4.6 Article

Green Synthesis of Copper Oxide Nanoparticles Using Protein Fractions from an Aqueous Extract of Brown Algae Macrocystis pyrifera

期刊

PROCESSES
卷 9, 期 1, 页码 -

出版社

MDPI
DOI: 10.3390/pr9010078

关键词

green synthesis; brown seaweed; proteins; size exclusion chromatography; copper oxide nanoparticles

资金

  1. ANID Scholarship [21141234]
  2. FONDECYT project [1191239, 1191089]
  3. [ANID/FONDAP/15130015]

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This study explores the green synthesis of copper oxide nanoparticles using protein fractions extracted from brown algae, showing that low and high molecular weight proteins can synthesize spherical CuO-NPs. Characterization techniques like DLS and FTIR confirm the high stability and potential applications of the nanoparticles synthesized, indicating a novel and efficient method for nanoparticle synthesis.
Amongst different living organisms studied as potential candidates for the green synthesis of copper nanoparticles, algal biomass is presented as a novel and easy-to-handle method. However, the role of specific biomolecules and their contribution as reductant and capping agents has not yet been described. This contribution reports a green synthesis method to obtain copper oxide nanoparticles (CuO-NPs) using separated protein fractions from an aqueous extract of brown algae Macrocystis pyrifera through size exclusion chromatography (HPLC-SEC). Proteins were detected by a UV/VIS diode array, time-based fraction collection was carried out, and each collected fraction was used to evaluate the synthesis of CuO-NPs. The characterization of CuO-NPs was evaluated by Dynamic Light Scattering (DLS), Z-potential, Fourier Transform Infrared (FTIR), Transmission Electron Microscope (TEM) equipped with Energy Dispersive X-ray Spectroscopy (EDS) detector. Low Molecular Weight (LMW) and High Molecular Weight (HMW) protein fractions were able to synthesize spherical CuO-NPs. TEM images showed that the metallic core present in the observed samples ranged from 2 to 50 nm in diameter, with spherical nanostructures present in all containing protein samples. FTIR measurements showed functional groups from proteins having a pivotal role in the reduction and stabilization of the nanoparticles. The highly negative zeta potential average values from obtained nanoparticles suggest high stability, expanding the range of possible applications. This facile and novel protein-assisted method for the green synthesis of CuO-NPs may also provide a suitable tool to synthesize other nanoparticles that have different application areas.

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