Issue 21, 2023

Intrinsic piezoelectricity of 2D violet phosphorene

Abstract

Violet phosphorene (VP) has an extensive range of potential uses in piezoelectric gadgets due to its excellent electron transport capabilities. Nevertheless, VP materials are devoid of the piezoelectric effect because of the absence of ionic polarity. In this study, the piezoelectric capacity of the VP nano-sheet was investigated. According to the findings, the VP exhibited precise in-plane and out-of-plane piezoelectricity. For both in-plane as well as out-of-plane applications, the monolayer of VP had a characteristic direct piezoelectric reaction, and piezoelectric hysteresis loops were established at an electric field excitation of −18 V to +18 V. According to calculations using the density functional theory, VP has inside inherent dipoles. Outcomes from piezoelectric force microscopy, in particular, for VP with a thickness of 17.6 nm revealed that d33 is up to 12.65 pm V−1 and d31 is up to 1.03 pm V−1. The thickness-relied piezoelectric results demonstrated that VP's piezoelectric capabilities degraded as width increased.

Graphical abstract: Intrinsic piezoelectricity of 2D violet phosphorene

Supplementary files

Article information

Article type
Paper
Submitted
28 Feb 2023
Accepted
22 Apr 2023
First published
05 May 2023

Nanoscale, 2023,15, 9496-9502

Intrinsic piezoelectricity of 2D violet phosphorene

D. Yang, W. Xu, B. Wang, Y. Zhang, Y. Wang, J. Ning, R. Yang, Y. Wu, W. Zhong, Y. Wang and Y. Hao, Nanoscale, 2023, 15, 9496 DOI: 10.1039/D3NR00944K

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