Search Results - "Sarabadani, P."
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Solid phase extraction of radioyttrium from irradiated strontium target using nanostructure ion imprinted polymer formed with 1-hydroxy-4-(prop-2-enyloxy)-9,10-anthraquinone
Published in Applied radiation and isotopes (01-08-2014)“…A new complex of 1-hydroxy-4-(prop-2-enyloxy)-9,10-anthraquinone and Y(III) was synthesized and used as the functional monomer for a novel Y(III) nanostructure…”
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Synthesis of maghemite nano-particles and its application as radionuclidic adsorbant to purify [sup.109]Cd radionuclide
Published in Journal of radioanalytical and nuclear chemistry (01-02-2010)“…Maghemite nano-particles were synthesized by a solid-state chemical reaction for its highly selective use as, cyclotron-produced, [sup.109]Cd (462.9 days)…”
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Separation of the no-carrier-added Cd from Ag, Cu and Zn by use of a precipitation and AG1-X8 resin
Published in Journal of radioanalytical and nuclear chemistry (01-09-2009)“…The Cd radionuclide was produced in the cyclotron via Ag(p,n)Cd reaction. The radiochemical separation of Cd from silver and non-isotopic impurities comprised…”
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4
Effect of Europium Dopant Concentration on Particle Size and Luminescence of Yttrium Oxysulfide Nanoparticles Prepared by Urea Homogenous Precipitation
Published in Journal of cluster science (01-09-2015)“…Yttrium oxysulfide nanoparticles doped with trivalent europium have been synthesized using urea homogen precipitation and followed by sulfurization at 800 °C…”
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Synthesis of maghemite nano-particles and its application as radionuclidic adsorbant to purify 109Cd radionuclide
Published in Journal of radioanalytical and nuclear chemistry (01-02-2010)“…Maghemite nano-particles were synthesized by a solid-state chemical reaction for its highly selective use as, cyclotron-produced, 109 Cd (462.9 days)…”
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6
Separation of the no-carrier-added 109Cd from Ag, Cu and 65Zn by use of a precipitation and AG1-X8 resin
Published in Journal of radioanalytical and nuclear chemistry (01-09-2009)“…The 109 Cd radionuclide was produced in the cyclotron via nat Ag(p,n) 109 Cd reaction. The radiochemical separation of 109 Cd from silver and non-isotopic…”
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7
High cadmium-109 recovery from a dissolved silver target solution using dowex 1×8 anion-exchange resin
Published in Radiochemistry (New York, N.Y.) (01-10-2010)“…Separation of 109 Cd produced by proton irradiation of a silver target from the target material and the other products was achieved. Radiochemical separation…”
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Targetry of SrCO3 on a copper substrate by sedimentation method for the cyclotron production no-carrier-added 86Y
Published in Applied radiation and isotopes (01-11-2009)Get full text
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Targetry of SrCO sub(3) on a copper substrate by sedimentation method for the cyclotron production no- carrier-added super(86)Y
Published in Applied radiation and isotopes (01-11-2009)“…Strontium carbonate deposition on copper substrate was carried out by the sedimentation method in order to produce yttrium-86. Natural strontium carbonate…”
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Targetry of SrCO 3 on a copper substrate by sedimentation method for the cyclotron production no-carrier-added 86Y
Published in Applied radiation and isotopes (2009)“…Strontium carbonate deposition on copper substrate was carried out by the sedimentation method in order to produce yttrium-86. Natural strontium carbonate…”
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11
Enrichment of 90Zr by Electromagnetic Isotope sSeparation (EMIS)
Published in مجله علوم و فنون هستهای (01-11-2020)“…The Electromagnetic Isotopes Separator (EMIS) installed in Karaj, has the capability to separate isotopes in a wide range of elements. Zirconium is…”
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Targetry of SrCO(3) on a copper substrate by sedimentation method for the cyclotron production no-carrier-added (86)Y
Published in Applied radiation and isotopes (01-11-2009)“…Strontium carbonate deposition on copper substrate was carried out by the sedimentation method in order to produce yttrium-86. Natural strontium carbonate…”
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13
Enrichment of 54Fe by Electromagnetic Isotope Separator (EMIS)
Published in مجله علوم و فنون هستهای (01-02-2014)“…Electromagnetic Isotopes Separator (EMIS) has been installed in Karaj since 1991 in order to separate isotopes of a wide range of elements. Iron is…”
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