in electronic circuits offers the great opp...
An approach to reproducibly fabricate molecular electronic devices is presented. Lateral nanometer-s...
Here we describe enhanced Raman scattering at Au electrode 1 (E1)/Ag nanowire (NW)/4-aminothiophenol...
The main focus of this thesis is the theoretical investigations of a nanogap platform used for molec...
During the last years, material science was focusing on the exploration of the material characterist...
International audiencePhoto-modulable molecular transport junctions are developed via on-wire lithog...
Molecular junctions are excellent systems for studying electronic and vibrational properties at the ...