From first- To second-order phase transitions in hybrid improper ferroelectrics through entropy stabilization

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Abstract

Hybrid improper ferroelectrics (HIFs) have been studied intensively over the past few years to gain an understanding of their temperature-induced phase transitions and ferroelectric switching pathways. Here we report a switching from a first- to a second-order phase transition pathway for HIFs Ca3-xSrxTi2O7, which is driven by the differing entropies of the phases that we identify as being associated with the dynamic motion of octahedral tilts and rotations. A greater understanding of the transition pathways in this class of layered perovskites, which host many physical properties that are coupled to specific symmetries and octahedral rotation and tilt distortions - such as superconductivity, negative thermal expansion, fast ion conductivity, ferroelectricity, among others - is a crucial step in creating novel functional materials by design.

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Pomiro, F., Ablitt, C., Bristowe, N. C., Mostofi, A. A., Won, C., Cheong, S. W., & Senn, M. S. (2020). From first- To second-order phase transitions in hybrid improper ferroelectrics through entropy stabilization. Physical Review B, 102(1). https://doi.org/10.1103/PhysRevB.102.014101

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