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Large barocaloric effects in two novel ferroelectric molecular plastic crystals.

Authors :
Salvatori, Alejandro
Aguilà, David
Aromí, Guillem
Mañosa, Lluís
Planes, Antoni
Lloveras, Pol
Pardo, Luis Carlos
Appel, Markus
Nataf, Guillaume F.
Giovannelli, Fabien
Barrio, Maria
Tamarit, Josep Lluís
Romanini, Michela
Source :
Journal of Materials Chemistry A; 6/21/2023, Vol. 11 Issue 23, p12140-12150, 11p
Publication Year :
2023

Abstract

Materials undergoing pressure-driven solid–solid phase transformations can be a valuable alternative for eco-friendly refrigeration, heat pumping and waste heat recovery based on the barocaloric effect. Ferroelectric compounds and plastic crystals have shown their potential in these fields because they may undergo large changes in volume and entropy at the transition, which underpin a large pressure-induced caloric response. Recently, a new class of materials combining a high-temperature plastic phase with a low-temperature ferroelectric phase has been reported. Here we investigate the barocaloric properties of two such "ferroelectric plastic crystals", namely quinuclidinium perrhenate (C<subscript>7</subscript>H<subscript>14</subscript>NReO<subscript>4</subscript>) and tetramethylammonium tetrachloroferrate (N(CH<subscript>3</subscript>)<subscript>4</subscript>[FeCl<subscript>4</subscript>]). The reversible adiabatic temperature changes under pressure of around 100 MPa (8 K for C<subscript>7</subscript>H<subscript>14</subscript>NReO<subscript>4</subscript> and 21 K for N(CH<subscript>3</subscript>)<subscript>4</subscript>[FeCl<subscript>4</subscript>]) reach values comparable to other plastic crystals and other materials, which demonstrates a good prospect for this novel barocaloric materials family. The dynamics of the plastic phase for C<subscript>7</subscript>H<subscript>14</subscript>NReO<subscript>4</subscript> has been investigated by means of quasielastic neutron scattering. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20507488
Volume :
11
Issue :
23
Database :
Complementary Index
Journal :
Journal of Materials Chemistry A
Publication Type :
Academic Journal
Accession number :
164283550
Full Text :
https://doi.org/10.1039/d2ta10033a