Graphite and other lamellar materials are used as dry lubricants for macroscale metallic sliding components and high-pressure contacts. It has been shown experimentally that monolayer graphene exhibits higher friction than multilayer graphene and graphite, and that this friction increases with continued sliding, but the mechanism behind this remains subject to debate. It has long been conjectured that the true contact area between two rough bodies controls interfacial friction. The true contact area, defined for example by the number of atoms within the range of interatomic forces, is difficult to visualize directly but characterizes the quantity of contact. However, there is emerging evidence that, for a given pair of materials, the qualit...
Molecular dynamics simulations are performed to study the frictional behavior of graphene. It is fou...
A pressing financial and environmental challenge is the impact of friction and wear on energy usage,...
Atomically thin graphene is an ideal model system for studying nanoscale friction due to its intrins...
The ultralow friction of two-dimensional (2D) materials, commonly referred to as superlubricity, has...
It has been demonstrated through experiments and simulations that friction decreases significantly w...
A lack of understanding of the fundamental mechanisms governing atomic-scale adhesion and friction c...
Two-dimensional materials, in particular graphene, exhibit a low friction coefficient and good wear ...
A lack of understanding of the fundamental mechanisms governing atomic-scale adhesion and friction c...
A lack of understanding of the fundamental mechanisms governing atomic-scale adhesion and friction c...
Nanoscale friction often exhibits hysteresis when load is increased (loading) and then decreased (un...
The tribological properties of two-dimensional (2D) atomic layers are quite different from three-dim...
We calculate the friction of fully mobile graphene flakes sliding on graphite. For incommensurately ...
We calculate the friction of fully mobile graphene flakes sliding on graphite. For incommensurately ...
We calculate the friction of fully mobile graphene flakes sliding on graphite. For incommensurately ...
Molecular dynamics simulations are performed to study the frictional behavior of graphene. It is fou...
Molecular dynamics simulations are performed to study the frictional behavior of graphene. It is fou...
A pressing financial and environmental challenge is the impact of friction and wear on energy usage,...
Atomically thin graphene is an ideal model system for studying nanoscale friction due to its intrins...
The ultralow friction of two-dimensional (2D) materials, commonly referred to as superlubricity, has...
It has been demonstrated through experiments and simulations that friction decreases significantly w...
A lack of understanding of the fundamental mechanisms governing atomic-scale adhesion and friction c...
Two-dimensional materials, in particular graphene, exhibit a low friction coefficient and good wear ...
A lack of understanding of the fundamental mechanisms governing atomic-scale adhesion and friction c...
A lack of understanding of the fundamental mechanisms governing atomic-scale adhesion and friction c...
Nanoscale friction often exhibits hysteresis when load is increased (loading) and then decreased (un...
The tribological properties of two-dimensional (2D) atomic layers are quite different from three-dim...
We calculate the friction of fully mobile graphene flakes sliding on graphite. For incommensurately ...
We calculate the friction of fully mobile graphene flakes sliding on graphite. For incommensurately ...
We calculate the friction of fully mobile graphene flakes sliding on graphite. For incommensurately ...
Molecular dynamics simulations are performed to study the frictional behavior of graphene. It is fou...
Molecular dynamics simulations are performed to study the frictional behavior of graphene. It is fou...
A pressing financial and environmental challenge is the impact of friction and wear on energy usage,...
Atomically thin graphene is an ideal model system for studying nanoscale friction due to its intrins...