Synthesis And Characterization Of Multiferroic Composites And Their Possible Application In Photovoltaics
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Abstract
Multiferroics materials due to their exceptional properties hold huge potential for their
newlineapplications in multifunctional, magnetic, and photovoltaic devices due to their unique
newlineproperties. Researchers are actively exploring the ways to improve the electronic and
newlinemagnetic strength of multiferroic materials so that they can be used for the development
newlineof next-generation devices with superior functionality, enabling miniaturization and
newlineintegration into complex systems. While their photoelectric properties open doors for
newlinedeveloping efficient solar cells. In our study, we opted for a composite system approach
newlineto enhance the overall multiferroic and optoelectronic properties of the multiferroic
newlinematerial. Firstly, we have synthesized a high-purity multiferroic material. The obtained
newlinemultiferroic material is then used to make a multiferroic-based composite system where
newlinemultiferroic material as a main matrix is used. The prepared composites have been
newlineinvestigated with the help of sophisticated instruments, for the morphological, electronic,
newlinemagnetic, ferroelectric, and optoelectronic properties. The investigation suggested that
newlineenhanced properties of these composite systems may find their application in energy
newlinestorage and photovoltaic devices. This opens the door to the creation of cutting-edge tools
newlineand uses across a range of technological domains.
newline