Atomic structure and large magnetic anisotropy in air-sensitive layered ferromagnetic VI

We report the air-sensitivity, atomic structure, and magnetic anisotropy of VI 3 single crystals. We find that VI 3 nanocrystals exhibit a large M R / M S ratio of around 0.75 and a uniaxial anisotropic constant of an order of 10 5 erg cc −1 below the Curie temperature. Furthermore, density function...

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Veröffentlicht in:Nanoscale 2023-03, Vol.15 (9), p.4628-4635
Hauptverfasser: Wang, Wenjie, Sun, Rong, Shen, Wei, Jia, Zhiyan, Deepak, Francis Leonard, Zhang, Yujie, Wang, Zhongchang
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Zusammenfassung:We report the air-sensitivity, atomic structure, and magnetic anisotropy of VI 3 single crystals. We find that VI 3 nanocrystals exhibit a large M R / M S ratio of around 0.75 and a uniaxial anisotropic constant of an order of 10 5 erg cc −1 below the Curie temperature. Furthermore, density functional theory calculations reveal that both the monolayer and bulk VI 3 are ferromagnetic insulators, and the magnetic moment of the system arises mainly from the d orbital of the V atom. These findings open a feasible avenue to fabricating TEM specimens of air-sensitive layered materials, providing an in-depth comprehensive understanding of a layered ferromagnetic VI 3 . We report the air-sensitivity, atomic structure, and magnetic anisotropy of VI 3 single crystals.
ISSN:2040-3364
2040-3372
DOI:10.1039/d2nr06531b