Issue 3, 2025

Tunable magnetoelectricity and polarity in van der Waals antiferromagnetic CuCr1−xFexP2S6

Abstract

The coexistence of electric and magnetic orders with intrinsic coupling, referred to as magnetoelectric coupling in multiferroics, has been extensively studied in oxide materials but remains relatively unexplored in van der Waals materials. Among these, CuCrP2S6 (CCPS) is notable for its emergent antiferromagnetic (AFM) and antiferroelectric (AFE) characteristics. However, investigations into magnetoelectric coupling in CCPS are limited, and the effects of dopants on its magnetic properties have yet to be fully addressed. In this study, we synthesized CuCr1−xFexP2S6 (CCFPS) samples using the chemical vapor transport (CVT) method to investigate the influence of iron doping on the magnetic and nonlinear optical properties of the CCFPS system. Our results indicate that the AFM state is preserved, while the Néel temperature (TN) varies with the doping concentration. First-principles calculations were employed to assess the exchange interactions among magnetic atoms. Notably, for samples with doping concentrations x < 0.5, we observed both magnetic-dielectric coupling and second harmonic generation (SHG) effects. However, these effects were absent at higher doping levels. Furthermore, our analysis revealed a distinct odd–even dependence of SHG, suggesting the presence of interlayer symmetry-breaking coupling. These findings advance our understanding of two-dimensional (2D) multiferroic materials and lay the groundwork for designing and optimizing magnetoelectric coupling materials with enhanced performance.

Graphical abstract: Tunable magnetoelectricity and polarity in van der Waals antiferromagnetic CuCr1−xFexP2S6

Supplementary files

Article information

Article type
Communication
Submitted
01 Dec 2024
Accepted
03 Feb 2025
First published
04 Feb 2025
This article is Open Access
Creative Commons BY license

Nanoscale Horiz., 2025,10, 561-567

Tunable magnetoelectricity and polarity in van der Waals antiferromagnetic CuCr1−xFexP2S6

Y. Xing, H. Ye, G. Du, X. Li, L. Miao, J. Zhang, X. Luo, X. Chen, H. Ye, A. Shen, Z. Wang, Y. You, S. Dong and L. Li, Nanoscale Horiz., 2025, 10, 561 DOI: 10.1039/D4NH00620H

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