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Targetry for 48 V production and the nuclear model calculation on the charge particle induced reaction on Ti target

Targetry for 48 V production and the nuclear model calculation on the charge particle induced... The radionuclide vanadium-48 ( T 1/2 = 16 d, β + = 49.5 %) could be employed to positron emission tomography. In this Study, 48 V excitation function for the nat/49/48 Ti(p,x) 48 V and the 48 Ti(d,2n) 48 V nuclear reactions were calculated by ALICE/ASH code. Then recommended thickness of the targets according to the SRIM-2010 code was calculated; consequently, the theoretical integral yields were computed for all reactions by the computer software. As a result, the 48 Ti(p,n) 48 V reaction was determined as the best reaction. Ti target was prepared by sedimentation method to produce 48 V throughout accelerator proton bombardment. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Journal of Radioanalytical and Nuclear Chemistry Springer Journals

Targetry for 48 V production and the nuclear model calculation on the charge particle induced reaction on Ti target

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References (25)

Publisher
Springer Journals
Copyright
Copyright © 2012 by Akadémiai Kiadó, Budapest, Hungary
Subject
Chemistry; Diagnostic Radiology; Nuclear Physics, Heavy Ions, Hadrons; Physical Chemistry; Nuclear Chemistry; Inorganic Chemistry
ISSN
0236-5731
eISSN
1588-2780
DOI
10.1007/s10967-012-1754-6
Publisher site
See Article on Publisher Site

Abstract

The radionuclide vanadium-48 ( T 1/2 = 16 d, β + = 49.5 %) could be employed to positron emission tomography. In this Study, 48 V excitation function for the nat/49/48 Ti(p,x) 48 V and the 48 Ti(d,2n) 48 V nuclear reactions were calculated by ALICE/ASH code. Then recommended thickness of the targets according to the SRIM-2010 code was calculated; consequently, the theoretical integral yields were computed for all reactions by the computer software. As a result, the 48 Ti(p,n) 48 V reaction was determined as the best reaction. Ti target was prepared by sedimentation method to produce 48 V throughout accelerator proton bombardment.

Journal

Journal of Radioanalytical and Nuclear ChemistrySpringer Journals

Published: Jul 1, 2012

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