Graphene nanogap systems are promising research tools for molecular electronics, memories, and nanodevices. Here, a way to control the propagation of nanogaps in monolayer graphene during electroburning is demonstrated. A tightly focused femtosecond laser beam is used to induce defects in graphene according to selected patterns. It is shown that, contrary to the pristine graphene devices where nanogap position and shape are uncontrolled, the nanogaps in prepatterned devices propagate along the defect line created by the femtosecond laser. Using passive voltage contrast combined with atomic force microscopy, the reproducibility of the process with a 92% success rate over 26 devices is confirmed. Coupling in situ infrared thermography and fin...
Graphene-based electrodes are very promising for molecular electronics and spintronics. Here we repo...
<p>Ultrafast laser-induced damage and ablation of graphene is the one of the most critical parts of ...
Graphene has emerged as one of the most versatile materials ever discovered due to its extraordinary...
International audienceGraphene nanogap systems are promising research tools for molecular electronic...
Graphene under high voltage bias produces a wealth of phenomena due to high temperatures reached via...
National audienceGraphene is an important material for next-generation technologies, but the develop...
Based on the second law of thermodynamics, energy has dispersive nature. When dispersive energy is c...
Reported here is femtosecond laser mediated bandgap tailoring of graphene oxides (GOs) for direct fa...
International audienceWe investigate ablation of CVD monolayer graphene by femtosecond pulses in the...
The greatest weakness of integrated circuits is thermal. Localized temperature increase can signific...
*S Supporting Information ABSTRACT: Reported here is femtosecond laser mediated bandgap tailoring of...
International audienceWe investigate ablation of CVD monolayer graphene by femtosecond pulses in the...
This paper focuses on the development of patterned graphene/substrate by means of green nanosecond p...
Chemical vapor deposited nitrogen-doped graphene, transferred on SiO2/Si substrate was selectively p...
Nano-patterning of graphene film by a novel approach making use of laser ablation generated pressure...
Graphene-based electrodes are very promising for molecular electronics and spintronics. Here we repo...
<p>Ultrafast laser-induced damage and ablation of graphene is the one of the most critical parts of ...
Graphene has emerged as one of the most versatile materials ever discovered due to its extraordinary...
International audienceGraphene nanogap systems are promising research tools for molecular electronic...
Graphene under high voltage bias produces a wealth of phenomena due to high temperatures reached via...
National audienceGraphene is an important material for next-generation technologies, but the develop...
Based on the second law of thermodynamics, energy has dispersive nature. When dispersive energy is c...
Reported here is femtosecond laser mediated bandgap tailoring of graphene oxides (GOs) for direct fa...
International audienceWe investigate ablation of CVD monolayer graphene by femtosecond pulses in the...
The greatest weakness of integrated circuits is thermal. Localized temperature increase can signific...
*S Supporting Information ABSTRACT: Reported here is femtosecond laser mediated bandgap tailoring of...
International audienceWe investigate ablation of CVD monolayer graphene by femtosecond pulses in the...
This paper focuses on the development of patterned graphene/substrate by means of green nanosecond p...
Chemical vapor deposited nitrogen-doped graphene, transferred on SiO2/Si substrate was selectively p...
Nano-patterning of graphene film by a novel approach making use of laser ablation generated pressure...
Graphene-based electrodes are very promising for molecular electronics and spintronics. Here we repo...
<p>Ultrafast laser-induced damage and ablation of graphene is the one of the most critical parts of ...
Graphene has emerged as one of the most versatile materials ever discovered due to its extraordinary...