Title of article :
comparative study of the ethanolic and aqueous avicennia marina mangrove extracts on the biosynthesis of agcl@tio2 nanocomposite
Author/Authors :
abdi, vahideh university of hormozgan - faculty of marine science and technology - department of fisheries, bandar abbas, iran , ghasemi, zahra university of hormozgan - faculty of marine science and technology - department of fisheries, bandar abbas, iran , sourinejad, iman university of hormozgan - faculty of marine science and technology - department of fisheries, bandar abbas, iran
From page :
1375
To page :
1385
Abstract :
the biosynthesis of nanomaterials is an important aspect of nanotechnology due to its cost-effective and eco-friendly procedure. the present study was carried out to fabricate agcl@tio2 nanocomposite using the aqueous and ethanolic leaf extracts of avicennia marina mangrove plant as a reducing and stabilizing agent (rsa). the effect of aqueous and ethanolic leaf extracts with different concentrations on the biosynthesis of agcl@tio2 nanoparticles (nps) was systematically studied by x-ray diffraction (xrd), field emission scanning electron microscopy (fe-sem), energy dispersive spectroscopy (eds), uv-visible diffuse reflectance spectroscopy (uv-visible drs), and fourier transform infrared (ft-ir) spectrometer. the results illustrated the successful synthesis of agcl@tio2 nanocomposite without any impurity phase using the aqueous extract. agcl nps were uniformly distributed on the surface of tio2. the absorption intensity of agcl@tio2 with a band gap energy of 2.95 was improved both in the uv and vl region and displayed stronger absorption compared with pure tio2. ft-ir analysis confirmed that the biosynthesized agcl@tio2 by using aqueous leaf extract was not just an easy physical mixture of ag and tio2 species but it was a molecular-level combining of ti–o and ag–o domains in the nanocomposite
Keywords :
biosynthesis, agcl@tio2 , nanocomposite , avicennia marina , aqueous extract.
Journal title :
Iranian Journal of Chemistry and Chemical Engineering (IJCCE)
Journal title :
Iranian Journal of Chemistry and Chemical Engineering (IJCCE)
Record number :
2705694
Link To Document :
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