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Nanoparticles of copper have superior properties as compared to the bulk copper material. Cinnamomum zeylanicum has been used to synthesise copper nanoparticles in the present study as it is nontoxic and cheap. The prepared copper nanoparticles were characterized by UV- V spectrophotometer showing a typical resonance at about 631 nm which is specific for CuNPs. Fourier transform infrared spectroscopy indicates that oxygen-containing functional groups in the C zeylanicum are involved in the nanoparticle synthesis reaction. High-resolution transmission electron microscopy (HRTEM) was also used…mehr

Produktbeschreibung
Nanoparticles of copper have superior properties as compared to the bulk copper material. Cinnamomum zeylanicum has been used to synthesise copper nanoparticles in the present study as it is nontoxic and cheap. The prepared copper nanoparticles were characterized by UV- V spectrophotometer showing a typical resonance at about 631 nm which is specific for CuNPs. Fourier transform infrared spectroscopy indicates that oxygen-containing functional groups in the C zeylanicum are involved in the nanoparticle synthesis reaction. High-resolution transmission electron microscopy (HRTEM) was also used to confirm that CuNPs are spherical shape. The antimicrobial activity was carried out against E-coli, Enterobacteria, Stephylococcus aureus, Bascillus to confirm that these particles may act as antimicrobial agents.
Autorenporträt
A Dra. Richa Kothari tem 17 anos de experiência de ensino e investigação a nível de UG e PG. Fez o seu Mestrado e Doutoramento em Química na Universidade de Jiwaji, Gwalior, Índia e publicou 18 artigos de investigação em revistas de renome. Registou 3 patentes e orientou 1 bolseiro de doutoramento. É Professora e Diretora do Departamento de Química da Universidade ITM, Gwalior, Índia.