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Entangled core/shell magnetic structure driven by surface magnetic symmetry-breaking in Cr2O3nanoparticles

Abstract: Bulk Cr2O3 is an antiferromagnetic (AFM) oxide that exhibits the magnetoelectric effect at room temperature, with neither spontaneous magnetization nor net electric polarization. These physical properties stem from a subtle competition between exchange and crystal field interactions. In this article, we exploit the symmetry breaking at the surface of Cr2O3 nanoparticles for unbalancing this delicate physical equilibrium. The emerging weak ferromagnetic signal we observe persists up to near room temperature (E 270 K) at which the antiferromagnetic order disappears. In addition, an exchange-bias effect, that rapidly decreases on heating from low temperature up to 30 K, is resistant to thermal disorder above 200 K. Our findings point to the possible formation of an entangled core/shell magnetic structure, where pinned uncompensated spins at the shell are randomly distributed in a low-temperature spin-glass ordering, with low net magnetic moment and an ordering temperature governed by the AFM Ne´el temperature.

 Authorship: Rinaldi-Montes N., Gorria P., Fuertes A.B., Martínez-Blanco D., Amghouz Z., Puente-Orench I., Olivi L., Herrero-Martín J., Fernandez-Garcia M.P., Alonso J., Phan M.H., Srikanth H., Marti X., Blanco J.A.,

 Fuente: J. Mater. Chem. C, 2022, 10, 1798

Publisher: Royal Society of Chemistry

 Publication date: 07/02/2022

No. of pages: 10

Publication type: Article

 DOI: 10.1039/d1tc04947j

ISSN: 2050-7526,2050-7534

 Spanish project: RTI2018-094683-B-C52

Publication Url: https://doi.org/10.1039/d1tc04947j

Authorship

NATALIA RINALDI-MONTES

PEDRO GORRIA

ANTONIO B. FUERTES

DAVID MARTÍNEZ-BLANCO

ZAKARIAE AMGHOUZ

INÉS PUENTE-ORENCH

LUCA OLIVI

JAVIER HERRERO-MARTÍN

MARIA PAZ FERNANDEZ-GARCIA

MANH-HUONG PHAN

XAVI MARTI

JESÚS A. BLANCO