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首页> 外文期刊>Journal of the European Ceramic Society >Exciting low-field dielectric tunability in clamshell
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Exciting low-field dielectric tunability in clamshell

机译:ClamShell中令人兴奋的低场介质可调性

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摘要

The dielectric properties and dielectric tunability of the nacreous part of the clamshell were investigated. Microstructure characterizations reveal that the sample shows a “brick-and-mortar” structure composed of aragonitic CaCO3regions and bimacromolecule regions separated by transition regions consisting of crystalline particles surrounded by amorphous area. A ferroelectric-like dielectric tunability behavior was observed and an exciting dielectric tunability of 79% was achieved at 400?°C and 500?Hz within a small field increment of 34?V/cm. Such a low field scale for dielectric tunability near 80% rivals all known tunable dielectrics. Both thermally and electrically activated hopping motion of oxygen vacancies in the multilayered structures of the clamshell leads to the exciting low-field dielectric tunability. Our results dramatically expand the dielectric tunable materials and offer a facile way to achieve superior dielectric tunability in bio-multilayered materials.
机译:研究了蛤壳的乳蛋白部分的介电性能和介电可调性。 微观结构特征揭示了样品表明由由由无定形区域包围的结晶颗粒组成的过渡区域分离的基亚甲基CaCo3regions和Bimromolecule区组成的“砂砾”结构。 观察到铁电介质可调性行为,在400Ω℃和500℃下实现79%的激发介电可调性,在34Ω·v / cm的小场增量内。 这种低现场规模用于近80%的介电可调性,竞争对手所有已知的可调谐电介质。 在蛤壳的多层结构中的氧空位的热和电激活跳跃运动都导致激发的低场介电可调性。 我们的结果显着扩展了介电可调材料,并提供了在生物多层材料中实现卓越的介电可调性的便利方式。

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  • 来源
  • 作者单位

    Center of Modern Experimental Technology Anhui University;

    Center of Modern Experimental Technology Anhui University;

    Laboratory of Dielectric Functional Materials School of Physics &

    Material Science Anhui University;

    Laboratory of Dielectric Functional Materials School of Physics &

    Material Science Anhui University;

    Laboratory of Dielectric Functional Materials School of Physics &

    Material Science Anhui University;

    Laboratory of Dielectric Functional Materials School of Physics &

    Material Science Anhui University;

    Laboratory of Dielectric Functional Materials School of Physics &

    Material Science Anhui University;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 陶瓷工业 ;
  • 关键词

    Dielectric tunability; Clamshell; Oxygen vacancy;

    机译:介电可调性;蛤壳;氧气空缺;

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