铁电性
双层
范德瓦尔斯力
凝聚态物理
材料科学
超晶格
居里温度
极化(电化学)
物理
化学
铁磁性
电介质
光电子学
量子力学
生物化学
物理化学
膜
分子
作者
Jing Wang,Menghao Wu,Ju Li
标识
DOI:10.1021/acs.jpclett.8b03654
摘要
In a recent report, room-temperature vertical ferroelectricity was experimentally shown in WTe2 bilayer, while its mechanism of ferroelectric switching without vertical ion displacements remains unclarified. In this work, we reveal its origin by first-principles calculations that the polarization stems from uncompensated interlayer vertical charge transfer depending on in-plane translation, which can be switched upon interlayer sliding. The calculated results are consistent with experimental data, and a similar switching mechanism can be applied to a multilayer counterpart. Despite its small ferroelectric switching barrier and polarization, the in-plane rigidity of WTe2 layer gives rise to a high Curie temperature. A moire pattern of ferroelectric domain superlattice can be formed and tuned upon a small-angle twist of bilayer, which is unique compared with traditional ferroelectrics. Similar interlayer translational ferroelectricity may exist in a series of van der Waals bilayers or even bulk phases.
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