arXiv Open Access 2025

Carbon magneto-ionics: Control of magnetism through voltage-driven carbon transport

Zhengwei Tan Zheng Ma Simone Privitera Maciej Oskar Liedke Eric Hirschmann +13 lainnya
Lihat Sumber

Abstrak

Control of magnetism through voltage-driven ionic processes (i.e., magneto-ionics) holds potential for next-generation memories and computing. This stems from its non-volatility, flexibility in adjusting the magnitude and speed of magnetic modulation, and energy efficiency. Since magneto-ionics depends on factors like ionic radius and electronegativity, identifying alternative mobile ions is crucial to embrace new phenomena and applications. Here, the feasibility of C as a prospective magneto-ionic ion is investigated in a Fe-C system by electrolyte gating. In contrast to most magneto-ionic systems, Fe-C presents a dual-ion mechanism: Fe and C act as cation and anion, respectively, moving uniformly in opposite directions under an applied electric field. This leads to a 7-fold increase in saturation magnetization with magneto-ionic rates larger than 1 emu cm-3 s-1, and a 25-fold increase in coercivity. Since carbides exhibit minimal cytotoxicity, this introduces a biocompatible dimension to magneto-ionics, paving the way for the convergence of spintronics and biotechnology.

Topik & Kata Kunci

Penulis (18)

Z

Zhengwei Tan

Z

Zheng Ma

S

Simone Privitera

M

Maciej Oskar Liedke

E

Eric Hirschmann

A

Andreas Wagner

J

José L. Costa-Krämer

A

Alberto Quintana

A

Aina Garcia-Tort

J

Javier Herrero-Martín

H

Huan Tan

I

Ignasi Fina

F

Florencio Sánchez

A

Aitor F. Lopeandia

J

Josep Nogués

E

Eva Pellicer

J

Jordi Sort

E

Enric Menéndez

Format Sitasi

Tan, Z., Ma, Z., Privitera, S., Liedke, M.O., Hirschmann, E., Wagner, A. et al. (2025). Carbon magneto-ionics: Control of magnetism through voltage-driven carbon transport. https://arxiv.org/abs/2503.11337

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Tahun Terbit
2025
Bahasa
en
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arXiv
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Open Access ✓