Tang Cheng, Zhang Lei, Sanvito Stefano, Du Aijun
School of Chemistry and Physics, Centre for Materials Science, Queensland University of Technology, 2 George Street, Brisbane, QLD4000, Australia.
School of Physics and CRANN Institute, Trinity College, Dublin2, Ireland.
J Am Chem Soc. 2023 Feb 1;145(4):2485-2491. doi: 10.1021/jacs.2c11862. Epub 2023 Jan 19.
Triferroic compounds are the ideal platform for multistate information devices but are rare in the two-dimensional (2D) form, and none of them can maintain macroscopic order at room temperature. Herein, we propose a general strategy for achieving 2D triferroicity by imposing electric polarization into a ferroelastic magnet. Accordingly, dual transition-metal dichalcogenides, for example, 1T'-CrCoS, are demonstrated to display room-temperature triferroicity. The magnetic order of 1T'-CrCoS undergoes a magnetic transition during the ferroic switching, indicating robust triferroic magnetoelectric coupling. In addition, the negative out-of-plane piezoelectricity and strain-tunable magnetic anisotropy make the 1T'-CrCoS monolayer a strong candidate for practical applications. Following the proposed scheme, a new class of 2D room-temperature triferroic materials is introduced, providing a promising platform for advanced spintronics.
铁电-铁磁-铁弹化合物是多态信息设备的理想平台,但二维(2D)形式的此类化合物很罕见,并且它们在室温下均无法保持宏观有序性。在此,我们提出了一种通过在铁弹磁体中引入电极化来实现二维铁电-铁磁-铁弹特性的通用策略。相应地,双过渡金属二硫属化物,例如1T'-CrCoS,被证明具有室温铁电-铁磁-铁弹特性。在铁性转变过程中,1T'-CrCoS的磁有序会发生磁转变,这表明其具有强大的铁电-铁磁-铁弹磁电耦合。此外,负的面外压电性和应变可调磁各向异性使1T'-CrCoS单层成为实际应用的有力候选材料。按照所提出的方案,引入了一类新型的二维室温铁电-铁磁-铁弹材料,为先进的自旋电子学提供了一个有前景的平台。