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  5. Toughness and strength of nanocrystalline graphene

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Article
English
2016

Toughness and strength of nanocrystalline graphene

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0 Files

English
2016
Nature Communications
Vol 7 (1)
DOI: 10.1038/ncomms10546

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Robert O. Ritchie
Robert O. Ritchie

University of California, Berkeley

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Ashivni Shekhawat
Robert O. Ritchie

Abstract

Pristine monocrystalline graphene is claimed to be the strongest material known with remarkable mechanical and electrical properties. However, graphene made with scalable fabrication techniques is polycrystalline and contains inherent nanoscale line and point defects—grain boundaries and grain-boundary triple junctions—that lead to significant statistical fluctuations in toughness and strength. These fluctuations become particularly pronounced for nanocrystalline graphene where the density of defects is high. Here we use large-scale simulation and continuum modelling to show that the statistical variation in toughness and strength can be understood with ‘weakest-link’ statistics. We develop the first statistical theory of toughness in polycrystalline graphene, and elucidate the nanoscale origins of the grain-size dependence of its strength and toughness. Our results should lead to more reliable graphene device design, and provide a framework to interpret experimental results in a broad class of two-dimensional materials.

How to cite this publication

Ashivni Shekhawat, Robert O. Ritchie (2016). Toughness and strength of nanocrystalline graphene. Nature Communications, 7(1), DOI: 10.1038/ncomms10546.

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Publication Details

Type

Article

Year

2016

Authors

2

Datasets

0

Total Files

0

Language

English

Journal

Nature Communications

DOI

10.1038/ncomms10546

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