Strain-induced ferroelectric polarization reversal without undergoing geometric inversion in blue SiSe monolayer

铁电性 单层 凝聚态物理 极化(电化学) 材料科学 反演(地质) 声子 点反射 物理 光电子学 化学 纳米技术 地质学 电介质 构造盆地 物理化学 古生物学
作者
Yan-Dong Guo,Ruijie Meng,Xueqin Hu,Liyan Lin,Yurong Yang,Ming‐Yu Yang,Yun You,Lanqi Zhang,Yilong Xu,Xiaohong Yan
出处
期刊:Physical Chemistry Chemical Physics [Royal Society of Chemistry]
卷期号:26 (21): 15629-15636
标识
DOI:10.1039/d4cp00558a
摘要

Ferroelectricity in two-dimensional (2D) systems generally arises from phonons and has been widely investigated. On the contrary, electronic ferroelectricity in 2D systems has been rarely studied. Using first-principles calculations, the ferroelectric behavior of the buckled blue SiSe monolayer under strain are explored. It is found that the direction of the out-of-plane ferroelectric polarization can be reversed by applying an in-plane strain. And such polarization switching is realized without undergoing geometric inversion. Besides, the strain-triggered polarization reversal emerges in both biaxial and uniaxial strain cases, indicating it is an intrinsic feature of such a system. Further analysis shows that the polarization switching is the result of the reversal of the magnitudes of the positive and negative charge center vectors. And the variation of buckling is found to play an important role, which results in the switch. Moreover, a non-monotonic variation of band gap with strain is revealed. Our findings throws light on the investigation of novel electronic ferroelectric systems.
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