JOURNAL ARTICLE

Room‐Temperature Macroscopic Ferromagnetism in Multilayered Graphene Oxide

Di ZhangBo GaoSong XuChunyao NiuQun Xu

Year: 2024 Journal:   Advanced Physics Research Vol: 3 (5)   Publisher: Wiley

Abstract

Abstract Graphene has a long spin lifetime and hyperfine interactions, favoring its potential application as spintronics. Despite the recent discoveries of spin‐containing graphene materials, graphene‐based materials with room‐temperature macroscopic ferromagnetism are extremely rare. In this article, room‐temperature ferromagnetic amorphous graphene oxide (GO) is synthesized by introducing abundant oxygen‐containing functional groups and C defects into single‐layered graphene, followed by a self‐assembly process under supercritical CO 2 (SC CO 2 ). Such amorphous GO exhibits the highest saturation magnetization (1.71 emu g −1 ) and remanent magnetization (0.251 emu g −1 ) compared to the rest of metal‐free graphene‐based materials at room temperature. Experimental and theoretical investigations attribute such strong ferromagnetism to the bridging of the adjacent graphene layers though the out‐of‐plane oxygen‐containing groups, which leads to asymmetric lattices with large net magnetic moments.

Keywords:
Graphene Ferromagnetism Materials science Spintronics Condensed matter physics Oxide Amorphous solid Magnetization Graphene nanoribbons Nanotechnology Chemistry Magnetic field Crystallography Metallurgy Physics

Metrics

9
Cited By
1.52
FWCI (Field Weighted Citation Impact)
51
Refs
0.81
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Graphene research and applications
Physical Sciences →  Materials Science →  Materials Chemistry
Supercapacitor Materials and Fabrication
Physical Sciences →  Materials Science →  Electronic, Optical and Magnetic Materials
Diamond and Carbon-based Materials Research
Physical Sciences →  Materials Science →  Materials Chemistry

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