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Updated: Sep 11, 2025

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Preparing an Isotopically Pure 229Th Ion Beam for Studies of 229mTh
Published on: May 3, 2019
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Systematic study of thin barium/radium target production using electroplating method
Erika Jajčišinová1, Alban Kellerbauer2, Dmytro Burdeinyi3
1European Commission, Joint Research Centre (JRC), Karlsruhe, Germany; KU Leuven, Instituut voor Kern- en Stralingsfysica, Leuven, Belgium.
Summary
Researchers developed a method for creating thin radium targets for nuclear reaction studies. Optimized electroplating achieved a 69% deposition efficiency for producing radium-226 targets, crucial for synthesizing actinium-225.
Area of Science:
- Nuclear Chemistry
- Radiochemistry
- Materials Science
Background:
- Accurate excitation function evaluation is vital for nuclear reaction studies.
- Thin, homogeneous radium targets are essential for producing Actinium-225 (Ac-225) via nuclear reactions with Radium-226 (Ra-226).
- Electrodeposition is a common technique for producing thin film targets.
Purpose of the Study:
- To develop and optimize an electroplating method for producing thin, homogeneous Radium-226 targets.
- To investigate the effects of various parameters on the electrodeposition process.
- To achieve high deposition efficiency and deposit quality for nuclear applications.
Main Methods:
- Electroplating of Radium-226 (Ra-226) using Barium (Ba) as a chemical homologue, spiked with Radium-223 (Ra-223) for efficiency evaluation.
- Systematic investigation of chemical and physical parameters influencing the electrodeposition process.
- Characterization of deposit homogeneity and morphology using optical microscopy, Scanning Electron Microscopy (SEM), profilometry, and radioluminography.
Main Results:
- Identified optimal conditions for electrodeposition of radium targets.
- Achieved stable and homogeneous deposits on Aluminum (Al) substrates.
- Obtained a high deposition efficiency of 69(3)% in the optimized process.
Conclusions:
- The developed electroplating method is effective for producing high-quality, homogeneous radium targets.
- The optimized process yields efficient deposition suitable for nuclear reaction studies.
- This work facilitates the production of Ac-225 through Ra-226 nuclear reactions.
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