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Kalabegishvili, T.; Kirkesali, E.; Rcheulishvili, A.
Frank Lab. of Neutron Physics, Joint Inst. for Nuclear Research, Dubna (Russian Federation); E.L.Andronikashvili Inst. of Physics, Georgian Academy of Sciences, Tbilisi (Georgia); South African Nuclear Energy Corporation (NECSA), Pretoria (South Africa)2012
Frank Lab. of Neutron Physics, Joint Inst. for Nuclear Research, Dubna (Russian Federation); E.L.Andronikashvili Inst. of Physics, Georgian Academy of Sciences, Tbilisi (Georgia); South African Nuclear Energy Corporation (NECSA), Pretoria (South Africa)2012
AbstractAbstract
[en] The synthesis of gold nanoparticles by one of the many popular microorganisms - blue-green algae Spirulina platensis was studied. The complex of optical and analytical methods was applied for investigation of experimental samples after exposure to chloroaurate (HAuCl4) solution at different doses and for different time intervals. To characterize formed gold nanoparticles UV-vis, TEM, SEM, EDAX, and XRD were used. It was shown that after 1.5-2 days of exposure the extracellular formation of nanoparticles of spherical form and the distribution peak within the interval of 20-30 nm took place. To determine gold concentrations in the Spirulina platensis biomass, neutron activation analysis (NAA) and atomic absorption spectrometry (AAS) were applied. The results obtained evidence that the concentration of gold accumulated by Spirulina biomass is rapidly growing in the beginning, followed by some increase for the next few days. The obtained substance of Spirulina biomass with gold nanoparticles may be used for medical, pharmaceutical, and technological purposes
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2012; 14 p; GRANT STCU 4744; GRANT OF JINR-SOUTH AFRICA (ORDER 69 2012); Also available online: http://www1.jinr.ru/Preprints/2012/031(E14-2012-31).pdf; 31 refs., 8 figs. Submitted to the journal, Applied Microbiology and Biotechnology
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Report
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ACTIVATION ANALYSIS, CHEMICAL ANALYSIS, COHERENT SCATTERING, DIFFRACTION, DIMENSIONLESS NUMBERS, DISPERSIONS, ELECTRON MICROSCOPY, ELEMENTS, ENERGY SOURCES, HALOGEN COMPOUNDS, HOMOGENEOUS MIXTURES, METALS, MICROORGANISMS, MICROSCOPY, MIXTURES, NONDESTRUCTIVE ANALYSIS, RENEWABLE ENERGY SOURCES, SCATTERING, SPECTROSCOPY, TRANSITION ELEMENT COMPOUNDS, TRANSITION ELEMENTS
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