Organic-Inorganic Rare-Earth Double Perovskite Ferroelectric with Large Piezoelectric Response and Ferroelasticity for Flexible Composite Energy Harvesters

SMALL(2024)

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摘要
Hybrid organic-inorganic perovskite (HOIP) ferroelectric materials have great potential for developing self-powered electronic transducers owing to their impressive piezoelectric performance, structural tunability and low processing temperatures. Nevertheless, their inherent brittle and low elastic moduli limit their application in electromechanical conversion. Integration of HOIP ferroelectrics and soft polymers is a promising solution. In this work, a hybrid organic-inorganic rare-earth double perovskite ferroelectric, [RM3HQ]2RbPr(NO3)6 (RM3HQ = (R)-N-methyl-3-hydroxylquinuclidinium) is presented, which possesses multiaxial nature, ferroelasticity and satisfactory piezoelectric properties, including piezoelectric charge coefficient (d33) of 102.3 pC N-1 and piezoelectric voltage coefficient (g33) of 680 x 10-3 V m N-1. The piezoelectric generators (PEG) based on composite films of [RM3HQ]2RbPr(NO3)6@polyurethane (PU) can generate an open-circuit voltage (Voc) of 30 V and short-circuit current (Isc) of 18 mu A, representing one of the state-of-the-art PEGs to date. This work has promoted the exploration of new HOIP ferroelectrics and their development of applications in electromechanical conversion devices. Flexible composite energy harvesters are prepared by dispersing hybrid organic-inorganic rare-earth double perovskite multiaxial ferroelectric micro-scale particles with large piezoelectric response (d33 = 102.3 pC N-1 and g33 = 680 x 10-3 V m N-1) and ferroelasticity into polymer polyurethane (PU), which exhibit excellent mechanical energy harvesting ability, including Isc of 0.26 mu A, Voc of 2.67 V and lighting three LEDs.image
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关键词
energy harvesting,hybrid double perovskites,molecular ferroelectrics,piezoelectricity
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