Interfacial ferroelectricity at naturally-formed van der Waals interfaces

Sliding ferroelectrics emerge as compelling candidates for next-generation wafer-level non-volatile storage applications with low power consumption and high packing density. However, artificially stacked sliding ferroelectrics with homogeneous/heterogeneous interfaces rely on highly complex procedures that offer only limited scalability and reproducibility, while van der Waals layered materials that naturally exhibit vertical spontaneous polarization and experimentally confirmed sliding ferroelectricity remain limited. Here, we report interlayer directional sliding-induced interfacial ferroelectricity in van der Waals layered SnSe2 semiconductors with different naturally-formed stacking configurations. Comprehensive piezoresponse force microscopy measurements confirm the robust and non-volatile out-of-plane ferroelectricity in SnSe2 flakes with non-centrosymmetric interfaces. In-situ biasing scanning transmission electron microscopy investigations simultaneously visualize the external field induced interfacial sliding and the coupled reversible polarization switching. Theoretical calculations consistently support the sliding paths in non-centrosymmetric SnSe2. Our results could indicate universal out-of-plane ferroelectricity in van der Waals layered materials with non-centrosymmetric interfaces and extend the family of ferroelectric semiconductors like SnSe2, which have potential for large-scale integrated applications in ferroelectric photovoltaics, ferroelectric tunnel junctions and in-memory computing. The authors show that naturally formed interfaces in van der Waals SnSe2 host switchable electric polarization driven by atomic-layer sliding, offering a scalable platform for low-power memory and in memory computing.

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Publication Details

Journal
Nature Communications
Published
2026-10-07
DOI
https://doi.org/10.1038/s41467-026-78336-9
Primary Topic
Ferroelectric and Negative Capacitance Devices
Type
article
Field-Weighted Citation Impact
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article

Interfacial ferroelectricity at naturally-formed van der Waals interfaces

Fangyu Yue, Ruijuan Qi, Weida Hu, Menghao Wu et al.
Nature Communications
Ferroelectric and Negative Capacitance Devices
article

Interfacial ferroelectricity at naturally-formed van der Waals interfaces

Fangyu Yue, Ruijuan Qi, Weida Hu, Menghao Wu, Zihao Yang, Beituo Liu, Yilun Yu, Rong Jin, Jiawen Dai, Rongping Jiang, Shujing Jia, Fengrui Sui, Junhao Chu, Jens W. Tomm, Siyuan Ai
article en

Abstract

Sliding ferroelectrics emerge as compelling candidates for next-generation wafer-level non-volatile storage applications with low power consumption and high packing density. However, artificially stacked sliding ferroelectrics with homogeneous/heterogeneous interfaces rely on highly complex procedures that offer only limited scalability and reproducibility, while van der Waals layered materials that naturally exhibit vertical spontaneous polarization and experimentally confirmed sliding ferroelectricity remain limited. Here, we report interlayer directional sliding-induced interfacial ferroelectricity in van der Waals layered SnSe2 semiconductors with different naturally-formed stacking configurations. Comprehensive piezoresponse force microscopy measurements confirm the robust and non-volatile out-of-plane ferroelectricity in SnSe2 flakes with non-centrosymmetric interfaces. In-situ biasing scanning transmission electron microscopy investigations simultaneously visualize the external field induced interfacial sliding and the coupled reversible polarization switching. Theoretical calculations consistently support the sliding paths in non-centrosymmetric SnSe2. Our results could indicate universal out-of-plane ferroelectricity in van der Waals layered materials with non-centrosymmetric interfaces and extend the family of ferroelectric semiconductors like SnSe2, which have potential for large-scale integrated applications in ferroelectric photovoltaics, ferroelectric tunnel junctions and in-memory computing. The authors show that naturally formed interfaces in van der Waals SnSe2 host switchable electric polarization driven by atomic-layer sliding, offering a scalable platform for low-power memory and in memory computing.

Nature Communications
Chinese Academy of Sciences (CN), Fudan University (CN), Shanghai Institute of Technical Physics (CN), Max-Born-Institute for Nonlinear Optics and Short Pulse Spectroscopy (DE), State Key Laboratory of Infrared Physics, Huazhong University of Science and Technology (CN), East China Normal University (CN)
Openalex Percentile: Top 23%
Ferroelectric and Negative Capacitance Devices
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