activity
20192026
most citedElectronic band structure of ultimately thin silicon oxide on Ru(0001)

21 citations · 21 across the 4 of their papers we have counts for

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Showing cond-mat.mtrl-sciShow all

5 papers · 1 filter

cond-mat.mtrl-sci2026

Surface reconstruction-driven band folding and spin-orbit enhancement at the -antimonene/Au(111) interface

Thomas Pierron, José de Jesùs Villalobos Castro, Etienne Barre +9

The electronic properties of the two-dimensional (2D) phase of antimonene are unique, featuring unpinned Dirac cones that can be moved with strain. Here we investigate the stru…

cond-mat.mtrl-sci2025

Selective band engineering of Bi/Si(111) by boron segregation

E. Barre, J. Villalobos-Castro, T. Pierron +4

Atomically thin layers of metals deposited on semiconductors display a variety of physical properties such as superconductivity, charge density waves, topological phases, strong sp…

cond-mat.mtrl-sci2025

Three-dimensional deformations in single-layer antimonene and interaction with a Au(111) surface from first principles

José de Jesús Villalobos Castro, Thomas Pierron, Stephane Pons +3

Using density functional theory, we investigate the electronic structure of the alpha phase of an antimony monolayer in its isolated form and in contact to the (111) surface of gol…

cond-mat.mtrl-sci2020

Dispersing and semi-flat bands in the wide band gap two-dimensional semiconductor bilayer silicon oxide

G. Kremer, J. C. Alvarez-Quiceno, T. Pierron +11

Epitaxial bilayer silicon oxide is a transferable two-dimensional material predicted to be a wide band gap semiconductor, with potential applications for deep UV optoelectronics, o…

cond-mat.mtrl-sci201921 cited

Electronic band structure of ultimately thin silicon oxide on Ru(0001)

G. Kremer, J. C. Alvarez-Quiceno, S. Lisi +12

Silicon 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 dielectri…