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Strain-induced metal-semimetal transition of BeB2 monolayer

Author(s)
Mu, YuewenDing, FengLu, Haigang
Issued Date
2015
DOI
10.1039/c4ra14684k
URI
https://scholarworks.unist.ac.kr/handle/201301/31251
Fulltext
https://pubs.rsc.org/en/content/articlelanding/2015/RA/C4RA14684K#!divAbstract
Citation
RSC ADVANCES, v.5, no.15, pp.11392 - 11396
Abstract
The Dirac point and cones make some two-dimensional materials ( e.g., graphene, silicone and graphyne) exhibit ballistic charge transport and enormously high carrier mobilities. Here, we present a novel semimetal with triangular lattice. Metallic BeB2 monolayer could transform to a semimetal with a Dirac point at the Fermi level when the lattice parameters are isotropically compressed by about 5%, while it becomes metallic again under larger compression. The Fermi velocity of semimetallic BeB2 monolayer is 0.857 x 10(6) m s(-1), just a little smaller than that of graphene. Furthermore, it is found that uniaxial compressive strain opens a band gap in the BeB2 monolayer, while uniaxial tensile strain keeps it metallic. Our study expands the Dirac systems and provides new insight to explore novel semimetallic materials.
Publisher
ROYAL SOC CHEMISTRY
ISSN
2046-2069
Keyword
AUGMENTED-WAVE METHODULTRASOFT PSEUDOPOTENTIALSGRAPHENE

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