In this project, we have used micro-Raman and micro-photoluminescence spectroscopy to study two-dimensional materials (graphene and transition metal dichalcogenides) and van der Waals heterostructures. First, using electrochemically-gated graphene transistors, we show that Raman spectroscopy is an extremely sensitive tool for advanced characteri-zations of graphene samples. Then, we investigate the evolution of the physical properties of N-layer semiconducting transition metal dichalcogenides, in particular molybdenum ditelluride (MoTe2) and molybdenum diselenide (MoSe2). In these layered structures, theDavydov splitting of zone-center optical phonons is observed and remarkably well described by a ‘textbook’ force constant model. We then de...
This thesis discusses optical investigations of two-dimensional metal-chalcogenide semiconductor mat...
In this work, we use Raman spectroscopy as a nondestructive and rapid technique for probing the van ...
In this work, van der Waals heterostructures are investigated via optical spectroscopy, specifically...
In this project, we have used micro-Raman and micro-photoluminescence spectroscopy to study two-dime...
Made from stacks of two-dimensional materials, van der Waals heterostructures exhibit unique light-m...
Novel two dimensional (2D) semiconductors beyond graphene such as MoS2, GaS, GaSe and InSe are incre...
International audienceTwo-dimensional layered transition metal dichalcogenides (TMDCs) show great po...
The possibility of isolating transition metal dichalcogenide monolayers by simple experimental means...
Since the first report of graphene in 2004, atomically thin materials become more and more attractiv...
The recently emerging layered two-dimensional materials provide a new material class for novel opto-...
We have investigated the vibrational properties of van der Waals heterostructures of monolayer trans...
This work deals with preparation and study of sandwich heterostructures of MoS2 and graphene. MoS2 l...
International audienceVan der Waals heterojunctions composed of graphene and transition metal dichal...
This thesis discusses optical investigations of two-dimensional metal-chalcogenide semiconductor mat...
In this work, we use Raman spectroscopy as a nondestructive and rapid technique for probing the van ...
In this work, van der Waals heterostructures are investigated via optical spectroscopy, specifically...
In this project, we have used micro-Raman and micro-photoluminescence spectroscopy to study two-dime...
Made from stacks of two-dimensional materials, van der Waals heterostructures exhibit unique light-m...
Novel two dimensional (2D) semiconductors beyond graphene such as MoS2, GaS, GaSe and InSe are incre...
International audienceTwo-dimensional layered transition metal dichalcogenides (TMDCs) show great po...
The possibility of isolating transition metal dichalcogenide monolayers by simple experimental means...
Since the first report of graphene in 2004, atomically thin materials become more and more attractiv...
The recently emerging layered two-dimensional materials provide a new material class for novel opto-...
We have investigated the vibrational properties of van der Waals heterostructures of monolayer trans...
This work deals with preparation and study of sandwich heterostructures of MoS2 and graphene. MoS2 l...
International audienceVan der Waals heterojunctions composed of graphene and transition metal dichal...
This thesis discusses optical investigations of two-dimensional metal-chalcogenide semiconductor mat...
In this work, we use Raman spectroscopy as a nondestructive and rapid technique for probing the van ...
In this work, van der Waals heterostructures are investigated via optical spectroscopy, specifically...