On the basis of first-principles calculations, we design a novel Cr-based metal-organic framework to be both multiferroic and magnetoelectric. The compound shows a "double-hybrid" nature: it is a hybrid organic-inorganic compound and it shows hybrid improper ferroelectricity. Here, the coupling of non-polar distortions, such as Jahn-Teller pseudo-rotations and tilting, pave the way to a polar behavior, with the coupling being realized through hydrogen bonds.

Stroppa, A., Barone, P., Jain, P., Perez-Mato, J., Picozzi, S. (2013). Hybrid Improper Ferroelectricity in a Multiferroic and Magnetoelectric Metal-Organic Framework. ADVANCED MATERIALS, 25(16), 2284-2290 [10.1002/adma.201204738].

Hybrid Improper Ferroelectricity in a Multiferroic and Magnetoelectric Metal-Organic Framework

Picozzi S
2013

Abstract

On the basis of first-principles calculations, we design a novel Cr-based metal-organic framework to be both multiferroic and magnetoelectric. The compound shows a "double-hybrid" nature: it is a hybrid organic-inorganic compound and it shows hybrid improper ferroelectricity. Here, the coupling of non-polar distortions, such as Jahn-Teller pseudo-rotations and tilting, pave the way to a polar behavior, with the coupling being realized through hydrogen bonds.
Articolo in rivista - Articolo scientifico
hybrid improper ferroelectrics; jahn-teller; magnetoelectrics; metal-organic frameworks; multiferroics; pseudo-rotation;
English
2013
25
16
2284
2290
none
Stroppa, A., Barone, P., Jain, P., Perez-Mato, J., Picozzi, S. (2013). Hybrid Improper Ferroelectricity in a Multiferroic and Magnetoelectric Metal-Organic Framework. ADVANCED MATERIALS, 25(16), 2284-2290 [10.1002/adma.201204738].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/545410
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