The experimental progress on two-dimensional multiferroics
Экспериментальный прогресс в двухмерных мультиферроиках
2026-03-18
SCID: 54.1/mpvea3bm
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magnetoelectric spintronicsmultiferroicity mechanismstwo-dimensional multiferroicsvan der Waals interactions
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Abstract (AI)
Abstract Two-dimensional (2D) multiferroic materials, characterized by the coexistence of multiple ferroic orders at atomic thicknesses governed by interlayer van der Waals (vdW) interactions, have garnered significant attention due to their exotic physical properties and potential for next-generation information storage, logic, and magnetoelectric spintronic applications, particularly in high-density memory and ultralow-power information processing. This review revisits the fundamental concepts of multiferroicity from the symmetry and thermodynamic perspectives, classifies the dominant mechanisms responsible for generating multiferroics and their 2D extension, and discusses specific material systems ranging from intrinsic to engineered multiferroics. The primary objective of this review is to provide a clear roadmap of the current landscape, and offer perspectives on key challenges and opportunities in this rapidly developing field.
Key Findings
1
2D multiferroic materials exhibit coexistence of multiple ferroic orders at atomic thicknesses governed by interlayer van der Waals interactions.
2
2D multiferroics have exotic physical properties making them promising for high-density memory, ultralow-power information processing, and magnetoelectric spintronic applications.
3
Key challenges and opportunities in the rapidly developing field of 2D multiferroics are identified and discussed for future research directions.
4
The review classifies dominant mechanisms generating multiferroicity and their extensions to two-dimensional systems from symmetry and thermodynamic perspectives.
5
The review surveys specific material systems spanning intrinsic to engineered 2D multiferroics, providing a roadmap of the current landscape.
Research Object
Two-dimensional (2D) multiferroic materials
Research Subject
Experimental progress, mechanisms, material systems, challenges and opportunities in realizing and characterizing multiferroicity (coexisting ferroic orders) at atomic thicknesses governed by van der Waals interlayer interactions
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2026-03-18
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