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Ferroelectricity and multiferroicity in anti-Ruddlesden-Popper structures.


ABSTRACT: Combining ferroelectricity with other properties such as visible light absorption or long-range magnetic order requires the discovery of new families of ferroelectric materials. Here, through the analysis of a high-throughput database of phonon band structures, we identify a structural family of anti-Ruddlesden-Popper phases [Formula: see text]O (A=Ca, Sr, Ba, Eu, X=Sb, P, As, Bi) showing ferroelectric and antiferroelectric behaviors. The discovered ferroelectrics belong to the new class of hyperferroelectrics that polarize even under open-circuit boundary conditions. The polar distortion involves the movement of O anions against apical A cations and is driven by geometric effects resulting from internal chemical strains. Within this structural family, we show that [Formula: see text]O combines coupled ferromagnetic and ferroelectric order at the same atomic site, a very rare occurrence in materials physics.

SUBMITTER: Markov M 

PROVIDER: S-EPMC8092399 | biostudies-literature | 2021 Apr

REPOSITORIES: biostudies-literature

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Ferroelectricity and multiferroicity in anti-Ruddlesden-Popper structures.

Markov Maxime M   Alaerts Louis L   Miranda Henrique Pereira Coutada HPC   Petretto Guido G   Chen Wei W   George Janine J   Bousquet Eric E   Ghosez Philippe P   Rignanese Gian-Marco GM   Hautier Geoffroy G  

Proceedings of the National Academy of Sciences of the United States of America 20210401 17


Combining ferroelectricity with other properties such as visible light absorption or long-range magnetic order requires the discovery of new families of ferroelectric materials. Here, through the analysis of a high-throughput database of phonon band structures, we identify a structural family of anti-Ruddlesden-Popper phases [Formula: see text]O (A=Ca, Sr, Ba, Eu, X=Sb, P, As, Bi) showing ferroelectric and antiferroelectric behaviors. The discovered ferroelectrics belong to the new class of hype  ...[more]

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