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在范德华多层膜中实现工程化界面极化切换

Engineering interfacial polarization switching in van der Waals multilayers.

作者信息

Van Winkle Madeline, Dowlatshahi Nikita, Khaloo Nikta, Iyer Mrinalni, Craig Isaac M, Dhall Rohan, Taniguchi Takashi, Watanabe Kenji, Bediako D Kwabena

机构信息

Department of Chemistry, University of California, Berkeley, Berkeley, CA, USA.

Department of Chemistry, University of Minnesota, Minneapolis, MN, USA.

出版信息

Nat Nanotechnol. 2024 Jun;19(6):751-757. doi: 10.1038/s41565-024-01642-0. Epub 2024 Mar 19.

Abstract

In conventional ferroelectric materials, polarization is an intrinsic property limited by bulk crystallographic structure and symmetry. Recently, it has been demonstrated that polar order can also be accessed using inherently non-polar van der Waals materials through layer-by-layer assembly into heterostructures, wherein interfacial interactions can generate spontaneous, switchable polarization. Here we show that deliberate interlayer rotations in multilayer van der Waals heterostructures modulate both the spatial ordering and switching dynamics of polar domains. The engendered tunability is unparalleled in conventional bulk ferroelectrics or polar bilayers. By means of operando transmission electron microscopy we show how alterations of the relative rotations of three WSe layers produce structural polytypes with distinct arrangements of polar domains with either a global or localized switching response. Furthermore, the presence of uniaxial strain generates structural anisotropy that yields a range of switching behaviours, coercivities and even tunable biased responses. We also provide evidence of mechanical coupling between the two interfaces of the trilayer, a key consideration for the control of switching dynamics in polar multilayer structures more broadly.

摘要

在传统铁电材料中,极化是一种受整体晶体结构和对称性限制的固有属性。最近,研究表明,通过逐层组装成异质结构,利用本质上非极性的范德华材料也可以实现极性有序,其中界面相互作用可以产生自发的、可切换的极化。在此,我们表明,在多层范德华异质结构中有意进行层间旋转,可以调节极性畴的空间有序性和切换动力学。这种产生的可调性在传统块状铁电体或极性双层中是无与伦比的。通过原位透射电子显微镜,我们展示了三个WSe层的相对旋转变化如何产生具有不同极性畴排列的结构多型体,这些多型体具有全局或局部的切换响应。此外,单轴应变的存在会产生结构各向异性,从而产生一系列的切换行为、矫顽力甚至可调的偏置响应。我们还提供了三层结构两个界面之间机械耦合的证据,这是更广泛地控制极性多层结构中切换动力学的一个关键考虑因素。

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