Graphene-Enhanced Magnetic Anisotropies in Fe/Ni (100) Superlattices with Monolayer Periodicity

Abstract Fe/Ni(100) superlattices grown on graphene/Ir(100) by intercalation of alternate monolayers of Ni and Fe under graphene show magnetic properties severely modified. The graphene–iron interaction at the external interface produces a surface anisotropy Kint(gr/Fe) = 0.89 ± 0.08 mJ/m2, large enough to drive the uniaxial, out-of-plane magnetic anisotropy of the whole superlattice to KU = 0.87 ± 0.03 MJ/m3 and compensate the in-plane shape anisotropy characteristic of thin magnetic layers. Graphene also introduces an additional trigonal in-plane anisotropy superimposed to the biaxial anisotropy of the underlying Fe/Ni (100) superlattice and increases the mL(parallel)/mspin ratio by 50% with respect to Fe/Ni films grown without graphene, as determined by XMCD. The films show chemical ordering plane-by-plane and a strongly distorted face-centered tetragonal (fct) structure, as determined by synchrotron-based X-ray diffraction. The gr-Fe charge transfer and the electronic hybridization of the respective π and d bands at the interface are responsible for the observed magnetic phenomena.

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Journal
Nano Letters
Published
2026-09-28
DOI
https://doi.org/10.1021/acs.nanolett.6c03892
Primary Topic
Graphene research and applications
Type
article
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article

Graphene-Enhanced Magnetic Anisotropies in Fe/Ni (100) Superlattices with Monolayer Periodicity

Rodolfo Miranda, Paolo Perna, Miguel A. Valbuena, Sofía O. Parreiras et al.
Nano Letters
Graphene research and applications
article

Graphene-Enhanced Magnetic Anisotropies in Fe/Ni (100) Superlattices with Monolayer Periodicity

Rodolfo Miranda, Paolo Perna, Miguel A. Valbuena, Sofía O. Parreiras, Inés García-Manuz, I. Llamas, José Luis Fernández-Cuñado, Cristina Navio, Antonio Hernando
article en

Abstract

Abstract Fe/Ni(100) superlattices grown on graphene/Ir(100) by intercalation of alternate monolayers of Ni and Fe under graphene show magnetic properties severely modified. The graphene–iron interaction at the external interface produces a surface anisotropy Kint(gr/Fe) = 0.89 ± 0.08 mJ/m2, large enough to drive the uniaxial, out-of-plane magnetic anisotropy of the whole superlattice to KU = 0.87 ± 0.03 MJ/m3 and compensate the in-plane shape anisotropy characteristic of thin magnetic layers. Graphene also introduces an additional trigonal in-plane anisotropy superimposed to the biaxial anisotropy of the underlying Fe/Ni (100) superlattice and increases the mL(parallel)/mspin ratio by 50% with respect to Fe/Ni films grown without graphene, as determined by XMCD. The films show chemical ordering plane-by-plane and a strongly distorted face-centered tetragonal (fct) structure, as determined by synchrotron-based X-ray diffraction. The gr-Fe charge transfer and the electronic hybridization of the respective π and d bands at the interface are responsible for the observed magnetic phenomena.

Nano Letters
IMDEA Nanoscience (ES), Universidad Nebrija (ES), Donostia International Physics Center (ES), Universidad Autónoma de Madrid (ES)
Openalex Percentile: Top 26%
Graphene research and applications
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Graphene-Enhanced Magnetic Anisotropies in Fe/Ni (100) Superlattices with Monolayer Periodicity — Rodolfo Miranda, Paolo Perna, et al. · Nano Letters (2026) | TGRS Research Map | TGRS