氘
放射化学
铊
同位素
化学
梁(结构)
铋
激发
航程(航空)
核物理学
核反应
产量(工程)
铅(地质)
辐照
回旋加速器
原子物理学
材料科学
物理
光学
等离子体
无机化学
有机化学
量子力学
地貌学
冶金
复合材料
地质学
作者
Thomas Sounalet,Arnaud Guertin,Férid Haddad,Keerthana Kamalakannan,Etienne Nigron
标识
DOI:10.1016/j.apradiso.2024.111190
摘要
Lead-203 is a SPECT emitter that can be used in theranostic applications as an imaging counterpart of lead-212 which is intended to be used for alpha therapy as lead-212/bismuth-212 in-vivo generator. In our study, we explore the production of lead-203 using enriched thallium-205 target irradiated by a deuteron beam. Excitation functions of deuteron induced reactions leading to the formation of 204m,203m2+m1+g,202m,201m+gPb, 202Tl and 203m+gHg isotopes were determined experimentally in the energy range from 21 MeV to 34 MeV. Cross sections were measured using the stacked foils technique and a set of two monitor foils, natNi and natTi for beam intensity evaluation. The experimental excitation functions of the investigated reactions were compared with the published data and also with the TENDL-2021 nuclear database. From our experimental data, we calculated lead-203 thick target yield in the energy range between 30 MeV and 32.5 MeV to be 56.7 MBq/μAh ±6.1 MBq/μAh. This value is compatible with large batch production showing that deuteron beams can be used for a routine production process. However, special attention must be paid to 203Hg and other lead contaminants.
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