Magnetoelectric effect in three-layered gradient LiNbO3/Ni/Metglas composites

Author:

Kuts Viktor V.ORCID,Turutin Andrei V.ORCID,Kislyuk Aleksandr M.ORCID,Kubasov Ilya V.ORCID,Zhukov Roman N.ORCID,Temirov Alexander A.ORCID,Malinkovich Mikhail D.ORCID,Sobolev Nikolai A.ORCID,Parkhomenko Yuri N.ORCID

Abstract

The effect of annealing in a permanent magnetic field on the magnitude of magnetoelectric coefficient in three-layered gradient magnetoelectric LiNbO3/Ni/Metglas composites has been studied. A method of electrochemical nickel deposition on bidomain lithium niobate crystals has been demonstrated. We show that the optimum annealing temperature in a permanent magnetic field for the generation of the highest remanence in the Ni layer is 350 °C. The specimens annealed at this temperature exhibit the greatest shift of the magnetoelectric coefficient dependence on external magnetic field magnitude relative to the value Hdc = 0. The quasi-static magnetoelectric coefficient in the absence of an external magnetic field proves to be 1.2 V/(cm ∙ Oe). The highest magnetoelectric coefficient that has been achieved at a bending structure resonance frequency of 278 Hz proves to be 199.3 V/(cm ∙ Oe) without application of an external magnetic field. The experimental magnetoelectric coefficient figures for three-layered gradient LiNbO3/Ni/Metglas composites are not inferior to those for most magnetoelectric composite materials reported earlier.

Publisher

Pensoft Publishers

Subject

Automotive Engineering

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Detection of inhomogeneous magnetic fields by magnetoelectric composite;Izvestiya Vysshikh Uchebnykh Zavedenii. Materialy Elektronnoi Tekhniki = Materials of Electronics Engineering;2023-11-17

2. Detection of inhomogeneous magnetic fields using magnetoelectric composites;Modern Electronic Materials;2023-10-11

3. Tunable self-biased magnetoelectric effect in magnetization-graded magnetoelectric composites;Journal of Alloys and Compounds;2023-09

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