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1T'/1H 相 MoS 异质双层中的室温面外铁电性

Room-Temperature Out-Of-Plane Ferroelectricity in 1T'/1H MoS Heterophase Bilayer.

作者信息

Mu Weijia, Ke Changming, Huangfu Changan, Dong Junhao, Zhou Yaming, Zheng Jingying, Yue Shufang, Li Jing, Liu Shi, Jiao Liying

机构信息

Key Laboratory of Organic Optoelectronics and Molecular Engineering of the Ministry of Education, Department of Chemistry, Tsinghua University, Beijing, 100084, China.

Department of Physics, School of Science and Research Center for Industries of the Future, Westlake University, Hangzhou, Zhejiang, 310030, China.

出版信息

Adv Mater. 2025 Jul;37(29):e2504941. doi: 10.1002/adma.202504941. Epub 2025 Apr 16.

Abstract

The emergence of heterophase 2D materials, distinguished by their unique structures, has led to the discovery of a multitude of intriguing physical properties and a broad range of potential applications. Here, out-of-plane ferroelectricity is uncovered in a heterophase structure of 1T'/1H MoS, which is synthesized via chemical vapor deposition (CVD) by tuning the formation energies for MoS with varied phases. The atomically resolved structures of the obtained 1T'/1H MoS bilayers are captured using scanning transmission electron microscopy (STEM) and are confirmed to be non-centrosymmetric using second-harmonic generation (SHG) characterizations. The intrinsic out-of-plane polarization is visualized by piezoresponse force microscopy (PFM), which reveals that ferroelectric domains can be manipulated under an applied electric field. Ferroelectric tunnel junction (FTJ) devices fabricated on these bilayers exhibit reversible switching between a high resistance state (HRS) and a low resistance state (LRS). Density functional theory (DFT) calculations elucidate that the intrinsic ferroelectricity in 1T'/1H bilayers is attributed to interlayer sliding and lattice mismatch. The findings not only expand the scope of 2D ferroelectrics to include vertically stacked heterophase bilayers but also open avenues for exploring the coupling effect between ferroelectricity and other phenomena such as magnetism, superconductivity, and photocatalysis in 2D heterophase TMDCs.

摘要

具有独特结构的异相二维材料的出现,带来了众多引人入胜的物理性质的发现以及广泛的潜在应用。在此,通过化学气相沉积(CVD),通过调整不同相的MoS的形成能,在1T'/1H MoS的异相结构中发现了面外铁电性。使用扫描透射电子显微镜(STEM)捕获了所获得的1T'/1H MoS双层的原子分辨结构,并通过二次谐波产生(SHG)表征确认其为非中心对称。通过压电响应力显微镜(PFM)观察到了本征面外极化,这表明铁电畴可以在外加电场下进行操控。在这些双层上制备的铁电隧道结(FTJ)器件在高电阻状态(HRS)和低电阻状态(LRS)之间表现出可逆切换。密度泛函理论(DFT)计算表明,1T'/1H双层中的本征铁电性归因于层间滑动和晶格失配。这些发现不仅将二维铁电体的范围扩展到包括垂直堆叠的异相双层,还为探索二维异相过渡金属二硫属化合物中铁电性与磁性、超导性和光催化等其他现象之间的耦合效应开辟了道路。

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