Graphene-based electrodes are very promising for molecular electronics and spintronics. Here we report a systematic characterization of the electroburning (EB) process, leading to the formation of nanometer-spaced gaps, on different types of few-layer graphene (namely mechanically exfoliated graphene on SiO2, graphene epitaxially grown on the C-face of SiC and turbostratic graphene discs deposited on SiO2) under air and vacuum conditions. The EB process is found to depend on both the graphene type and on the ambient conditions. For the mechanically exfoliated graphene, performing EB under vacuum leads to a higher yield of nanometer-gap formation than working in air. Conversely, for graphene on SiC the EB process is not successful under vacu...
Epitaxial carbon was grown by heating (000 (1) over bar) silicon carbide (SiC) to high temperatures ...
In the past several years, epitaxial graphene on silicon carbide has been transformed from an academ...
<p>In this thesis, we study the structure of epitaxial graphene formed on polar faces of SiC - the (...
Graphene-based electrodes are very promising for molecular electronics and spintronics. Here we repo...
Herein we demonstrate the controlled and reproducible fabrication of sub-5 nm wide gaps in single-la...
We report on the characterization of the electrical breakdown (EB) process for the formation of tunn...
We report on thefabrication of a molecular transistor based on a single molecule trapped in a few-la...
Provided the electrical properties of electroburnt graphene junctions can be understood and controll...
International audienceWe report the effect of electrochemical oxidation in nitric acid on the electr...
The electrochemical exfoliation of graphite to give one-atom-thick graphene with desirable propertie...
Electrochemically exfoliated graphene (EEG) possesses optical and electronic properties that are mar...
We present a new fabrication method for epitaxial graphene on SiC which enables the growth of ultra-...
Graphene's astonishing properties drew attention of many scientists to dedicate a lot of their time ...
Graphene is the name given to a monolayer of carbon atoms that are tightly packed into a two-dimensi...
Single layer graphene nano-gaps are fabricated by applying the method of feedback-controlled electro...
Epitaxial carbon was grown by heating (000 (1) over bar) silicon carbide (SiC) to high temperatures ...
In the past several years, epitaxial graphene on silicon carbide has been transformed from an academ...
<p>In this thesis, we study the structure of epitaxial graphene formed on polar faces of SiC - the (...
Graphene-based electrodes are very promising for molecular electronics and spintronics. Here we repo...
Herein we demonstrate the controlled and reproducible fabrication of sub-5 nm wide gaps in single-la...
We report on the characterization of the electrical breakdown (EB) process for the formation of tunn...
We report on thefabrication of a molecular transistor based on a single molecule trapped in a few-la...
Provided the electrical properties of electroburnt graphene junctions can be understood and controll...
International audienceWe report the effect of electrochemical oxidation in nitric acid on the electr...
The electrochemical exfoliation of graphite to give one-atom-thick graphene with desirable propertie...
Electrochemically exfoliated graphene (EEG) possesses optical and electronic properties that are mar...
We present a new fabrication method for epitaxial graphene on SiC which enables the growth of ultra-...
Graphene's astonishing properties drew attention of many scientists to dedicate a lot of their time ...
Graphene is the name given to a monolayer of carbon atoms that are tightly packed into a two-dimensi...
Single layer graphene nano-gaps are fabricated by applying the method of feedback-controlled electro...
Epitaxial carbon was grown by heating (000 (1) over bar) silicon carbide (SiC) to high temperatures ...
In the past several years, epitaxial graphene on silicon carbide has been transformed from an academ...
<p>In this thesis, we study the structure of epitaxial graphene formed on polar faces of SiC - the (...