International audienceMonolayer germanene, a novel graphene-like germanium allotrope akin to silicene has been recently grown on metallic substrates. Lying directly on the metal surfaces the reconstructed atom-thin sheets are prone to lose the massless Dirac fermion character and unique associated physical properties of free standing germanene. Here, we show that few layer germanene, which we create by dry epitaxy on a gold template, possesses Dirac cones thanks to a reduced interaction. This finding established on synchrotron-radiation-based photoemission, scanning tunneling microscopy imaging and surface electron diffraction places few layer germanene among the rare two-dimensional Dirac materials. Since germanium is currently used in the...
After the discovery of Dirac fermions in graphene, it has become a natural question to ask whether i...
After the discovery of Dirac fermions in graphene, it has become a natural question to ask whether i...
We have grown an atom-thin, ordered, two-dimensional multi-phase film in situ through germanium mole...
International audienceMonolayer germanene, a novel graphene-like germanium allotrope akin to silicen...
International audienceMonolayer germanene, a novel graphene-like germanium allotrope akin to silicen...
Monolayer germanene, a novel graphene-like germanium allotrope akin to silicene has been recently gr...
Oral presentation given at the European Materials Research Society Spring Symposium, held in Lille (...
Recently, several research groups have reported the growth of germanene, a new member of the graphen...
Recently, several research groups have reported the growth of germanene, a new member of the graphen...
In this chapter a brief review of the current status of germanene, that is, the germanium analog of ...
Content from this work may be used under the terms of the Creative Commons Attribution 3.0 licence.W...
We have grown an atom-thin, ordered, two-dimensional multi-phase film in situ through germanium mole...
2D Dirac materials supported by nonmetallic substrates are of particular interest due to their signi...
2D Dirac materials supported by nonmetallic substrates are of particular interest due to their signi...
Paper presented at Graphene (2014) that was held in Toulouse (France) on 6-9th May 2014.Silicene has...
After the discovery of Dirac fermions in graphene, it has become a natural question to ask whether i...
After the discovery of Dirac fermions in graphene, it has become a natural question to ask whether i...
We have grown an atom-thin, ordered, two-dimensional multi-phase film in situ through germanium mole...
International audienceMonolayer germanene, a novel graphene-like germanium allotrope akin to silicen...
International audienceMonolayer germanene, a novel graphene-like germanium allotrope akin to silicen...
Monolayer germanene, a novel graphene-like germanium allotrope akin to silicene has been recently gr...
Oral presentation given at the European Materials Research Society Spring Symposium, held in Lille (...
Recently, several research groups have reported the growth of germanene, a new member of the graphen...
Recently, several research groups have reported the growth of germanene, a new member of the graphen...
In this chapter a brief review of the current status of germanene, that is, the germanium analog of ...
Content from this work may be used under the terms of the Creative Commons Attribution 3.0 licence.W...
We have grown an atom-thin, ordered, two-dimensional multi-phase film in situ through germanium mole...
2D Dirac materials supported by nonmetallic substrates are of particular interest due to their signi...
2D Dirac materials supported by nonmetallic substrates are of particular interest due to their signi...
Paper presented at Graphene (2014) that was held in Toulouse (France) on 6-9th May 2014.Silicene has...
After the discovery of Dirac fermions in graphene, it has become a natural question to ask whether i...
After the discovery of Dirac fermions in graphene, it has become a natural question to ask whether i...
We have grown an atom-thin, ordered, two-dimensional multi-phase film in situ through germanium mole...