Publications (10)
Electronic structure of Graphene/Co interfaces
Daniela Pacilé, Simone Lisi, Iolanda Di Bernardo +12
Photoemission, from core levels and valence band, and low-energy electron diffraction (LEED) have been employed to investigate the electronic and structural properties of novel gra…
Weakly Trapped, Charged, and Free Excitons in Single-Layer MoS2 in the Presence of Defects, Strain, and Charged Impurities
Sudipta Dubey, Simone Lisi, Goutham Nayak +17
Few- and single-layer MoS2 host substantial densities of defects. They are thought to influence the doping level, the crystal structure, and the binding of electron-hole pairs. We…
Decoupling Molybdenum Disulfide from its Substrate by Cesium Intercalation
Roberto Sant, Simone Lisi, Van Dung Nguyen +14
Intercalation of alkali atoms within the lamellar transition metal dichalcogenides is a possible route toward a new generation of batteries. It is also a way to induce structural p…
Structure of graphene and a surface carbide grown on the (0001) surface of rhenium
Estelle Mazaleyrat, Monica Pozzo, Dario Alfè +7
Transition metal surfaces catalyse a broad range of thermally-activated reactions involving carbon-containing-species -- from atomic carbon to small hydrocarbons or organic molecul…
Electronic structure of few-layer black phosphorus from -ARPES
Florian Margot, Simone Lisi, Irène Cucchi +13
Black phosphorus (BP) stands out among two-dimensional (2D) semiconductors because of its high mobility and thickness dependent direct band gap. However, the quasiparticle band str…
Electronic structure of 2D van der Waals crystals and heterostructures investigated by spatially- and angle-resolved photoemission
Irène Cucchi, Simone Lisi, Florian Margot +3
Angle-resolved photoemission is a direct probe of the momentum-resolved electronic structure and proved influential in the study of bulk crystals with novel electronic properties.…
Direct evidence for flat bands in twisted bilayer graphene from nano-ARPES
Simone Lisi, Xiaobo Lu, Tjerk Benschop +21
Transport experiments in twisted bilayer graphene revealed multiple superconducting domes separated by correlated insulating states. These properties are generally associated with…
FePc Adsorption on the Moiré Superstructure of Graphene Intercalated with a Co Layer
Giulia Avvisati, Simone Lisi, Pierluigi Gargiani +8
The moiré superstructure of graphene grown on metals can drive the assembly of molecular architectures, as iron-phthalocyanine (FePc) molecules, allowing for the production of art…
Two-way twisting of a confined monolayer: orientational ordering within the van der Waals gap between graphene and its crystalline substrate
Simone Lisi, Valérie Guisset, Philippe David +3
Two-dimensional confinement of lattices produces a variety of order and disorder phenomena. When the confining walls have atomic granularity, unique structural phases are expected,…
How to induce superconductivity in epitaxial graphene remote proximity effect through an intercalated gold layer
Estelle Mazaleyrat, Sergio Vlaic, Alexandre Artaud +12
Graphene holds promises for exploring exotic superconductivity with Dirac-like fermions. Making graphene a superconductor at large scales is however a long-lasting challenge. A pos…