G. O. Otabor, E. U. Ikhuoria, Ikhazuagbe Hilary Ifijen, Joshua Osaretin Onaifo, Osagie Ferdinand Amayo
Magnesium oxide nanoparticles (MgONPs) were successfully prepared from leaf extracts of Elaeis guineensis (oil palm) and Hevea brasiliensis (rubber). Characterization using Fourier transform infrared spectroscopy, X-ray diffraction, dynamic light scattering, and BET analysis validated the presence of functional groups for stabilization, a face-centered cubic crystal structure, nanoscale dimensions (approximately 100 nm) with mesoporosity and high surface areas of 318.6 m2/g for oil palm and 251 m2/g for rubber. Rubber leaves (RL)-MgONPs had mild aggregation, while oil palm leaves (OPL)-MgONPs were monodispersed and evenly distributed. Antioxidant activity using the DPPH assay showed dose-dependent scavenging capacity with IC50 values of 316 mg/mL for OPL and 495 mg/mL for RL. OPL-MgONPs also displayed enhanced antibacterial properties against Escherichia coli and Staphylococcus aureus. Photocatalytic activity showed high methylene blue degradation (91.63% for OPL) with over 93% mineralization. The reduced size, increased surface area, and mesoporosity of OPL-MgONPs improved their reactive oxygen species activity, indicating their potential as eco-friendly multifunctional nanomaterials.