International audienceSilicon oxide can be formed in a crystalline form, when prepared on a metallic substrate. It is a candidate support catalyst and possibly the ultimately thin version of a dielectric host material for two-dimensional materials and heterostructures. We determine the atomic structure and chemical bonding of the ultimately thin version of the oxide, epitaxially grown on Ru(0001). In particular, we establish the existence of two sublattices defined by metal–oxygen–silicon bridges involving inequivalent substrate sites. We further discover four electronic bands below the Fermi level, at high binding energy, two of them having a linear dispersion at their crossing K point (Dirac cones) and two others forming semiflat bands. W...
We determined the surface structure of RuO2(100) formed on Ru(1010) by employing the techniques of l...
Abstract Epitaxial bilayer silicon oxide is a transferable two-dimensional material predicted to be ...
The confluence of state-of-the-art electronic-structure computations and modern synthetic materials ...
International audienceSilicon oxide can be formed in a crystalline form, when prepared on a metallic...
Silicon oxide can be formed in a crystalline form, when prepared on a metallic substrate. It is a ca...
A combination of density functional theory calculations and photoelectron spectroscopy provides new ...
Silicon oxide is a widely abundant compound existing in various forms from amorphous to crystalline,...
The atomic structure of thin silica films grown over a Ru(0001) substrate was studied by X-ray photo...
International audienceThe structure of the ultimately-thin crystalline allotrope of silicon oxide, p...
This thesis manuscript is dedicated to the study of silicon (SiO) and germanium (GeO) oxides in thei...
[[abstract]]We investigated the electronic properties of epitaxial silicene on ZrB2(0001) thin film ...
We determined the surface structure of RuO2(100) formed on Ru(1010) by employing the techniques of l...
We determined the surface structure of RuO2(100) formed on Ru(1010) by employing the techniques of l...
Abstract Epitaxial bilayer silicon oxide is a transferable two-dimensional material predicted to be ...
The confluence of state-of-the-art electronic-structure computations and modern synthetic materials ...
International audienceSilicon oxide can be formed in a crystalline form, when prepared on a metallic...
Silicon oxide can be formed in a crystalline form, when prepared on a metallic substrate. It is a ca...
A combination of density functional theory calculations and photoelectron spectroscopy provides new ...
Silicon oxide is a widely abundant compound existing in various forms from amorphous to crystalline,...
The atomic structure of thin silica films grown over a Ru(0001) substrate was studied by X-ray photo...
International audienceThe structure of the ultimately-thin crystalline allotrope of silicon oxide, p...
This thesis manuscript is dedicated to the study of silicon (SiO) and germanium (GeO) oxides in thei...
[[abstract]]We investigated the electronic properties of epitaxial silicene on ZrB2(0001) thin film ...
We determined the surface structure of RuO2(100) formed on Ru(1010) by employing the techniques of l...
We determined the surface structure of RuO2(100) formed on Ru(1010) by employing the techniques of l...
Abstract Epitaxial bilayer silicon oxide is a transferable two-dimensional material predicted to be ...
The confluence of state-of-the-art electronic-structure computations and modern synthetic materials ...