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Ferro- and ferrielectricity and negative piezoelectricity in thioamide-based supramolecular organic discotics

Abstract: Amide-based discotic supramolecular organic materials are of interest for fundamental understanding of cooperative self-assembly and collective dipole switching mechanisms as well as for practically relevant ferroelectric and piezoelectric properties. Here, we show how replacing amides (dipole moment of -3.5 D) with thioamides (-5.1 D) as dipolar moieties in the archetypal C3-symmetric discotic molecule BTA leads to ferroelectric materials with a higher remnant polarization and lower coercive field. The thioamide-based materials also demonstrate a rare negative piezoelectricity and a previously predicted, yet never experimentally observed, polarization reversal via asymmetric intermediate states, that is, ferrielectric switching.

 Autoría: Urbanaviciute I., Garcia-Iglesias M., Gorbunov A., Meijer E.W., Kemerink M.,

 Fuente: Physical Chemistry Chemical Physics, 2023, 25(25), 16930-16937

 Editorial: Royal Society of Chemistry

 Fecha de publicación: 07/07/2023

 Nº de páginas: 8

 Tipo de publicación: Artículo de Revista

 DOI: 10.1039/d3cp00982c

 ISSN: 1463-9076,1463-9084

 Proyecto español: PID2021-125429NA-I00

 Url de la publicación: https://doi.org/10.1039/D3CP00982C

Autoría

URBANAVICIUTE, INDRE

GORBUNOV, ANDREY

MEIJER, E.W.

KEMERINK, MARTIJN