凝聚态物理
自旋电子学
压电
材料科学
磁各向异性
压电系数
铁磁性
极化(电化学)
偶极子
各向异性
范德瓦尔斯力
磁偶极子
纳米发生器
费米能级
挠曲电
杰纳斯
带隙
磁矩
磁畴
自旋极化
磁场
费米能量
单层
磁能
磁致伸缩
作者
Yaxin Pan,Yihang Bai,Bing Wang,Jun-Hyung Cho
摘要
Two-dimensional Janus materials with both piezoelectricity and ferromagnetism hold great potential for multifunctional spintronic devices. Using first-principles calculations, we investigate monolayer and few-layer CrSCl, a Janus-type van der Waals material with out-of-plane asymmetry, to explore its layer-dependent electronic, piezoelectric, and magnetic properties. We find that stacking-induced dipoles increase the electrostatic potential difference between surfaces, saturating beyond four layers. The potential gradient induces layer-resolved band shifts, leading to a reduced bandgap and a semiconductor-to-semimetal transition. Enhanced screening and depolarization effects suppress the strain-induced polarization change, causing the out-of-plane piezoelectric coefficient d31 to decrease overall with increasing thickness. In contrast, the magnetic anisotropy remains stable: despite the emergence of additional layer-derived states approaching the Fermi level, both the out-of-plane easy axis and magnetic anisotropy energy remain unchanged. These results highlight few-layer CrSCl as a versatile platform for engineering coexisting piezoelectric and magnetic functionalities, with layer-dependent piezoelectricity and robust magnetic anisotropy.
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