We study the electronic structure and transport properties of zigzag and armchair monolayer molybdenum disulfide nanoribbons using an 11-band tight-binding model that accurately reproduces the material\u27s bulk band structure near the band gap. We study the electronic properties of pristine zigzag and armchair nanoribbons, paying particular attention to the edges states that appear within the MoS2 bulk gap. By analyzing both their orbital composition and their local density of states, we find that in zigzag-terminated nanoribbons these states can be localized at a single edge for certain energies independent of the nanoribbon width. We also study the effects of disorder in these systems using the recursive Green\u27s function technique. We...
We present low-temperature electrical transport experiments in five field-effect transistor devices ...
Charge-carrier mobility is a determining factor of the transport properties of semiconductor materia...
This thesis reports on the investigation of graphene and molybdenum disulfide (MoS2) nanostructures ...
First, we propose an accurate tight-binding parametrization for the band structure of MoS2 monolayer...
We report about results from density functional based calculations on structural, electronic and tra...
We report about results from density functional based calculations on structural, electron...
Structural, electronic and transport properties of an edge terminated armchair molybdenum disulfide ...
Molybdenum disulfide nanoribbons with zigzag edges show ferromagnetic and metallic properties based ...
We study the energetics and electronic structures of MoS2 nanoribbons with clean armchair, chiral, a...
International audienceEdge roughness is expected to play a major role in narrow ribbons obtained fro...
International audienceEdge roughness is expected to play a major role in narrow ribbons obtained fro...
Single-layer ultra-narrow MoS2 armchair nano-ribbons (AMoS 2NRs) are studied by density functional t...
International audienceEdge roughness is expected to play a major role in narrow ribbons obtained fro...
[[abstract]]Mainly based on non-equilibrium Green’s function technique in combination with the three...
The nonlinear spin-dependent transport properties in zigzag molybdenum-disulfide nanoribbons (ZMNRs)...
We present low-temperature electrical transport experiments in five field-effect transistor devices ...
Charge-carrier mobility is a determining factor of the transport properties of semiconductor materia...
This thesis reports on the investigation of graphene and molybdenum disulfide (MoS2) nanostructures ...
First, we propose an accurate tight-binding parametrization for the band structure of MoS2 monolayer...
We report about results from density functional based calculations on structural, electronic and tra...
We report about results from density functional based calculations on structural, electron...
Structural, electronic and transport properties of an edge terminated armchair molybdenum disulfide ...
Molybdenum disulfide nanoribbons with zigzag edges show ferromagnetic and metallic properties based ...
We study the energetics and electronic structures of MoS2 nanoribbons with clean armchair, chiral, a...
International audienceEdge roughness is expected to play a major role in narrow ribbons obtained fro...
International audienceEdge roughness is expected to play a major role in narrow ribbons obtained fro...
Single-layer ultra-narrow MoS2 armchair nano-ribbons (AMoS 2NRs) are studied by density functional t...
International audienceEdge roughness is expected to play a major role in narrow ribbons obtained fro...
[[abstract]]Mainly based on non-equilibrium Green’s function technique in combination with the three...
The nonlinear spin-dependent transport properties in zigzag molybdenum-disulfide nanoribbons (ZMNRs)...
We present low-temperature electrical transport experiments in five field-effect transistor devices ...
Charge-carrier mobility is a determining factor of the transport properties of semiconductor materia...
This thesis reports on the investigation of graphene and molybdenum disulfide (MoS2) nanostructures ...