Friction-induced energy dissipation impedes the performance of nanomechanical devices. Nevertheless, the application of graphene is known to modulate frictional dissipation by inducing local strain. This work reports on the nanomechanics of graphene conformed on different textured silicon surfaces that mimic the cogs of a nanoscale gear. The variation in the pitch lengths regulates the strain induced in capped graphene revealed by scanning probe techniques, Raman spectroscopy, and molecular dynamics simulation. The atomistic visualization elucidates asymmetric straining of C-C bonds over the corrugated architecture resulting in distinct friction dissipation with respect to the groove axis. Experimental results are reported for strain-depend...
Nanoscale friction often exhibits hysteresis when load is increased (loading) and then decreased (un...
Graphene is an extremely important topic of research because of its extraordinary physical and elect...
Ultralow friction can be achieved with 2D materials, particularly graphene and MoS2. The nanotribolo...
Friction-induced energy dissipation impedes the performance of nanomechanical devices. Nevertheless,...
Friction-induced energy dissipation impedes the performance of nanomechanical devices. Nevertheless,...
Friction-induced energy dissipation impedes the performance of nanomechanical devices. Nevertheless,...
Friction-induced energy dissipation impedes the performance of nanomechanical devices. Nevertheless,...
Friction-induced energy dissipation impedes the performance of nanomechanical devices. Nevertheless,...
ABSTRACT: Graphene is a promising material for strain engineering based on its excellent flexibility...
Atomically thin graphene is an ideal model system for studying nanoscale friction due to its intrins...
Supreme mechanical performance and tribological properties render graphene a promising candidate as ...
Recently, the tribological properties of graphene have been intensively examined for potential appli...
We performed molecular dynamics (MD) simulations of a diamond probe scanned on a suspended graphene ...
AbstractFriction plays a critical role in the function and maintenance of small-scale structures, wh...
A pressing financial and environmental challenge is the impact of friction and wear on energy usage,...
Nanoscale friction often exhibits hysteresis when load is increased (loading) and then decreased (un...
Graphene is an extremely important topic of research because of its extraordinary physical and elect...
Ultralow friction can be achieved with 2D materials, particularly graphene and MoS2. The nanotribolo...
Friction-induced energy dissipation impedes the performance of nanomechanical devices. Nevertheless,...
Friction-induced energy dissipation impedes the performance of nanomechanical devices. Nevertheless,...
Friction-induced energy dissipation impedes the performance of nanomechanical devices. Nevertheless,...
Friction-induced energy dissipation impedes the performance of nanomechanical devices. Nevertheless,...
Friction-induced energy dissipation impedes the performance of nanomechanical devices. Nevertheless,...
ABSTRACT: Graphene is a promising material for strain engineering based on its excellent flexibility...
Atomically thin graphene is an ideal model system for studying nanoscale friction due to its intrins...
Supreme mechanical performance and tribological properties render graphene a promising candidate as ...
Recently, the tribological properties of graphene have been intensively examined for potential appli...
We performed molecular dynamics (MD) simulations of a diamond probe scanned on a suspended graphene ...
AbstractFriction plays a critical role in the function and maintenance of small-scale structures, wh...
A pressing financial and environmental challenge is the impact of friction and wear on energy usage,...
Nanoscale friction often exhibits hysteresis when load is increased (loading) and then decreased (un...
Graphene is an extremely important topic of research because of its extraordinary physical and elect...
Ultralow friction can be achieved with 2D materials, particularly graphene and MoS2. The nanotribolo...