Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/100217
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Title: Two-dimensional antiferroelectricity in nanostripe-ordered In2Se3
Authors: Xu, C 
Chen, Y
Cai, X
Meingast, A
Guo, X 
Wang, F
Lin, Z 
Lo, TW 
Maunders, C
Lazar, S
Wang, N
Lei, D 
Chai, Y 
Zhai, T
Luo, X 
Zhu, Y 
Issue Date: 24-Jul-2020
Source: Physical review letters, 24 July 2020, v. 125, no. 4, 47601
Abstract: Two-dimensional (2D) layered materials have been an exciting frontier for exploring emerging physics at reduced dimensionality, with a variety of exotic properties demonstrated at 2D limit. Here, we report the first experimental discovery of in-plane antiferroelectricity in a 2D material β′-In2Se3, using optical and electron microscopy consolidated by first-principles calculations. Different from conventional 3D antiferroelectricity, antiferroelectricity in β′-In2Se3 is confined within the 2D layer and generates the unusual nanostripe ordering: the individual nanostripes exhibit local ferroelectric polarization, whereas the neighboring nanostripes are antipolar with zero net polarization. Such a unique superstructure is underpinned by the intriguing competition between 2D ferroelectric and antiferroelectric ordering in β′-In2Se3, which can be preserved down to single-layer thickness as predicted by calculation. Besides demonstrating 2D antiferroelectricity, our finding further resolves the true nature of the β′-In2Se3 superstructure that has been under debate for over four decades.
Publisher: American Physical Society
Journal: Physical review letters 
ISSN: 0031-9007
EISSN: 1079-7114
DOI: 10.1103/PhysRevLett.125.047601
Rights: © 2020 American Physical Society
The following publication Xu, C., Chen, Y., Cai, X., Meingast, A., Guo, X., Wang, F., . . . Zhu, Y. (2020). Two-dimensional antiferroelectricity in nanostripe-ordered In2Se3. Physical Review Letters, 125(4), 047601 is available at https://doi.org/10.1103/PhysRevLett.125.047601.
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