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DOE OSTI · 1840745

Scale-Enhanced Magnetism in Exfoliated Atomically Thin Magnetite Sheets

Abstract

The discovery of ferromagnetism in atomically thin layers at room temperature widens the prospects of 2D materials for device applications. Recently, two independent experiments demonstrated magnetic ordering in two dissimilar 2D systems, CrI 3 and Cr 2 Ge 2 Te 6 , at low temperatures and in VSe 2 at room temperature, but observation of intrinsic room-temperature magnetism in 2D materials is still a challenge. Here a transition at room temperature that increases the magnetization in magnetite while thinning down the bulk material to a few atom-thick sheets is reported. DC magnetization measurements prove ferrimagnetic ordering with increased magnetization and density functional theory calculations ascribe their origin to the low dimensionality of the magnetite layers. Additionally, surface energy calculations for different cleavage planes in passivated magnetite crystal agree with the experimental observations of obtaining 2D sheets from non-van der Waals crystals.

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BibTeXRIS

Puthirath, Anand B., Shirodkar, Sharmila N., Gao, Guanhui, Hernandez, Francisco C. Robles, Deng, Liangzi, Dahal, Rabin, Apte, Amey, Costin, Gelu, Chakingal, Nithya, Balan, Aravind Puthirath, Sassi, Lucas M., Tiwary, Chandra Sekhar, Vajtai, Robert, Chu, Ching‐Wu, Yakobson, Boris I., Ajayan, Pulickel M.. 2020-10-20. Scale-Enhanced Magnetism in Exfoliated Atomically Thin Magnetite Sheets. https://doi.org/10.1002/smll.202004208

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