Abstract
Superlattice-structured epitaxial thin films composed of Mn(5%)-doped BiFeO3 and Ba-TiO3 with a total thickness of 600 perovskite (ABO3) unit cells were grown on single-crystal SrTiO3 substrates by pulsed laser deposition, and their polarization and dielectric properties were investi-gated. When the layers of Mn-BiFeO3 and BaTiO3 have over 25 ABO3 unit cells (N), the superlattice can be regarded as a simple series connection of their individual capacitors. The superlattices with an N of 5 or less behave as a unified ferroelectric, where the BaTiO3 and Mn-BiFeO3 layers are struc-turally and electronically coupled. Density functional theory calculations can explain the behavior of spontaneous polarization for the superlattices in this thin regime. We propose that a superlattice formation comprising two types of perovskite layers with different crystal symmetries opens a path to novel ferroelectrics that cannot be obtained in a solid solution system.
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Noguchi, Y., & Matsuo, H. (2021). Polarization and dielectric properties of bifeo3-batio3 superlattice-structured ferroelectric films. Nanomaterials, 11(7). https://doi.org/10.3390/nano11071857
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