Monolayer (ML) MoS2 has become a very promising two-dimensional material for photorelated applications, potentially serving as the basis for an ultrathin photodetector, switching device, or transistors because of its strong interaction with light in ambient conditions. Establishing the impact of individual ambient gas components on the optical properties of MoS2 is a necessary step toward application development. By using in situ Raman microspectroscopy with an environment-controlled reaction cell, the photoluminescence (PL) intensity of chemical vapor deposition (CVD)-grown MoS2 MLs is monitored at different intralayer locations under ambient and controlled gas environments, such as N2, O2, and H2O. This new approach enables us to monitor ...
ABSTRACT: By creating defects via oxygen plasma treatment, we demonstrate optical properties variati...
We report the growth of continuous large area bilayer films of MoS2 on different substrates by pulse...
Conformal growth of atomic-thick semiconductor layers on patterned substrates can boost up the perfo...
Monolayer (ML) MoS2 has become a very promising two-dimensional material for photorelated applicatio...
Understanding the role of chemical dopants is crucial to modulating the optoelectronic properties of...
Monolayer MoS2 nanosheets are potentially useful in optoelectronics, photoelectronics, and nanoelect...
Monolayers of transition-metal dichalcogenides (TMDs) are promising components for flexible optoelec...
Photoluminescence (PL) from monolayer MoS2 has been modulated using plasma treatment or thermal anne...
We performed nanoscale confocal photoluminescence (PL), Raman, and absorption spectral imaging measu...
Bound quasiparticles, negatively charged trions and neutral excitons are associated with the direct ...
Two-dimensional materials such as transitional metal dichalcogenides exhibit unique optical and elec...
We report the controllable nanosized local thinning of multi-layer (2 L and 3 L)-thickness MoS2 film...
In this letter, we report on the fluorescence lifetime imaging and accompanying photoluminescence pr...
The electrical and photo-electrical properties of exfoliated MoS2 were investigated in the dark and ...
As an important supplementary material to graphene in the optoelectronics field, molybdenum disulfid...
ABSTRACT: By creating defects via oxygen plasma treatment, we demonstrate optical properties variati...
We report the growth of continuous large area bilayer films of MoS2 on different substrates by pulse...
Conformal growth of atomic-thick semiconductor layers on patterned substrates can boost up the perfo...
Monolayer (ML) MoS2 has become a very promising two-dimensional material for photorelated applicatio...
Understanding the role of chemical dopants is crucial to modulating the optoelectronic properties of...
Monolayer MoS2 nanosheets are potentially useful in optoelectronics, photoelectronics, and nanoelect...
Monolayers of transition-metal dichalcogenides (TMDs) are promising components for flexible optoelec...
Photoluminescence (PL) from monolayer MoS2 has been modulated using plasma treatment or thermal anne...
We performed nanoscale confocal photoluminescence (PL), Raman, and absorption spectral imaging measu...
Bound quasiparticles, negatively charged trions and neutral excitons are associated with the direct ...
Two-dimensional materials such as transitional metal dichalcogenides exhibit unique optical and elec...
We report the controllable nanosized local thinning of multi-layer (2 L and 3 L)-thickness MoS2 film...
In this letter, we report on the fluorescence lifetime imaging and accompanying photoluminescence pr...
The electrical and photo-electrical properties of exfoliated MoS2 were investigated in the dark and ...
As an important supplementary material to graphene in the optoelectronics field, molybdenum disulfid...
ABSTRACT: By creating defects via oxygen plasma treatment, we demonstrate optical properties variati...
We report the growth of continuous large area bilayer films of MoS2 on different substrates by pulse...
Conformal growth of atomic-thick semiconductor layers on patterned substrates can boost up the perfo...