The present work aims to understand the sliding of ordered/disordered molybdenum disulfide against itself by combination of nanoscale sliding experiments and atomistic simulations. Tribological experiments were performed using lateral force microscopy with tips covered by a thin sputtered MoS2 film. Nanoscale contact area between the MoS2-coated tips and MoS2 samples opened up the possibility for close comparison with classical molecular dynamics simulations. Our simulations replicated well the coefficient of friction obtained by experiments for various contact conditions and shed light on nanoscale sliding of both crystalline and amorphous MoS2. Experimental sliding at humid environment demonstrated detrimental effect of water molecules on...
In the past decades, MoS2 has received sub...
Atomic-scale friction measured for a single asperity sliding on 2D materials depend on the direction...
cited By 69International audienceIn this work, the friction anisotropy of hexagonal MoS2 (a well-kno...
The present work aims to understand the sliding of ordered/disordered molybdenum disulfide against i...
The present work aims to understand the sliding of ordered/disordered molybdenum disulfide against i...
The potential use of two-dimensional (2D) materials as solid lubricants in micro-and nano-scale mech...
Despite extensive research on the tribological properties of MoS2, the frictional characteristics of...
The potential use of two-dimensional (2D) materials as solid lubricants in micro-and nano-scale mech...
Despite extensive research on the tribological properties of MoS2, the frictional characteristics of...
AbstractWe studied friction coefficients and mechanisms of MoS2 nanoparticles from molecular dynamic...
Lateral-force microscopy is a powerful tool to study the frictional properties of two-dimensional ma...
Lateral-force microscopy is a powerful tool to study the frictional properties of two-dimensional ma...
Solid lubricants have received substantial attention due to their excellent frictional properties. A...
Atomic-scale friction measured for a single asperity sliding on 2D materials depend on the direction...
We perform atomic force microscopy (AFM) experiments on mechanically exfoliated, single-layer and bu...
In the past decades, MoS2 has received sub...
Atomic-scale friction measured for a single asperity sliding on 2D materials depend on the direction...
cited By 69International audienceIn this work, the friction anisotropy of hexagonal MoS2 (a well-kno...
The present work aims to understand the sliding of ordered/disordered molybdenum disulfide against i...
The present work aims to understand the sliding of ordered/disordered molybdenum disulfide against i...
The potential use of two-dimensional (2D) materials as solid lubricants in micro-and nano-scale mech...
Despite extensive research on the tribological properties of MoS2, the frictional characteristics of...
The potential use of two-dimensional (2D) materials as solid lubricants in micro-and nano-scale mech...
Despite extensive research on the tribological properties of MoS2, the frictional characteristics of...
AbstractWe studied friction coefficients and mechanisms of MoS2 nanoparticles from molecular dynamic...
Lateral-force microscopy is a powerful tool to study the frictional properties of two-dimensional ma...
Lateral-force microscopy is a powerful tool to study the frictional properties of two-dimensional ma...
Solid lubricants have received substantial attention due to their excellent frictional properties. A...
Atomic-scale friction measured for a single asperity sliding on 2D materials depend on the direction...
We perform atomic force microscopy (AFM) experiments on mechanically exfoliated, single-layer and bu...
In the past decades, MoS2 has received sub...
Atomic-scale friction measured for a single asperity sliding on 2D materials depend on the direction...
cited By 69International audienceIn this work, the friction anisotropy of hexagonal MoS2 (a well-kno...