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click herePlant sources mediated green synthesis of copper oxide nanoparticles and its applications
The fields of biomedicine and catalysis have shown great interest in copper oxide nanoparticles (CuONPs). Green synthesis methods are frequently employed to develop highly active CuONPs. This research investigates the potential photocatalytic and antibacterial applications of two CuONPs that were synthesized utilizing extracts from Dillenia indica (D‐CuONPs) and Mikania micrantha (M‐CuONPs) leaves. Analysis using electron microscopy revealed that CuONPs are uniformly spherical and average size of around 15 nm. X-ray diffraction studies show the development of single‐phase CuONPs with a monoclinic structure. The FTIR peaks at 695 cm −1 and 860 cm −1 represent a stretching of Cu−O, signifying the formation of CuO nanostructure. The EDX profiles stated that the CuONPs are correlated with compliantly intensified Cu and O signals. Under solar irradiation, around 90 % of congo red (CR) dye was degraded by both CuONPs in 120 min, with the rate constants of 0.0187 and 0.0174 min −1, respectively. Furthermore, CuONPs have excellent antibacterial activity against bacteria belonging to both Gram classes. Overall, CuONPs hold great potential for inhibiting the growth of pathogenic bacteria and for degrading organic dyes in the presence of sunlight. As such, they can be manufactured on a large scale using plant sources.
| Details | |||
| Role | Supervisor | ||
|---|---|---|---|
| Class / Degree | Masters | ||
| Students | Md. Sarifujjaman | ||
| Start Date | July 2022 | ||
| End Date | June 2023 | ||