Cluster superlattice membranes consist of a two-dimensional hexagonal lattice of similar-sized nanoclusters sandwiched between single-crystal graphene and an amorphous carbon matrix. The fabrication process involves three main steps, the templated self-organization of a metal cluster superlattice on epitaxial graphene on Ir(111), conformal embedding in an amorphous carbon matrix, and subsequent lift-off from the Ir(111) substrate. The mechanical stability provided by the carbon-graphene matrix makes the membrane stable as a free-standing material and enables transfer to other substrates. The fabrication procedure can be applied to a wide variety of cluster materials and cluster sizes from the single-atom limit to clusters of a few hundred a...
From a chemistry point of view, graphene is essentially a giant polymeric molecule with unique two-d...
Formation of Identical-size Graphene Nanoclusters on Ru(0001)Identical-size graphene nanoclusters (G...
Ordered atomic-scale superlattices on a surface hold great interest both for basic science and for p...
Cluster superlattice membranes consist of a two-dimensional hexagonal lattice of similar-sized nanoc...
Iridium cluster superlattices on the graphene moire with Ir(111) are embedded with elemental carbon ...
International audienceOn the graphene moire on Ir(111) a variety of highly perfect cluster superlatt...
The growth and the structure of epitaxial graphene on Ir(111) and its use as a template for metal cl...
With the goal to delevop the fabrication of a new type of Pt-nanoparticle carbon-support electrocata...
A new class of two-dimensional layered materials (2DLMs) has emerged with promising advancements mad...
Design and engineering of novel low dimensional metamaterials allow for new applications in membrane...
Design and engineering of novel low dimensional metamaterials allow for new applications in membrane...
In our lab graphene oxide membranes are manipulated into higher order structures. Hollow spherical s...
Soft-landing of size-selected Pd<sub><i>n</i></sub> (<i>n</i> ≤ 20) nanoclusters on a Moiré-pattern...
Graphene is an exciting new atomically-thin two dimensional system with applications ranging from ne...
ABSTRACT: Soft-landing of size-selected Pdn (n ≤ 20) nanoclusters on a Moire-́patterned surface of g...
From a chemistry point of view, graphene is essentially a giant polymeric molecule with unique two-d...
Formation of Identical-size Graphene Nanoclusters on Ru(0001)Identical-size graphene nanoclusters (G...
Ordered atomic-scale superlattices on a surface hold great interest both for basic science and for p...
Cluster superlattice membranes consist of a two-dimensional hexagonal lattice of similar-sized nanoc...
Iridium cluster superlattices on the graphene moire with Ir(111) are embedded with elemental carbon ...
International audienceOn the graphene moire on Ir(111) a variety of highly perfect cluster superlatt...
The growth and the structure of epitaxial graphene on Ir(111) and its use as a template for metal cl...
With the goal to delevop the fabrication of a new type of Pt-nanoparticle carbon-support electrocata...
A new class of two-dimensional layered materials (2DLMs) has emerged with promising advancements mad...
Design and engineering of novel low dimensional metamaterials allow for new applications in membrane...
Design and engineering of novel low dimensional metamaterials allow for new applications in membrane...
In our lab graphene oxide membranes are manipulated into higher order structures. Hollow spherical s...
Soft-landing of size-selected Pd<sub><i>n</i></sub> (<i>n</i> ≤ 20) nanoclusters on a Moiré-pattern...
Graphene is an exciting new atomically-thin two dimensional system with applications ranging from ne...
ABSTRACT: Soft-landing of size-selected Pdn (n ≤ 20) nanoclusters on a Moire-́patterned surface of g...
From a chemistry point of view, graphene is essentially a giant polymeric molecule with unique two-d...
Formation of Identical-size Graphene Nanoclusters on Ru(0001)Identical-size graphene nanoclusters (G...
Ordered atomic-scale superlattices on a surface hold great interest both for basic science and for p...