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Long-range rhombohedral-stacked graphene through shear
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The discovery of superconductivity and correlated electronic states in the flat bands of twisted bilayer graphene has raised a lot of excitement. Flat bands also occur in multilayer graphene flakes that present rhombohedral (ABC) stacking order on many consecutive layers. Although Bernal-stacked (AB) graphene is more stable, long-range ABC-ordered flakes involving up to 50 layers have been surprisingly observed in natural samples. Here we present a microscopic atomistic model, based on first-principles density functional theory calculations, that demonstrates how shear stress can produce long-range ABC order. A stress-angle phase diagram shows under which conditions ABC-stacked graphene can be obtained, providing an experimental guide for its synthesis.
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Cited by 1 Pith paper
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Nanoscale infrared and microwave imaging of stacking faults in multilayer graphene
AFM-IR and sMIM can distinguish Bernal, rhombohedral, and intermediate stacking orders in multilayer graphene, including under a boron nitride coating.
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