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多层界面铁电体中的极化饱和

Polarization Saturation in Multilayered Interfacial Ferroelectrics.

作者信息

Cao Wei, Deb Swarup, Stern Maayan Vizner, Raab Noam, Urbakh Michael, Hod Oded, Kronik Leeor, Shalom Moshe Ben

机构信息

Department of Physical Chemistry, School of Chemistry, The Raymond and Beverly Sackler Faculty of Exact Sciences and The Sackler Center for Computational Molecular and Materials Science, Tel Aviv University, Tel Aviv, 6997801, Israel.

School of Physics and Astronomy, Tel Aviv University, Tel Aviv, 6997801, Israel.

出版信息

Adv Mater. 2024 Jul;36(28):e2400750. doi: 10.1002/adma.202400750. Epub 2024 May 3.

DOI:10.1002/adma.202400750
PMID:38662941
Abstract

Van der Waals polytypes of broken inversion and mirror symmetries  have been recently shown to exhibit switchable electric polarization even at the ultimate two-layer thin limit. Their out-of-plane polarization has been found to accumulate in a ladder-like fashion with each successive layer, offering 2D building blocks for the bottom-up construction of 3D ferroelectrics. Here, it is demonstrated experimentally that beyond a critical stack thickness, the accumulated polarization in rhombohedral polytypes of molybdenum disulfide saturates. The underlying saturation mechanism, deciphered via density functional theory and self-consistent Poisson-Schrödinger calculations, point to a purely electronic redistribution involving: 1. Polarization-induced bandgap closure that allows for cross-stack charge transfer and the emergence of free surface charge; 2. Reduction of the polarization saturation value, as well as the critical thickness at which it is obtained, by the presence of free carriers. The resilience of polar layered structures to atomic surface reconstruction, which is essentially unavoidable in polar 3D crystals, potentially allows for the design of new devices with mobile surface charges. The findings, which are of general nature, should be accounted for when designing switching and/or conductive devices based on ferroelectric layered materials.

摘要

最近研究表明,具有破缺反转对称性和镜面对称性的范德华多型体即使在极限双层薄膜情况下也能表现出可切换的电极化。已发现其面外极化以阶梯状方式随着每一层的增加而累积,为三维铁电体的自下而上构建提供了二维构建块。在此,通过实验证明,超过临界堆叠厚度时,二硫化钼菱面体多型体中累积的极化会饱和。通过密度泛函理论和自洽泊松 - 薛定谔计算解析出的潜在饱和机制表明,这涉及一种纯粹的电子重新分布,包括:1. 极化诱导的带隙闭合,这允许跨堆叠电荷转移并出现自由表面电荷;2. 自由载流子的存在会降低极化饱和值以及获得该值时的临界厚度。极性层状结构对原子表面重构的弹性,这在极性三维晶体中基本上是不可避免的,有可能允许设计具有移动表面电荷的新器件。这些具有普遍性质的发现,在基于铁电层状材料设计开关和/或导电器件时应予以考虑。

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