There exist three conformers of hydrogenated graphene, referred to as chair-, boat-, or washboard-graphane. These systems have a perfect two-dimensional periodicity mapped onto the graphene scaffold but they are characterized by a sp3 orbital hybridization, have different crystal symmetry, and otherwise behave upon loading. By first-principles calculations we determine their structural and phonon properties, as well as we establish their relative stability. Through continuum elasticity we define a simulation protocol addressed to measure by a computer experiment their linear and nonlinear elastic moduli and we actually compute them by first principles. We argue that all graphane conformers respond to any arbitrarily oriented extension with ...
Graphyne is another 2D allotrope of carbon similar to graphene. It consists of sp and sp2 hybridized...
We blend together continuum elasticity and first-principles calculations to measure by a computer ex...
In this paper, we investigate the hyperelastic tensile behaviour of single layer graphene sheets (SL...
The thickness and in-plane mechanical properties (Youngʼs, shear modulus, Poissonʼs ratios) of fully...
Based on first-principles calculations, we resent a method to reveal the elastic properties of recen...
Graphene is a monolayer of carbon atoms packed into a two-dimensional honeycomb lattice. This allotr...
Through continuum elasticity we define a simulation protocol addressed to measure by a computational...
Graphene is a monolayer of carbon atoms packed into a two-dimensional honeycomb lattice. This allotr...
Graphene is an ultimate membrane that mixes both flexibility and mechanical strength, together with ...
We propose, on the basis of our first-principles density functional based calculations, an interesti...
Quantum-mechanochemical reaction-coordinate simulations have been performed to investigate the mecha...
We have studied two favorable conformations of graphane, the chair-like graphane and boat-like graph...
Graphane is a two-dimensional system consisting of a single planar layer of fully saturated carbon a...
Graphene is a single-layer of carbon atoms forming hexagonal structures connected by sp2 bonds. It h...
Cataloged from PDF version of article.Based on first-principles calculations, we resent a method to ...
Graphyne is another 2D allotrope of carbon similar to graphene. It consists of sp and sp2 hybridized...
We blend together continuum elasticity and first-principles calculations to measure by a computer ex...
In this paper, we investigate the hyperelastic tensile behaviour of single layer graphene sheets (SL...
The thickness and in-plane mechanical properties (Youngʼs, shear modulus, Poissonʼs ratios) of fully...
Based on first-principles calculations, we resent a method to reveal the elastic properties of recen...
Graphene is a monolayer of carbon atoms packed into a two-dimensional honeycomb lattice. This allotr...
Through continuum elasticity we define a simulation protocol addressed to measure by a computational...
Graphene is a monolayer of carbon atoms packed into a two-dimensional honeycomb lattice. This allotr...
Graphene is an ultimate membrane that mixes both flexibility and mechanical strength, together with ...
We propose, on the basis of our first-principles density functional based calculations, an interesti...
Quantum-mechanochemical reaction-coordinate simulations have been performed to investigate the mecha...
We have studied two favorable conformations of graphane, the chair-like graphane and boat-like graph...
Graphane is a two-dimensional system consisting of a single planar layer of fully saturated carbon a...
Graphene is a single-layer of carbon atoms forming hexagonal structures connected by sp2 bonds. It h...
Cataloged from PDF version of article.Based on first-principles calculations, we resent a method to ...
Graphyne is another 2D allotrope of carbon similar to graphene. It consists of sp and sp2 hybridized...
We blend together continuum elasticity and first-principles calculations to measure by a computer ex...
In this paper, we investigate the hyperelastic tensile behaviour of single layer graphene sheets (SL...