We investigated the interaction between size-selected Au2 and Au3 clusters and graphene. Hereto preformed clusters are deposited on graphene field-effect transistors, a novel approach which offers a high control over the number of atoms per cluster, the deposition energy and the deposited density. The induced p-doping and charge carrier scattering indicate that a major part of the deposited clusters remains on the graphene flake as either individual or sub-nm coalesced entities. This is independently confirmed by scanning electron microscopy on the same devices after current annealing. Our novel approach provides perspectives for the electronic sensing of metallic clusters down to their atom-by-atom size-specific properties, and exploiting ...
Size-selected $Ag_{n}$-clusters on unsupported graphene of a commercial Quantifoil sample have been ...
Motivated by experimental results on transport properties of graphene covered by gallium atoms, the ...
The local charge carrier density of graphene can exhibit significant and highly localized variations...
We investigated the interaction between size-selected Au2 and Au3 clusters and graphene. Hereto pref...
In contemporary solid-state research, various approaches exist to manipulate and study material prop...
© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Graphene's sensitivity to adsorbed particles has...
This work is devoted to investigating the changes of electronic properties of graphene devices by in...
We investigate the electronic properties of graphene nanoflakes on Ag(111) and Au(111) surfaces by m...
The growth of metallic nanoparticles formed on chemically modified graphene (CMG) by physical vapor ...
Atomic‐resolution transmission electron microscopy was used to identify individual Au9 clusters on a...
Chemical vapor deposition (CVD) on metals is so far the best suited method to produce high-quality, ...
Au nanoparticles and films are deposited onto clean graphene surfaces to study the doping effect of ...
The growth of metallic nanoparticles formed on chemically modified graphene (CMG) by physical vapor ...
ABSTRACT: The interaction of ultrasmall metal clusters with surfaces of graphene is important for de...
We perform a phenomenological analysis of the problem of the electronic doping of a graphene sheet b...
Size-selected $Ag_{n}$-clusters on unsupported graphene of a commercial Quantifoil sample have been ...
Motivated by experimental results on transport properties of graphene covered by gallium atoms, the ...
The local charge carrier density of graphene can exhibit significant and highly localized variations...
We investigated the interaction between size-selected Au2 and Au3 clusters and graphene. Hereto pref...
In contemporary solid-state research, various approaches exist to manipulate and study material prop...
© 2018 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Graphene's sensitivity to adsorbed particles has...
This work is devoted to investigating the changes of electronic properties of graphene devices by in...
We investigate the electronic properties of graphene nanoflakes on Ag(111) and Au(111) surfaces by m...
The growth of metallic nanoparticles formed on chemically modified graphene (CMG) by physical vapor ...
Atomic‐resolution transmission electron microscopy was used to identify individual Au9 clusters on a...
Chemical vapor deposition (CVD) on metals is so far the best suited method to produce high-quality, ...
Au nanoparticles and films are deposited onto clean graphene surfaces to study the doping effect of ...
The growth of metallic nanoparticles formed on chemically modified graphene (CMG) by physical vapor ...
ABSTRACT: The interaction of ultrasmall metal clusters with surfaces of graphene is important for de...
We perform a phenomenological analysis of the problem of the electronic doping of a graphene sheet b...
Size-selected $Ag_{n}$-clusters on unsupported graphene of a commercial Quantifoil sample have been ...
Motivated by experimental results on transport properties of graphene covered by gallium atoms, the ...
The local charge carrier density of graphene can exhibit significant and highly localized variations...