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Ferromagnetic elements in two‐dimensional materials: 2D magnets and beyond
Ferromagnetism in 2D materials has attracted tremendous interest from the scientific
community thanks to its potential for the design of magnetic materials with unique properties …
community thanks to its potential for the design of magnetic materials with unique properties …
Exploring magnetocaloric materials for sustainable refrigeration near hydrogen gas liquefaction temperature
Magnetocaloric materials have the ability to undergo temperature changes when subjected
to varying magnetic fields. These materials are of interest due to their potential for innovative …
to varying magnetic fields. These materials are of interest due to their potential for innovative …
Interlayer charge transfer induced electrical behavior transition in 1D AgI@ sSWCNT van der Waals heterostructures
S Liu, Y Teng, Z Zhang, J Lai, Z Hu, W Zhang… - Nano Letters, 2024 - ACS Publications
The emergence of one-dimensional van der Waals heterostructures (1D vdWHs) opens up
potential fields with unique properties, but precise synthesis remains a challenge. The …
potential fields with unique properties, but precise synthesis remains a challenge. The …
Hybrid spin-orbit exciton-magnon excitations in FePS3
FePS3 is a layered van der Waals (vdW) Ising antiferromagnet that has recently been
studied in the context of true 2D magnetism and emerged as an ideal material platform for …
studied in the context of true 2D magnetism and emerged as an ideal material platform for …
Predicted novel two-dimensional ferromagnetic VO 2 with high Curie temperature and ferroelasticity
WZ **martin-Liu/publication/383788033_Giant_Optical_Anisotropy_Induced_by_Magnetic_Order_in_FePS3WSe2_Heterostructures/links/66da76c0bd20173667b96827/Giant-Optical-Anisotropy-Induced-by-Magnetic-Order-in-FePS3-WSe2-Heterostructures.pdf" data-clk="hl=nl&sa=T&oi=gga&ct=gga&cd=5&d=5571765086086952691&ei=8tO-Z7LYOdq16rQP793i4QU" data-clk-atid="8_YiSNPiUk0J" target="_blank">[PDF] researchgate.net
Giant Optical Anisotropy Induced by Magnetic Order in FePS3/WSe2 Heterostructures
J Chen, X **e, X Oyang, S Li, J He, Z Liu, JT Wang… - Small, 2024 - Wiley Online Library
Magnetic 2D materials offer a promising platform for manipulating quantum states at the
nanoscale. Recent studies have underscored the significant influence of 2D magnetic …
nanoscale. Recent studies have underscored the significant influence of 2D magnetic …
Valley filtering using magnetic proximity effect in monolayer WS2
S You, H Kim, N Kim - Physica E: Low-dimensional Systems and …, 2024 - Elsevier
A quantum system implanted with monolayer transition metal dichalcogenide (TMDC) is
proposed as a valley filter based on a ballistic point contact with zigzag edges. A quantum …
proposed as a valley filter based on a ballistic point contact with zigzag edges. A quantum …
[HTML][HTML] Dipole–dipole-interaction-induced entanglement between two-dimensional ferromagnets
We investigate the viability of dipole–dipole interaction as a means of entangling two distant
ferromagnets. To this end, we make use of the Bogoliubov transformation as a symplectic …
ferromagnets. To this end, we make use of the Bogoliubov transformation as a symplectic …
Co-TMDC MTJs: A New Frontier in Spintronics
G Shukla, R Ali, A Shafique - ACS Applied Electronic Materials, 2025 - ACS Publications
Transition metal dichalcogenides (TMDCs) are promising materials for various applications
due to their exceptional electronic and optical properties. These materials can be …
due to their exceptional electronic and optical properties. These materials can be …
Magnetic phase transition regulated by an interface coupling effect in CrBr 3/electride Ca 2 N van der Waals heterostructures
Z Yin, B Zhou - Physical Chemistry Chemical Physics, 2024 - pubs.rsc.org
Compared with ferromagnetic (FM) materials, antiferromagnetic (AFM) materials have the
advantages of not generating stray fields, resisting magnetic field disturbances, and …
advantages of not generating stray fields, resisting magnetic field disturbances, and …