Crystal symmetry of two-dimensional (2D) materials plays an important role in their electronic and optical properties. Engineering symmetry in 2D materials has recently emerged as a promising way to achieve novel properties and functions. The noncentrosymmetric structure of monolayer transition metal dichalcogenides (TMDCs), such as molybdenum disulfide (MoS2), has allowed for valley control via circularly polarized optical excitation. In bilayer TMDCs, inversion symmetry can be controlled by varying the stacking sequence, thus providing a pathway to engineer valley selectivity. Here, we report the in situ integration of AA′ and AB stacked bilayer MoS2 with different inversion symmetries by creating atomically sharp stacking boundaries betw...
Atomically thin group-VI transition metal dichalcogenides (TMDC) has been emerging as a family of in...
Two-dimensional monolayer transition metal dichalcogenide semiconductors are ideal building blocks f...
Two-dimensional monolayer transition metal dichalcogenide semiconductors are ideal building blocks f...
Crystal symmetry of two-dimensional (2D) materials plays an important role in their electronic and o...
We have studied the atomic structure of small secondary domains that nucleate on monolayer MoS2 grow...
We have studied the atomic structure of small secondary domains that nucleate on monolayer MoS2 grow...
The edges of 2D materials show novel electronic, magnetic, and optical properties, especially when r...
© The Royal Society of Chemistry 2018. When secondary domains nucleate and grow on the surface of mo...
© The Royal Society of Chemistry 2018. When secondary domains nucleate and grow on the surface of mo...
Transition metal dichalcogenides (TMDs), such as MoS2 and WS2, are direct band gap semiconductors in...
Interlayer rotation and stacking were recently demonstrated as effective strategies for tuning physi...
Two-dimensional (2D) transition metal dichalcogenides (TMDs) are layered semiconductors with unique ...
We employ atomically resolved and element-specific scanning transmission electron microscopy (STEM) ...
Atomically thin two-dimensional (2D) layered materials, including graphene, boron nitride, and trans...
Van der Waals heterostructures form a unique class of layered artificial solids in which physical pr...
Atomically thin group-VI transition metal dichalcogenides (TMDC) has been emerging as a family of in...
Two-dimensional monolayer transition metal dichalcogenide semiconductors are ideal building blocks f...
Two-dimensional monolayer transition metal dichalcogenide semiconductors are ideal building blocks f...
Crystal symmetry of two-dimensional (2D) materials plays an important role in their electronic and o...
We have studied the atomic structure of small secondary domains that nucleate on monolayer MoS2 grow...
We have studied the atomic structure of small secondary domains that nucleate on monolayer MoS2 grow...
The edges of 2D materials show novel electronic, magnetic, and optical properties, especially when r...
© The Royal Society of Chemistry 2018. When secondary domains nucleate and grow on the surface of mo...
© The Royal Society of Chemistry 2018. When secondary domains nucleate and grow on the surface of mo...
Transition metal dichalcogenides (TMDs), such as MoS2 and WS2, are direct band gap semiconductors in...
Interlayer rotation and stacking were recently demonstrated as effective strategies for tuning physi...
Two-dimensional (2D) transition metal dichalcogenides (TMDs) are layered semiconductors with unique ...
We employ atomically resolved and element-specific scanning transmission electron microscopy (STEM) ...
Atomically thin two-dimensional (2D) layered materials, including graphene, boron nitride, and trans...
Van der Waals heterostructures form a unique class of layered artificial solids in which physical pr...
Atomically thin group-VI transition metal dichalcogenides (TMDC) has been emerging as a family of in...
Two-dimensional monolayer transition metal dichalcogenide semiconductors are ideal building blocks f...
Two-dimensional monolayer transition metal dichalcogenide semiconductors are ideal building blocks f...