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An Above-Room-Temperature Molecular Ferroelectric: [Cyclopentylammonium]<sub>2</sub>CdBr<sub>4</sub>

Chaoran Huang, Xuzhong Luo, Wei‐Qiang Liao, Yuan‐Yuan Tang, Ren‐Gen Xiong

Year
2019
Citations
58

Abstract

Molecular ferroelectrics as alternatives to the conventional inorganic ferroelectrics have been greatly developed in past decades; many of these have been discovered and designed through various chemical means due to their structural adjustability. However, it is still a huge challenge to obtain high (above room temperature) Curie temperature (Tc) molecular ferroelectrics to meet the application requirements. Here, we present a new organic–inorganic hybrid molecular ferroelectric, [cyclopentylammonium]2CdBr4 (1), showing a moderate above-room-temperature Tc of 340.3 K. The mechanism of the ferroelectric phase transition from Pnam to Pna21 in 1 is ascribed to the order–disorder transition of both the organic cations and inorganic anions, affording a spontaneous polarization of 0.57 μC/cm2 for the ferroelectric phase. Using piezoresponse force microscopy (PFM), we clearly observed the antiparallel 180° stripe domains and realized the polarization switching, unambiguously establishing the existence of room-temperature ferroelectricity in the thin film. These attributes make it attractive for use in flexible devices, soft robotics, biomedical devices, and other applications.

Keywords

ChemistryFerroelectricityCrystallographyNanotechnologyOptoelectronicsDielectric

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