A new approach to targetry and cyclotron production of 45Ti by proton irradiation of 45Sc
Titanium-45 with a half-life of 3.09 hours decays by emission of positrons (85%) and the electron capture process (15%). These properties make this radionuclide useful in the diagnosis of tumors by positron emission tomography. In this study, after having considered the excitation functions...
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doaj-250f305dec5b43fab6f26ce1dc2334632020-11-24T22:49:54ZengVINCA Institute of Nuclear SciencesNuclear Technology and Radiation Protection1451-39942014-01-01291283310.2298/NTRP1401028F1451-39941401028FA new approach to targetry and cyclotron production of 45Ti by proton irradiation of 45ScFazaeli Yousef0Aboudzadeh Mohammadreza1Aardaneh Khosro2Kakavand Tayyeb3Bayat Fatemeh4Yousefi Kamran5Nuclear Medicine Research Group, Agricultural, Medical and Industrial Research School, Karaj, IranNuclear Medicine Research Group, Agricultural, Medical and Industrial Research School, Karaj, IranNuclear Medicine Research Group, Agricultural, Medical and Industrial Research School, Karaj, IranFaculty of Physics, Zanjan University, Zanjan, IranFaculty of Physics, Zanjan University, Zanjan, IranNuclear Medicine Research Group, Agricultural, Medical and Industrial Research School, Karaj, IranTitanium-45 with a half-life of 3.09 hours decays by emission of positrons (85%) and the electron capture process (15%). These properties make this radionuclide useful in the diagnosis of tumors by positron emission tomography. In this study, after having considered the excitation functions for the 45Sc(p, n)45Ti reaction using TALYS and ALICE/ASH codes and after the comparison with other experimental data, 45Ti was produced by dint of the pressing method and a newly designed and manufactured shuttle and capsule, resulting in an experimental yield of 403.3 MBq/mAh. Essential target thickness and physical yield were calculated. The scandium oxide target was irradiated at a 20 mA current and a 21 MeV proton beam energy for 1 hour.http://www.doiserbia.nb.rs/img/doi/1451-3994/2014/1451-39941401028F.pdf45Ti45Scprotonexcitation functionphysical yield |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Fazaeli Yousef Aboudzadeh Mohammadreza Aardaneh Khosro Kakavand Tayyeb Bayat Fatemeh Yousefi Kamran |
spellingShingle |
Fazaeli Yousef Aboudzadeh Mohammadreza Aardaneh Khosro Kakavand Tayyeb Bayat Fatemeh Yousefi Kamran A new approach to targetry and cyclotron production of 45Ti by proton irradiation of 45Sc Nuclear Technology and Radiation Protection 45Ti 45Sc proton excitation function physical yield |
author_facet |
Fazaeli Yousef Aboudzadeh Mohammadreza Aardaneh Khosro Kakavand Tayyeb Bayat Fatemeh Yousefi Kamran |
author_sort |
Fazaeli Yousef |
title |
A new approach to targetry and cyclotron production of 45Ti by proton irradiation of 45Sc |
title_short |
A new approach to targetry and cyclotron production of 45Ti by proton irradiation of 45Sc |
title_full |
A new approach to targetry and cyclotron production of 45Ti by proton irradiation of 45Sc |
title_fullStr |
A new approach to targetry and cyclotron production of 45Ti by proton irradiation of 45Sc |
title_full_unstemmed |
A new approach to targetry and cyclotron production of 45Ti by proton irradiation of 45Sc |
title_sort |
new approach to targetry and cyclotron production of 45ti by proton irradiation of 45sc |
publisher |
VINCA Institute of Nuclear Sciences |
series |
Nuclear Technology and Radiation Protection |
issn |
1451-3994 |
publishDate |
2014-01-01 |
description |
Titanium-45 with a half-life of 3.09 hours decays by emission of positrons
(85%) and the electron capture process (15%). These properties make this
radionuclide useful in the diagnosis of tumors by positron emission
tomography. In this study, after having considered the excitation functions
for the 45Sc(p, n)45Ti reaction using TALYS and ALICE/ASH codes and after the
comparison with other experimental data, 45Ti was produced by dint of the
pressing method and a newly designed and manufactured shuttle and capsule,
resulting in an experimental yield of 403.3 MBq/mAh. Essential target
thickness and physical yield were calculated. The scandium oxide target was
irradiated at a 20 mA current and a 21 MeV proton beam energy for 1 hour. |
topic |
45Ti 45Sc proton excitation function physical yield |
url |
http://www.doiserbia.nb.rs/img/doi/1451-3994/2014/1451-39941401028F.pdf |
work_keys_str_mv |
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