Synthetic two-dimensional (2D) mono-elemental crystals, namely X-enes, have recently emerged as a new frontier for atomically thin nanomaterials with on-demand properties. Among X-enes, antimonene, the beta-phase allotrope of antimony, is formed by atoms arranged in buckled hexagonal rings bearing a comparatively higher environmental stability with respect to other players of this kind. However, the exploitation of monolayer or few-layer antimonene and other 2D materials in novel opto-electronic devices is still hurdled by the lack of scalable processes. Here, we demonstrated the viability of a bottom-up process for the epitaxial growth of antimonene-like nanocrystals (ANCs), based on a Metal-Organic Chemical Vapor Deposition (MOCVD) proces...
The pseudolayered character of 3D bulk crystals of antimony has led us to predict its 2D single-laye...
International audienceGermanene, as an artificial graphene-like near room temperature topological in...
The wafer-scale synthesis and patterning of thin films forms the foundation of modern technologies. ...
Synthetic two-dimensional (2D) mono-elemental crystals, namely X-enes, have recently emerged as a ne...
The lack of large-area synthesis processes on substrates compatible with industry requirements has b...
Antimonene (2D-Sb) is attracting considerable attention because of its environmental stability and e...
Group-V elemental monolayers were recently predicted to exhibit exotic physical properties such as n...
Content from this work may be used under the terms of the Creative Commons Attribution 3.0 licence.W...
© 2021 American Chemical Society.Two-dimensional (2D) transition metal dichalcogenide (TMD) layers a...
The thesis reports a gas-phase method for synthesizing semiconductor nanoparticles, such as germaniu...
Single-layered molybdenum disulphide with a direct bandgap is a promising two-dimensional material t...
As structural analogues of graphene but with a sizeable band gap, monolayers of group-VIB transition...
Using molecular beam epitaxy, a new structural phase of a single atom thick antimony layer has been ...
We have grown an atom-thin, ordered, two-dimensional multi-phase film in situ through germanium mole...
Approaches to colloidal synthesis have rapidly developed to control the size, shape, and composition...
The pseudolayered character of 3D bulk crystals of antimony has led us to predict its 2D single-laye...
International audienceGermanene, as an artificial graphene-like near room temperature topological in...
The wafer-scale synthesis and patterning of thin films forms the foundation of modern technologies. ...
Synthetic two-dimensional (2D) mono-elemental crystals, namely X-enes, have recently emerged as a ne...
The lack of large-area synthesis processes on substrates compatible with industry requirements has b...
Antimonene (2D-Sb) is attracting considerable attention because of its environmental stability and e...
Group-V elemental monolayers were recently predicted to exhibit exotic physical properties such as n...
Content from this work may be used under the terms of the Creative Commons Attribution 3.0 licence.W...
© 2021 American Chemical Society.Two-dimensional (2D) transition metal dichalcogenide (TMD) layers a...
The thesis reports a gas-phase method for synthesizing semiconductor nanoparticles, such as germaniu...
Single-layered molybdenum disulphide with a direct bandgap is a promising two-dimensional material t...
As structural analogues of graphene but with a sizeable band gap, monolayers of group-VIB transition...
Using molecular beam epitaxy, a new structural phase of a single atom thick antimony layer has been ...
We have grown an atom-thin, ordered, two-dimensional multi-phase film in situ through germanium mole...
Approaches to colloidal synthesis have rapidly developed to control the size, shape, and composition...
The pseudolayered character of 3D bulk crystals of antimony has led us to predict its 2D single-laye...
International audienceGermanene, as an artificial graphene-like near room temperature topological in...
The wafer-scale synthesis and patterning of thin films forms the foundation of modern technologies. ...