The outstanding mechanical performances of two-dimensional (2D) materials make them appealing for the emerging fields of flextronics and straintronics. However, their manufacturing and integration in 2D crystal-based devices rely on a thorough knowledge of their hardness, elasticity, and interface mechanics. Here, we investigate the elasticity of highly strained monolayer-thick MoS2 membranes, in the shape of micrometer-sized domes, by atomic force microscopy (AFM)-based nanoindentation experiments. A dome's crushing procedure is performed to induce a local re-adhesion of the dome's membrane to the bulk substrate under the AFM tip's load. It is worth noting that no breakage, damage, or variation in size and shape are recorded in 95% of the ...
The possibility of tailoring the critical strain of two-dimensional (2D) materials will be crucial f...
We measured the work of separation of single and few-layer MoS<sub>2</sub> membranes from a SiO<sub>...
Poking and bulging have been standard methods for characterizing the mechanics of thin solids, inclu...
The outstanding mechanical performances of two-dimensional (2D) materials make them appealing for th...
The combination of extremely high stiffness and bending flexibility with tunable electrical and opti...
The realization of ordered strain fields in 2D crystals is an intriguing perspective in many respect...
......We predict the confinement of excitons in quantum dots generated by strain via the atomic forc...
Strain engineering in two-dimensional materials (2DMs) has important application potential for elec...
We fabricate freely suspended nanosheets of molybdenum disulphide (MoS2) which are characterized by ...
As a two-dimensional material, monolayer MoS2 possesses very unique and promising mechanical and ele...
We measured the work of separation of single and few-layer MoS_2 membranes from a SiO_x substrate us...
Altres ajuts: CERCA Programme/Generalitat de CatalunyaThe possibility of tailoring the critical stra...
The possibility of tailoring the critical strain of two-dimensional (2D) materials will be crucial f...
We measured the work of separation of single and few-layer MoS<sub>2</sub> membranes from a SiO<sub>...
Poking and bulging have been standard methods for characterizing the mechanics of thin solids, inclu...
The outstanding mechanical performances of two-dimensional (2D) materials make them appealing for th...
The combination of extremely high stiffness and bending flexibility with tunable electrical and opti...
The realization of ordered strain fields in 2D crystals is an intriguing perspective in many respect...
......We predict the confinement of excitons in quantum dots generated by strain via the atomic forc...
Strain engineering in two-dimensional materials (2DMs) has important application potential for elec...
We fabricate freely suspended nanosheets of molybdenum disulphide (MoS2) which are characterized by ...
As a two-dimensional material, monolayer MoS2 possesses very unique and promising mechanical and ele...
We measured the work of separation of single and few-layer MoS_2 membranes from a SiO_x substrate us...
Altres ajuts: CERCA Programme/Generalitat de CatalunyaThe possibility of tailoring the critical stra...
The possibility of tailoring the critical strain of two-dimensional (2D) materials will be crucial f...
We measured the work of separation of single and few-layer MoS<sub>2</sub> membranes from a SiO<sub>...
Poking and bulging have been standard methods for characterizing the mechanics of thin solids, inclu...