International audienceWe study the mechanism of wrinkling of suspended graphene, by means of atomistic simulations. We argue that the structural instability under edge compression is the essential physical reason for the formation of periodic ripples in graphene. The ripple wavelength and out-of-plane amplitude are found to obey 1/4-power scaling laws with respect to edge compression. Our results also show that parallel displacement of the clamped boundaries can induce periodic ripples, with oscillation amplitude roughly proportional to the 1/4 power of edge displacement
Similar to the water wave on a pond caused by dropping a pebble, the formation of ripples is shown i...
Molecular dynamics simulations based on many-body interatomic potentials are conducted to investigat...
This paper studies the compressive buckling of near-square rippled monolayer graphene sheets in ther...
International audienceWe study the mechanism of wrinkling of suspended graphene, by means of atomist...
International audienceWe study the mechanism of wrinkling of suspended graphene, by means of atomist...
International audienceWe study the mechanism of wrinkling of suspended graphene, by means of atomist...
We show that edge stresses introduce intrinsic ripples in freestanding graphene sheets even in the a...
We show that edge stresses introduce intrinsic ripples in freestanding graphene sheets even in the a...
We show that edge stresses introduce intrinsic ripples in freestanding graphene sheets even in the a...
We show that edge stresses introduce intrinsic ripples in freestanding graphene sheets even in the a...
Molecular dynamics is employed to study the mechanical behavior of graphene nanoribbons with clamped...
Molecular dynamics is employed to study the mechanical behavior of graphene nanoribbons with clamped...
Two-dimensional materials and their mechanical properties are known to be profoundly affected by rip...
In previous studies, it has proved difficult to realize periodic graphene ripples with wavelengths o...
Molecular dynamics simulations based on many-body interatomic potentials are conducted to investigat...
Similar to the water wave on a pond caused by dropping a pebble, the formation of ripples is shown i...
Molecular dynamics simulations based on many-body interatomic potentials are conducted to investigat...
This paper studies the compressive buckling of near-square rippled monolayer graphene sheets in ther...
International audienceWe study the mechanism of wrinkling of suspended graphene, by means of atomist...
International audienceWe study the mechanism of wrinkling of suspended graphene, by means of atomist...
International audienceWe study the mechanism of wrinkling of suspended graphene, by means of atomist...
We show that edge stresses introduce intrinsic ripples in freestanding graphene sheets even in the a...
We show that edge stresses introduce intrinsic ripples in freestanding graphene sheets even in the a...
We show that edge stresses introduce intrinsic ripples in freestanding graphene sheets even in the a...
We show that edge stresses introduce intrinsic ripples in freestanding graphene sheets even in the a...
Molecular dynamics is employed to study the mechanical behavior of graphene nanoribbons with clamped...
Molecular dynamics is employed to study the mechanical behavior of graphene nanoribbons with clamped...
Two-dimensional materials and their mechanical properties are known to be profoundly affected by rip...
In previous studies, it has proved difficult to realize periodic graphene ripples with wavelengths o...
Molecular dynamics simulations based on many-body interatomic potentials are conducted to investigat...
Similar to the water wave on a pond caused by dropping a pebble, the formation of ripples is shown i...
Molecular dynamics simulations based on many-body interatomic potentials are conducted to investigat...
This paper studies the compressive buckling of near-square rippled monolayer graphene sheets in ther...