Sidorkin Alexander, Nesterenko Lolita, Gagou Yaovi, Saint-Gregoire Pierre, Vorotnikov Eugeniy, Popravko Nadezhda
Physical Department, Voronezh State University, University sq. 1, 394018 Voronezh, Russia.
Laboratoire de Physique de la Matière Condensée, Universite de Picardie Jules Verne, 80039 Amiens CEDEX, France.
Materials (Basel). 2018 Aug 14;11(8):1436. doi: 10.3390/ma11081436.
This article is devoted to the investigation of the dielectric and repolarization properties of barium zirconate and barium titanate BaZrO₃/BaTiO₃ superlattices with a period of 13.322 nm on a monocrystal magnesium oxide (MgO) substrate. Synthesized superlattices demonstrated a ferroelectric phase transition at a temperature of approximately 393 °C, which is far higher than the Curie temperature of BaTiO₃ thin films and bulk samples. The dielectric permittivity of the superlattice reached more than 10⁴ at maximum. As the electric field frequency increased, the dielectric constant of the studied superlattice decreased over the entire study temperature range, but position of the maximum dielectric constant remained the same with changing frequency. The temperature dependence of the inverse dielectric permittivity 1/ε(T) for the studied samples shows that, in the investigated superlattice, both Curie⁻Weiss law and the law of "two" were followed. Additionally, the ε(T) dependences showed practically no temperature hysteresis with heating and cooling. Samples of synthesized superlattices had a relatively small internal bias field, which was directed from the superlattice towards the substrate.
本文致力于研究在单晶氧化镁(MgO)衬底上周期为13.322 nm的锆酸钡和钛酸钡BaZrO₃/BaTiO₃超晶格的介电和复极化特性。合成的超晶格在约393 °C的温度下表现出铁电相变,这远高于BaTiO₃薄膜和块状样品的居里温度。超晶格的介电常数最大值达到10⁴以上。随着电场频率增加,在所研究的整个温度范围内,超晶格的介电常数降低,但最大介电常数的位置随频率变化保持不变。所研究样品的逆介电常数1/ε(T)的温度依赖性表明,在所研究的超晶格中,既遵循居里 - 外斯定律,也遵循“双”定律。此外,ε(T)依赖性在加热和冷却时几乎没有温度滞后现象。合成超晶格的样品具有相对较小的内偏置场,该场从超晶格指向衬底。