International audienceThe structural, electronic, and magnetic properties of quasi-one-dimensional MoS2nanowires (NWs), passivated by extra sulfur, have been determined using ab initio density functional theory. The nanostructures were simulated using several different models based on experimental electron microscopy images and theoretical literature. It is found that independently of the geometrical details and the coverage of extra sulfur at the Mo edge, quasi-one-dimensional metallic states are predominant in all the low-energy model structures despite their reduced dimensionality. These metallic states are localized mainly at the edges. However, the electronic and magnetic character of the NWs does not depend only on the S saturation bu...
We have studied the electronic and magnetic structures of MoS2 nanotubes by using a first-principles...
We report about results from density functional based calculations on structural, electronic and tra...
We present the results of first-principles electronic structure investigations, using spin-polarized...
International audienceThe structural, electronic, and magnetic properties of quasi-one-dimensional M...
International audienceThe structural, electronic, and magnetic properties of quasi-one-dimensional M...
International audienceThe structural, electronic, and magnetic properties of quasi-one-dimensional M...
International audienceThe structural, electronic, and magnetic properties of quasi-one-dimensional M...
International audienceThe structural, electronic, and magnetic properties of quasi-one-dimensional M...
International audienceThe structural, electronic, and magnetic properties of quasi-one-dimensional M...
International audienceThe structural, electronic, and magnetic properties of quasi-one-dimensional M...
International audienceThe structural, electronic, and magnetic properties of quasi-one-dimensional M...
Structural, electronic and transport properties of an edge terminated armchair molybdenum disulfide ...
We report about results from density functional based calculations on structural, electron...
Molybdenum disulfide nanoribbons with zigzag edges show ferromagnetic and metallic properties based ...
© The Royal Society of Chemistry 2016. Stability and electronic properties of a two-dimensional MoS2...
We have studied the electronic and magnetic structures of MoS2 nanotubes by using a first-principles...
We report about results from density functional based calculations on structural, electronic and tra...
We present the results of first-principles electronic structure investigations, using spin-polarized...
International audienceThe structural, electronic, and magnetic properties of quasi-one-dimensional M...
International audienceThe structural, electronic, and magnetic properties of quasi-one-dimensional M...
International audienceThe structural, electronic, and magnetic properties of quasi-one-dimensional M...
International audienceThe structural, electronic, and magnetic properties of quasi-one-dimensional M...
International audienceThe structural, electronic, and magnetic properties of quasi-one-dimensional M...
International audienceThe structural, electronic, and magnetic properties of quasi-one-dimensional M...
International audienceThe structural, electronic, and magnetic properties of quasi-one-dimensional M...
International audienceThe structural, electronic, and magnetic properties of quasi-one-dimensional M...
Structural, electronic and transport properties of an edge terminated armchair molybdenum disulfide ...
We report about results from density functional based calculations on structural, electron...
Molybdenum disulfide nanoribbons with zigzag edges show ferromagnetic and metallic properties based ...
© The Royal Society of Chemistry 2016. Stability and electronic properties of a two-dimensional MoS2...
We have studied the electronic and magnetic structures of MoS2 nanotubes by using a first-principles...
We report about results from density functional based calculations on structural, electronic and tra...
We present the results of first-principles electronic structure investigations, using spin-polarized...