The synthesis and structures of graphene on Ru(0001) and Pt(111), silicene on Ag(111) and Ir(111) and the honeycomb hafnium lattice on Ir(111) are reviewed. Epitaxy on a transition metal (TM) substrate is a promising method to produce a variety of two dimensional (2D) atomic crystals which potentially can be used in next generation electronic devices. This method is particularly valuable in the case of producing 2D materials that do not exist in 3D forms, for instance, silicene. Based on the intensive investigations of epitaxial graphene on TM in recent years, it is known that the quality of graphene is affected by many factors, including the interaction between the 2D material overlayer and the substrate, the lattice mismatch, the nucleat...
The discovery of graphene, a single atomic layer of hexagonally packed carbons, can be considered as...
The isolation of graphene in 2004 from graphite was a defining moment for the birth of a field: tw...
Graphene is at the center of an ever growing research effort due to its unique properties, interesti...
Today, two-dimensional materials are one of the key research topics for scientists around the world....
The isolation of graphene sheets from its parent crystal graphite has given the kick to experimental...
The isolation of graphene sheets from its parent crystal graphite has given the kick to experimental...
International audienceSince the breakthrough of graphene, considerable efforts have been made to sea...
Graphene-like allotrope modifications of single elements, such as borophene (B), silicene (Si), germ...
The family of two-dimensional materials has been expanding rapidly over the last few years. Within i...
The family of two-dimensional materials has been expanding rapidly over the last few years. Within i...
The advent of graphene (1) and the subsequent discovery of its multitude of superior properties (2–5...
Starting from the discovery of graphene and its unique properties, there has been enormous progress ...
Atomically thin materials offer unique optical, electronic and physical properties due to quantum co...
Paper presented at Graphene (2014) that was held in Toulouse (France) on 6-9th May 2014.Silicene has...
Recently, the successful synthesis of wafer-scale single-crystal graphene, hexagonal boron nitride (...
The discovery of graphene, a single atomic layer of hexagonally packed carbons, can be considered as...
The isolation of graphene in 2004 from graphite was a defining moment for the birth of a field: tw...
Graphene is at the center of an ever growing research effort due to its unique properties, interesti...
Today, two-dimensional materials are one of the key research topics for scientists around the world....
The isolation of graphene sheets from its parent crystal graphite has given the kick to experimental...
The isolation of graphene sheets from its parent crystal graphite has given the kick to experimental...
International audienceSince the breakthrough of graphene, considerable efforts have been made to sea...
Graphene-like allotrope modifications of single elements, such as borophene (B), silicene (Si), germ...
The family of two-dimensional materials has been expanding rapidly over the last few years. Within i...
The family of two-dimensional materials has been expanding rapidly over the last few years. Within i...
The advent of graphene (1) and the subsequent discovery of its multitude of superior properties (2–5...
Starting from the discovery of graphene and its unique properties, there has been enormous progress ...
Atomically thin materials offer unique optical, electronic and physical properties due to quantum co...
Paper presented at Graphene (2014) that was held in Toulouse (France) on 6-9th May 2014.Silicene has...
Recently, the successful synthesis of wafer-scale single-crystal graphene, hexagonal boron nitride (...
The discovery of graphene, a single atomic layer of hexagonally packed carbons, can be considered as...
The isolation of graphene in 2004 from graphite was a defining moment for the birth of a field: tw...
Graphene is at the center of an ever growing research effort due to its unique properties, interesti...