Blisters induced by gas trapped in the interstitial space between supported graphene and the substrate are commonly observed. These blisters are often quasi-spherical with a circular rim, but polygonal blisters are also common and coexist with wrinkles emanating from their vertices. Here, we show that these different blister morphologies can be understood mechanically in terms of free energy minimization of the supported graphene sheet for a given mass of trapped gas and for a given lateral strain. Using a nonlinear continuum model for supported graphene closely reproducing experimental images of blisters, we build a morphological diagram as a function of strain and trapped mass. We show that the transition from quasi-spherical to polygonal...
Recent advances in the understanding of graphene elasticity have shown that suspended graphene does ...
Because of its atomic scale thickness, the deformation energy in a free standing graphene sheet can ...
© 2020 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group.To explore ...
Blisters induced by gas trapped in the interstitial space between supported graphene and the substra...
Graphene samples supported on a substrate often exhibit out-of-plane deformations with different fea...
Graphene deposited on a substrate often exhibits out-of-plane deformations with different features a...
Wrinkle networks are ubiquitous buckle-induced delaminations in supported graphene, which locally mo...
Wrinkles in supported graphenes can be formed either by uniaxial compression or uniaxial tension bey...
Graphene deposited on planar surfaces often exhibits sharp and localized folds delimiting seemingly ...
This paper studies the compressive buckling of near-square rippled monolayer graphene sheets in ther...
The formation and evolution mechanisms of wrinkling in a rectangular single layer graphene sheet (SL...
6 pages, 4 figures, submitted for publicationInternational audienceThe drive towards miniaturization...
International audienceWe measure uniaxial strain fields in the vicinity of edges and wrinkles in gra...
ABSTRACT: We investigate the organized formation of strain, ripples, and suspended features in macro...
Two-dimensional (2D) layers like graphene are subject to long-wavelength fluctuations that manifest ...
Recent advances in the understanding of graphene elasticity have shown that suspended graphene does ...
Because of its atomic scale thickness, the deformation energy in a free standing graphene sheet can ...
© 2020 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group.To explore ...
Blisters induced by gas trapped in the interstitial space between supported graphene and the substra...
Graphene samples supported on a substrate often exhibit out-of-plane deformations with different fea...
Graphene deposited on a substrate often exhibits out-of-plane deformations with different features a...
Wrinkle networks are ubiquitous buckle-induced delaminations in supported graphene, which locally mo...
Wrinkles in supported graphenes can be formed either by uniaxial compression or uniaxial tension bey...
Graphene deposited on planar surfaces often exhibits sharp and localized folds delimiting seemingly ...
This paper studies the compressive buckling of near-square rippled monolayer graphene sheets in ther...
The formation and evolution mechanisms of wrinkling in a rectangular single layer graphene sheet (SL...
6 pages, 4 figures, submitted for publicationInternational audienceThe drive towards miniaturization...
International audienceWe measure uniaxial strain fields in the vicinity of edges and wrinkles in gra...
ABSTRACT: We investigate the organized formation of strain, ripples, and suspended features in macro...
Two-dimensional (2D) layers like graphene are subject to long-wavelength fluctuations that manifest ...
Recent advances in the understanding of graphene elasticity have shown that suspended graphene does ...
Because of its atomic scale thickness, the deformation energy in a free standing graphene sheet can ...
© 2020 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group.To explore ...