International audienceThe study of moiré engineering started with the advent of van der Waals heterostructures in which stacking two-dimensional layers with different lattice constants leads to a moiré pattern controlling their electronic properties. The field entered a new era when it was found that adjusting the twist between two graphene layers led to strongly-correlated-electron physics and topological effects associated with atomic relaxation. Twist is now used routinely to adjust the properties of two-dimensional materials. Here, we investigate a new type of moiré superlattice in bilayer graphene when one layer is biaxially strained with respect to the other - so-called biaxial heterostrain. Scanning tunneling microscopy measurements ...
In recent years, the twist angle between vertically stacked, two-dimensional van der Waals materials...
In stacks of two-dimensional crystals, mismatch of their lattice constants and misalignment of cryst...
Graphene moiré superlattice formed by rotating two graphene sheets can host strongly correlated and ...
International audienceThe study of moiré engineering started with the advent of van der Waals hetero...
Abstract The ability to precisely control moiré patterns in two-dimensional materials has enabled th...
Stacking two layers of graphene on top of each other with a twist gives rise to a moiré pattern. The...
Stacking two layers of graphene on top of each other with a twist gives rise to a moiré pattern. The...
The creation of van der Waals heterostructures based on a graphene monolayer and other two-dimension...
Van der Waals heteroepitaxy allows deterministic control over lattice mismatch or azimuthal orientat...
Crystals with two-dimensional lattice structure, such as graphene, can be obtained from bulk crystal...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2018.This electronic v...
Moiré patterns from two-dimensional (2D) graphene heterostructures assembled via van der Waals inter...
The superlattice obtained by aligning a monolayer graphene and boron nitride (BN) inherits from the ...
Moiré patterns from two-dimensional (2D) graphene heterostructures assembled via van der Waals inter...
In recent years, the twist angle between vertically stacked, two-dimensional van der Waals materials...
In recent years, the twist angle between vertically stacked, two-dimensional van der Waals materials...
In stacks of two-dimensional crystals, mismatch of their lattice constants and misalignment of cryst...
Graphene moiré superlattice formed by rotating two graphene sheets can host strongly correlated and ...
International audienceThe study of moiré engineering started with the advent of van der Waals hetero...
Abstract The ability to precisely control moiré patterns in two-dimensional materials has enabled th...
Stacking two layers of graphene on top of each other with a twist gives rise to a moiré pattern. The...
Stacking two layers of graphene on top of each other with a twist gives rise to a moiré pattern. The...
The creation of van der Waals heterostructures based on a graphene monolayer and other two-dimension...
Van der Waals heteroepitaxy allows deterministic control over lattice mismatch or azimuthal orientat...
Crystals with two-dimensional lattice structure, such as graphene, can be obtained from bulk crystal...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2018.This electronic v...
Moiré patterns from two-dimensional (2D) graphene heterostructures assembled via van der Waals inter...
The superlattice obtained by aligning a monolayer graphene and boron nitride (BN) inherits from the ...
Moiré patterns from two-dimensional (2D) graphene heterostructures assembled via van der Waals inter...
In recent years, the twist angle between vertically stacked, two-dimensional van der Waals materials...
In recent years, the twist angle between vertically stacked, two-dimensional van der Waals materials...
In stacks of two-dimensional crystals, mismatch of their lattice constants and misalignment of cryst...
Graphene moiré superlattice formed by rotating two graphene sheets can host strongly correlated and ...