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Showing posts with the label ferromagnetic

Manipulating atomic self-doping between 2D materials' layers stabilizes coupled ferro- magnetic/ electric properties at room temperature

https://phys.org/news/2026-06-interlayer-doping-room-temperature-multiferroics.html "coupled ferro- magnetic/ electric properties only coexist at cryogenic temperatures, limiting use in consumer devices... overcome shifting atoms between 2D lattice stacked layers creating permanent internal charge imbalance preserving room temperature coupling... almost 0 power, ultra-dense, non-volatile magnetoelectric memory chips that could revolutionize future semiconductor computing architectures"

Applying external magnetic field to ferromagnetic manganese ferrite conversion-type anode for 4X greater energy density, and dendrite suppression

https://www.eurekalert.org/news-releases/1110794 "magneto-conversion enables enough energy density to alleviate EV range concerns, while lowering thermal runaway/ explosion risk... lithium entering anode creates magnetic nanoparticles which align due to magnetic field... Lorentz Force disperses lithium ions evenly across electrode surface rather than letting them clump together... >99% Coulombic efficiency for 300+ cycles... lithium stored both within/ on oxide matrix surface... viable pathway for replacing graphite-based batteries with more powerful lithium-metal" Related: Researchers create distortion-resistant energy materials to improve lithium-ion batteries https://www.eurekalert.org/news-releases/1117872