High-pressure structure of a unique 2D ferromagnet clarified in recent study

by Zhao Weiwei and Pan Xiaomei, Hefei Institutes of Physical Science, Chinese Academy of Sciences

High-pressure structure of 2D ferromagnet CrSiTe3 clarified in recent study
The crystal structure and Raman spectra of CrSiTe3 at ambient pressure and high pressure, respectively. Credit: Pan Xiaomei

According to research published in The Journal of Physical Chemistry Letters, Prof. Ding Junfeng from Institute of Solid State Physics (ISSP), Hefei Institutes of Physical Science, together with Prof. Wang Weihua from Nankai University, clarified the high-pressure structure of CrSiTe3, and highlighted the ultralow-frequency Raman spectroscopy when detecting the interlayer coupling on two-dimensional (2D) van der Waals materials.

2D magnetic materials have attracted significant attention owing to their highly tunable physical properties and potential applications in novel spintronics. Some of them can still exhibit intrinsic long-range magnetic order when they are exfoliated even into a few layers, such as ferromagnetic semiconductor CrSiTe3 with a centrosymmetric layered structure.

Both superconductivity and enhancement of ferromagnetism, usually competing for orders, have been observed in CrSiTe3 at high pressure. However, the high-pressure structure of CrSiTe3 is still unclear, setting obstacles in understanding pressure-induced novel physics.

High-pressure structure of 2D ferromagnet CrSiTe3 clarified in recent study
Raman spectra of CrSiTe3 flakes under pressures up to 14 GPa at room temperature. Credit: Pan Xiaomei

In this research, after combining the Raman spectra and first-principles calculations, the joint team clarified the high-pressure structure of CrSiTe3.

“This was the first time that a new interlayer breathing mode located at ~42.1 cm-1 was observed in CrSiTe3,” said Pan Xiaomei, first author of the paper.

The prominent changes in the Raman spectra suggested a phase transition from the R3̅ phase to the R3 phase accompanying noticeable enhancement of the Curie temperature at high pressure, which was supported by the theoretical analyses. The calculated phonon modes of R3 symmetry were in good accordance with the emerged Raman bands of CrSiTe3 at high pressure.

More information:
Xiaomei Pan et al, Pressure-Induced Structural Phase Transition and Enhanced Interlayer Coupling in Two-Dimensional Ferromagnet CrSiTe3, The Journal of Physical Chemistry Letters (2023). DOI: 10.1021/acs.jpclett.3c00507

Provided by
Hefei Institutes of Physical Science, Chinese Academy of Sciences

Citation:
High-pressure structure of a unique 2D ferromagnet clarified in recent study (2023, April 12)
retrieved 13 April 2023
from https://phys.org/news/2023-04-high-pressure-unique-2d-ferromagnet.html

This document is subject to copyright. Apart from any fair dealing for the purpose of private study or research, no
part may be reproduced without the written permission. The content is provided for information purposes only.

For all the latest Science News Click Here 

 For the latest news and updates, follow us on Google News

Read original article here

Denial of responsibility! TheDailyCheck is an automatic aggregator around the global media. All the content are available free on Internet. We have just arranged it in one platform for educational purpose only. In each content, the hyperlink to the primary source is specified. All trademarks belong to their rightful owners, all materials to their authors. If you are the owner of the content and do not want us to publish your materials on our website, please contact us by email – [email protected] The content will be deleted within 24 hours.