Copper Acetate Manufacturers (WSDTY) proposed Copper Acetate nanoparticles FTIR measurements were carried out to identify the biomolecules for capping and efficient stabilization of the metal nanoparticles synthesized. The FT-IR spectrum of CuO nanoparticles using Hibiscus rosa-sinensis extract. Different functional group is involved in synthesis of CuO nanoparticles. Whereas the stretch for CuONPs were found around 650-700 cm-1. Therefore the synthesized nanoparticles were surrounded by proteins and metabolites such as terpenoids having functional groups. From the analysis of FTIR studies we confirmed that the carbonyl groups from the amino acid residues and proteins has the stronger ability to bind metal indicating that the proteins could possibly from the metal nanoparticles (i.e., capping of Copper Oxide nanoparticles) to prevent agglomeration and thereby stabilize the medium. This suggests that the biological molecules could possibly perform dual functions of formation and stabilization of Copper Oxide nanoparticles in the aqueous medium. FTIR spectrum of CuO nanoparticles suggested that CuO nanoparticles were surrounded by different organic molecules.
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