Issue 25, 2024

Room temperature ferroelectricity and an electrically tunable Berry curvature dipole in III–V monolayers

Abstract

Two-dimensional ferroelectric monolayers are promising candidates for compact memory devices and flexible electronics. Here, through first-principles calculations, we predict room temperature ferroelectricity in AB-type monolayers comprising group III (A = Al, In, Ga) and group V (B = As, P, Sb) elements. We show that their spontaneous polarization, oriented out-of-plane, ranges from 9.48 to 13.96 pC m−1, outperforming most known 2D ferroelectrics. We demonstrate an electric field tunable Berry curvature dipole and nonlinear Hall current in these monolayers. Additionally, we highlight their applicability in next-generation memory devices by forming efficient ferroelectric tunnel junctions, especially in InP, which supports high tunneling electroresistance. Our findings motivate further exploration of these monolayers for studying the interplay between the Berry curvature and ferroelectricity and for integrating these ferroelectric monolayers in next-generation electronic devices.

Graphical abstract: Room temperature ferroelectricity and an electrically tunable Berry curvature dipole in III–V monolayers

Supplementary files

Article information

Article type
Paper
Submitted
22 Jan 2024
Accepted
19 May 2024
First published
03 Jun 2024

Nanoscale, 2024,16, 12107-12117

Room temperature ferroelectricity and an electrically tunable Berry curvature dipole in III–V monolayers

A. Naseer, A. Priydarshi, P. Ghosh, R. Ahammed, Y. S. Chauhan, S. Bhowmick and A. Agarwal, Nanoscale, 2024, 16, 12107 DOI: 10.1039/D4NR00336E

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