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김성엽

Kim, Sung Youb
Computational Advanced Nanomechanics Lab.
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Auxeticity of monolayer, few-layer, vdW heterostructure and ribbon penta-graphene

Author(s)
Ho, Viet HungHo, Duc TamShin, Won HoKim, Sung Youb
Issued Date
2023-02
DOI
10.1039/d2cp03275a
URI
https://scholarworks.unist.ac.kr/handle/201301/61983
Citation
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, v.25, no.6, pp.4528 - 4541
Abstract
Using molecular statics simulations, we specifically focus on investigating the negative Poisson's ratio of the monolayer, few-layer, van der Waals, and ribbon penta-graphene. As a result, we provide evidence to show that the Poisson's ratio is the combination of bond stretching and angle rotating mechanism. The auxeticity of monolayer penta-graphene is due to the dominance of bond stretching. However, the significant effect of the angle rotating mechanism causes the enhancement of the in-plane Poisson's ratio of few-layer penta-graphene. Furthermore, the elongation of interlayer bonds results in a negative out-of-plane Poisson's ratio in few-layer penta-graphene. The strong dependence of Poisson's ratio on stacking configuration and number of layers was found. We also show that the van der Waals interaction slightly enhances the auxeticity of heterostructure penta-graphene. Finally, we discuss the significant effects of warped edges on the auxeticity of penta-graphene ribbons.
Publisher
ROYAL SOC CHEMISTRY
ISSN
1463-9076
Keyword
NEGATIVE POISSONS RATIOELASTIC PROPERTIES2D MATERIAL1ST-PRINCIPLESBEHAVIORSYSTEM

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