Two-dimensional materials are being increasingly studied, particularly for flexible and wearable technologies because of their inherent thickness and flexibility. Crucially, one aspect where our understanding is still limited is on the effect of mechanical strain, not on individual sheets of materials, but when stacked together as heterostructures in devices. In this paper, we demonstrate the use of Kelvin probe microscopy in capturing the influence of uniaxial tensile strain on the band-structures of graphene and WS<sub>2</sub> (mono- and multilayered) based heterostructures at high resolution. We report a major advance in strain characterization tools through enabling a single-shot capture of strain defined changes in a heterogeneous syst...
Graphene displays a range of remarkable properties that have catalyzed an impressive interest in the...
Due to its high stability, the purely two-dimensional allotrope of carbon, graphene, is perfectly su...
Graphene and numerous other two-dimensional materials (2DM) possess unique mechanical, electronic an...
Two-dimensional materials are being increasingly studied, particularly for flexible and wearable tec...
Two-dimensional (2D) materials hold great promise in flexible electronics, but the weak van der Waal...
Strain modulation is a direct and effective method to tune the lattice structure of the 2D materials...
The recent emergence of strain gradient engineering directly affects the nanomechanics, optoelectron...
ABSTRACT: Graphene is a promising material for strain engineering based on its excellent flexibility...
We present a molecular modeling study analyzing nanometer-scale strain variations in graphene as a f...
Spatially nonuniform strain is important for engineering the pseudomagnetic field and band structure...
© 2017 Author(s). We report on work function measurements on graphene, which is exfoliated over a pr...
Low-dimensional materials such as graphene or carbon nanotube show remarkable promise for next gener...
We report a Raman mapping investigation of strain effects on graphene on transparent and flexible su...
Graphene is a single atomic sheet of graphite that exhibits a diverse range of unique properties. Th...
Strain engineering on layered two dimensional materials has gained some interest for mod- ulating de...
Graphene displays a range of remarkable properties that have catalyzed an impressive interest in the...
Due to its high stability, the purely two-dimensional allotrope of carbon, graphene, is perfectly su...
Graphene and numerous other two-dimensional materials (2DM) possess unique mechanical, electronic an...
Two-dimensional materials are being increasingly studied, particularly for flexible and wearable tec...
Two-dimensional (2D) materials hold great promise in flexible electronics, but the weak van der Waal...
Strain modulation is a direct and effective method to tune the lattice structure of the 2D materials...
The recent emergence of strain gradient engineering directly affects the nanomechanics, optoelectron...
ABSTRACT: Graphene is a promising material for strain engineering based on its excellent flexibility...
We present a molecular modeling study analyzing nanometer-scale strain variations in graphene as a f...
Spatially nonuniform strain is important for engineering the pseudomagnetic field and band structure...
© 2017 Author(s). We report on work function measurements on graphene, which is exfoliated over a pr...
Low-dimensional materials such as graphene or carbon nanotube show remarkable promise for next gener...
We report a Raman mapping investigation of strain effects on graphene on transparent and flexible su...
Graphene is a single atomic sheet of graphite that exhibits a diverse range of unique properties. Th...
Strain engineering on layered two dimensional materials has gained some interest for mod- ulating de...
Graphene displays a range of remarkable properties that have catalyzed an impressive interest in the...
Due to its high stability, the purely two-dimensional allotrope of carbon, graphene, is perfectly su...
Graphene and numerous other two-dimensional materials (2DM) possess unique mechanical, electronic an...