The realization of silicene-free ZrB_2(0001) thin films grown on Si(111) by Ar^+ ion bombardment allowed for studying the spontaneous formation of silicene on their surfaces. Imaging the bare ZrB_2(0001) surface by STM revealed the structures of Zr-terminated and B-terminated ZrB_2(0001) created by the bombardment. The spontaneous formation of a continuous silicene sheet on asputtering-induced disordered ZrB_2 surface demonstrates that silicene does not require an atomically-flat crystalline template to be stabilized. This opens the way to the fabrication of large scale single-crystal sheets and points out the potential of silicene to be used in the next generation silicon-based technologies
The extraordinary properties of graphene have spurred huge interest in the experimental realization ...
We have used low energy electron microscopy to directly visualize the formation and stability of sil...
Abstract Silicene, a monolayer of silicon atoms arranged in a honeycomb structure, received an enorm...
Epitaxial silicene, which forms spontaneously on ZrB2(0001) thin films grown on Si(111) wafers, has ...
Silicene is emerging as a two-dimensional material with very attractive electronic properties for a ...
Silicene is emerging as a two-dimensional material with very attractive electronic properties for a ...
The deposition of elemental Se on epitaxial silicene on ZrB2 thin films was investigated with synchr...
International audienceSilicene, a new 2D material has attracted intense research because of the ubiq...
As the Si counterpart of graphene, silicene may be defined as an at least partially sp^2-hybridized,...
International audienceSilicene is a two-dimensional (2D) material with very promising electronic pro...
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...
[[abstract]]The origin of the large-scale stripe pattern of epitaxial silicene on the ZrB2(0001) sur...
Silicene is a single atomic layer of silicon (Si) much like graphene, the first example of an elemen...
The formation process of hexagonal boron nitride (hBN) monolayer sheets on single-crystalline ZrB2(0...
The extraordinary properties of graphene have spurred huge interest in the experimental realization ...
We have used low energy electron microscopy to directly visualize the formation and stability of sil...
Abstract Silicene, a monolayer of silicon atoms arranged in a honeycomb structure, received an enorm...
Epitaxial silicene, which forms spontaneously on ZrB2(0001) thin films grown on Si(111) wafers, has ...
Silicene is emerging as a two-dimensional material with very attractive electronic properties for a ...
Silicene is emerging as a two-dimensional material with very attractive electronic properties for a ...
The deposition of elemental Se on epitaxial silicene on ZrB2 thin films was investigated with synchr...
International audienceSilicene, a new 2D material has attracted intense research because of the ubiq...
As the Si counterpart of graphene, silicene may be defined as an at least partially sp^2-hybridized,...
International audienceSilicene is a two-dimensional (2D) material with very promising electronic pro...
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...
[[abstract]]The origin of the large-scale stripe pattern of epitaxial silicene on the ZrB2(0001) sur...
Silicene is a single atomic layer of silicon (Si) much like graphene, the first example of an elemen...
The formation process of hexagonal boron nitride (hBN) monolayer sheets on single-crystalline ZrB2(0...
The extraordinary properties of graphene have spurred huge interest in the experimental realization ...
We have used low energy electron microscopy to directly visualize the formation and stability of sil...
Abstract Silicene, a monolayer of silicon atoms arranged in a honeycomb structure, received an enorm...