Optimizing energy storage and magnetoelectric performance
The limitation of this work is that not much higher value of energy storage density is achieved. Thus, the prepared core–shell composite of NCFO-BTO can be suitable candidate
The multifunctional properties of magnetoelectric (ME) materials could enable the demonstration of novel electronic devices for energy harvesting and magnetic sensing applications.
Owing to the capability of characterizing spin properties and high compatibility with the energy storage field, magnetic measurements are proven to be powerful tools for contributing to the progress of energy storage.
Besides the current transformer, another popular system for magnetic field harvesting is the electric field based energy harvester.
In the search for suitable energy sources that are also available in most of the locations where the WSNs of IoT will be used, magnetic fields have been identified as a potential resource, compared with sunlight, mechanical vibrations, heat and other forms of renewable energy.
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