International audienceEpitaxial bilayer silicon oxide is a transferable two-dimensional material predicted to be a wide band gap semiconductor, with potential applications for deep UV optoelectronics, or as a building block of van der Waals heterostructures. The prerequisite to any sort of such applications is the knowledge of the electronic band structure, which we unveil using angle-resolved photoemission spectroscopy and rationalize with the help of density functional theory (DFT) calculations. We discover dispersing bands related to electronic delocalization within the top and bottom planes of the material, with two linear crossings reminiscent of those predicted in bilayer AA-stacked graphene, and semi-flat bands stemming from the chem...
The geometries and electronic characteristics of the graphene monoxide (GMO) bilayer are predicted v...
An atomically smooth silica bilayer is transferred from the growth substrate to a new support via me...
The electronic properties of ultra-thin Si layers have been investigated. Using the linear muffin ti...
International audienceEpitaxial bilayer silicon oxide is a transferable two-dimensional material pre...
Semiconductors are essential materials that affect our everyday life in the modern world. Two-dimens...
Ab initio density functional theory (DFT) is an established method to model the behaviour of materia...
An atomically smooth silica bilayer is transferred from the growth substrate to a new support via me...
The observation of intense luminescence in Si/SiO2 superlattices (SLs) has lead to new theoretical r...
Semiconductors simultaneously possessing high carrier mobility, moderate bandgap, and ambient enviro...
Wide bandgap oxide semiconductors constitute a unique class of materials that combine properties of ...
Abstract Searching for new stable free-standing atomically thin two-dimensional (2D) materials is of...
International audienceSilicon oxide can be formed in a crystalline form, when prepared on a metallic...
Synergizing graphene on silicon based nanostructures is pivotal in advancing nano-electronic device ...
The applicability of graphene in nanoscale devices is somewhat limited because of the absence of a f...
The electronic properties of ultra-thin Si layers have been investigated. Using the linear muffin ti...
The geometries and electronic characteristics of the graphene monoxide (GMO) bilayer are predicted v...
An atomically smooth silica bilayer is transferred from the growth substrate to a new support via me...
The electronic properties of ultra-thin Si layers have been investigated. Using the linear muffin ti...
International audienceEpitaxial bilayer silicon oxide is a transferable two-dimensional material pre...
Semiconductors are essential materials that affect our everyday life in the modern world. Two-dimens...
Ab initio density functional theory (DFT) is an established method to model the behaviour of materia...
An atomically smooth silica bilayer is transferred from the growth substrate to a new support via me...
The observation of intense luminescence in Si/SiO2 superlattices (SLs) has lead to new theoretical r...
Semiconductors simultaneously possessing high carrier mobility, moderate bandgap, and ambient enviro...
Wide bandgap oxide semiconductors constitute a unique class of materials that combine properties of ...
Abstract Searching for new stable free-standing atomically thin two-dimensional (2D) materials is of...
International audienceSilicon oxide can be formed in a crystalline form, when prepared on a metallic...
Synergizing graphene on silicon based nanostructures is pivotal in advancing nano-electronic device ...
The applicability of graphene in nanoscale devices is somewhat limited because of the absence of a f...
The electronic properties of ultra-thin Si layers have been investigated. Using the linear muffin ti...
The geometries and electronic characteristics of the graphene monoxide (GMO) bilayer are predicted v...
An atomically smooth silica bilayer is transferred from the growth substrate to a new support via me...
The electronic properties of ultra-thin Si layers have been investigated. Using the linear muffin ti...