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Spin Transport Modulation of 2D FeO Nanosheets Driven by Verwey Phase Transition. | LitMetric

AI Article Synopsis

  • The study focuses on improving spin transport between heavy metals and 2D magnetic materials for advanced spintronic technology, highlighting the importance of high Curie temperatures.
  • Environmentally stable nonlayered FeO nanosheets were synthesized, demonstrating vortex magnetic domains at room temperature and a Verwey phase transition temperature of around 110 K.
  • The findings reveal how properties like anisotropic magnetoresistance and spin Hall magnetoresistance vary with temperature, suggesting that 2D FeO nanosheets are promising for high-performance micro spintronic storage applications.

Article Abstract

Realizing spin transport between heavy metal and two-dimensional (2D) magnetic materials at high Curie temperature (T) is crucial to advanced spintronic information storage technology. Here, environmentally stable 2D nonlayered FeO nanosheets are successfully synthesized using a reproducible process and found that they exhibit vortex magnetic domains at room temperature. A Verwey phase transition temperature (T) of ≈110 K is identified for ≈3 nm thick nanosheet through Raman characterization and spin Hall device measurement of the Pt/FeO bilayer. The anisotropic magnetoresistance ratio decreases near T, while both the spin Hall magnetoresistance ratio and spin mixing conductance (G) increase at T. As the temperature approaches 112 K, the anomalous Hall effect ratio tends to become zero. The maximum G reaches ≈5 × 10 Ωm due to the clean and flat interface between Pt and 2D nanosheet. The observed spin transport behavior in Pt/FeO spin Hall devices indicates that 2D FeO nanosheets possess potential for high-power micro spintronic storage devices applications.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11538658PMC
http://dx.doi.org/10.1002/advs.202405945DOI Listing

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