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Transfer of large-scale two-dimensional semiconductors: challenges and developments
Abstract Two-dimensional (2D) materials offer opportunities to explore both fundamental
science and applications in the limit of atomic thickness. Beyond the prototypical case of …
science and applications in the limit of atomic thickness. Beyond the prototypical case of …
Atomically thin heterostructures based on single-layer tungsten diselenide and graphene
Heterogeneous engineering of two-dimensional layered materials, including metallic
graphene and semiconducting transition metal dichalcogenides, presents an exciting …
graphene and semiconducting transition metal dichalcogenides, presents an exciting …
Layer-dependent electronic structure of an atomically heavy two-dimensional dichalcogenide
We report angle-resolved photoemission spectroscopic measurements of the evolution of
the thickness-dependent electronic band structure of the atomically heavy two-dimensional …
the thickness-dependent electronic band structure of the atomically heavy two-dimensional …
Protecting the properties of monolayer MoS2 on silicon based substrates with an atomically thin buffer
Semiconducting 2D materials, like transition metal dichalcogenides (TMDs), have gained
much attention for their potential in opto-electronic devices, valleytronic schemes and semi …
much attention for their potential in opto-electronic devices, valleytronic schemes and semi …
Large-scale arrays of single-and few-layer MoS 2 nanomechanical resonators
We report the fabrication of large-scale arrays of suspended molybdenum disulfide (MoS2)
atomic layers, as two-dimensional (2D) MoS2 nanomechanical resonators. We employ a …
atomic layers, as two-dimensional (2D) MoS2 nanomechanical resonators. We employ a …
Monolayer MoS2 Growth on Au Foils and On‐Site Domain Boundary Imaging
Controllable synthesis of large domain, high‐quality monolayer MoS2 is the basic premise
both for exploring some fundamental physical issues, and for engineering its applications in …
both for exploring some fundamental physical issues, and for engineering its applications in …
Tuning the electronic structure of monolayer graphene/ van der Waals heterostructures via interlayer twist
We directly measure the electronic structure of twisted graphene/Mo S 2 van der Waals
heterostructures, in which both graphene and Mo S 2 are monolayers. We use cathode lens …
heterostructures, in which both graphene and Mo S 2 are monolayers. We use cathode lens …
Substrate interactions with suspended and supported monolayer : Angle-resolved photoemission spectroscopy
We report the directly measured electronic structure of exfoliated monolayer molybdenum
disulfide (Mo S 2) using micrometer-scale angle-resolved photoemission spectroscopy …
disulfide (Mo S 2) using micrometer-scale angle-resolved photoemission spectroscopy …
Surface structure of bulk 2H-MoS2 (0001) and exfoliated suspended monolayer MoS2: A selected area low energy electron diffraction study
We have used selected area low energy electron diffraction intensity-voltage (μLEED-IV)
analysis to investigate the surface structure of crystalline 2H molybdenum disulfide (MoS 2) …
analysis to investigate the surface structure of crystalline 2H molybdenum disulfide (MoS 2) …
Layer dependence of the electronic band alignment of few-layer on measured using photoemission electron microscopy
Tailoring band alignment layer-by-layer using heterojunctions of two-dimensional (2D)
semiconductors is an attractive prospect for producing next-generation electronic and …
semiconductors is an attractive prospect for producing next-generation electronic and …