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Phase and polarization modulation in two-dimensional In2Se3 via in situ transmission electron microscopy.


ABSTRACT: Phase transitions in two-dimensional (2D) materials promise reversible modulation of material physical and chemical properties in a wide range of applications. 2D van der Waals layered In2Se3 with bistable out-of-plane ferroelectric (FE) α phase and antiferroelectric (AFE) β' phase is particularly attractive for its electronic applications. However, reversible phase transition in 2D In2Se3 remains challenging. Here, we introduce two factors, dimension (thickness) and strain, which can effectively modulate the phases of 2D In2Se3. We achieve reversible AFE and out-of-plane FE phase transition in 2D In2Se3 by delicate strain control inside a transmission electron microscope. In addition, the polarizations in 2D FE In2Se3 can also be manipulated in situ at the nanometer-sized contacts, rendering remarkable memristive behavior. Our in situ transmission electron microscopy (TEM) work paves a previously unidentified way for manipulating the correlated FE phases and highlights the great potentials of 2D ferroelectrics for nanoelectromechanical and memory device applications.

SUBMITTER: Zheng X 

PROVIDER: S-EPMC9586485 | biostudies-literature | 2022 Oct

REPOSITORIES: biostudies-literature

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Phase and polarization modulation in two-dimensional In<sub>2</sub>Se<sub>3</sub> via in situ transmission electron microscopy.

Zheng Xiaodong X   Han Wei W   Yang Ke K   Wong Lok Wing LW   Tsang Chi Shing CS   Lai Ka Hei KH   Zheng Fangyuan F   Yang Tiefeng T   Lau Shu Ping SP   Ly Thuc Hue TH   Yang Ming M   Zhao Jiong J  

Science advances 20221021 42


Phase transitions in two-dimensional (2D) materials promise reversible modulation of material physical and chemical properties in a wide range of applications. 2D van der Waals layered In<sub>2</sub>Se<sub>3</sub> with bistable out-of-plane ferroelectric (FE) α phase and antiferroelectric (AFE) β' phase is particularly attractive for its electronic applications. However, reversible phase transition in 2D In<sub>2</sub>Se<sub>3</sub> remains challenging. Here, we introduce two factors, dimension  ...[more]

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