High pressure structural and lattice dynamics study of α-In$_2$Se$_3$

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Hauptverfasser: Feng, Shiyu, Sun, Baihong, Lu, Wenting, Zou, Haikai, Wei, Chenxin, Zhang, Qian, Wang, Bihan, Kunz, Martin, Kadobayashi, Hirokazu, Ahmad, Azkar Saeed, Koren, Elad, Stavrou, Elissaios
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Veröffentlicht: 2025
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author Feng, Shiyu
Sun, Baihong
Lu, Wenting
Zou, Haikai
Wei, Chenxin
Zhang, Qian
Wang, Bihan
Kunz, Martin
Kadobayashi, Hirokazu
Ahmad, Azkar Saeed
Koren, Elad
Stavrou, Elissaios
author_facet Feng, Shiyu
Sun, Baihong
Lu, Wenting
Zou, Haikai
Wei, Chenxin
Zhang, Qian
Wang, Bihan
Kunz, Martin
Kadobayashi, Hirokazu
Ahmad, Azkar Saeed
Koren, Elad
Stavrou, Elissaios
contents Layered $α$-In$_2$Se$_3$has been studied using a concomitant in-situ synchrotron angle dispersive powder x-ray diffraction and Raman spectroscopy study in a diamond anvil cell up to 60+ GPa, at room temperature. Helium, that remains fairly hydrostatic up to the highest pressure in this study, was used as the pressure-transmitting medium. The results from both experimental methods reveal a pressure-induced structural phase transition from $α$-In$_2$Se$_3$ to a monoclinic $β$'-In2Se3 structure at $\approx$1 GPa, in agreement with previous studies. Based on our detailed measurements using both experimental techniques and F-f formalism, the $β$'-In$_2$Se$_3$ structure remains stable up to 45 GPa, without a clear indication of a phase transition towards the previously reported $β$-In2Se3 phase. Above this pressure, In$_2$Se$_3$ adopts a disordered solid-solution-like orthorhombic structure, phase IV. The results are discussed in comparison with the relevant previous studies of $α$-In$_2$Se$_3$ under pressure.
format Preprint
id arxiv_https___arxiv_org_abs_2502_05927
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle High pressure structural and lattice dynamics study of α-In$_2$Se$_3$
Feng, Shiyu
Sun, Baihong
Lu, Wenting
Zou, Haikai
Wei, Chenxin
Zhang, Qian
Wang, Bihan
Kunz, Martin
Kadobayashi, Hirokazu
Ahmad, Azkar Saeed
Koren, Elad
Stavrou, Elissaios
Materials Science
Layered $α$-In$_2$Se$_3$has been studied using a concomitant in-situ synchrotron angle dispersive powder x-ray diffraction and Raman spectroscopy study in a diamond anvil cell up to 60+ GPa, at room temperature. Helium, that remains fairly hydrostatic up to the highest pressure in this study, was used as the pressure-transmitting medium. The results from both experimental methods reveal a pressure-induced structural phase transition from $α$-In$_2$Se$_3$ to a monoclinic $β$'-In2Se3 structure at $\approx$1 GPa, in agreement with previous studies. Based on our detailed measurements using both experimental techniques and F-f formalism, the $β$'-In$_2$Se$_3$ structure remains stable up to 45 GPa, without a clear indication of a phase transition towards the previously reported $β$-In2Se3 phase. Above this pressure, In$_2$Se$_3$ adopts a disordered solid-solution-like orthorhombic structure, phase IV. The results are discussed in comparison with the relevant previous studies of $α$-In$_2$Se$_3$ under pressure.
title High pressure structural and lattice dynamics study of α-In$_2$Se$_3$
topic Materials Science
url https://arxiv.org/abs/2502.05927