Synthesis and Characterization of Some Selenium Nanometric Compounds: Spectroscopic, Biological and Antioxidant Assessments
World Journal of Nano Science and Engineering • 2014
معلومات البحث
المؤلفون
Aly H. Atta1,2*, Ahmed I. El-Shenawy1,3, Fathy A. Koura1,4, Moamen S. Refat5,6
الكلمات المفتاحية
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المجلة العلمية
World Journal of Nano Science and Engineering
الناشر
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المجلد
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العدد
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الصفحات
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publication.type
International
رابط البحث
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المواد المرفقة
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الملخص
Selenium (IV) vitamin A complex as antioxidant drug design was prepared and characterized by
microanalysis, conductance, infrared spectra, Raman laser spectra, 1HNMR spectra, scanning electron
microscopy (SEM), X-ray powder diffraction (XRD) and thermogravimetric (TG/DTG and DTA)
tool of analyses. Vitamin A chelate was coordinated as a mono-dentate ligand through the oxygen
atom of –OH hydroxyl group. Thermal degradation analyses discussed the removal of terminal
methyl molecules in the first and second decomposition stage while the organic ligand moieties
existed in the third and subsequence steps. The Se (IV) complex in comparable with free vitamin A
ligand has been assessed against some kinds of bacteria and fungi which gave a significant inhibition.
The surface morphology and nano scale size of selenium metal and its vitamin complex were
proved. The activation energy and other thermodynamic parameters (ΔH*, ΔS* and ΔG*) of Se (IV)
complex were calculated using Coats-Redfern and Horowitz-Metzger equations.
microanalysis, conductance, infrared spectra, Raman laser spectra, 1HNMR spectra, scanning electron
microscopy (SEM), X-ray powder diffraction (XRD) and thermogravimetric (TG/DTG and DTA)
tool of analyses. Vitamin A chelate was coordinated as a mono-dentate ligand through the oxygen
atom of –OH hydroxyl group. Thermal degradation analyses discussed the removal of terminal
methyl molecules in the first and second decomposition stage while the organic ligand moieties
existed in the third and subsequence steps. The Se (IV) complex in comparable with free vitamin A
ligand has been assessed against some kinds of bacteria and fungi which gave a significant inhibition.
The surface morphology and nano scale size of selenium metal and its vitamin complex were
proved. The activation energy and other thermodynamic parameters (ΔH*, ΔS* and ΔG*) of Se (IV)
complex were calculated using Coats-Redfern and Horowitz-Metzger equations.
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