Improving the ferroelectric and ferromagnetic properties of multiferroic composite materials for the decomposition of synthetic dyes
Keywords:
multiferroic, nanocomposites, photocatalysis, remanent polarisation, saturation magnetisationAbstract
A multiferroic composite of xNi0,6Zn0,4Fe2O4/(1-x) (0,5Ba(Zr0,2Ti0,8)O3 -0,5(Ba0,7Ca0,3)TiO3) (denoted as NZFO/BZT-BCT) with an average particle size of 100 nm was prepared by high-energy mechanical milling combined with the thermal annealing methods. The X-ray diffraction pattern indicates the presence of both Ni0,6Zn0,4Fe2O4(NZFO) và (0,5BaZr0,2Ti0,8O3) - 0,5(Ba0,7Ca0,3TiO3) (BZT-BCT) phases in the multiferroic composite. At room temperature, the multiferroic composite exhibits a remanent magnetisation (Mr) of approximately 0.6 emu/g and a saturation magnetisation (Ms) of about 29.2 emu/g. It is worth noting that this nanocomposite displayed exceptional photocatalytic activity in degrading Rhodamine B (RhB). After irradiation with UV radiation for 180 minutes, the degradation efficiency of RhB reached 99%. The kinetic reaction of the RhB degradation was also assessed, revealing that the apparent first-order rate constant of NZFO/BZTBCT is kp =0,019 min−1. With benefits such as easy fabrication and simple recovery using an external magnetic field, the NZFO/BZT-BCT multiferroic composite could be a potential candidate for photocatalytic environmental treatment.
DOI:
https://doi.org/10.31276/VJST.67(12).33-37Classification number

