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Mechanical properties of kirigami phosphorene via molecular dynamics simulation

journal contribution
posted on 2024-11-02, 14:04 authored by Mohammed Gamil, Q Zeng, Yingyan ZhangYingyan Zhang
The newly discovered two-dimensional phosphorene suffers low stretchability which limits its application in flexible devices. Herein we employ kirigami technique to overcome this limitation. Molecular dynamics simulation is employed to investigate the mechanical properties of kirigami-phosphorene under shear and tensile loadings. Our simulation results show that loading type, intrinsic structural anisotropy, and the height of middle cuts are three key factors that govern the mechanical response of kirigami-phosphorene. Under the tensile loading along the armchair direction, phosphorene exhibits a considerable increase in its tensile strain. By contrast, phosphorene is too weak to stand any structural modification induced by kirigami in the zigzag direction. Under shear loading, there is merely no improvement in the shear properties of kirigami-phosphorene. Our results demonstrate the prospective applications of kirigami-phosphorene along the armchair direction in modern wearable, and stretchable electronics and optoelectronics devices.

Funding

High-Performance Polymer Composites for Electrical Discharging

Australian Research Council

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History

Journal

Physics Letters A

Volume

384

Number

126784

Issue

30

Start page

1

End page

6

Total pages

6

Publisher

Elsevier BV * North-Holland

Place published

Netherlands

Language

English

Copyright

© 2020 Elsevier B.V. All rights reserved.

Former Identifier

2006101465

Esploro creation date

2020-10-16

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