In-plane anisotropy of graphene by strong interlayer interactions with van der Waals epitaxially grown MoO3

van der Waals (vdW) epitaxy can be used to grow epilayers with different symmetries on graphene, thereby imparting unprecedented properties in graphene owing to formation of anisotropic superlattices and strong interlayer interactions. Here, we report in-plane anisotropy in graphene by vdW epitaxial...

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Veröffentlicht in:Science advances 2023-06, Vol.9 (23), p.eadg6696-eadg6696
Hauptverfasser: Kim, Hangyel, Kim, Jong Hun, Kim, Jungcheol, Park, Jejune, Park, Kwanghee, Baek, Ji-Hwan, Shin, June-Chul, Lee, Hyeongseok, Son, Jangyup, Ryu, Sunmin, Son, Young-Woo, Cheong, Hyeonsik, Lee, Gwan-Hyoung
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container_issue 23
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container_title Science advances
container_volume 9
creator Kim, Hangyel
Kim, Jong Hun
Kim, Jungcheol
Park, Jejune
Park, Kwanghee
Baek, Ji-Hwan
Shin, June-Chul
Lee, Hyeongseok
Son, Jangyup
Ryu, Sunmin
Son, Young-Woo
Cheong, Hyeonsik
Lee, Gwan-Hyoung
description van der Waals (vdW) epitaxy can be used to grow epilayers with different symmetries on graphene, thereby imparting unprecedented properties in graphene owing to formation of anisotropic superlattices and strong interlayer interactions. Here, we report in-plane anisotropy in graphene by vdW epitaxially grown molybdenum trioxide layers with an elongated superlattice. The grown molybdenum trioxide layers led to high p-doping of the underlying graphene up to p = 1.94 × 1013 cm-2 regardless of the thickness of molybdenum trioxide, maintaining a high carrier mobility of 8155 cm2 V-1 s-1. Molybdenum trioxide-induced compressive strain in graphene increased up to -0.6% with increasing molybdenum trioxide thickness. The asymmetrical band distortion of molybdenum trioxide-deposited graphene at the Fermi level led to in-plane electrical anisotropy with a high conductance ratio of 1.43 owing to the strong interlayer interaction of molybdenum trioxide-graphene. Our study presents a symmetry engineering method to induce anisotropy in symmetric two-dimensional (2D) materials via the formation of asymmetric superlattices with epitaxially grown 2D layers.
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subjects Condensed Matter Physics
Materials Science
Physical and Materials Sciences
SciAdv r-articles
title In-plane anisotropy of graphene by strong interlayer interactions with van der Waals epitaxially grown MoO3
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