Probing Fracture Mechanics of Graphene through Heterocrack Propagation in a Moire Superlattice
Y Hou and JZ Zhou and ZZ He and S Zhang and QY Li and HJ Gao and Y Lu, JOURNAL OF THE MECHANICS AND PHYSICS OF SOLIDS, 200, 106151 (2025).
DOI: 10.1016/j.jmps.2025.106151
Understanding the fracture properties of two-dimensional (2D) materials
is essential for enhancing their mechanical performance and extending
the service life of 2D-based devices. A major challenge lies in
examining stress singularities near crack tips at the nanoscale. In this
study, we show that we can obtain fracture toughness of monolayer
graphene by investigating the propagation of heterocrack in twisted
graphene layers. We developed an in situ mechanical measurement to
monitor the heterocrack propagation under electron microscopy. The
cracks propagated and deflected along the twisted graphene-graphene
interfaces, accompanied by periodic stress fluctuations and distorted
moire
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