Magnetoelectric magnetic field sensors: A review

M Bichurin, R Petrov, O Sokolov, V Leontiev, V Kuts… - Sensors, 2021 - mdpi.com
One of the new materials that have recently attracted wide attention of researchers are
magnetoelectric (ME) composites. Great interest in these materials is due to their properties …

Progress in multiferroic and magnetoelectric materials: applications, opportunities and challenges

M Kumar, S Shankar, A Kumar, A Anshul… - Journal of Materials …, 2020 - Springer
The development of electronic technology is flexibly related to the progresses made in
material science. Functional materials out of the broad class of materials available today …

Boosting magnetoelectric effect in polymer-based nanocomposites

A Omelyanchik, V Antipova, C Gritsenko… - Nanomaterials, 2021 - mdpi.com
Polymer-based magnetoelectric composite materials have attracted a lot of attention due to
their high potential in various types of applications as magnetic field sensors, energy …

State of the Art in Crystallization of LiNbO3 and Their Applications

K Chen, Y Zhu, Z Liu, D Xue - Molecules, 2021 - mdpi.com
Lithium niobate (LiNbO3) crystals are important dielectric and ferroelectric materials, which
are widely used in acoustics, optic, and optoelectrical devices. The physical and chemical …

Magnetoelectric metglas/bidomain y+ 140-cut lithium niobate composite for sensing fT magnetic fields

AV Turutin, JV Vidal, IV Kubasov, AM Kislyuk… - Applied Physics …, 2018 - pubs.aip.org
We investigated the magnetoelectric properties of a new laminate composite material based
on y+ 140-cut congruent lithium niobate piezoelectric plates with an antiparallel polarized …

Physics of Composites for Low-Frequency Magnetoelectric Devices

M Bichurin, O Sokolov, S Ivanov, V Leontiev, D Petrov… - Sensors, 2022 - mdpi.com
The article discusses the physical foundations of the application of the linear
magnetoelectric (ME) effect in composites for devices in the low-frequency range, including …

Highly sensitive magnetic field sensor based on a metglas/bidomain lithium niobate composite shaped in form of a tuning fork

AV Turutin, JV Vidal, IV Kubasov, AM Kislyuk… - Journal of Magnetism …, 2019 - Elsevier
This study reports the creation of a highly sensitive, low-frequency magnetic field sensor
based on a composite multiferroic consisting of a bidomain lithium niobate/metglas laminate …

Dual Vibration and Magnetic Energy Harvesting With Bidomain LiNbO3-Based Composite

JV Vidal, AV Turutin, IV Kubasov… - IEEE Transactions …, 2020 - ieeexplore.ieee.org
With the recent thriving of low-power electronic microdevices and sensors, the development
of components capable of scavenging environmental energy has become imperative. In this …

Bidomain ferroelectric crystals: properties and prospects of application

IV Kubasov, AM Kislyuk, AV Turutin… - Russian …, 2021 - Springer
Lithium niobate (LiNbO3) and lithium tantalate (LiTaO3) are among the most important and
most widely used materials of coherent and nonlinear optics, as well as acoustics. The strict …

Magnetoelectric MEMS Magnetic Field Sensor Based on a Laminated Heterostructure of Bidomain Lithium Niobate and Metglas

AV Turutin, EA Skryleva, IV Kubasov, FO Milovich… - Materials, 2023 - mdpi.com
Non-contact mapping of magnetic fields produced by the human heart muscle requires the
application of arrays of miniature and highly sensitive magnetic field sensors. In this article …