Review of magnetoelectric sensors

J Gao, Z Jiang, S Zhang, Z Mao, Y Shen, Z Chu - Actuators, 2021 - mdpi.com
Multiferroic magnetoelectric (ME) materials with the capability of coupling magnetization and
electric polarization have been providing diverse routes towards functional devices and thus …

Magnetoelectric devices based on magnetoelectric bulk composites

Q Mao, J Wu, Z Hu, Y Xu, Y Du, Y Hao… - Journal of Materials …, 2021 - pubs.rsc.org
Magnetoelectric (ME) composites of bulk structures show strong ME coupling performance,
and thus magnetoelectric bulk composites and their related devices have been attracting …

Additively Manufactured Flexible Liquid Metal–Coated Self‐Powered Magnetoelectric Sensors with High Design Freedom

H Wu, R Luo, Z Li, Y Tian, J Yuan, B Su… - Advanced …, 2024 - Wiley Online Library
Although additive manufacturing enables controllable structural design and customized
performance for magnetoelectric sensors, their design and fabrication still require careful …

A multiferroic module for biomechanical energy harvesting

H Wu, A Tatarenko, MI Bichurin, Y Wang - Nano Energy, 2021 - Elsevier
The growth and ubiquitous use of mobile electronics and the Internet of Things is driving a
rapid surge in research into self-powered personal electronic devices and sensor networks …

Accurate buckling analysis of magneto-electro-elastic cylindrical shells subject to hygro-thermal environments

Y Ni, J Sun, J Zhang, Z Tong, Z Zhou, X Xu - Applied Mathematical …, 2023 - Elsevier
An accurate buckling model for the magneto-electro-elastic (MEE) composite cylindrical
shell under hygro-thermo-magneto-electro-elastic (HTMEE) loads is proposed by …

Alternatives to Fluoropolymers for Motion‐Based Energy Harvesting: Perspectives on Piezoelectricity, Triboelectricity, Ferroelectrets, and Flexoelectricity

PC Sherrell, A Šutka, M Timusk, A Šutka - Small, 2024 - Wiley Online Library
Fluoropolymers, including polytetrafluoroethylene (PTFE, Teflon), polyvinylidene difluoride
(PVDF), and fluorine kautschuk materials (FKMs, Viton) are critical polymers for applications …

Self‐biased magnetoelectric composite for energy harvesting

S Liu, S Liao, K Wei, L Deng, L Zhao, H Zou - Battery Energy, 2023 - Wiley Online Library
The wireless sensor network energy supply technology for the Internet of things has
progressed substantially, but attempts to provide sustainable and environmentally friendly …

Self-powered energy-harvesting magnetic field sensor

L Hu, H Wu, Q Zhang, H You, J Jiao, H Luo… - Applied Physics …, 2022 - pubs.aip.org
Driven largely by the recent growth in the Internet of Things, there is a rapid surge in the
demand for low-powered or self-powered sensors and devices. Here, we report a fully self …

A quasi-zero adjustable stiffness magnetoelectric generator of an inverted pendulum for ultra-low frequency blue energy harvesting

B Zhang, H Guo, J Ding, J Luo, M Wang, Y Sun, H Pu - Nano Energy, 2023 - Elsevier
As a common renewable energy source of the ocean, wave energy has the advantages of
high energy density and wide distribution, but it is also characterized by time variability and …

Reduced resonance frequency and enhanced coupling coefficient in fishtailing magnetoelectric resonator

S Min, R Wang, Y Wang, K Song, Z Chu - Applied Physics Letters, 2023 - pubs.aip.org
Reducing the resonance frequency of the first-order longitudinal vibration mode for a bulk
magnetoelectric (ME) resonator has been a challenge for very low frequency (VLF) magnetic …