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Ferroelectric properties of composites containing BaTiO_3 nanoparticles of various sizes

机译:包含各种尺寸的BaTiO_3纳米颗粒的复合材料的铁电性能

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摘要

Size effects, including the occurrence of superparaelectric phases associated with small scale, are a significant research topic for ferroelectrics. Relevant phenomena have been explored in detail, e.g. for homogeneous, thin ferroelectric films, but the related effects associated with nanoparticles are usually only inferred from their structural properties. In contrast, this paper describes all the steps and concepts necessary for the direct characterization and quantitative assessment of the ferroelectric properties of assynthesized and asreceived nanoparticles. The method adopted uses electrical polarization measurements on polymer matrix composites containing ferroelectric nanoparticles. It is applied to ten different BaTiO_3 particle types covering a size range from 10 nm to 0:8 μm. The influence of variations of particle characteristics such as tetragonality and dielectric constant is considered based on measurements of these properties. For composites containing different particle types a clearly differing polarization behaviour is found. For decreasing particle size, increasing electric field is required to achieve a given level of polarization. The size dependence of a measure related to the coercive field revealed by this work is qualitatively in line with the state of the knowledge for ferroelectrics having small dimensions. For the first time, such results and size effects are described based on data from experiments on collections of actual nanoparticles.
机译:尺寸效应,包括与小尺寸相关的超顺电相的出现,是铁电学的重要研究课题。相关现象已被详细探讨,例如对于均匀的铁电薄膜来说,通常只能从其结构特性中推断出与纳米颗粒有关的相关效应。相反,本文描述了直接表征和定量评估合成和接收的纳米粒子的铁电性能所需的所有步骤和概念。所采用的方法对包含铁电纳米颗粒的聚合物基质复合材料进行了极化测量。它适用于十种不同的BaTiO_3颗粒类型,覆盖范围从10 nm到0:8μm。基于这些特性的测量,考虑了诸如四方性和介电常数之类的粒子特性变化的影响。对于包含不同颗粒类型的复合材料,发现了明显不同的极化行为。为了减小粒度,需要增加电场以实现给定的极化水平。这项工作揭示的与矫顽场有关的量度的大小依赖性在质量上与小尺寸铁电体的知识状态一致。首次基于来自实际纳米粒子集合的实验数据描述了这种结果和尺寸效应。

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