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基于钛酸钡和镍锌铁氧体材料的多铁性复合材料的磁电性能

Magnetoelectric Properties of Multiferroic Composites Based on BaTiO and Nickel-Zinc Ferrite Material.

作者信息

Bochenek Dariusz, Niemiec Przemysław, Brzezińska Dagmara, Dercz Grzegorz, Ziółkowski Grzegorz, Jartych Elżbieta, Grotel Jakub, Suchanicz Jan

机构信息

Institute of Materials Engineering, Faculty of Science and Technology, University of Silesia in Katowice, 75 Pułku Piechoty 1a, 41-500 Chorzów, Poland.

Department of Electronics and Information Technology, Lublin University of Technology, 38A Nadbystrzycka Str., 20-618 Lublin, Poland.

出版信息

Materials (Basel). 2024 Apr 19;17(8):1905. doi: 10.3390/ma17081905.

Abstract

The purpose of the present study was to learn the morphological, structural, ferroelectric, dielectric, electromechanical, magnetoelectric, and magnetic properties, and DC conductivity of BaTiO-NiZnFeO (BT-F) multiferroic composites compacted via the free sintering method. The influence of the ferrite content in ceramic composite materials on the functional properties is investigated and discussed. X-ray diffraction studies confirmed the presence of two main phases of the composite, with strong reflections originating from BaTiO and weak peaks originating from nickel-zinc ferrite. BT-F ceramic composites have been shown to exhibit multiferroism at room temperature. All studied compositions have high permittivity values and low dielectric loss, while the ferroelectric properties of the BT component are maintained at a high level. On the other hand, magnetic properties depend on the amount of the ferrite phase and are the strongest for the composition with 15 wt.% of F (magnetization at RT is 4.12 emu/g). The magnetoelectric coupling between BT and F phases confirmed by the lock-in technique is the largest for 15 wt.% ferrite. In the present work, the process conditions of the free sintering method for obtaining BT-F multiferroic composite with good electrical and magnetic properties (in one material) were optimized. An improved set of multifunctional properties allows the expansion of the possibilities of using multiferroic composites in microelectronics.

摘要

本研究的目的是了解通过自由烧结法压实的BaTiO-NiZnFeO(BT-F)多铁性复合材料的形态、结构、铁电、介电、机电、磁电和磁性性能以及直流电导率。研究并讨论了陶瓷复合材料中铁氧体含量对功能特性的影响。X射线衍射研究证实了复合材料中存在两个主要相,强反射源于BaTiO,弱峰源于镍锌铁氧体。BT-F陶瓷复合材料已被证明在室温下表现出多铁性。所有研究的成分都具有高介电常数和低介电损耗,而BT组分的铁电性能保持在较高水平。另一方面,磁性取决于铁氧体相的含量,对于含15 wt.% F的成分磁性最强(室温下的磁化强度为4.12 emu/g)。通过锁定技术证实,BT和F相之间的磁电耦合对于15 wt.% 的铁氧体最大。在本工作中,优化了通过自由烧结法获得具有良好电学和磁学性能(在一种材料中)的BT-F多铁性复合材料的工艺条件。一组改进的多功能特性扩大了多铁性复合材料在微电子领域的应用可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9649/11051823/fb0f3daf1085/materials-17-01905-g001.jpg

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