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- W4313339791 abstract "The blistering of elastic membranes is prone to elastic-solid as well as substrate-based mechanical instabilities. The solid-based instabilities have been well-explored in the mechanically indented blisters of elastic membranes over the rigid/solid substrates, but an integrated study illustrating the underlying mechanism for the onset of solid as well as substrate-based instabilities in the spontaneous blistering of a 2D material is still lacking in the literature. In this article, an extensive experimental as well as analytical analysis of the spontaneous blister-formation in the multilayer graphene (MLG) flakes over a polymeric substrate is reported, which elucidates the involved mechanism and the governing parameters behind the development of elastic-solid as well as viscoelastic-substrate based instabilities. Herein, a 'blister-collapse model' is proposed, which infers that the suppression of the hoop compression, resulting from the phase-transition of the confined matter, plays a crucial role in the development of the instabilities. The ratio of blister-height to flake-thickness is a direct consequence of the taper-angle of the MLG blister and the thickness-dependent elasticity of the upper-bounding MLG flake, which shows a significant impact on the growth-dynamics of the viscous fingering pattern (viscoelastic-substrate based instability) under the MLG blister." @default.
- W4313339791 created "2023-01-06" @default.
- W4313339791 creator A5029362694 @default.
- W4313339791 creator A5037243808 @default.
- W4313339791 creator A5047801462 @default.
- W4313339791 date "2023-02-13" @default.
- W4313339791 modified "2023-10-14" @default.
- W4313339791 title "Hoop compression driven instabilities in spontaneously formed multilayer graphene blisters over a polymeric substrate" @default.
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- W4313339791 doi "https://doi.org/10.1088/1361-6528/acaf33" @default.
- W4313339791 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/36584389" @default.
- W4313339791 hasPublicationYear "2023" @default.
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