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Magnetoelectric effect in van der Waals magnets
The magnetoelectric (ME) effect is a fundamental concept in modern condensed matter
physics and represents the electrical control of magnetic polarisations or vice versa. Two …
physics and represents the electrical control of magnetic polarisations or vice versa. Two …
Recent Advances in Two-Dimensional Ferromagnetic Materials-Based van der Waals Heterostructures
Z Zhang, R Sun, Z Wang - ACS nano, 2025 - ACS Publications
Two-dimensional (2D) ferromagnetic materials are subjects of intense research owing to
their intriguing physicochemical properties, which hold great potential for fundamental …
their intriguing physicochemical properties, which hold great potential for fundamental …
Coexistence of ferroelectricity and antiferroelectricity in 2D van der Waals multiferroic
Multiferroic materials have been intensively pursued to achieve the mutual control of electric
and magnetic properties. The breakthrough progress in 2D magnets and ferroelectrics …
and magnetic properties. The breakthrough progress in 2D magnets and ferroelectrics …
Electric Field Control Of Moiré Skyrmion Phases in Twisted Multiferroic NiI2 Bilayers
Twisted magnetic van der Waals materials provide a flexible platform to engineer
unconventional magnetism. Here we demonstrate the emergence of electrically tunable …
unconventional magnetism. Here we demonstrate the emergence of electrically tunable …
Nature of the unconventional heavy-fermion Kondo state in monolayer CeSiI
CeSiI has been recently isolated in the ultrathin limit, establishing CeSiI as the first intrinsic
two-dimensional van der Waals heavy-fermion material up to 85 K. We show that, due to the …
two-dimensional van der Waals heavy-fermion material up to 85 K. We show that, due to the …
Competing multiferroic phases in monolayer and few-layer
A recent experiment reported type-II multiferroicity in monolayer (ML) Ni I 2 based on a
presumed spiral magnetic configuration (spiral-B), which is, as we found here, under debate …
presumed spiral magnetic configuration (spiral-B), which is, as we found here, under debate …
Effect of metal–ligand interactions on magnetic characteristics of two-dimensional Kagome structured perthiolated coronene (PTC) metal–organic frameworks (MOFs)
Z Fu, Y Zhang, M Jia, S Zhang, L Guan… - Physical Chemistry …, 2024 - pubs.rsc.org
In recent years, the potential applications of two-dimensional (2D) metal–organic framework
(MOF) materials in fields like spintronics have drawn increasing attention. Inspired by the …
(MOF) materials in fields like spintronics have drawn increasing attention. Inspired by the …
Orientation-selective spin-polarized edge states in monolayer NiI2
Y Wang, X Zhao, L Yao, H Liu, P Cheng… - Nature …, 2024 - nature.com
Spin-polarized edge states in two-dimensional materials hold promise for spintronics and
quantum computing applications. Constructing stable edge states by tailoring two …
quantum computing applications. Constructing stable edge states by tailoring two …
Shear‐Mediated Stabilization of Spin Spiral Order in Multiferroic NiI2
Type‐II multiferroicity from non‐collinear spin order is recently explored in the van der Waals
material NiI2. Despite the importance for improper ferroelectricity, the microscopic …
material NiI2. Despite the importance for improper ferroelectricity, the microscopic …
Antiferromagnetism in two-dimensional materials: progress and computational challenges
T Olsen - 2D Materials, 2024 - iopscience.iop.org
We present a perspective on the status of antiferromagnetism in two-dimensional (2D)
materials. Various types of spin-compensated orders are discussed and include non …
materials. Various types of spin-compensated orders are discussed and include non …