As an inorganic cousin of graphene, MoS2 monolayer has attracted considerable attention. However, a full understanding of its structure and stability is still lacking due to its dependence on experimental synthesis conditions. Using first-principle calculations combined with Boltzmann transport equation, we have extensively studied the geometry, energetics, electronic structure, optical absorption, and carrier mobility of various phases of MoS2. We have not only identified the stable phases of a MoS2 monolayer, but also clarified the specific conditions under which different phases are formed. The possible pathways for transitions among different phases are also discussed.http://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&Src...
MoS2 nanooctahedra are believed to be the smallest stable closed-cage structures of MoS2, i.e., the ...
The electronic structure and optical spectrum of monolayer MoS2 are calculated using both the modifi...
Molybdenum disulphide (MoS2) has been one of the most interesting materials for scientists and engin...
Recently, monolayer molybdenum disulfide (MoS2), a direct bandgap 2-D semiconductor, has shown its g...
The nature of the S-vacancy is central to controlling the electronic properties of monolayer MoS2. U...
Recent experimental demonstration on the coexistence of metallic and semiconducting phases in the sa...
In this paper, we studied the electronic properties, effective masses, and carrier mobility of monol...
Recently, 2D-thin-layered TMDCs have been designed that could be beneficial in the miniaturization o...
Monolayer transition metal dichalcogenide (TMDs) are promising candidates for two-dimensional (2D) u...
Phase transitions between semiconducting 2H and metallic 1T (or 1T') molybdenum disulphides (Mo...
In this work, we report a facile, clean, controllable and scalable phase engineering technique for m...
We present results of density functional theory based calculations of the electronic structure of a ...
Two-dimensional transition metal dichalcogenides have gained great attention because of their peculi...
While MoS2 and WS2 nanostructures gain an increasing importance in a number of recent technological ...
A metastable trigonal phase, existing only as small patches on a chemically exfoliated few-layered, ...
MoS2 nanooctahedra are believed to be the smallest stable closed-cage structures of MoS2, i.e., the ...
The electronic structure and optical spectrum of monolayer MoS2 are calculated using both the modifi...
Molybdenum disulphide (MoS2) has been one of the most interesting materials for scientists and engin...
Recently, monolayer molybdenum disulfide (MoS2), a direct bandgap 2-D semiconductor, has shown its g...
The nature of the S-vacancy is central to controlling the electronic properties of monolayer MoS2. U...
Recent experimental demonstration on the coexistence of metallic and semiconducting phases in the sa...
In this paper, we studied the electronic properties, effective masses, and carrier mobility of monol...
Recently, 2D-thin-layered TMDCs have been designed that could be beneficial in the miniaturization o...
Monolayer transition metal dichalcogenide (TMDs) are promising candidates for two-dimensional (2D) u...
Phase transitions between semiconducting 2H and metallic 1T (or 1T') molybdenum disulphides (Mo...
In this work, we report a facile, clean, controllable and scalable phase engineering technique for m...
We present results of density functional theory based calculations of the electronic structure of a ...
Two-dimensional transition metal dichalcogenides have gained great attention because of their peculi...
While MoS2 and WS2 nanostructures gain an increasing importance in a number of recent technological ...
A metastable trigonal phase, existing only as small patches on a chemically exfoliated few-layered, ...
MoS2 nanooctahedra are believed to be the smallest stable closed-cage structures of MoS2, i.e., the ...
The electronic structure and optical spectrum of monolayer MoS2 are calculated using both the modifi...
Molybdenum disulphide (MoS2) has been one of the most interesting materials for scientists and engin...