Supreme mechanical performance and tribological properties render graphene a promising candidate as a surface friction modifier. Recently, it has been demonstrated that applying in-plane strain can effectively tune friction of suspended graphene in a reversible manner. However, since graphene is deposited on solid surfaces in most tribological applications, whether such operation will result in a similar modulation effect becomes a critical question to be answered. Herein, by depositing graphene onto a stretchable substrate, the frictional characteristics of supported graphene under a wide range of strain are examined with an in situ tensile loading platform. The experimental results show that friction of supported graphene decreases with i...
Graphite and other lamellar materials are used as dry lubricants for macroscale metallic sliding com...
The friction of graphene on various substrates, such as SiO2, h-BN, bulk-like graphene, and mica, wa...
Graphene structural defects, namely edges, step-edges, and wrinkles, are susceptible to severe mecha...
We performed molecular dynamics (MD) simulations of a diamond probe scanned on a suspended graphene ...
Atomically thin graphene is an ideal model system for studying nanoscale friction due to its intrins...
Recently, the tribological properties of graphene have been intensively examined for potential appli...
A pressing financial and environmental challenge is the impact of friction and wear on energy usage,...
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,...
Friction-induced energy dissipation impedes the performance of nanomechanical devices. Nevertheless,...
Nanoscale friction often exhibits hysteresis when load is increased (loading) and then decreased (un...
Graphene deposited on planar surfaces often exhibits sharp and localized folds delimiting seemingly ...
Graphite and other lamellar materials are used as dry lubricants for macroscale metallic sliding com...
The friction of graphene on various substrates, such as SiO2, h-BN, bulk-like graphene, and mica, wa...
Graphene structural defects, namely edges, step-edges, and wrinkles, are susceptible to severe mecha...
We performed molecular dynamics (MD) simulations of a diamond probe scanned on a suspended graphene ...
Atomically thin graphene is an ideal model system for studying nanoscale friction due to its intrins...
Recently, the tribological properties of graphene have been intensively examined for potential appli...
A pressing financial and environmental challenge is the impact of friction and wear on energy usage,...
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,...
Friction-induced energy dissipation impedes the performance of nanomechanical devices. Nevertheless,...
Nanoscale friction often exhibits hysteresis when load is increased (loading) and then decreased (un...
Graphene deposited on planar surfaces often exhibits sharp and localized folds delimiting seemingly ...
Graphite and other lamellar materials are used as dry lubricants for macroscale metallic sliding com...
The friction of graphene on various substrates, such as SiO2, h-BN, bulk-like graphene, and mica, wa...
Graphene structural defects, namely edges, step-edges, and wrinkles, are susceptible to severe mecha...