Study of 90Y Sorption with Nanodiamonds as Potential Carriers in the Radiopharmaceutical Composition
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Published:2022-01
Issue:1
Volume:64
Page:44-48
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ISSN:1066-3622
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Container-title:Radiochemistry
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language:en
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Short-container-title:Radiochemistry
Author:
Kazakov A. G.,Babenya J. S.,Ivanova M. K.,Vinokurov S. E.,Myasoedov B. F.
Publisher
Pleiades Publishing Ltd
Subject
Physical and Theoretical Chemistry
Reference29 articles.
1. Asadian, S., Mirzaei, H., Kalantari, B.A., Davarpanah, M.R., Mohamadi, M., Shpichka, A., Nasehi, L., Es, H.A., Timashev, P., Najimi, M., Gheibi, N., Hassan, M., and Vosough, M., Pharmacol. Res., 2020, vol. 160, ID 105070. 2. Datta, P. and Ray, S., J. Label. Compd. Radiopharm., 2020, vol. 63, pp. 333–355. 3. Chu, S.Y.F., Ekström, L.P., and Firestone, R.B., Table of Radioactive Isotopes, Database Version 1999-02-28. http://nucleardata.nuclear.lu.se 4. Carr, B.I., Kondragunta, V., Buch, S.C., and Branch, R.A., Cancer, 2010, vol. 116, pp. 1305–1314. 5. d’Abadie, P., Hesse, M., Louppe, A., Lhommel, R., Walrand, S., and Jamar, F., Molecules, 2021, vol. 26, ID 3966.
https://doi.org/10.3390/molecules26133966
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