Two-Dimensional Multiferroic delta-PbO Monolayer with a Large In-Plane Negative Poisson's Ratio

ACS APPLIED ELECTRONIC MATERIALS(2022)

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摘要
Two-dimensional (2D) multiferroic materials offer a unique platform for the development of next-generation multifunctional devices. Based on first-principles calculations, a stable 2D configuration of a lead oxide (delta-PbO) monolayer is proposed to realize the multiferroic coupling between ferroelectricity (FE) and ferroelasticity (FA). The delta-PbO monolayer has a spontaneous in-plane polarization of about 2.64 x 10(-10) C/m whose orientation can be reversed by overcoming a low energy barrier of 27.5 meV/atom. The interplay between FE and FA enables the switch of the electric polarization direction by 90 degrees. Moreover, the mechanical properties of the delta-PbO monolayer exhibit significant in-plane anisotropy accompanied by a large negative Poisson's ratio of about -0.68. The coexistence of auxeticity and multiferroicity in this 2D material renders a promising strategy to regulate the mechanical and electronic properties and the interplay between them and thereby concepts for nanoscale devices.
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关键词
ferroelectricity, ferroelasticity, negative Poisson's ratio, 2D materials, anisotropy
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