Germanene, as an artificial graphene-like near room temperature topological insulator, compatible with ubiquitous silicon technology, is potentially the most promising artificial Xene for ultra-scale nanoelectronics. Here, we follow its emergence and development when prepared in situ under ultra-high vacuum in clean and controlled conditions by dry epitaxy on prominent metal surfaces (e.g., aluminum, silver, gold). We describe its predicted electronic properties and its birth in 2014, even if it was just a renaissance, as it was only understood after 51 years after an undeciphered birth certificate lost in oblivion. We emphasize the lifting of germanene flakes from an aluminum template with the tip of a scanning tunneling microscope, and th...
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 audienceGermanene, as an artificial graphene-like near room temperature topological in...
Paper presented at Graphene (2014) that was held in Toulouse (France) on 6-9th May 2014.Silicene has...
Monolayer germanene, a novel graphene-like germanium allotrope akin to silicene has been recently gr...
International audienceMonolayer germanene, a novel graphene-like germanium allotrope akin to silicen...
International audienceMonolayer germanene, a novel graphene-like germanium allotrope akin to silicen...
International audienceMonolayer germanene, a novel graphene-like germanium allotrope akin to silicen...
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...
We have grown an atom-thin, ordered, two-dimensional multi-phase film in situ through germanium mole...
Oral presentation given at the European Materials Research Society Spring Symposium, held in Lille (...
Using first principle calculations, we propose functionalized germanene (GeX, X = H, F, Cl, Br, I, O...
We have grown an atom-thin, ordered, two-dimensional multi-phase film in situ through germanium mole...
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 audienceGermanene, as an artificial graphene-like near room temperature topological in...
Paper presented at Graphene (2014) that was held in Toulouse (France) on 6-9th May 2014.Silicene has...
Monolayer germanene, a novel graphene-like germanium allotrope akin to silicene has been recently gr...
International audienceMonolayer germanene, a novel graphene-like germanium allotrope akin to silicen...
International audienceMonolayer germanene, a novel graphene-like germanium allotrope akin to silicen...
International audienceMonolayer germanene, a novel graphene-like germanium allotrope akin to silicen...
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...
We have grown an atom-thin, ordered, two-dimensional multi-phase film in situ through germanium mole...
Oral presentation given at the European Materials Research Society Spring Symposium, held in Lille (...
Using first principle calculations, we propose functionalized germanene (GeX, X = H, F, Cl, Br, I, O...
We have grown an atom-thin, ordered, two-dimensional multi-phase film in situ through germanium mole...
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...