Molecular beam epitaxy growth of polar MgO(111) and NiO(111) films demonstrates that surface stabilization of the films is achieved via the formation of neutral nano-faceted surfaces. First-principles modeling of the growth of polar MgO(111) films reveals that the growth does not proceed layer-by-layer. Instead, the Mg or O layers grow up to a critical sub-monolayer coverage, beyond which the growth of the next layer becomes energetically favorable. This non-layer-by-layer growth is accompanied by complex relaxations of atoms both at the surface and in the sub-surface, and leads to the experimentally observed surface nano-faceting of MgO and NiO (111) films through formation of neutral nano-pyramids terminated by {100} facets. These facets ...
International audienceThe growth of two-dimensional oxide films with accurate control of their struc...
The formation of nickel oxide nanolayers by oxidizing Ni overlayers on Rh(111) has been investigated...
Graphene is grown by molecular beam epitaxy using epitaxial Ni films on MgO(111) as substrates. Rama...
Using scanning tunneling microscopy and density functional theory (DFT), we have analyzed the local ...
The growth characteristic and stability of monolayer MgO islands on Au(111) have been explored with ...
International audienceWe present a computational study on MgO(100) and MgO(111) nanoribbons with pol...
Using an ab initio total energy approach, we study the stability of free and Ag(111)-supported MgO(1...
We report on a growth study of MgO films deposited on Al2O3(0001) substrates by magnetron sputtering...
We report a growth study of MgO thin films on an Au(111) support, performed with scanning tunneling ...
We report a growth study of MgO thin films on an Au(111) support, performed with scanning tunneling ...
About 33 nm thick NiO layers have been epitaxially grown on MgO substrate at 9008C. Investigations b...
Monolayer films of MgO(001) have been prepared on an Au(111) surface and explored by means of scanni...
©2003 The American Physical Society. The electronic version of this article is the complete one and ...
An atomic scale study of surface/interface structure is required to properly understand physical and...
International audienceAn ultra-thin MgO film of two monolayers (ML) was successfully grown onto Ag(1...
International audienceThe growth of two-dimensional oxide films with accurate control of their struc...
The formation of nickel oxide nanolayers by oxidizing Ni overlayers on Rh(111) has been investigated...
Graphene is grown by molecular beam epitaxy using epitaxial Ni films on MgO(111) as substrates. Rama...
Using scanning tunneling microscopy and density functional theory (DFT), we have analyzed the local ...
The growth characteristic and stability of monolayer MgO islands on Au(111) have been explored with ...
International audienceWe present a computational study on MgO(100) and MgO(111) nanoribbons with pol...
Using an ab initio total energy approach, we study the stability of free and Ag(111)-supported MgO(1...
We report on a growth study of MgO films deposited on Al2O3(0001) substrates by magnetron sputtering...
We report a growth study of MgO thin films on an Au(111) support, performed with scanning tunneling ...
We report a growth study of MgO thin films on an Au(111) support, performed with scanning tunneling ...
About 33 nm thick NiO layers have been epitaxially grown on MgO substrate at 9008C. Investigations b...
Monolayer films of MgO(001) have been prepared on an Au(111) surface and explored by means of scanni...
©2003 The American Physical Society. The electronic version of this article is the complete one and ...
An atomic scale study of surface/interface structure is required to properly understand physical and...
International audienceAn ultra-thin MgO film of two monolayers (ML) was successfully grown onto Ag(1...
International audienceThe growth of two-dimensional oxide films with accurate control of their struc...
The formation of nickel oxide nanolayers by oxidizing Ni overlayers on Rh(111) has been investigated...
Graphene is grown by molecular beam epitaxy using epitaxial Ni films on MgO(111) as substrates. Rama...