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二维Janus WOF单层的多铁性特性和巨压电效应

Multiferroic properties and giant piezoelectric effect of a 2D Janus WOF monolayer.

作者信息

Zhao Hongbo, Ding Longhua, Ren Na, Yu Xin, Wang Aizhu, Zhao Mingwen

机构信息

Institute for Advanced Interdisciplinary Research (iAIR), School of Chemistry and Chemical Engineering, University of Jinan, Jinan, Shandong, 250022, China.

Key Laboratory of Interfacial Physics and Technology, Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, China.

出版信息

Phys Chem Chem Phys. 2024 Oct 23;26(41):26594-26602. doi: 10.1039/d4cp02985b.

DOI:10.1039/d4cp02985b
PMID:39400279
Abstract

Materials possessing both ferroelectricity and ferromagnetism are regarded as ideal candidates for electronic devices, such as nonvolatile memories. Based on first-principles calculations, we systematically studied the crystal structure, electronic structure as well as magnetic, piezoelectric and ferroelectric properties of a two-dimensional van der Waals WOF monolayer material. The WOF monolayer was found to possess a robust square crystal structure, exhibiting exceptional stability and mechanical resilience. Magnetic characterization revealed that the material displayed a ferromagnetic state with a magnetic moment of 1 with negligible magnetic anisotropy. In terms of ferroelectric properties, the WOF monolayer demonstrated pronounced in-plane polarization, which is in stark contrast to its relatively weak out-of-plane polarization and indicative of anisotropic polarization behavior. Additionally, the material's piezoelectric response could be modulated through strain engineering, with its piezoelectric coefficient () at 4% tensile strain, which exceeds that of the vast majority of known 2D piezoelectric materials, thus underscoring its potential for versatile multifunctional applications in diverse fields, including sensing, energy harvesting, and actuator technologies.

摘要

同时具备铁电性和铁磁性的材料被视为电子设备(如非易失性存储器)的理想候选材料。基于第一性原理计算,我们系统地研究了二维范德华WOF单层材料的晶体结构、电子结构以及磁、压电和铁电性能。发现WOF单层具有坚固的方形晶体结构,表现出卓越的稳定性和机械弹性。磁性表征表明该材料呈现出铁磁态,磁矩为1,磁各向异性可忽略不计。就铁电性能而言,WOF单层表现出明显的面内极化,这与其相对较弱的面外极化形成鲜明对比,表明其具有各向异性极化行为。此外,该材料的压电响应可通过应变工程进行调制,其在4%拉伸应变下的压电系数()超过了绝大多数已知二维压电材料,从而突出了其在包括传感、能量收集和致动器技术在内的各种领域中多功能应用的潜力。

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